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PT DANMAR EXPLORINDO Jalan By Pass Ngurah Rai No. 189 SANUR, BALI INDONESIA tel/fax: +62 361 286907, 286909 mobile : +62 81 23851151 email: [email protected] www.danmarexplorindo.com PT TRISULA KENCANA SAKTI QUALIFIED PERSON’S REPORT OF COAL RESOURCES Concession map surrounding theTKS project Teweh Tengah danTeweh Timur BARITO UTARA CENTRALKALIMANTAN INDONESIA 15 January, 2015 TKS PROJECT APPENDIX 5 – TKS JORC RESOURCE REPORT 459

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Page 1: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

PT DANMAR EXPLORINDO Jalan By Pass Ngurah Rai No. 189 SANUR, BALI INDONESIA tel/fax : +62 361 286907, 286909 mobile : +62 81 23851151 email: [email protected] www.danmarexplorindo.com

PT TRISULA KENCANA SAKTI

QUALIFIED PERSON’S REPORT OF

COAL RESOURCES

Concession map surrounding theTKS project

Teweh Tengah danTeweh Timur BARITO UTARA

CENTRALKALIMANTAN INDONESIA

15 January, 2015

TKS PROJECT

APPENDIX 5 – TKS JORC RESOURCE REPORT

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i

1.0 EXECUTIVE SUMMARY

1) this report has updated the previous Resource Report dated July, 2014, forthe IUP lease areas held by PT Trisula Kencana Sakti (TKS), in accordancewith the Joint Ore Reserve Committee (JORC) Code (2012)

2) TKS holds 2 contiguous coal exploitation IUP leases covering 4,748ha and4,959ha respectively, in the Regency of Barito Utara, Central Kalimantan,Indonesia

3) the area is located 58km east of the town of Muara Teweh

4) the lease area is covered mainly by Production Forest and a 698.5ha areahas been approved for mining by the Ministry of Forestry

5) according to the published geology map, coal in the lease area belongs to theTanjung and Montelat formations which are 40-25 million years old, however,the exploration results suggest that the main coal deposit is part of theWarukin Formation which is only 15 million years old

6) exploration of the area began in, 2005, and includes;drilling of 494 holes with a total cumulative depth of 40,168mdown-hole geophysical logging (92% of all holes)detailed ground topographic survey and LiDAR709 sample analyses

7) since the last Resource Report no additional field work has been carried out

8) the validated data is sufficient in volume, density and accuracy to form thefoundation for the estimation of Resources of coal as per the JORC ode of2012

9) 21 coal seams are identified with average thickness ranging from 0.4-1.8m

10) although most of the coal seams are approximately 0.7m thick they arelaterally persistent over more than 10km of strike distance and they form a significant part of this coal Resource

11) a Feasibility Study and an Environmental Impact Study were completed in2006 these documents formed the basic guidelines used for the mining project development

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ii

12) coal production started in 2010, by conventional truck and shovel method, butthe project was placed on care and maintenance, due to falling coal prices, in March 2012, after 209,000t of coal was produced

13) Resources of coal have not been modified since the last report (July, 2014)and the depth cut-off of the coal Resource remains at a maximum of 100m to comply with "reasonable expectations of eventual economic extraction” in the current coal market outlook

14) Coal Resources are summarized as follows;

15) for this study estimating Reserves of coal have not been possible because ofthe following factors;

coal prices have declined since the last Reserve Report (September 2013)the project has been on care and maintenance for 2 yearsthere is no current Pre-Feasibility study to demonstrate the viability of theproject

16) in the lease area, at least 4 Exploration Target areas have been identifiedwhere 20-110 million tonnes of additional coal is postulated to occur having energy values between 5700-6500kcal/kg (gar)

17) at this time the Exploration Target quantity and grade is conceptual in naturebecause there has been insufficient exploration to estimate a lResource and it is uncertain if further exploration will result in a lResource of these Exploration Target areas

18) previous coal production and shipment provides good evidence to supportthat coal mining and transportation from the area is feasible at higher coal prices and several haul road and barging options are available to the project

19) coal seams of 1m or less have been successfully mined in numerouslocations in East and Central Kalimantan and are likely to be successfully mined at TKS

APPENDIX 5 – TKS JORC RESOURCE REPORT

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APPENDIX 5 – TKS JORC RESOURCE REPORT

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iv

TABLE OF CONTENTS Pg

1.0 EXECUTIVE SUMMARY (i-ii)

1.1 Summary of Reserves and Resources iii

(ref: Rules705(7), 1207(21) & Practice Note 6.3)

2.0 DECLARATION 1

2.1 Report Objectives 1

2.2 Reporting Standards 1

2.3 Competent Person's statement 1

2.4 Statement of Independence 2

2.5 Disclaimer 2

3.0 INTRODUCTION 3

3.1 Tenement Details 4

3.2 Location and Access 6

3.3 Land use 8

3.4 Forestry 8

3.5 Regional Geology 10

3.6 Previous Investigations 12

4.0 EXPLORATION PROGRAM METHOD 13

4.1 Program Objectives 13

4.2 Geological Mapping 13

4.3 Drill Line Positioning and Construction 13

4.4 Drilling 14

4.5 Geophysical logging 15

4.6 Topographic Mapping 16

4.7 Coal Sampling and Analysis 17

APPENDIX 5 – TKS JORC RESOURCE REPORT

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TABLE OF CONTENTS Pg

5.0 RESULTS 18

5.1 Mapping 18

5.2 Drilling and Geological Interpretation 21

5.3 Geophysical Logging 30

5.4 Topographic Survey 31

5.5 Coal Analysis Results 35

6.0 COAL PRODUCTION CONCEPT AND COSTS 43

6.1 Coal Prices 56

7.0 RESOURCES AND RESERVES 57

7.1 Measured Resources of Coal Insitu 58

7.2 Reserves of Coal Remaining 62

8.0 DISCUSION & RECOMMENDATIONS 63

9.0 REFERENCES 66

10.0 APPENDICIES

10.1 JORC 2012 CHECKLIST& SUMMARY OF RESERVES AND

RESOURCES (ref: Rules705(7), 1207(21) & Practice Note 6.3)

10.2 DRILL DATA SUMMARY AND RESOURCE ESTIMATE

DETAILS

10.3 CV DANIEL MADRE, PT DANMAR COMPANY PROFILE

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LIST OF FIGURES Pg

FIGURE 1 CONCESSION MAP 5

FIGURE 2 PROJECT LOCATION MAP, INDONESIA 6

FIGURE 3 ACCESS MAP 7

FIGURE 4 LANDUSE SEEN FROM GOOGLE EARTH IMAGE 8

FIGURE 5 FORESTRY MAP 9

FIGURE 6 REGIONAL COAL STRATIGAPHY 10

FIGURE 7 REGIONAL GEOLOGY MAP 11

FIGURE 8 COAL OUTCROP MAP 21

FIGURE 9 DRILL HOLE LOCATION MAP 23

FIGURE 10 LOCAL STRUCTURAL INTERPRETATION MAP 24

FIGURE 11 COAL STRATIGRAPHY OF INVESTIGATION AREA 26

FIGURE 12 INTERPRETED COAL SEAM SUB-CROP MAP 28

FIGURE 13 DIAGRAMMATIC CROSS-SECTIONS 29

FIGURE 14 COAL SEAM THICKNESS 31

FIGURE 15 DRILL COLLAR & GEODITIC BENCHMARK LOCATION MAP 33

FIGURE 16 LANSAT DEM TOPOGRAPHIC SURFACE 35

FIGURE 17 COAL SAMPLE LOCATION MAP 37

FIGURE 18 COAL SEAM QUALITY LINEAR PLOT 39

FIGURE 19 DISTRIBUTION OF ASH AND TOTAL SULPHUR 40

FIGURE 20 COAL COMPOSITION SCATTER PLOTS 41

FIGURE 21 PRESTON SANDER’S FORMULA 42

FIGURE 22 TKS PIT SITUATION MAP SEPTEMBER 2010 44

FIGURE 23 COAL HAULROAD PIT TO PORT SKETCH MAP 49

FIGURE 24 COAL BARGING AND TRANSHIPPMENT SKETCH MAP 50

FIGURE 25 COAL PRICE COMPARISON 55

FIGURE 26 COAL RESOURCES BY DEPTH MAP 62

FIGURE 27 TARGET COAL AREAS FOR FURTHER EXPLORATION 65

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LIST OF TABLES Pg

TABLE 1 IUP LICENSE DETAILS 4

TABLE 2 SUMMARY OF PREVIOUS INVESTIGATIONS 12

TABLE 3 PREVIOUS RESOURCE ESTIMATES 13

TABLE 4 PREVIOUS RESERVE ESTIMATES 13

TABLE 5 DRILLING METHODS USED AT TKS SITE 15

TABLE 6 OUTCROP LIST 20

TABLE 7 DRILLING USED IN THIS RESOURCE ASSESSMENT 22

TABLE 8 SOIL THICKNESS 25

TABLE 9 COAL SEAM OBSERVATIONS 25

TABLE 10 DATA RELIABILITY 27

TABLE 11 CORE RECOVERIES 30

TABLE 12 SURVEY DETAILS 32

TABLE 13 DRILL COLLAR SURVEY STATISTICS 32

TABLE 14 SUMMARY OF SAMPLES ANALYSED 36

TABLE 15 TKS COAL SEAM QUALITY 36

TABLE 16 COAL PRODUCTION 43

TABLE 17 COAL SHIPMENTS 45

TABLE 18 CAPITAL AND OPERATING COST ESTIMATE 46

TABLE 19 ICI QUALITY ENVIROCOAL, SUNGKAI HIGH SULPHUR & TKS 56

TABLE 20 EXPLORATION, MINERAL RESOURCE, ORE RESERVE 57

TABLE 21 COAL RESOURCES SUMMARY 60

TABLE 22 COAL EXPLORATION TARGETS 64

APPENDIX 5 – TKS JORC RESOURCE REPORT

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LIST OF PHOTOS Pg

PHOTO 1 COAL OUTCROP IN TKS LEASE VIEWED SEP 2013 3

PHOTO 2 COAL OUTCROP IN TKS LEASE 14

PHOTO 3 JAKRO DRILLING OPERATION 15

PHOTO 4 DOWN HOLE GEOPHYSICAL LOGGING OPERATION 16

PHOTO 5 SURVEY BENCHMARK AT TKS SITE 17

PHOTO 6 COAL OUTCROP IN TKS LEASE STA 5 19

PHOTO 7 DRILLHOLE MARKER PEG USED AT TKS SITE 34

PHOTO 8 MORPHOLOGY AT THE TKS SITE (LOOKING EAST) 34

PHOTO 9 COAL CORE SAMPLES TAKEN AT THE TKS SITE 42

PHOTO 10 SELF – PROPELLED BARGE 48

PHOTO 11 SELF – UNLOADING BARGE 48

PHOTO 112 PT MITRA BORNEO HAUL ROAD TO PANGKU PORT 52

PHOTO 13 PT PURWA PERMAI HAUL ROAD TO PANGKU PORT 52

PHOTO 14 TKS STOCKPILE FACILITY AT PANGKU PORT 53

PHOTO 15 TKS LOADING FACILITY AT PANGKU PORT 53

PHOTO 16 TKS LOADING FACILITY AT PANGKU ON BARITO RIVER 54

PHOTO 17 ROM COAL STOCKPILE AREA AT TKS 54

PHOTO 18 COAL MINING OPERATION AT TKS SITE 2010 55

PHOTO 19 TKS CLOSED PIT CONDITION, SEPTEMBER 2012 55

PHOTO 20 MAIN ROAD ACCESS TO TKS MINE SITE, SEPTEMBER 2013 56

PHOTO 21 TKS SITE OFFICE AND CAMP, SEPTEMBER 2013 56

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LIST OF ABBREVIATIONS

adb air dried basis ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for Testing Materials AusIMM Australasian Institue of Mining and Metallurgy bcm bank cubic meters CCoW Coal Contract of Work CV calorific value measured in kilocalories/kilogram dd due diligence DEX PT Danmar Explorindo ESDM Department of Energy and Sumber Daya Mineral (Mines Department) fc fixed carbon GAR gross as received GEMS Golden Energy Mines m3 meters cubed hr hoursIDW2 inverse distance weighted squared JORC Joint Ore Reserve Committee of AusIMM Kcal/kg kilocalories/kilogram unit of energy kg kilogramkm kilometre kt Kiloton im inherent moisture IUP Izin Usaha Pertambangan (license for mining business) l litreLAS log ASCII standard lcm loose cubic meter LOM life of mine m meterMt million tonne mtpa million tonnes per annum NAR net as received NPV net present value RD relative density RL relative level ROM run of mine SE specific energy Sg specific gravity SR strip ratio (BCM waste: tonnes of coal) t tonnetbk terbuka (open to public shareholding) TKS PT Trisula Kencana Sakti tm total moisture ts total sulphur vm volatile matter

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2.0 DECLARATION

2.1 Report Objectives

This report was prepared for United Fiber System Limited (UFS) for the purpose of updating the estimate of coal Resources and Reserves for the coal mining project held by PT Trisula Kencana Sakti (TKS), within the IUP mining licenses issued by Regent (Bupati) decision identification numbers: 188.45/207/2010 and 188.45/208/2010 in the Regency of Barito Utara, in the Province of Central Kalimantan, Indonesia. The report utilizes exploration & mining data until the 31 July, 2014. The work is also part of UFS’s assessment and due diligence on PT Golden Energy Mines Tbk (GEMS) and for inclusion in the circular to shareholders of UFS in relation to the proposed acquisition of GEMS.

2.2 Reporting Standard

This report is intended to meet the standards set in 2012, by the Joint Ore Reserve Committee (JORC) of the Australasian Institute of Mining and Metallurgy for the reporting of coal Resources and Reserves (http://www.jorc.org/docs/jorc_code2012.pdf). All the information provided was assessed for accuracy and reliability so that the Report is in accordance with the JORC Code (2012). The competent person’s membership to the Australian Institute of Geoscientists is currently in good standing.

2.3 Competent Person’s Statement

The information in this report that relates to Exploration Results, Mineral Resources and Ore Reserves based on information compiled by Daniel Madre, member no: 5632, of the Australian Institute of Geoscientists.

Daniel Madre has a Master of Science degree majoring in coal geology and more than 33 years of experience in the coal industry of which more than 25 years has been working in Indonesia. As a director of his contracting company PT Danmar Explorindo, Daniel Madre has explored many coal deposits throughout Kalimantan including numerous coal deposits in Central Kalimantan Province including TKS. Daniel Madre is supported by a staff and associates of more than 35 geologists and geoscientists.

Daniel Madre has sufficient experience which is relevant to the style of mineralization and type of deposit under consideration and to the activity that he is undertaking to qualify as a Competent Person as defined in the 2012 edition of the Australasian Code for Reporting of Exploration Results, Minerals Resources and Ore Reserves. Daniel Madre consents to the inclusion in the report of the matters based on his information in the form and context in which it appears. A resume for Mr Madre is attached in Appendix 10.3.

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2.4 Statement of Independence

Daniel Madre and PT Danmar Explorindo's partners, directors, substantial shareholders and their associates are independent of United Fiber System Limited ("UFS"), PT Golden Energy Mines ("GEMS"), its directors and substantial shareholders, its advisers and their associates. Neither Daniel Madre, PT Danmar Explorindo nor any of its partners, directors, substantial shareholders, advisors and their associates have any interest, direct or indirect in United Fiber System Limited, PT Golden Energy Mines Tbk or PT Trisula Kencana Sakti its subsidiaries, associated companies, or any related entities in Indonesia or elsewhere in the world. Daniel Madre and PT Danmar Explorindo have no potential conflicts of interest that might affect their objectivity in writing this report.

PT Danmar Explorindo’s fee for completing this report is at its normal commercial terms and the payment is not contingent upon the outcome and findings of this report.

2.5 Disclaimer

PT Danmar Explorindo has used the results of exploration programs provided by TKS for the purpose of writing this report. In making this Resource estimation PT Danmar Explorindo has assumed as follows;

1) all the relevant data available was provided without prejudice 2) key assumptions are accepted as described in this report

In view of the above assumptions PT Danmar Explorindo has made reasonable enquiries and exercised their judgment on the reasonable use and validity of the data and found no reason to doubt its accuracy and reliability. For this reason we believe that this report is an objective, accurate and reliable representation of the coal deposit at PT Trisula Kencana Sakti, (IUP’s with Regent (Bupati) decision No’s: 188.45/207/2010 and No: 188.45/208/2010) based on the exploration results until 31 July, 2014. PT Danmar Explorindo makes no warranty to PT Trisula Kencana Sakti or any third parties with regard to any commercial investment on the basis of this report. The use of this report by PT Trisula Kencana Sakti or any other parties shall be at their own risk. The report must always be read in its entirety so that all the data and assumptions are fully considered and properly understood.

Director, PT Danmar Explorindo 15 January, 2015

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3.0 INTRODUCTION

On behalf of United Fiber System Limited, PT Danmar Explorindo was asked to provide an assessment of the coal Resources and Reserves, according to the Australasian Code for Reporting of Exploration Results, Mineral Resources and Ore Reserves, (The JORC Code, 2012 Edition), for the coal mining project held by PT Trisula Kencana Sakti (TKS), at Teweh Tengah and Teweh Timur, Central Kalimantan, Indonesia.

The exploration work was carried out over various stages, under the direction of experienced coal geologists. The data was compiled by TKS. All the data relating to the project was obtained from TKS for the purpose of this study. PT Danmar Explorindo geologists and drilling crews worked at the site for approximately 12 months from 2010-2011. In September, 2013, the competent person for this report visited the site with the resource geologist that constructed the geological model for the project. During the site visit the general condition of the project was observed, the transportation logistics and the project economics were reviewed.

Photo 1 site visit by the Competent Person and Resource geologist September, 2013

Since the last Report dated 15th July, 2014, there has been no

additional field work completed and the previous esource estimate has not

changed

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3.1 Tenement Details

Mining rights for the area are held under 2 IUP operation and production licenses, referred to as Regent (Bupati) decision with identification No: 188.45/207/2010 and No: 188.45/208/2010. The areas cover 4,748ha and 4,959ha respectively. Both areas were granted to the company by the Regent of North Barito (Barito Utara) for a period of 14 and 16 years respectively, on the 26th April, 2010. The IUP's that form the TKS coal project are numbers 195 and 196 on the ESDM "clean and clear" list, although the original certificates are still in process. Table 1 shows the tenement license details of the PT.TKS leases. These include an IPPKH forestry permit for mining covering 699ha inside the TKS lease.

Table 1 License Details

Asset Name / Country GEMSinterest License

holder

Regency License Area Issued Duration

(KAB) Type (Ha) (Date) (Years)

TKS COAL / INDONESIA

GEMS owns 70% equity interest in

TKS

PT.TRISULA KENCANA

SAKTI

BARITOUTARA

EXPLOITATION (IUP) 4,748 26/4/2010 16

FORESTRY AREA BORROW & USE

(IPPKH)699 19/5/2010 10

TKS COAL / INDONESIA

GEMS owns 70% equity interest in

TKS

PT.TRISULA KENCANASAKTI 2

EXPLOITATION (IUP) 4,959 26/4/2010 18

In preparing this report a copy of the lease documents have been sighted. Thedocuments are kept at the TKS offices in Jakarta. The project area is surrounded by other coal mining tenements (see figure 1).

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FIG

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3.2 Location and Access

The lease area is located in Central Kalimantan Province of Indonesia. The location relative to the national boundaries is shown in Figure 2.

The lease is close to the villages of Malateken, Gandring, Panaendan Liang Buah in the Shire (Kecamatan) of Teweh Timur and Tengah, Regency (Kabupaten) of Barito Utara. Access to the project area from the city of Muara Teweh is mainly via public, regency roads, heading east and then via a private logging road owned by PT Austral Byna. Distance to the site from Muara Teweh is approximately 58km and the drive takes approximately 1.5-2 hours. Major roads in the area are shown in Figure 3.

Figure 2 location map, Indonesia

PROJECT LOCATION

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FIG

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3.3 Land Use

Most of the lease is dominated by secondary forest. Some small rubber plantations and traditional farms cover approximately 30% of the lease area. The area is relatively sparsely populated and there are villages in the southern central part of the lease. Figure 4 shows distribution of land clearing activity in the lease area from a Google arth satellite image.

Figure 4 Google arth image showing extent of land clearing in the project area and the area with Forestry approval for coal mining as a red dashed line

3.4 Forestry

According to the Indonesian Government forestry map, published in 2001, most of the lease area is Production Forest with a small band of Limited Production Forest across the northern boundary of TKS (see figure 5).

698.58ha of the production forest has had approval from the ministry of forestry for coal mining activities to proceed. This area, within the TKS lease, is shown in red dashed line in Figure 4. In preparing this report the forestry license has been sighted. It is stored at the TKS office in Jakarta. The plan is for the ‘forestry approval area’ to be progressively adjusted and moved as mining progresses.

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E 5

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10

3.5 Regional Geology

The lease lies in the Barito Basin of Central Kalimantan, one of the largest coal producing regions of Indonesia. The regional stratigraphy is summarized in Figure 6. According to the published geology, the lease is within an anticlinal structure containing the Tanjung and Montelat formations (see regional geological map figure 7). These rocks are Eocene to Middle Miocene in age and are well known to contain extensive seams of thermal coal.

However, the results of exploration suggest a different reality in the field. It seems that the regional geological map of the area lacks sufficient detail to define the geology correctly. Based on the work to date, a more likely interpretation of the regional geology is that the deposit area is in a syncline where relatively thick seams of Warukin age coal, are surrounded by hills containing older coal seams of the Montelat Formation. This would better explain why the coal in the central part of the deposit is relatively lower grade and these coal seams are surrounded by higher grade coal, around the edges of the basin. From the exploration results in this study, a more detailed geological interpretation of the area has been proposed (see figure 10).

Figure 6 regional stratigraphy of Tarakan, Kutai and Barito Basins (Satyana, 1999) modified to include Montelat Formation

MONTELAT

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FIG

UR

E 7

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12

3.6 Previous Investigations

Reports documenting the previous investigations at the TKS coal project are summarized in Table 2.These documents have been reviewed for the purpose of this study.

Table 2 List of Reports Detailing Previous Investigations at TKS

There have been 5 previous Resource estimates and 3 Reserve estimates according to the JORC Code. These are summarized in Tables 3 and 4.

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13

TMIM

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asis

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14

4.0 EXPLORATION PROGRAM METHOD

4.1 Program Objectives

In September, 2005, exploration by drilling of the TKS lease began. The main objective of the work was to confirm the occurrence of coal within the lease area and systematically investigate, using drilling, to determine the coal resource potential. The way in which this objective was achieved is described below.

4.2 Geological Mapping

During March 2011, geological mapping in the lease area was used to produce a coal outcrop map. The work concentrated in the areas where there was little or no previous exploration work. All rocks encountered were measured for thickness, orientation (strike / dip) and the rock type was recorded. This work was used to determine the overall geological structure of the lease area and help orientate the planning for the drilling program so that the positioning of the drill holes was optimized. Photo 2 shows coal outcrops within the TKS lease

Photo 2 coal outcropping in the TKS area

4.3 Drill Line Positioning and Construction

In the earlier drill programs (2005-2010), drill holes were unevenly distributed in the central part of the project area, where the thickest coal outcrops occur. This is where Forestry Approval was obtained for mining. In the more recent work (2010 - 2011), systematic drilling was carried out in the western part of the project area. Drill lines, aligned perpendicular to the regional strike of the geology, were cut through the bush by local labour teams. Drill holes were positioned in lines 250m apart, perpendicular to the regional strike of the geology, which was determined from the geological mapping. The plan was for the drilling to provide subsurface information about the coal already mapped at the surface. Drill holes were also spaced at 250m intervals

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15

along the drill lines so that the eventual result was a drill grid pattern of 250 X 250m. Wider spaced drilling has also been done further west of the main deposit area where geological mapping recorded numerous coal outcrops.

4.4 Drilling

The object of the drilling is to verify the thickness, depth and continuity of the coal beneath the surface. This information is fundamental to the estimation of coal Resources. Table 5 shows the types and methods of drilling employed through the various drill programs during exploration at the TKS site. Photo 3 shows a typical drilling operation at the TKS site during 2010.

Table 5 Drilling Methods used at the TKS site

Photo 3 drilling operation in progress at TKS site

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16

4.5 Geophysical Logging

To ensure the most accurate and reliable results from the drilling down hole geophysical logging was used. The tool measures gamma ray and density and produces an electronic signature of the geology intersected in each drill hole.

The data produced from the geophysical log was used to reconcile the drill log taken by the well site geologist to provide an accurate representation of the coal depth, thickness and quality and the other rocks associated with the coal. Photo 4 shows a typical down-hole geophysical logging operation

Photo 4 typical down hole geophysical logging operation

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17

4.6 Topographic Mapping

Detailed topographic mapping using airborne LiDAR survey method to a 1:1000 scale was carried out over the entire 9,711 Ha which completely covers the area of coal potential delineated in the initial drilling area.

All drillhole collars were also picked up by ground survey using total station survey equipment.

To tie the survey into the Indonesian national grid a geodetic survey including 21 permanent benchmarks were established for survey reference. Photo 5 shows one of the benchmarks located at the TKS site.

Photo 5 one of numerous survey bench marks in the area

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18

4.7 Coal Sampling and Analysis

Detailed sampling of each coal seam was carried out at the TKS site based on the following procedures.

10cm sediment sample from above coal seam 10cm coal sample from top of coal seam sample of the coal seam body 10cm coal sample from above any parting 10cm sediment sample of top of parting 10cm sediment sample from bottom of parting 10cm coal sample below parting 10cm coal sample from bottom of coal seam 10cm sediment sample from below coal seam

Most coal and sediment samples from the core drilling were analysed at Geoservices laboratory in Banjarbaru, near Banjarmasin. Total moisture, proximate analysis and calorific value were measured. Additional analyses include;

Hargrove Grindability Index (HGI) Relative Density (RD)

For roof, floor and parting sediment samples only moisture, ash and total sulphur were analyzed.

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19

5.0 RESULTS

5.1 Outcrop Mapping

Geological mapping was carried out in the areas where there was no prior investigation during March, 2011. A list of coal outcrops observed and measured in the project area is shown in Table 6. Overall more than 200 rock outcrops were measured in the field to provide evidence for the structure of the deposit outside the area where mining and drilling had already taken place. A coal outcrop map summarizing the results of this work is shown in Figure 8.

Photo 6 coal outcrop STA.5

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TKS

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TA-2

0230

252 3

9896

313

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2 m

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444

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3860

8355

8672

7366

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-203

3025

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21.5

312

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18.1

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TA-2

1730

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10.4

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35.2

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1.95

5345

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7189

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9/1

CO

24.4

513

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4.79

4041

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5668

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42.0

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3257

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75S

TA-2

2130

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2498

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41.6

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643.

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2930

2670

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820.

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3230

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6338

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APPENDIX 5 – TKS JORC RESOURCE REPORT

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FIG

UR

E 8

APPENDIX 5 – TKS JORC RESOURCE REPORT

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22

5.2 Drilling and Geological Interpretation

In total, 494 holes have been validated and used in this report. Total cumulative depth of the validated drilling is 40,168m in drill holes averaging around 80m depth. Table 7 shows the exploration history of the TKS lease areas. The distribution of the drilling is shown in Figure 9 (drillhole location map).

Table 7 Drilling Used in this Resource Assessment

A total of 111 holes from the exploration programs were excluded from the data set due to missing information. 230 holes were interpreted from softcopy geophysical logs (LAS) and 241 holes were interpreted manually from hardcopy of the geophysics. 23 holes had no geophysical logs and these holes were only used as reference points for coal in the model but no thickness or other dimensions were used from these holes. 75 holes had no geological cutting log and the data used was from the geophysics only.

From the exploration work a detailed interpretation of the geological structure of the area is possible. Figure 10 displays a local geological structure map of the entire IUP area. The main features include a syncline structure over the main deposit area with relatively flat dips and younger sediments in the central part of the deposit and

APPENDIX 5 – TKS JORC RESOURCE REPORT

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25

steeper dips in relatively older sediments, around the outer edges. Major faults are interpreted surrounding the deposit and controlling the boundaries of the coal to the north, south and east. The drilling shows that most of the lease area is covered by approximately 2.6m of soil. Table 8 shows the soil thickness recorded during the drilling over the deposit area.

Table 8 Soil thickness

At least 21 separate coal seams have been identified in the lease area. Table 9 shows the coal seam observations from the validated drilling results. The coal seam arrangement and characteristics are summarized in the stratigraphic column shown in Figure 11. The cumulative coal average thickness is 15.05m in 21 seams deposited in 575 meters of sediment.

Table 9 Coal seam observations

No. Seam-ID

COAL SEAM OBSERVATIONS

FREQUENCY RECONCILE WITH GEOPHYSICS APPARENT THICKNESS (m)

Point Sample % Min Max Ave 1 S10 8 100 0.12 0.54 0.29

2 S20 42 3 100 0.15 1.52 0.73

3 S30 72 8 96 0.10 1.30 0.48

4 S40 94 4 90 0.08 1.00 0.48

5 S50 74 4 88 0.01 0.70 0.33

6 S100 168 30 92 0.30 2.70 1.59

7 S200 183 35 93 0.20 3.38 1.80

8 S300 171 29 94 0.20 2.28 0.86

9 S400 137 16 93 0.10 1.49 0.75

10 S500 41 2 100 0.15 2.06 0.89

11 S550 32 1 97 0.20 1.45 0.68

12 S600U 36 2 97 0.14 1.40 0.51

13 S600L 36 1 97 0.24 2.60 0.73

14 S700U 58 5 98 0.14 1.55 0.84

15 S700L 54 7 98 0.14 1.85 0.74

16 S800 26 1 100 0.20 1.10 0.49

17 S850 29 2 100 0.15 1.28 0.51

18 S900 29 4 100 0.15 1.10 0.50

19 S1000 36 2 100 0.15 1.25 0.70

20 S1100 21 2 100 0.30 1.00 0.62

21 S1200 14 1 100 0.20 1.20 0.53

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Thickness

Gar Daf

STRATIGRAPHIC COLUMN - TKS PROJECTAge Description CV CV RDAve (m)

IM ASH VM FC TS CVFormation Seam-IDCOAL QUALITY (INSITU)

TM

Lithology

air dried basisHGI

Gar DafSoil 2.6

Mudstone 6

Mudstone 14

n/an/an/an/an/an/an/an/an/aS10

n/an/a

0.29Coal n/a n/a

Coal 0.73 7234491954080.5538.0636.688.7616.5024.11S20

( ) air dried basis

Mudstone 16

Mudstone 1336.65 1.22 5162 4608 7159S40 23.69 14.51 13.54 35.30

UK

IN

Coal

DLE 0.48

Coal 0.73 S20

Coal 0.48 S30 21.14 13.22 5.11 45.20 36.48 0.32 6238 5673 7631 1.35 46.00

1.45 n/a

Mudstone 11

Mudstone 15

Coal 1.59 S100 22.08 14.57 5.50 38.60 41.33 1.68 5760 5253 7205 1.35 54AR

U

MID

D Coal 0.33 S50 19.70 11.13 23.01 38.45 27.41 0.59 4883 4395 7374 1.42 72.00

Coal 1.80 S200 23.50 15.18 7.08 37.06 40.67 2.87 5595 5053 7194 1.36 54

Coal 0.86 S300 21.77 14.00 7.92 39.69 38.17 0.60 5755 5232 7373 1.34 52

8Mudstone

8Mudstone

WAM

Mudstone 10

Coal 0.75 S400 19.80 12.08 14.84 39.56 33.51 3.64 5253 4785 7164 1.43 66

Sandstone 37

Coal 0.89 S500 20.53 15.17 4.69 39.76 40.39 1.28 5966 5596 7441 1.30 66

Mudstone 31

Coal 0.68 S550 18.94 16.51 6.03 38.20 39.25 0.40 5756 5589 7431 1.32 n/a

Mudstone 39

Mudstone 7n/aCoal 0.51 S600U 15.30 10.54 9.17 42.23 38.06 1.40 6175 5853 7687 1.39

EN

E

Mudstone 7

Coal 0.73 S600L 18.74 13.64 3.43 38.81 44.12 0.37 6193 5827 7468 1.32 n/a

Mudstone with sandstone bands 20

Sandstone with 33OC

E

mudstone bands 33

Coal 0.84 S700U 16.24 11.82 6.37 42.38 39.41 2.46 6219 5909 7600 1.32 n/a

Mudstone 8

Coal 0.74 S700L 18.31 12.98 3.60 39.98 43.44 0.70 6315 5928 7569 1.32 n/aLATM

IOY

Mudstone 64

1 30 /44 17 1 29 6427 6142 7569S800 15 11 11 17 3 92 40 74NTA

L

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Coal 0 49

Mudstone 22

Mudstone 13

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MO

NEA Coal

Coal 0.51

0.49

7612 1.31 n/a39.70 0.50 5893 5651S850 14.97 11.39 11.27 37.64

Mudstone with sandstone bands 49

Coal 0.50 S900 14.32 12.17 5.87 39.33 42.64 1.24 6263 6109 7639 1.32 n/a

Coal 0.70 S1000 13.87 10.48 3.42 42.56 43.54 1.50 6549 6304 7606 1.36 n/a

Mudstone with sandstone bands 45

Coal 0.62 S1100 12.38 9.96 3.72 42.24 44.08 2.49 6647 6468 7700 1.31 n/a

Mudstone with sandstone bands 48

7662 1.34 n/a41.79 43.86 3.93 6563 63750.53 S1200 11.85 9.25 5.10Coal

Mudstone 40

575TOTAL�SEDIMENT�THICKNESS

FIGURE 11

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27

Figure 12 shows the interpreted sub-crop of each coal seam throughout the main part of the deposit. Figure 13 shows diagrammatic cross-sections constructed from the current model to demonstrate the geological structure. It shows that the coal is gently dipping to the center of a syncline. Steeper older sediments, containing higher grade coal seams occur around the edges of the deposit where the geological structure is complicated by possible faulting.

A validated drill-hole database was constructed from the drill-hole and geophysical logs recorded during the previous investigations. A summary is provided in Appendix 10.2.The reliability of the data is summarized in Table 10. Data with a high level of reliability meaning a complete record for drilling, geophysical log and surveyed drill collar were used in the model. Data where medium reliability was recorded was used only as a reference point for coal. Data with a low reliability status was not used in the geological model.

Table 10 Data Reliability

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PT.TRISU

LAKE

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S700 S800

S600S500

S400

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S200

S30

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S50

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30

Core recoveries, although meticulously measured for the purpose of accounting for the drilling cost, were not properly documented in the geological database. Until now only approximately 30% of the holes have the core recovery data available. For this reason sample intervals of roof and floor coal have been used to estimate, what the core recoveries may have been. Table 11 shows a summary of the actual core recoveries available and the result of the core recoveries estimated from the coal roof and floor sample intervals reconciled against the geophysics. Table 11 indicates that the core recoveries from the drilling were relatively high and of the order of around 93% for the coal seams sampled.

Table 11 Core Recoveries

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31

5.3 Geophysical Logging

The results of the geophysical logs are recorded in the exploration reports. These were reconciled with the well-site geologist’s lithological logs to establish the exact coal thickness and depth. The resulting average coal thickness is summarized in Figure 14.

Figure 14 coal seam thickness

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32

5.4 Topographic Survey

Topographic survey work is summarized in Table 12. The resulting topographic map, which was mainly done by air-borne laser scanning, covers approximately 9,711ha and is of sufficient detail and accuracy for estimating coal Resources. The topographic contour map, drill collars and the distribution of 21 bench mark locations is shown in Figure 15.

Table12Survey Details

COMPANY SCALE YEAR TOPO (Ha) TYPE COLLAR %

PIRAMINDO TEKNO SAKTI 1000 2006 968 TOTAL STATION n/a

SINAR MAS MINING n/a 2006-2011 n/a TOTAL STATION 86

SURTECH UTAMA 1000 2010 9,711 AIRBORNE LIDAR n/a

Total Topographic Area 9,711

The drill collar survey and the LiDAR showed some difference which is summarized in Table 13. The drill collar survey was adjusted to match the LiDAR which meant an overall average adjustment of approximately +1m in elevation.

Table 13 Drill Collar Survey Statistics

SURVEY METHOD COLLAR SURVEY MISCLOSE WITH LIDAR TOPOGRAPHY

TOTAL STATION GPS COLLAR

(%) MINIMUM

(m) MAXIMUM

(m) AVERAGE

(m) STANDARD DEVIATION

(m) (-1) ST.DEV

(m) (+1) ST.DEV

(m)

424 70 85.8 -13.42 13.66 -0.99 2.11 -3.11 1.12

The overall topography in the main coal deposit area is characterized by relatively low relief. Figure 16 shows the Lansat image of the TKS lease area. This image shows some low-lying areas in the central part of the lease, and a series of linear ridges (interpreted as bedding lineaments) surrounding the outer edges of the main deposit. Relatively higher grade coal occurs in this area. Photo 7 shows a permanent cement marker peg at one of the drilling location from the 2010 drilling operation.

APPENDIX 5 – TKS JORC RESOURCE REPORT

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15

APPENDIX 5 – TKS JORC RESOURCE REPORT

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34

Photo 7 drill hole marker peg at the TKS site

Photo 8 morphology of the TKS lease (looking East)

APPENDIX 5 – TKS JORC RESOURCE REPORT

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35

Figure 16 Lansat digitized elevation model (DEM) of topographic surface – elevation banding is set at 20 meters (the red area shows the boundary of the forestry

approval for mining)

APPENDIX 5 – TKS JORC RESOURCE REPORT

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36

5.5 Analysis Results

A total of 709 core sample analyses results have been used to represent the coal quality of the TKS deposit in this study. Table 14 shows the volume and types of samples collected. In addition 30 outcrop samples were also tested during the mapping program. The distribution of the core sample locations is shown in Figure 17. The coal analysis results from all the previous work are documented in the reports from the previous investigations and are summarized in the drill data in Appendix 10.2. The weighted average coal quality of the coal seams tested to date is summarized in Table 15. The coal quality weighted averages have been estimated for each coal seam by combining the roof, floor and body coal sample results.

Table 14 Summary of Samples analyzed

Table15Coal Seam Quality

APPENDIX 5 – TKS JORC RESOURCE REPORT

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APPENDIX 5 – TKS JORC RESOURCE REPORT

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38

Coal quality linear plots are shown in Figure 18. Ash content is typically below 10% except for seam S40, S50 and S400 where the weighted average ash content is 13.54%, 20.86% and 14.61%(adb) respectively. These seams appear to be inherently dirty with no non-coal partings reported. It appears from the ply sampling that the roof and floor coal could be excluded during mining of these seams to keep the ash levels down. Total sulphur is greater than 2% in seams S200 (2.84%adb), S400 (3.52%adb), S700U (2.65%adb), S1100 (2.2%adb) and S1200 (4.04%adb). Figure 18 also shows that total moisture ranges from more than 20% in the younger coal seams (S20) to just over 10% in the oldest seams (S1200). Inherent moisture varies similarly from more than 16% in the youngest coal seams (S20) to less than 10% in the oldest seams (S1200). The energy values range from 5000kcal/kg(gar) in seam S20 to more than 6400kcal/kg (gar) in seam S1100.

Figure 19 shows the relationship of ash and total sulphur influence of the roof and floor of each coal seam sampled. The distribution of ash and total sulphur throughout the seams is also shown in Figure 19.

Coal analysis certificates have been sighted and are filed at the TKS office in Jakarta. These are the source of the coal quality information in the project database.

Figure 20 shows a scatter plot of inherent moisture with calorific value (daf) for all the coal core samples analyzed. This chart highlights the various ranks of coal (levels of maturity) within the TKS deposit. It suggests that the coal deposit has the potential to produce at least 2 and possibly 3 coal products based on their energy values and moisture contents.

Photos 9 and 10 show examples of some core samples taken from the TKS site.

APPENDIX 5 – TKS JORC RESOURCE REPORT

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TKSCO

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APPENDIX 5 – TKS JORC RESOURCE REPORT

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TKS

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APPENDIX 5 – TKS JORC RESOURCE REPORT

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TKS COAL PROJECT J

UNITED FIBER SYSTEM LIMITED FIGURE 20 PT DANMAR EXPLORINDO

7500

7700

7900

FIGURE 20 TKS Coal Quality IM v CV (daf) Scatter Plot

S20

S30

S40

S50

S100

S200

S300

UNITED FIBER SYSTEM LIMITED FIGURE 20 PT DANMAR EXPLORINDO

6500

6700

6900

7100

7300

0 5 10 15 20 25 30 35 40 45 50

CVKcal/kg(daf)

% IM (adb)

S400

S500

S550

S600U

S600L

S700U

S700L

S800

S850

S900

S1000

S1100

S1200

APPENDIX 5 – TKS JORC RESOURCE REPORT

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42

Photo 9 core sample from the TKS project site

The coal density has been measured in the laboratory. Densities for each seam range from 1.30 to 1.45. In converting the coal volume to tonnes the Preston Sanders Formula has been used to avoid possible overestimation of coal Resources which can occur in low rank coal. The formula is shown in Figure 21. This has resulted in an assumed adjusted density of approximately 1.31.

Figure 21 Preston Sanders Formula for adjusting volume to tonnes in the ground

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43

6.0 COAL PRODUCTION CONCEPT AND COSTS

From the exploration program completed it is clear that the area contains a significant deposit of thermal coal.

In 2006, a Feasibility Study and an Environmental Impact Study (Andal) were completed for the coal mine project and these were accepted by the Indonesian Government. These reports were used as a guideline for the construction and development of the mining operation at TKS. Existing facilities such as haul roads, stockpile areas and a barge loading port were utilized to keep capital costs as low as possible and minimize social and environmental impact by construction of new facilities. Even though the area is sparsely populated environmental and social issues were given reasonable consideration in planning and execution of the mining project in the area. Until now TKS have maintained a good working relationship with the original IUP lease owners who continue to have the familiarity and trust of the local people in the area.

In August, 2010, a fleet of equipment (4 excavators, 12 trucks and 2 dozer’s) started mining coal. Until March, 2012, waste removal reached 2,000,000bcm and 209,000t of coal was produced. Table 16 shows the production during the period August, 2010 to March, 2012. Figure 22 shows the situation of the mine after mining stopped in March, 2012

Table 16 Coal Production

Table 17 summarizes the coal shipments of coal completed from the project. Mining was halted in March, 2012 due to declining coal prices.

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S100

S50

S200

S300

DUMP LOCATION

EXPOSED COAL

SITUUATION CONTOURS(MARCH 2012)

TO PANGKUPORT (39KM)

WASTE DUMP AREA

( )

TO BUNTOK BARUPORT (74KM)

MINE SITE LOCATION

FIGURE 22

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Table 17 Coal shipments from TKS

It is proposed that future mining of the coal could be achieved by using a bigger fleet of 80t excavators and rigid, 10-wheel trucks (30ton) in a conventional truck and shovel operation. Smaller excavator’s equipped with flat bladed buckets, should be used for the clean extraction of coal from thin seams. A fleet of dozers would support the operation and no blasting of the overburden is contemplated. Anticipated production rate is 60,000t of coal per month.

The break even strip ratio is estimated in Table 18. It is estimated using the production costs provided by TKS (September, 2013) and an assumed current sale price of $47/t. The average break even strip ratio is 6.02 : 1 (bcm waste to tons of coal) based on the following assumptions;

coal haul is 47km to a port at Pangku on the Barito Riverat Pangku the coal is crushed and loaded onto 3500t self-propelled and self-unloading barges (see photo 11)coal is barged to Timbau where the coal is transferred from the self-propelledbarge by its own conveyor to 8000t barges (see photo 12)Government royalty of 5% is paid (coal <6000kcal/kg(adb)rehabilitation is done by backfilling pits and returning topsoil

Date Sales Term Price Barge Price MV TM

%(ar)Ash

%(adb)TS

%(adb)Quality

(gar) Quantity (t)

Mar-11 FOB Buntok Port $ 54.00 $ 76.68 23 7 1 5200 2,298.690

Aug-11 FOT ROM Stockpile $ 45.00 $ 85.68 23 7 1 5200 60,007.900

Oct-11 FOB Pangkuh Port $ 60.00 $ 82.68 23 8 1.5 5300 2,776.709

Nov-11 FOB Pangkuh Port $ 60.00 $ 82.68 23 8 1.5 5300 3,674.725

FOB Pangkuh Port $ 60.00 $ 82.68 23 8 1.5 5300 3,592.987

FOB Timbau Port $ 72.00 $ 82.00 23 8 1.5 5300 7,505.597

Jan-12 FOB Pangkuh Port $ 57.50 $ 80.18 23 8 1.5 5300 3,450.77

Feb-12 FOB MV Taboneo $ 78.50 $ 78.50 23 8 1.8 NAR 5000 37,111.00

Mar-12 FOB Pangkuh Port $ 57.50 $ 80.18 23 8 1.5 5300 3,495.109

May-12 FOB Pangkuh Port $ 57.50 $ 80.18 23 8 1.5 5300 3,495.109

Jul-12 FOB Timbau Port $ 38.00 $ 48.00 24 8 2.3 5000 12,105.991

Sep-12 FAS Taboneo Port $ 44.50 $ 45.95 24 8 2.2 5000 45,000.000

57.04$ 75.45$ 23.2 7.8 1.6 5227 184,514.582

Dec-11

SUMMARY ALL

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TKS COAL PROJECTCAPITAL AND OPERATING COSTS BREAK EVEN STRIP RATIO AT $4 /T SALE PRICE

J

Currency $USD 000's USD 000Dist Rate Total

EXPENDITURETotal Exploration Costs 3,538.85

Land compensation and Forestryland purchases forestry (pinjam pakai)Total land compensation 972.52

Roads and Infrastructureroad upgrade 4.99bridges & colverts 97.60crusherwash plant -barge loaderrehandle stockpile discharge and loadercamp, offices, buildings, communicationsTotal Roads and Infrastructure 102.59

Total Mobilization Costs 3,019.47

TOTAL CAPITAL COSTS 7,633.43

OPERATING COSTSDirect Mining CostsCoalCoal Mining ($1.20/t) 1 $1.20 $1.20Coal Hauling 47km @$0.13/t/km 47 $0.13 $6.25Total Coal Costs $7.45

OB RemovalOverburden Stripping including landclearing and soil stockpiling bcmBREAK EVEN STRIPPING RATIO (BESR) 6.02 $2.35 $14.15Total Direct Mining Costs per Tonne $21.60

Other Operating CostsROM stockpile management $0.50Road maintenance (ROM-Pangku) $0.75Loading - Pangku $2.35Stockpile Management - Pangku $1.06Stockpile Management - Timbau $0.00Barging to Timbau $6.00Barging Timbau to Vessel + PBM $6.00Fee CV AS $1.50Coal analysis $0.25Sales documentation $1,160/document 1160 $0.25Insurance 0.05% 45 $0.02contingency $1.00Total Other Operating Costs per Tonne $19.68

VAT and Royalty CostsVAT 10% (on OB, Mining and other operating costs) 10% $3.93Royalty at 5% 5% $1.80Total VAT & Royalty costs 5.73$TOTAL COAL PRODUCTION COSTS 47.00$

Descriptions

Stripping Ratio

UNITED FIBRE SYSTEM LIMITED TABLE 18 PT DANMAR EXPLORINDO

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/Photo 10 self - propelled barge

Photo 11 self – unloading barge

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48

The capital and operating cost of producing coal from the area as provided by TKS in 2013 are also summarized in Table 18. Sunk capital costs to date are $6.13 million. An additional $1,500,000 has been added to this to represent mobilization of new contract mining equipment. Operating costs were provided by TKS in 2013, but are not supported by currently valid contracts. The costs used in this study are based on prices provided from mining and barging contractors on an informal and indicative basis. The costs are considered to be comparable to similar coal mining projects in Kalimantan.

The TKS lease area is reasonably well located in terms of transportation infrastructure. In particular, roads, suitable for coal hauling, run close to the lease area and directly to the port site at Pangku (see figure 23) where river depths are suitable for 3500t barges. There are several interconnecting haul roads with different owners (PT Austral Byna, PT Mitra Borneo and PT Purwa Permai) that connect the mine to the port site. The port is owned and operated by PT Borneo Banjar Segara. An alternative port area is at Buntok Kecil (70km haul) on the Barito River where river depths are 4-7m. Figure 23 shows the sketch map of the coal haul road to the port area. Figure 24 shows the barging route and the trans-shipment point for loading coal to mother vessels.

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Batas Propinsi

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0 5 10 15 202,5Km

Jalan Ex Pertamina

FIGURE 23

APPENDIX 5 – TKS JORC RESOURCE REPORT

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50

Figure 24 – Coal barging and trans-shipment sketch map

Photo 12 shows the PT Mitra Barito haul road to Pangku port.

Photo 13 shows the PTPurwa Permai haul road to Pangku port.

Photo 14 shows the stockpile facility at Pangku port.

Photo 15 shows the loading facility at Pangku port.

Photo 16 loading facility at Pangku port on Barito River (September 2013).

Photo 17 shows the ROM coal stockpile at TKS mine site.

Photo 18 shows the coal mining operation at TKS mine site in September 2010.

Photo 19 shows the closed pit condition in September 2012.

Photo 20 main road access to TKS mine site (September, 2013).

Photo 21 TKS site office and camp (September, 2013).

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Photo 12 PT Mitra Barito haul road to port

Photo 13 PT Purwa Permai haul road to Pangku port

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Photo 14 stockpile facility at Pangku port

Photo 15 loading facility at Pangku port

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Photo 16 loading facility at Pangku port on Barito River (September 2013)

Photo 17 ROM coal stockpile at TKS mine site (September, 2012)

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Photo 18 coal mining operation at TKS site (September 2010)

Photo 19 closed pit condition (September 2012)

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Photo 20 main road access to TKS mine site (September, 2013)

Photo 21 TKS site office and camp (September, 2013)

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6.1 Coal Prices

Coal price has been analyzed based on the Indonesian Government Coal Reference Price (HBA) for Envirocoal which is a standard for coal with calorific value of 5000kcal/kg (gar), in Indonesia. Sungkai High Sulphur brand is also included as its quality more closely resembles the coal at TKS in the current mine area. Coal quality specifications of these products are summarized in Table 19.

Table 19 Coal Quality Specifications

Envirocoal, Sungkai High Sulphur and TKS

(TKS coal quality from currently approved mine area; source Reserve report 2013)

Since January, 2009, the price for Envirocoal and Sungkai High Sulphur brands have been analyzed from the Indonesian Government’s monthly Coal Price Reference (HBA) data and the average price difference estimated. Over this period Sungkai High Sulphur coal has been discounted at an average price which is 89% of the Envirocoal price. In comparison, TKS coal has slightly higher total sulphur and higher ash. For this reason a discount price of 85% of the Envirocoal price has been used to approximate the value of TKS coal on the spot coal market in Indonesia. A summary of this coal price comparison is shown in Figure 25 and in detail in Appendix 10.2.

Figure 25 coal price assumed for TKS coal

Based on th coal price approximately $47/t for TKS coal.

COAL BRAND TM % (ar) ASH % (adb) TS % (adb) CV (ar)ENVIROCOAL 26 1.2 0.1 5000

SUNGKAI HIGH SULPHUR 26 4.5 1.7 5000TKS 24.10 8.20 2.04 4984

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7.0 COAL RESOURCES AND RESERVES

The main objective of this report is to estimate Resources and Reserves of coal, within the area drilled, and to determine the overall coal potential of the project area. The JORC Code, 2012, has been used to report the coal Resources (http://www.jorc.org/docs/jorc_code2012.pdf).

The relationship between coal Resources and Reserves, as defined in the JORC Code of 2012 are shown in Table 20. Coal Resources are estimated from geological observations such as drilling. As the number and density of these observations increase, the confidence in the coal estimate increases, culminating in a Measured Resource status. Beyond this point Reserves of coal can be estimated by the application of mining dilution and losses. Allowances for other mitigating factors such as handling losses, changes in product moisture, density, cost of production and transportation of the coal to the point of sale are also made at this stage. A Probable Reserve relates to parts of an Indicated Resource where viable mining can be reasonably assumed. Proved Reserves are taken from the Measured Resources where economically mineable coal can be demonstrated. Proved Reserves will normally be less than the Measured Resources and in this case represent the coal from which income can be reasonably expected.

For exploration programs an Exploration Target of potential coal can be reported. The Exploration Targets must be expressed as ranges and must include a detailed explanation on the basis for the statement and a proximate statement that the quantity and grade of the coal is conceptual in nature.

Table 20 General relationship between Exploration Results, Mineral Resources & Ore Reserves

(Source figure 1 of the JORC Code, 2012)

Extracted from Figure 1 of the JORC Code, 2012

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7.1 Resources of Coal (insitu)

Sufficient exploration has been carried out at the TKS coal project to delineate an extensive deposit of thermal coal.

The geological structure, of the current Resource area, appears to be relatively simple. The coal is contained within a spoon shaped synclinal basin 11,200m long by 5,800m wide. Dips are approximately 5o in the center of the syncline and up to 20o

around the edges. Within this basin no significant geological structures have been identified and there are no igneous bodies or intrusions. For this reason most of the coal seams are persistent and have been demonstrated over long strike distances, often more than 10km. The coal seam sub-crops are parallel to the edge of the basin. The basin itself is bounded by faults to the north, east and south where the syncline abruptly ends.

Until now 21 separate coal seams, with a cumulative total thickness of 15.05m, have been identified. In the Warukin Formation the S100 and S200 seams are the thickest at 1.6 and 1.8m respectively. The other seams are all approximately 0.7m thick. Coal seam splitting and or coal seam wash-outs, that could disrupt the coal continuity, appear to be rare.

The coal quality for each seam is relatively persistent throughout the resource area. The youngest and lowest grade seams are towards the center of the syncline structure and the coal grade generally improves towards the edge of the basin where the oldest seams occur.

Resources of coal have been estimated using GEMCOM Surpac® mining software. The results are shown in Table 21. The location of the coal Resources are in Figure 26. In estimating these coal resources the following assumptions have been made;

Measured Resources are based on 200m influence of the coal seam froma high reliability observation point for all coal seams with a minimum of 5overlapping observations and 3 or more observations with coal qualityanalysisIndicated Resources are based on 400m influence of the coal seam fromhigh reliability observation point for all coal seams with a minimum of 4overlapping observations and 2 or more observations with coal qualityanalysisInferred Resources are based on 800m influence of the coal seam from anobservation point for all coal seams with a minimum of 3 overlappingobservations and 1 or more observations with coal quality analysisA 3 meter weathering halo is applied to the Resource estimate to allow forthe depth of weathering as indicated by the average soil thickness

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59

measured during the drilling. This assumes that on average no coal exists within 3 meters of the ground’s surface as it has been replaced by soil.

minimum coal thickness in model is 0.4m a bottom limit of -200m R.L mean sea level elevation was applied to the

model, which assumes maximum depth limit of coal a maximum depth cut-off of 100m was assumed to comply with reasonable

expectations of eventual economic extraction coal seam intersections were based on reconciled geophysical logs, no coal recovery factor was used for estimating insitu Resources Resources are restricted to the area of topographic surface by LiDAR Resources are restricted to within the boundary of lease area a density for coal of was taken from coal sample analysis results for each

individual seam and adjusted by the Preston Sanders Formula, to better represent the density of the coal insitu

The coal quality has been included into the geological model. Coal quality reported in the Resources of coal (insitu) represents the actual distribution of the coal quality within the deposit as analyzed in the coal core samples taken.

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TKSCO

ALPR

OJECT

J

RECO

NCILE

WITH

GEO

PHYSICS

TMIM

ASH

VMFC

TSCV

CVCV

Point

Sample

%Min

Max

Ave

MEA

SURE

DINDICAT

EDINFERR

EDTO

TAL

arar

daf

1S10

810

00.12

0.54

0.29

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

2S20

423

100

0.15

1.52

0.73

2.1

0.3

0.3

2.7

24.12

16.48

9.21

36.45

37.86

0.56

5370

4879

7234

n/a

n/a

n/a

3S30

728

960.10

1.30

0.48

1.8

0.3

0.1

2.1

20.88

12.98

5.38

45.57

36.08

0.32

6252

5685

7631

461.35

1.31

4S40

944

900.08

1.00

0.48

2.5

0.3

0.5

3.3

23.78

15.00

11.78

35.96

37.25

1.02

5277

4731

7159

n/a

1.45

1.38

5S50

744

880.01

0.70

0.33

0.4

0.0

0.4

19.15

8.75

22.12

43.08

26.04

0.55

5288

4685

7374

721.42

1.36

6S100

168

3092

0.30

2.70

1.59

10.1

1.2

3.2

14.4

21.84

14.57

5.79

38.41

41.24

1.77

5762

5272

7218

541.35

1.31

7S200

183

3593

0.20

3.38

1.80

13.3

1.9

1.7

16.8

23.51

14.78

7.63

36.92

40.66

2.82

5576

5005

7194

541.36

1.31

8S300

171

2994

0.20

2.28

0.86

5.3

0.8

1.3

7.5

21.77

14.00

7.92

39.69

38.17

0.60

5775

5253

7399

521.34

1.30

9S400

137

1693

0.10

1.49

0.75

3.7

1.0

1.2

5.9

19.80

12.08

14.84

39.84

33.51

3.64

5374

4902

7342

661.43

1.38

10S500

412

100

0.15

2.06

0.89

4.3

4.3

20.52

15.05

4.65

39.87

40.44

1.29

5980

5595

7441

661.30

1.28

11S550

321

970.20

1.45

0.68

1.2

1.2

18.94

16.51

6.03

38.20

39.25

0.40

5756

5588

7431

n/a

1.32

1.31

12S600

U36

297

0.14

1.40

0.51

1.8

1.8

15.26

10.53

9.13

42.32

38.01

1.38

6182

5855

7687

n/a

1.39

1.36

13S600

L36

197

0.24

2.60

0.73

2.6

2.6

18.74

13.64

3.43

38.81

44.12

0.37

6193

5827

7468

n/a

1.32

1.30

14S700

U58

598

0.14

1.55

0.84

3.0

1.4

4.4

16.17

11.81

7.14

42.12

38.91

2.40

6159

5854

7600

n/a

1.32

1.30

15S700

L54

798

0.14

1.85

0.74

0.8

1.4

1.6

3.8

18.34

13.02

3.56

39.93

43.48

0.69

6315

5929

7569

n/a

1.32

1.29

16S800

261

100

0.20

1.10

0.49

0.3

0.3

15.11

11.17

3.92

40.72

44.17

1.29

6427

6142

7569

n/a

1.30

1.28

17S850

292

100

0.15

1.28

0.51

0.5

0.5

14.97

11.38

11.58

37.38

39.66

0.49

5868

5630

7612

n/a

1.31

1.29

18S900

294

100

0.15

1.10

0.50

0.7

0.1

0.8

14.30

12.16

5.94

39.31

42.59

1.29

6255

6103

7639

n/a

1.32

1.31

19S100

036

210

00.15

1.25

0.70

1.2

1.3

2.4

13.91

10.50

3.41

42.55

43.54

1.48

6546

6296

7606

n/a

1.36

1.34

20S110

021

210

00.30

1.00

0.62

1.4

1.4

12.39

9.94

3.70

42.28

44.07

2.44

6650

6470

7700

n/a

1.31

1.30

21S120

014

110

00.20

1.20

0.53

0.6

0.6

11.85

9.25

5.10

41.79

43.86

3.93

6563

6375

7662

n/a

1.34

1.33

396

853

22.31

14.29

8.33

38.35

39.02

1.97

5628

5102

7265

591.37

1.32

16

1724

17.00

12.62

5.19

40.67

41.51

1.39

6215

5904

7559

n/a

1.33

1.30

4012

2577

20.65

13.77

7.35

39.07

39.80

1.79

5811

5352

7356

591.35

1.32

NOTE

:Resou

rcevalues

forind

ividua

lcoa

lseamsha

veno

tbeenroun

dedto

thene

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,000

,000

tonn

eto

show

detail

NOTE

:Resou

rcevalues

fore

achcoalForm

ationan

dde

pthincrem

enth

avebe

enroun

dedto

thene

arest1

,000

,000

tonn

esto

refle

ctactualaccurac y

NO

TE:

CO

AL

RES

OU

RC

ES B

Y D

EPTH

RA

NG

E

Seam

iden

tific

atio

n hi

ghlig

hted

in R

ED in

dica

te in

suffc

ient

dat

a av

aila

ble

for c

onfid

ent r

esou

rce

delin

iatio

n

a 3m

wea

ther

ing

halo

use

d to

con

stra

in th

e re

sour

ces

No

coal

sea

m d

ilutio

n or

min

ing

reco

very

has

bee

n ap

plie

d

Insi

tu R

elat

ive

Den

sity

(RD

) was

adj

uste

d us

ing

pres

ton

sand

ers

form

ula

TOTA

LWAR

UKIN

TOTA

LMONTELA

T

TKSPR

OJECT

INSITU

COAL

RESO

URC

ESTO

100METER

SJ

201

No.

Seam

ID

COAL

SEAM

OBS

ERVA

TIONS

COAL

RESO

URC

ESINSITU

(MillionMt)*

COAL

QUAL

ITY

THICKN

ESS(m

)HGI

FREQ

UEN

CYRD

(lab)

RD(in

situ)

aird

riedba

sis

TOTA

LRE

SOURC

ES

DEP

THRA

NGE

COAL

RESO

URC

ESINSITU

(MillionMt)

MEA

SURE

DINDICAT

EDINFERR

EDRA

NGETO

TAL

5010

0m21

715

43050

m19

510

34

TOTA

L40

1225

77

UNITED

FIBE

RSYSTEM

LIMITED

TABLE21

PTDA

NMAR

EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

528

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TKSCO

ALPR

OJECT

COAL

RESO

URC

ELO

CATIONBY

DEPTH

J

COAL

RESO

URC

ESFROM

DEPTH0

TODE

PTH50

(METER

S)

COAL

RESO

URC

ESFROM

DEPTH50

TODE

PTH10

0(M

ETER

S)

KEYFO

RCO

ALSEAM

KEYFO

RCO

ALSEAM

UNITED

FIBR

ESYSTEM

LIMITED

FIGURE

26PT

DANMAR

EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

529

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62

7.2 Reserves of Coal

At this time, Reserves of coal at the TKS project cannot be estimated. The reasons for this are as follows;

a) the project has been on care and maintenance for more than 2 yearsb) there is no current Pre-Feasibility study to demonstrate the viability of the

projectc) coal prices have remained low

APPENDIX 5 – TKS JORC RESOURCE REPORT

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63

8.0 DISCUSSION & RECOMMENDATIONS

The results of the exploration of the lease indicate that a significant thermal coal deposit is contained within the area. Although most of the coal seams are relatively thin (0.7m thick), they are laterally persistent over strike distances often in excess of 10km.

The work has been done in sufficient detail to accurately predict the volume of coal in the area and density adjustments made ensure the tonnage of coal is not over estimated. Core recoveries have been relatively poorly recorded and give less confidence in the coal quality. However, a check of the coal sample interval against the geophysical logs indicates core recoveries were around 93%. The results of mining to date also suggest that it is unlikely that core recovery issues have caused any bias in the quality data. However, it is recommended that in future drilling programs the core recoveries are more meticulously recorded and properly saved.

The location of the project is relatively good in terms of access and transportation logistics. Several haul road options are available from the project to the Barito River. A new coal mine development at PT Bharinto Ekatama, east of TKS may also give potential for coal transportation east, to the Mahakam River sometime in the future. An area of 698.5ha of Production Forest already has approval from the Ministry of Forestry for mining activities. Previous coal production and shipment provides good evidence to support that coal mining and transportation from the area is feasible at higher coal prices.

Table 22 summarizes 4 Exploration Target areas where coal of between 20-110million tonnes is postulated. At this time the potential quantity and quality is conceptual in nature and there has been insufficient exploration to estimate a Resource. It is uncertain if further exploration will result in a Resource. The coal seams in the Exploration Target areas are older than the coal in the current Resource area and for this reason should be better quality. Figure 27 shows where further drilling is recommended to confirm these Exploration Targets.

A detailed explanation for the basis of each Exploration Target specifically describing the level of exploration already completed is shown in Table 22.

APPENDIX 5 – TKS JORC RESOURCE REPORT

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64

Table 22 Coal Target areas

Exploration drilling further west, north and east of the current resource areas within the Montelat and Tanjung Formation prospects is recommended.

APPENDIX 5 – TKS JORC RESOURCE REPORT

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TARG

ETAR

EA4

TARG

ETAR

EA4

TARG

ETAR

EA4

FIG

UR

E27

FIG

UR

E27

APPENDIX 5 – TKS JORC RESOURCE REPORT

533

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66

9.0 REFERENCES

Australasian Code for Reporting of Exploration Results, Mineral Resources & Ore Reserves, The JORC Code, 2012 Edition

Coal Fields Geology Council and Queensland Resources Council, 2003, Estimating and Reporting of Inventory Coal, Coal Resources and Coal Reserves

Daly et al, 1987, Tertiary plate tectonics and basin evolution in Indonesia, Proceedings Indonesian Petroleum Association 87-11/03

Land and Jones, 1987, Coal geology and exploration of part of the Tertiary Kutai Basin in East Kalimantan, Indonesia, Coal and coal bearing strata, Geological Society Special Publications No32, pp235-255

Wain and Berod, 1989, Thetectonic framework and paleogeographic evolution of the upper Kutai Basin, Proceedings of the Indonesian Petroleum Association, IPA 1989-11.04

APPENDIX 5 – TKS JORC RESOURCE REPORT

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APPENDIX 10.1 JORC 2012 CHECKLIST & SUMMARY OF RESERVES ANDRESOURCES(ref: Rules705(7), 1207(21) & Practice Note 6.3)

APPENDIX 5 – TKS JORC RESOURCE REPORT

535

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1

JOR

C C

ode,

201

2 E

diti

on –

Tab

le 1

rep

ort

tem

plat

e S

ecti

on 1

Sam

plin

g T

echn

ique

s an

d D

ata

(Crit

eria

in th

is s

ectio

n ap

ply

to a

ll su

ccee

ding

sec

tions

.)

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Sam

plin

g te

chni

ques

Nat

ure

and

qual

ity o

f sam

plin

g (e

g cu

t cha

nnel

s, ra

ndom

chi

ps, o

r sp

ecifi

c sp

ecia

lised

indu

stry

sta

ndar

d m

easu

rem

ent t

ools

app

ropr

iate

to

the

min

eral

s un

der i

nves

tigat

ion,

suc

h as

dow

n ho

le g

amm

a so

ndes

, or h

andh

eld

XR

F in

stru

men

ts, e

tc).

Thes

e ex

ampl

es s

houl

d no

t be

take

n as

lim

iting

the

broa

d m

eani

ng o

f sam

plin

g.

Incl

ude

refe

renc

e to

mea

sure

s ta

ken

to e

nsur

e sa

mpl

e re

pres

entiv

ity

and

the

appr

opria

te c

alib

ratio

n of

any

mea

sure

men

t too

ls o

r sys

tem

s us

ed.

Asp

ects

of t

he d

eter

min

atio

n of

min

eral

isat

ion

that

are

Mat

eria

l to

the

Pub

lic R

epor

t. In

cas

es w

here

‘ind

ustry

sta

ndar

d’ w

ork

has

been

don

e th

is w

ould

be

rela

tivel

y si

mpl

e (e

g ‘re

vers

e ci

rcul

atio

n dr

illin

g w

as u

sed

to o

btai

n 1

m s

ampl

es fr

om w

hich

3 k

g w

as p

ulve

rised

to p

rodu

ce a

30

g ch

arge

fo

r fire

ass

ay’).

In o

ther

cas

es m

ore

expl

anat

ion

may

be

requ

ired,

su

ch a

s w

here

ther

e is

coa

rse

gold

that

has

inhe

rent

sam

plin

g pr

oble

ms.

Unu

sual

com

mod

ities

or m

iner

alis

atio

n ty

pes

(eg

subm

arin

e no

dule

s) m

ay w

arra

nt d

iscl

osur

e of

det

aile

d in

form

atio

n.

go

od c

over

age

with

wire

-line

touc

h co

re d

rillin

g, w

ith s

yste

mat

ic d

rill

grid

& c

orin

g of

coa

l sea

ms

augm

ente

d w

ith g

eoph

ysic

al lo

ggin

g

sy

stem

atic

dril

ling

with

cor

ing

of c

oal s

eam

s, d

ownh

ole

logg

ing

tool

s w

ere

prop

erly

cal

ibra

ted,

larg

e nu

mbe

r of s

ampl

es

co

al th

ickn

ess

dete

rmin

ed b

y ge

ophy

sica

l log

s an

d qu

ality

de

term

inat

ion

by c

ertif

ied

lab

usin

g A

STM

met

hods

sa

mpl

ing

SO

P in

clud

ed ro

of s

edim

ents

, roo

f coa

l, bo

dy c

oal

floor

co

al a

nd fl

oor s

edim

ent f

or a

ver

y de

taile

d co

vera

ge o

f coa

l qua

lity

with

in e

ach

seam

core

sam

ples

sea

led

in p

last

ic b

ags

and

stor

ed in

a c

ool p

lace

bef

ore

trans

fer t

o la

b

Dril

ling

tech

niqu

esD

rill t

ype

(eg

core

, rev

erse

circ

ulat

ion,

ope

n-ho

le h

amm

er, r

otar

y ai

r bl

ast,

auge

r, B

angk

a, s

onic

, etc

) and

det

ails

(eg

core

dia

met

er, t

riple

or

sta

ndar

d tu

be, d

epth

of d

iam

ond

tails

, fac

e-sa

mpl

ing

bit o

r oth

er

type

, whe

ther

cor

e is

orie

nted

and

if s

o, b

y w

hat m

etho

d, e

tc).

W

ire-li

ne m

ud ro

tary

dril

ling

M

ainl

y N

(76m

m) s

ize

but s

ome

H (8

6mm

) siz

e fo

r geo

tech

sam

ples

Trip

le tu

be c

ore

barre

ls, d

iam

ond

impr

egna

ted

bits

Ver

tical

orie

ntat

ion

90 d

egre

es, c

ore

not o

rient

ated

Dril

l sam

ple

reco

very

Met

hod

of re

cord

ing

and

asse

ssin

g co

re a

nd c

hip

sam

ple

reco

verie

s an

d re

sults

ass

esse

d.

Mea

sure

s ta

ken

to m

axim

ise

sam

ple

reco

very

and

ens

ure

repr

esen

tativ

e na

ture

of t

he s

ampl

es.

Whe

ther

a re

latio

nshi

p ex

ists

bet

wee

n sa

mpl

e re

cove

ry a

nd g

rade

an

d w

heth

er s

ampl

e bi

as m

ay h

ave

occu

rred

due

to p

refe

rent

ial

loss

/gai

n of

fine

/coa

rse

mat

eria

l.

N

o ch

ip s

ampl

e re

cove

ry w

as m

easu

red

as it

was

dee

med

not

ne

cess

ary

H

igh,

met

icul

ousl

y m

easu

red

for d

rill i

nvoi

cing

but

not

sto

red

in

geol

ogic

al d

atab

ase

S

ampl

e re

cove

ry w

as h

igh

and

no s

ampl

e bi

as is

evi

dent

Logg

ing

Whe

ther

cor

e an

d ch

ip s

ampl

es h

ave

been

geo

logi

cally

and

ge

otec

hnic

ally

logg

ed to

a le

vel o

f det

ail t

o su

ppor

t app

ropr

iate

M

iner

al R

esou

rce

estim

atio

n, m

inin

g st

udie

s an

d m

etal

lurg

ical

st

udie

s.

Lo

ggin

g by

geo

logi

sts

is a

ppro

pria

te fo

r res

ourc

e es

timat

ion

G

eote

chni

cal r

epor

t doc

umen

ted

for 5

hol

es (G

T) b

y S

oile

ns a

nd

anal

yzed

app

rox.

25

othe

r dril

l hol

es

G

raph

ic lo

gs a

re re

cord

ed a

fter r

econ

cilia

tion

with

geo

phys

ical

logs

APPENDIX 5 – TKS JORC RESOURCE REPORT

536

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2

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Whe

ther

logg

ing

is q

ualit

ativ

e or

qua

ntita

tive

in n

atur

e. C

ore

(or

cost

ean,

cha

nnel

, etc

) pho

togr

aphy

. Th

e to

tal l

engt

h an

d pe

rcen

tage

of t

he re

leva

nt in

ters

ectio

ns lo

gged

.

Lo

ggin

g w

as a

dequ

atel

y re

cord

ed b

ut l

acki

ng d

etai

l ind

icat

ing

quan

titat

ive

wor

k by

wel

l site

geo

logi

sts,

ade

quat

e fo

r coa

l wor

k

Cor

es w

ere

appa

rent

ly p

hoto

grap

hed

but n

ot s

een

by th

e C

P a

s th

ey

have

not

yet

bee

n pr

ovid

ed b

y th

e cl

ient

40,1

68m

dril

led

and

92%

of r

elev

ant i

nter

sect

ions

wer

e lo

gged

by

geol

ogis

ts &

dow

n-ho

le g

eoph

ysic

s

Sub

-sam

plin

g te

chni

ques

an

d sa

mpl

e pr

epar

atio

n

If co

re, w

heth

er c

ut o

r saw

n an

d w

heth

er q

uarte

r, ha

lf or

all

core

ta

ken.

If

non-

core

, whe

ther

riffl

ed, t

ube

sam

pled

, rot

ary

split

, etc

and

w

heth

er s

ampl

ed w

et o

r dry

. Fo

r all

sam

ple

type

s, th

e na

ture

, qua

lity

and

appr

opria

tene

ss o

f the

sa

mpl

e pr

epar

atio

n te

chni

que.

Q

ualit

y co

ntro

l pro

cedu

res

adop

ted

for a

ll su

b-sa

mpl

ing

stag

es to

m

axim

iser

epre

sent

ivity

of s

ampl

es.

Mea

sure

s ta

ken

to e

nsur

e th

at th

e sa

mpl

ing

is re

pres

enta

tive

of th

e in

si

tu m

ater

ial c

olle

cted

, inc

ludi

ng fo

r ins

tanc

e re

sults

for f

ield

du

plic

ate/

seco

nd-h

alf s

ampl

ing.

W

heth

er s

ampl

e si

zes

are

appr

opria

te to

the

grai

n si

ze o

f the

mat

eria

l be

ing

sam

pled

.

W

hole

cor

es a

naly

sed

sa

mpl

ed w

et

w

ell s

ampl

ed in

clud

ing

roof

sed

imen

t, ro

of c

oal,

body

coa

l, pa

rting

s,

floor

coa

l, flo

or s

edim

ents

and

ana

lyze

d in

cer

tifie

d la

b by

AS

TM

met

hods

, qua

lity

cont

rol r

elat

ed to

cor

e re

cove

ry a

ssur

ance

and

re-

drill

of s

ectio

ns w

here

cor

e w

as lo

st

sy

stem

atic

dril

ling

with

cor

e of

coa

l sea

ms

over

a b

road

are

a an

d a

larg

e nu

mbe

r 709

sam

ples

ye

s sa

mpl

e si

ze is

app

ropr

iate

Qua

lity

of

assa

y da

ta

and

labo

rato

ryte

sts

The

natu

re, q

ualit

y an

d ap

prop

riate

ness

of t

he a

ssay

ing

and

labo

rato

ry p

roce

dure

s us

ed a

nd w

heth

er th

e te

chni

que

is c

onsi

dere

d pa

rtial

or t

otal

. Fo

r geo

phys

ical

tool

s, s

pect

rom

eter

s, h

andh

eld

XR

F in

stru

men

ts, e

tc,

the

para

met

ers

used

in d

eter

min

ing

the

anal

ysis

incl

udin

g in

stru

men

t m

ake

and

mod

el, r

eadi

ng ti

mes

, cal

ibra

tions

fact

ors

appl

ied

and

thei

r de

rivat

ion,

etc

. N

atur

e of

qua

lity

cont

rol p

roce

dure

s ad

opte

d (e

g st

anda

rds,

bla

nks,

du

plic

ates

, ext

erna

l lab

orat

ory

chec

ks) a

nd w

heth

er a

ccep

tabl

e le

vels

of

acc

urac

y (ie

lack

of b

ias)

and

pre

cisi

on h

ave

been

est

ablis

hed.

A

ppro

pria

te fo

r tot

al re

pres

enta

tion

of c

oal q

ualit

y

C

ertif

ied

lab

was

use

d fo

r thi

s w

ork

La

b te

st re

sults

are

con

sist

ent a

nd a

ccur

ate

N

o bi

as in

ana

lysi

s re

sults

is e

vide

nt o

r sus

pect

ed

Ver

ifica

tion

of

sam

plin

g an

d as

sayi

ng

The

verif

icat

ion

of s

igni

fican

t int

erse

ctio

ns b

y ei

ther

inde

pend

ent o

r al

tern

ativ

e co

mpa

ny p

erso

nnel

. Th

e us

e of

twin

ned

hole

s.

Doc

umen

tatio

n of

prim

ary

data

, dat

a en

try p

roce

dure

s, d

ata

verif

icat

ion,

dat

a st

orag

e (p

hysi

cal a

nd e

lect

roni

c) p

roto

cols

. D

iscu

ss a

ny a

djus

tmen

t to

assa

y da

ta.

P

lotti

ng re

sults

sho

ws

cons

iste

ncy

indi

catin

g ac

cura

cy

N

o tw

in h

ole

drilli

ng

Fi

eld

proc

edur

es w

ere

rela

tivel

y de

taile

d bu

t the

sto

rage

and

filin

g of

da

ta b

y TK

S is

not

goo

d an

d so

me

data

, suc

h as

cor

e re

cove

ries

&

phot

os h

ave

not y

et b

een

foun

d al

thou

gh re

cord

ed in

the

field

Pre

ston

San

ders

For

mul

a w

as u

sed

to a

djus

t den

sity

so

as n

ot to

ov

eres

timat

e to

nnes

that

can

occ

ur w

hen

usin

g la

b de

rived

den

sity

in

low

gra

de c

oals

APPENDIX 5 – TKS JORC RESOURCE REPORT

537

Page 80: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

3

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Loca

tion

of

data

poi

nts

Acc

urac

y an

d qu

ality

of s

urve

ys u

sed

to lo

cate

dril

l hol

es (c

olla

r and

do

wn-

hole

sur

veys

), tre

nche

s, m

ine

wor

king

s an

d ot

her l

ocat

ions

us

ed in

Min

eral

Res

ourc

e es

timat

ion.

S

peci

ficat

ion

of th

e gr

id s

yste

m u

sed.

Q

ualit

y an

d ad

equa

cy o

f top

ogra

phic

con

trol.

S

urve

y ac

cura

cy is

hig

h

+/

- 1m

mis

-clo

se b

etw

een

surv

ey &

Lida

r con

side

red

acce

ptab

le

Zo

ne 5

0 U

TM W

GS

84

Q

ualit

y is

goo

d ac

cura

cy h

igh

22 p

erm

anen

t ben

chm

arks

Dat

a sp

acin

g an

ddi

strib

utio

n

Dat

a sp

acin

g fo

r rep

ortin

g of

Exp

lora

tion

Res

ults

. W

heth

er th

e da

ta s

paci

ng a

nd d

istri

butio

n is

suf

ficie

nt to

est

ablis

h th

e de

gree

of g

eolo

gica

l and

gra

de c

ontin

uity

app

ropr

iate

for t

he M

iner

al

Res

ourc

e an

d O

re R

eser

ve e

stim

atio

n pr

oced

ure(

s) a

nd

clas

sific

atio

ns a

pplie

d.

Whe

ther

sam

ple

com

posi

ting

has

been

app

lied.

M

ostly

250

X 2

50m

grid

Dat

a is

suf

ficie

nt fo

r the

pur

pose

of e

stab

lishi

ng g

eolo

gica

l and

qua

lity

cont

inui

ty in

mos

t sea

ms

Y

es to

wei

ghte

d av

erag

e qu

aliti

es w

ere

calc

ulat

ed fo

r eac

h co

al s

eam

fro

m ro

of, f

loor

and

bod

y co

al s

ampl

es fo

r mod

elin

g qu

ality

Orie

ntat

ion

of

data

in

rela

tion

to

geol

ogic

al

stru

ctur

e

Whe

ther

the

orie

ntat

ion

of s

ampl

ing

achi

eves

unb

iase

d sa

mpl

ing

of

poss

ible

stru

ctur

es a

nd th

e ex

tent

to w

hich

this

is k

now

n, c

onsi

derin

g th

e de

posi

t typ

e.

If th

e re

latio

nshi

p be

twee

n th

e dr

illin

g or

ient

atio

n an

d th

e or

ient

atio

n of

key

min

eral

ised

stru

ctur

es is

con

side

red

to h

ave

intro

duce

d a

sam

plin

g bi

as, t

his

shou

ld b

e as

sess

ed a

nd re

porte

d if

mat

eria

l.

V

ertic

al d

rillin

g is

app

ropr

iate

and

no

sam

ple

bias

is e

vide

nt

D

rill l

ines

wer

e or

ient

ated

per

pend

icul

ar to

stri

ke o

f the

coa

l whi

ch is

ap

prop

riate

Sam

ple

secu

rity

The

mea

sure

s ta

ken

to e

nsur

e sa

mpl

e se

curit

y.

S

ampl

es w

ere

appr

opria

tely

han

dled

and

non

e w

ere

lost

Aud

its o

r re

view

s Th

e re

sults

of a

ny a

udits

or r

evie

ws

of s

ampl

ing

tech

niqu

es a

nd d

ata.

Non

e bu

t min

ing

prod

uced

qua

litie

s as

exp

ecte

d w

hich

con

firm

s sa

mpl

ing

accu

racy

Sec

tion

2 R

epor

ting

of

Exp

lora

tion

Res

ults

(C

riter

ia li

sted

in th

e pr

eced

ing

sect

ion

also

app

ly to

this

sec

tion.

)

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Min

eral

tene

men

t and

la

nd te

nure

st

atus

Type

, ref

eren

ce n

ame/

num

ber,

loca

tion

and

owne

rshi

p in

clud

ing

agre

emen

ts o

r mat

eria

l iss

ues

with

third

par

ties

such

as

join

t ve

ntur

es, p

artn

ersh

ips,

ove

rrid

ing

roya

lties

, nat

ive

title

inte

rest

s,

hist

oric

al s

ites,

wild

erne

ss o

r nat

iona

l par

k an

d en

viro

nmen

tal

setti

ngs.

Th

e se

curit

y of

the

tenu

re h

eld

at th

e tim

e of

repo

rting

alo

ng w

ith a

ny

know

n im

pedi

men

ts to

obt

aini

ng a

lice

nse

to o

pera

te in

the

area

.

Tw

o m

inin

g lic

ense

s (IU

P’s

) for

ope

ratio

n an

d pr

oduc

tion

valid

till

2026

& 2

028

R

ef n

o: 1

88.4

5/20

7/20

10 &

188

.45/

208/

2010

Bar

ito U

tara

, Cen

tral K

alim

anta

n, In

done

sia

10

0% T

KS

N

o ag

reem

ents

, joi

nt v

entu

res

or p

artn

ersh

ips

in p

lace

Roy

alty

with

CV

AS

man

agem

ent f

ee fo

r loc

al s

ocia

l rel

atio

ns

G

over

nmen

t doc

umen

ts in

ord

er

APPENDIX 5 – TKS JORC RESOURCE REPORT

538

Page 81: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

4

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Exp

lora

tion

done

by

othe

r pa

rties

Ack

now

ledg

men

t and

app

rais

al o

f exp

lora

tion

by o

ther

par

ties.

Yes

, 5 c

ontra

ctor

s fo

r dril

ling,

exp

lora

tion,

Geo

tech

& 4

pre

viou

s JO

RC

stu

dies

, all

incl

uded

in th

is s

tudy

Geo

logy

Dep

osit

type

, geo

logi

cal s

ettin

g an

d st

yle

of m

iner

alis

atio

n.

S

ub-b

itum

inou

s co

al, s

ub-b

asin

, syn

clin

e st

ruct

ure

Dril

l hol

e In

form

atio

nA

sum

mar

y of

all

info

rmat

ion

mat

eria

l to

the

unde

rsta

ndin

g of

the

expl

orat

ion

resu

lts in

clud

ing

a ta

bula

tion

of th

e fo

llow

ing

info

rmat

ion

for a

ll M

ater

ial d

rill h

oles

: o

east

ing

and

north

ing

of th

e dr

ill h

ole

colla

r o

elev

atio

n or

RL

(Red

uced

Lev

el –

ele

vatio

n ab

ove

sea

leve

l in

met

res)

of t

he d

rill h

ole

colla

r o

dip

and

azim

uth

of th

e ho

le

odo

wn

hole

leng

th a

nd in

terc

eptio

n de

pth

oho

le le

ngth

. If

the

excl

usio

n of

this

info

rmat

ion

is ju

stifi

ed o

n th

e ba

sis

that

the

info

rmat

ion

is n

ot M

ater

ial a

nd th

is e

xclu

sion

doe

s no

t det

ract

from

th

e un

ders

tand

ing

of th

e re

port,

the

Com

pete

nt P

erso

n sh

ould

cle

arly

ex

plai

n w

hy th

is is

the

case

.

R

elat

ivel

y go

od d

rill d

atab

ase

su

rvey

ed

su

rvey

ed

ve

rtica

l (90

deg

rees

)

dow

n ho

le le

ngth

and

coa

l int

erce

pts

mea

sure

d fro

m g

eoph

ysic

al lo

g

pipe

leng

th re

conc

iled

with

geo

phys

ical

logs

verti

cal d

rillin

g in

rela

tivel

y fla

t dip

ping

stra

ta w

ith g

ood

drilli

ng

cond

ition

s an

d sh

allo

w h

oles

che

cked

by

geop

hysi

cal l

oggi

ng g

ives

lo

w c

hanc

e of

sig

nific

ant h

ole

devi

atio

n or

true

coa

l thi

ckne

ss m

is-

inte

rpre

tatio

n

Dat

aag

greg

atio

n m

etho

ds

In re

porti

ng E

xplo

ratio

n R

esul

ts, w

eigh

ting

aver

agin

g te

chni

ques

, m

axim

um a

nd/o

r min

imum

gra

de tr

unca

tions

(eg

cutti

ng o

f hig

h gr

ades

) and

cut

-off

grad

es a

re u

sual

ly M

ater

ial a

nd s

houl

d be

sta

ted.

W

here

agg

rega

te in

terc

epts

inco

rpor

ate

shor

t len

gths

of h

igh

grad

e re

sults

and

long

er le

ngth

s of

low

gra

de re

sults

, the

pro

cedu

re u

sed

for s

uch

aggr

egat

ion

shou

ld b

e st

ated

and

som

e ty

pica

l exa

mpl

es o

f su

ch a

ggre

gatio

ns s

houl

d be

sho

wn

in d

etai

l. Th

e as

sum

ptio

ns u

sed

for a

ny re

porti

ng o

f met

al e

quiv

alen

t val

ues

shou

ld b

e cl

early

sta

ted.

W

eigh

ted

aver

ages

wer

e us

ed to

est

imat

e se

am a

vera

ges

from

roof

flo

or a

nd b

ody

coal

sam

ples

n/

a

n/

a

Rel

atio

nshi

pbe

twee

n m

iner

alis

atio

n w

idth

s an

d in

terc

ept

leng

ths

Thes

e re

latio

nshi

ps a

re p

artic

ular

ly im

porta

nt in

the

repo

rting

of

Exp

lora

tion

Res

ults

. If

the

geom

etry

of t

he m

iner

alis

atio

n w

ith re

spec

t to

the

drill

hol

e an

gle

is k

now

n, it

s na

ture

sho

uld

be re

porte

d.

If it

is n

ot k

now

n an

d on

ly th

e do

wn

hole

leng

ths

are

repo

rted,

ther

e sh

ould

be

a cl

ear s

tate

men

t to

this

effe

ct (e

g ‘d

own

hole

leng

th, t

rue

wid

th n

ot k

now

n’).

M

ost o

f the

dril

ling

inte

rsec

ted

the

coal

at l

ow d

ip. T

he a

ppar

ent a

nd

true

thic

knes

s is

ass

umed

to b

e re

lativ

ely

clos

e. C

oal t

hick

ness

in

terc

epts

in th

e da

ta a

ppea

r to

supp

ort t

his

and

cons

iste

nt c

oal s

eam

th

ickn

ess

is n

orm

al in

this

are

a. S

teep

er d

ips

(up

to 2

0deg

rees

) are

as

sum

ed to

occ

ur n

ear t

he e

dge

of th

e ba

sin

and

dum

my

poin

ts in

th

e m

odel

hav

e us

ed tr

ue th

ickn

ess

of th

e co

al in

this

are

a

APPENDIX 5 – TKS JORC RESOURCE REPORT

539

Page 82: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

5

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Dia

gram

sA

ppro

pria

te m

aps

and

sect

ions

(with

sca

les)

and

tabu

latio

ns o

f in

terc

epts

sho

uld

be in

clud

ed fo

r any

sig

nific

ant d

isco

very

bei

ng

repo

rted

Thes

e sh

ould

incl

ude,

but

not

be

limite

d to

a p

lan

view

of

drill

hol

e co

llar l

ocat

ions

and

app

ropr

iate

sec

tiona

l vie

ws.

Y

es, t

here

are

all

thes

e m

aps,

sec

tions

and

tabl

es in

the

repo

rt

Bal

ance

dre

porti

ng

Whe

re c

ompr

ehen

sive

repo

rting

of a

ll E

xplo

ratio

n R

esul

ts is

not

pr

actic

able

, rep

rese

ntat

ive

repo

rting

of b

oth

low

and

hig

h gr

ades

an

d/or

wid

ths

shou

ld b

e pr

actic

ed to

avo

id m

isle

adin

g re

porti

ng o

f E

xplo

ratio

n R

esul

ts.

B

alan

ced

repo

rting

use

d an

d da

ta w

as re

stric

ted

with

in 2

00m

for

Mea

sure

d, 4

00m

for I

ndic

ated

and

800

m fo

r Inf

erre

d

Oth

ersu

bsta

ntiv

e ex

plor

atio

n da

ta

Oth

er e

xplo

ratio

n da

ta, i

f mea

ning

ful a

nd m

ater

ial,

shou

ld b

e re

porte

d in

clud

ing

(but

not

lim

ited

to):

geol

ogic

al o

bser

vatio

ns; g

eoph

ysic

al

surv

ey re

sults

; geo

chem

ical

sur

vey

resu

lts; b

ulk

sam

ples

– s

ize

and

met

hod

of tr

eatm

ent;

met

allu

rgic

al te

st re

sults

; bul

k de

nsity

, gr

ound

wat

er, g

eote

chni

cal a

nd ro

ck c

hara

cter

istic

s; p

oten

tial

dele

terio

us o

r con

tam

inat

ing

subs

tanc

es.

in

clud

ed in

App

endi

ces

and

liste

d in

the

repo

rt, th

e da

ta w

here

ap

prop

riate

has

bee

n us

ed b

ut o

ften

the

olde

r dat

a w

as le

ss w

ell

reco

rded

and

not

com

plet

e an

d fo

r thi

s re

ason

was

not

use

d in

the

geol

ogic

al m

odel

Furth

er w

ork

The

natu

re a

nd s

cale

of p

lann

ed fu

rther

wor

k (e

g te

sts

for l

ater

al

exte

nsio

ns o

r dep

th e

xten

sion

s or

larg

e-sc

ale

step

-out

dril

ling)

. D

iagr

ams

clea

rly h

ighl

ight

ing

the

area

s of

pos

sibl

e ex

tens

ions

, in

clud

ing

the

mai

n ge

olog

ical

inte

rpre

tatio

ns a

nd fu

ture

dril

ling

area

s,

prov

ided

this

info

rmat

ion

is n

ot c

omm

erci

ally

sen

sitiv

e.

Th

ere

is a

sub

stan

tial t

arge

t are

a fo

r hig

h gr

ade

coal

that

has

not

yet

be

en e

xplo

red

by d

rillin

g.

M

appi

ng o

f the

are

a sh

ows

rela

tivel

y hi

gher

gra

de c

oal o

ccur

s in

nu

mer

ous

seam

s in

the

area

Exp

lora

tion

is re

com

men

ded

here

Sec

tion

3 E

stim

atio

n an

d R

epor

ting

of

Min

eral

Res

ourc

es

(Crit

eria

list

ed in

sec

tion

1, a

nd w

here

rele

vant

in s

ectio

n 2,

als

o ap

ply

to th

is s

ectio

n.)

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Dat

abas

e in

tegr

ityM

easu

res

take

n to

ens

ure

that

dat

a ha

s no

t bee

n co

rrup

ted

by, f

or

exam

ple,

tran

scrip

tion

or k

eyin

g er

rors

, bet

wee

n its

initi

al c

olle

ctio

n an

d its

use

for M

iner

al R

esou

rce

estim

atio

n pu

rpos

es.

Dat

a va

lidat

ion

proc

edur

es u

sed.

A

ll do

wn

hole

geo

phys

ical

logs

hav

e be

en re

-inte

rpre

ted

to c

onfir

m

coal

thic

knes

s an

d de

pth

by g

eolo

gist

and

initi

al d

atab

ase

prep

ared

. D

ata

is th

en c

heck

ed b

y se

nior

tech

nica

l sta

ff fo

r dril

l col

lar i

d,

coor

dina

tes

and

elev

atio

ns a

gain

st to

pogr

aphy

, se

am c

orre

latio

ns,

sam

ple

id a

nd o

verla

ps, a

nom

alou

s da

ta w

hen

plot

ted

etc.

Site

vis

itsC

omm

ent o

n an

y si

te v

isits

und

erta

ken

by th

e C

ompe

tent

Per

son

and

the

outc

ome

of th

ose

visi

ts.

If no

site

vis

its h

ave

been

und

erta

ken

indi

cate

why

this

is th

e ca

se.

S

ite v

isit

com

plet

ed b

y C

P a

nd re

sour

ce g

eolo

gist

(Sep

t, 13

) co

nfirm

ing

stat

us o

f min

e ar

ea, t

rans

porta

tion

logi

stic

s an

d pr

ojec

t si

tuat

ion

Geo

logi

cal

inte

rpre

tatio

nC

onfid

ence

in (o

r con

vers

ely,

the

unce

rtain

ty o

f ) th

e ge

olog

ical

in

terp

reta

tion

of th

e m

iner

al d

epos

it.

Nat

ure

of th

e da

ta u

sed

and

of a

ny a

ssum

ptio

ns m

ade.

Th

e ef

fect

, if a

ny, o

f alte

rnat

ive

inte

rpre

tatio

ns o

n M

iner

al R

esou

rce

H

igh

conf

iden

ce in

geo

logi

cal i

nter

pret

atio

n ba

sed

on L

ands

at G

IS

inte

rpre

tatio

n, g

eolo

gica

l map

ping

, ext

ensi

ve d

rill d

ata

D

ata

is s

yste

mat

ic a

nd re

lativ

ely

wel

l doc

umen

ted

M

inim

al

APPENDIX 5 – TKS JORC RESOURCE REPORT

540

Page 83: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

6

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

estim

atio

n.

The

use

of g

eolo

gy in

gui

ding

and

con

trolli

ng M

iner

al R

esou

rce

estim

atio

n.

The

fact

ors

affe

ctin

g co

ntin

uity

bot

h of

gra

de a

nd g

eolo

gy.

G

eolo

gica

l int

erpr

etat

ion

has

been

key

to d

irect

ing

the

expl

orat

ion

drilli

ng a

fter 2

010

and

the

resu

lts h

ave

supp

orte

d th

e hy

poth

esis

Syn

clin

e st

ruct

ure

with

gra

de in

crea

sing

tow

ards

the

edge

s of

the

sync

line

as o

lder

sea

ms

are

enco

unte

red

Dim

ensi

ons

The

exte

nt a

nd v

aria

bilit

y of

the

Min

eral

Res

ourc

e ex

pres

sed

as

leng

th (a

long

stri

ke o

r oth

erw

ise)

, pla

n w

idth

, and

dep

th b

elow

su

rface

to th

e up

per a

nd lo

wer

lim

its o

f the

Min

eral

Res

ourc

e.

Le

ngth

11,

200m

on

both

sid

es o

f the

syn

clin

e st

ruct

ure,

wid

th

5,80

0m, t

opog

raph

ic re

lief a

sl(-

230)

m –

200

m

C

oal s

eam

stri

kes

conf

irmed

by

drilli

ng g

reat

er th

an 1

0km

in m

any

case

s

Est

imat

ion

and

mod

ellin

g te

chni

ques

The

natu

re a

nd a

ppro

pria

tene

ss o

f the

est

imat

ion

tech

niqu

e(s)

ap

plie

d an

d ke

y as

sum

ptio

ns, i

nclu

ding

trea

tmen

t of e

xtre

me

grad

e va

lues

, dom

aini

ng, i

nter

pola

tion

para

met

ers

and

max

imum

dis

tanc

e of

ext

rapo

latio

n fro

m d

ata

poin

ts. I

f a c

ompu

ter a

ssis

ted

estim

atio

n m

etho

d w

as c

hose

n in

clud

e a

desc

riptio

n of

com

pute

r sof

twar

e an

d pa

ram

eter

s us

ed.

The

avai

labi

lity

of c

heck

est

imat

es, p

revi

ous

estim

ates

and

/or m

ine

prod

uctio

n re

cord

s an

d w

heth

er th

e M

iner

al R

esou

rce

estim

ate

take

s ap

prop

riate

acc

ount

of s

uch

data

. Th

e as

sum

ptio

ns m

ade

rega

rdin

g re

cove

ry o

f by-

prod

ucts

. E

stim

atio

n of

del

eter

ious

ele

men

ts o

r oth

er n

on-g

rade

var

iabl

es o

f ec

onom

ic s

igni

fican

ce (e

gsul

phur

for a

cid

min

e dr

aina

ge

char

acte

risat

ion)

. In

the

case

of b

lock

mod

el in

terp

olat

ion,

the

bloc

k si

ze in

rela

tion

to

the

aver

age

sam

ple

spac

ing

and

the

sear

ch e

mpl

oyed

. A

ny a

ssum

ptio

ns b

ehin

d m

odel

ling

of s

elec

tive

min

ing

units

. A

ny a

ssum

ptio

ns a

bout

cor

rela

tion

betw

een

varia

bles

. D

escr

iptio

n of

how

the

geol

ogic

al in

terp

reta

tion

was

use

d to

con

trol

the

reso

urce

est

imat

es.

Dis

cuss

ion

of b

asis

for u

sing

or n

ot u

sing

gra

de c

uttin

g or

cap

ping

. Th

e pr

oces

s of

val

idat

ion,

the

chec

king

pro

cess

use

d, th

e co

mpa

rison

of

mod

el d

ata

to d

rill h

ole

data

, and

use

of r

econ

cilia

tion

data

if

avai

labl

e.

E

stim

atio

n fo

r a c

oal d

epos

it w

ith la

tera

l con

tinui

ty, c

onsi

sten

t coa

l th

ickn

ess

and

rela

tivel

y si

mpl

e ge

olog

ical

stru

ctur

e. M

axim

um

extra

pola

tion

dist

ance

is 8

00m

(Inf

erre

d) w

hich

is a

ppro

pria

te in

this

ge

olog

ical

env

ironm

ent.

Sur

pac

min

ing

softw

are

was

use

d. A

man

ual

chec

k us

ing

the

strik

e le

ngth

and

cum

ulat

ive

coal

thic

knes

s ha

s be

en

done

to v

erify

the

scal

e of

the

Res

ourc

e

As

wel

l as

a m

anua

l est

imat

e of

Res

ourc

es th

ere

have

bee

n se

vera

l R

esou

rce

estim

ates

sin

ce 2

005

and

num

bers

hav

e co

inci

ded

with

am

ount

of d

ata

and

obse

rvat

ion

poin

ts a

nd m

odify

ing

fact

ors

givi

ng

stro

ng s

uppo

rt to

the

curre

nt R

esou

rce

num

bers

TKS

has

som

e hi

gh s

ulph

ur s

eam

s (>

2%) c

oal p

rodu

ct q

ualit

y w

ill ha

ve to

be

man

aged

to m

aint

ain

sale

able

pro

duct

s. M

ine

drai

nage

w

ill ha

ve to

be

man

aged

to a

void

aci

d ac

cum

ulat

ion

but o

vera

ll th

e pi

ts a

re re

lativ

ely

shal

low

and

bac

kfilli

ng is

pla

nned

for r

ehab

ilitat

ion

x

y z

= 50

X 1

00 X

1.5

m (m

inim

um b

lock

siz

e 12

.5 X

25

X 0

.375

m)

m

inim

um th

ickn

ess

0.4m

, 3m

wea

ther

ing

halo

, sea

ms

fit s

trike

of

basi

n

late

ral c

ontin

uity

and

coa

l thi

ckne

ss a

nd q

ualit

y

Land

sat &

LiD

AR

use

d to

inte

rpre

t syn

clin

e st

ruct

ure

boun

ded

by

faul

ts

n/a

cl

ose

com

paris

on b

etw

een

mod

el d

ata

and

drill

data

as

wel

l as

min

ing

reco

ncilia

tion

clos

ely

mat

ches

pre

dict

ed c

oal

Moi

stur

eW

heth

er th

e to

nnag

es a

re e

stim

ated

on

a dr

y ba

sis

or w

ith n

atur

al

moi

stur

e, a

nd th

e m

etho

d of

det

erm

inat

ion

of th

e m

oist

ure

cont

ent.

To

tal m

oist

ure

has

been

mea

sure

d by

wei

ght u

nder

labo

rato

ry

cond

ition

s

Cut

-off

para

met

ers

The

basi

s of

the

adop

ted

cut-o

ff gr

ade(

s) o

r qua

lity

para

met

ers

appl

ied.

0.4m

min

imum

min

ing

thic

knes

s, 1

00m

buf

fer f

rom

bou

ndar

y if

conc

essi

on, 3

m w

eath

erin

g ha

lo

M

axim

um d

epth

for R

esou

rces

of 1

00m

APPENDIX 5 – TKS JORC RESOURCE REPORT

541

Page 84: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

7

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Min

ing

fact

ors

or assu

mpt

ions

Ass

umpt

ions

mad

e re

gard

ing

poss

ible

min

ing

met

hods

, min

imum

m

inin

g di

men

sion

s an

d in

tern

al (o

r, if

appl

icab

le, e

xter

nal)

min

ing

dilu

tion.

It is

alw

ays

nece

ssar

y as

par

t of t

he p

roce

ss o

f det

erm

inin

g re

ason

able

pro

spec

ts fo

r eve

ntua

l eco

nom

ic e

xtra

ctio

n to

con

side

r po

tent

ial m

inin

g m

etho

ds, b

ut th

e as

sum

ptio

ns m

ade

rega

rdin

g m

inin

g m

etho

ds a

nd p

aram

eter

s w

hen

estim

atin

g M

iner

al R

esou

rces

m

ay n

ot a

lway

s be

rigo

rous

. Whe

re th

is is

the

case

, thi

s sh

ould

be

repo

rted

with

an

expl

anat

ion

of th

e ba

sis

of th

e m

inin

g as

sum

ptio

ns

mad

e.

O

pen

cut

M

inim

um m

inin

g th

ickn

ess

0.4m

No

dilu

tion

used

for R

esou

rces

Max

imum

dep

th 1

00m

for t

he R

esou

rce

as c

umul

ativ

e co

al th

ickn

ess

from

all

seam

s is

15m

whi

ch is

pot

entia

lly w

ith v

iabl

e st

rip ra

tio li

mits

Rel

ativ

ely

good

min

ing

cond

ition

s w

ith lo

w d

ips

and

pers

iste

nt s

eam

co

ntin

uity

Met

allu

rgic

alfa

ctor

s or

as

sum

ptio

ns

The

basi

s fo

r ass

umpt

ions

or p

redi

ctio

ns re

gard

ing

met

allu

rgic

al

amen

abili

ty. I

t is

alw

ays

nece

ssar

y as

par

t of t

he p

roce

ss o

f de

term

inin

g re

ason

able

pro

spec

ts fo

r eve

ntua

l eco

nom

ic e

xtra

ctio

n to

co

nsid

er p

oten

tial m

etal

lurg

ical

met

hods

, but

the

assu

mpt

ions

re

gard

ing

met

allu

rgic

al tr

eatm

ent p

roce

sses

and

par

amet

ers

mad

e w

hen

repo

rting

Min

eral

Res

ourc

es m

ay n

ot a

lway

s be

rigo

rous

. W

here

this

is th

e ca

se, t

his

shou

ld b

e re

porte

d w

ith a

n ex

plan

atio

n of

th

e ba

sis

of th

e m

etal

lurg

ical

ass

umpt

ions

mad

e.

n/

a

Env

ironm

en-

tal f

acto

rs o

r as

sum

ptio

ns

Ass

umpt

ions

mad

e re

gard

ing

poss

ible

was

te a

nd p

roce

ss re

sidu

e di

spos

al o

ptio

ns. I

t is

alw

ays

nece

ssar

y as

par

t of t

he p

roce

ss o

f de

term

inin

g re

ason

able

pro

spec

ts fo

r eve

ntua

l eco

nom

ic e

xtra

ctio

n to

co

nsid

er th

e po

tent

ial e

nviro

nmen

tal i

mpa

cts

of th

e m

inin

g an

d pr

oces

sing

ope

ratio

n. W

hile

at t

his

stag

e th

e de

term

inat

ion

of

pote

ntia

l env

ironm

enta

l im

pact

s, p

artic

ular

ly fo

r a g

reen

field

s pr

ojec

t, m

ay n

ot a

lway

s be

wel

l adv

ance

d, th

e st

atus

of e

arly

con

side

ratio

n of

th

ese

pote

ntia

l env

ironm

enta

l im

pact

s sh

ould

be

repo

rted.

Whe

re

thes

e as

pect

s ha

ve n

ot b

een

cons

ider

ed th

is s

houl

d be

repo

rted

with

an

exp

lana

tion

of th

e en

viro

nmen

tal a

ssum

ptio

ns m

ade.

Lo

ng s

trip

min

es in

a s

pars

ely

popu

late

d ar

ea o

ffers

the

oppo

rtuni

ty

for b

ackf

illing

of p

its p

rogr

essi

vely

Am

ple

ex-p

it du

mpi

ng s

pace

with

no

larg

e riv

ers

or s

igni

fican

t dr

aina

ge is

sues

Bul

k de

nsity

W

heth

er a

ssum

ed o

r det

erm

ined

. If a

ssum

ed, t

he b

asis

for t

he

assu

mpt

ions

. If d

eter

min

ed, t

he m

etho

d us

ed, w

heth

er w

et o

r dry

, the

fre

quen

cy o

f the

mea

sure

men

ts, t

he n

atur

e, s

ize

and

repr

esen

tativ

enes

s of

the

sam

ples

. Th

e bu

lk d

ensi

ty fo

r bul

k m

ater

ial m

ust h

ave

been

mea

sure

d by

m

etho

ds th

at a

dequ

atel

y ac

coun

t for

voi

d sp

aces

(vug

s, p

oros

ity,

etc)

, moi

stur

e an

d di

ffere

nces

bet

wee

n ro

ck a

nd a

ltera

tion

zone

s w

ithin

the

depo

sit.

Dis

cuss

ass

umpt

ions

for b

ulk

dens

ity e

stim

ates

use

d in

the

eval

uatio

n pr

oces

s of

the

diffe

rent

mat

eria

ls.

D

ensi

ty o

f coa

l has

bee

n m

easu

red

in th

e la

b an

d ad

just

ed u

sing

P

rest

on S

ande

rs F

orm

ula

so a

s to

not

ove

rest

imat

e de

nsity

of c

oal

insi

tu

Lab

dens

ity m

easu

red

on 8

6 of

163

bod

y co

al s

ampl

es

Th

ere

appe

ar to

be

no b

ig v

aria

tion

and

the

resu

lts a

re c

onsi

dere

d to

be

repr

esen

tativ

e

Cla

ssifi

catio

n Th

e ba

sis

for t

he c

lass

ifica

tion

of th

e M

iner

al R

esou

rces

into

var

ying

co

nfid

ence

cat

egor

ies.

Mea

sure

d 20

0m in

fluen

ce, I

ndic

ated

400

m in

fluen

ce, I

nfer

red

800m

APPENDIX 5 – TKS JORC RESOURCE REPORT

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Page 85: PT TRISULA KENCANA SAKTI - GEARgear.com.sg/files/Circular/Circular_30_January_2015_P2.pdf · ar as received APL arial penggunaan lain (area for other uses) ASTM American Society for

8

Crit

eria

JOR

C C

ode

expl

anat

ion

Com

men

tary

Whe

ther

app

ropr

iate

acc

ount

has

bee

n ta

ken

of a

ll re

leva

nt fa

ctor

s (ie

rela

tive

conf

iden

ce in

tonn

age/

grad

e es

timat

ions

, rel

iabi

lity

of in

put

data

, con

fiden

ce in

con

tinui

ty o

f geo

logy

and

met

al v

alue

s, q

ualit

y,qu

antit

y an

d di

strib

utio

n of

the

data

).W

heth

er th

e re

sult

appr

opria

tely

refle

cts

the

Com

pete

nt P

erso

n’s

view

of t

he d

epos

it.

Pre

ston

San

ders

For

mul

a to

not

ove

r est

imat

e to

nnes

, coa

l qua

lity

isin

corp

orat

ed in

to th

e bl

ock

mod

el s

o as

repr

esen

t act

ual q

ualit

yth

roug

hout

the

depo

sit,

data

is re

liabl

e an

d va

lidat

ed b

y ge

ophy

sica

llo

gs, c

ontin

uity

of r

esou

rce

thro

ugh

sync

line

stru

ctur

eY

es th

e de

posi

t is

a si

mpl

e sy

nclin

e st

ruct

ure

cont

aini

ng n

umer

ous

cont

inuo

us c

oal s

eam

s of

var

ious

, rel

ati v

ely

thin

thic

knes

s

Aud

its o

r re

view

s Th

e re

sults

of a

ny a

udits

or r

evie

ws

of M

iner

al R

esou

rce

estim

ates

.P

revi

ous

reso

urce

est

imat

es a

nd a

man

ual e

stim

ate

for d

imen

sion

and

scal

e al

l cor

rela

te w

ell

Dis

cuss

ion

of

rela

tive

accu

racy

/co

nfid

ence

Whe

re a

ppro

pria

te a

sta

tem

ent o

f the

rela

tive

accu

racy

and

conf

iden

ce le

vel i

n th

e M

iner

al R

esou

rce

estim

ate

usin

g an

app

roac

hor

pro

cedu

re d

eem

ed a

ppro

pria

te b

y th

e C

ompe

tent

Per

son.

Fo r

exam

ple,

the

appl

icat

ion

of s

tatis

tical

or g

eost

atis

tical

pro

cedu

res

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APPENDIX 5 – TKS JORC RESOURCE REPORT

543

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APPENDIX 5 – TKS JORC RESOURCE REPORT

544

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APPENDIX 10.2 DRILL DATA SUMMARY

ANDRESOURCE ESTIMATE DETAILS

APPENDIX 5 – TKS JORC RESOURCE REPORT

545

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

BD06 2.40 2.95 0.55 CO S600UBD06 6.25 6.50 0.25 CO S600LBD15 38.40 38.70 0.30 CO S500BD26 13.60 13.68 0.08 CO S40BD26 26.10 26.20 0.10 CO S50BD26 39.50 40.35 0.85 CO S100BD26 48.20 50.20 2.00 CO S200BD26 52.80 53.30 0.50 CO S300BD27 16.90 18.95 2.05 CO S100BD27 25.80 28.45 2.65 CO S200BD27 36.40 37.70 1.30 CO S300BD28 6.65 7.00 0.35 CO S40BD28 20.90 21.25 0.35 CO S50BD28 33.70 34.80 1.10 CO S100BD28 40.25 42.40 2.15 CO S200BD28 49.05 49.90 0.85 CO S300BD29 7.65 8.05 0.40 CO S400BD30 12.35 12.52 0.17 CO S30BD30 24.70 25.06 0.36 CO S40BD30 38.30 38.60 0.30 CO S50BD30 51.32 52.05 0.73 CO S100BD30 52.10 52.70 0.60 CO S100BD30 58.34 60.40 2.06 CO S200

BTS_01 17.70 18.00 0.30 CO S40BTS_01 29.00 29.30 0.30 CO S50BTS_01 44.00 46.00 2.00 CO S100BTS_01 54.70 55.70 1.00 CO S200BTS_01 56.20 57.20 1.00 CO S200BTS_02 19.00 21.20 2.20 CO S100BTS_02 31.00 33.70 2.70 CO S200BTS_02 46.90 47.90 1.00 CO S400BTS_03 0.85 1.75 0.90 CO S100BTS_03 7.50 8.10 0.60 CO S200BTS_03 8.35 9.10 0.75 CO S200BTS_03 11.95 12.85 0.90 CO S300BTS_03 22.45 23.15 0.70 CO S400BTS_04 14.80 16.60 1.80 CO S100BTS_04 23.20 24.70 1.50 CO S200BTS_04 28.00 28.70 0.70 CO S300BTS_04 37.55 38.25 0.70 CO S400BTS_05 19.70 20.20 0.50 CO S50BTS_05 32.10 34.10 2.00 CO S100BTS_05 42.65 44.70 2.05 CO S200BTS_05 48.65 49.15 0.50 CO S300BTS_06 15.45 16.85 1.40 CO S100BTS_06 23.30 25.05 1.75 CO S200BTS_06 30.85 31.70 0.85 CO S300BTS_06 40.15 41.10 0.95 CO S400BTS_06 60.00 60.20 0.20 CO S500BTS_07 5.43 6.60 1.17 CO S100BTS_07 11.70 12.90 1.20 CO S200BTS_07 16.90 18.52 1.62 CO S300BTS_07 24.20 24.90 0.70 CO S400BTS_08 12.20 14.10 1.90 CO S100BTS_08 20.05 21.70 1.65 CO S200BTS_08 28.50 29.80 1.30 CO S300BTS_08 38.60 39.80 1.20 CO S400BTS_09 3.70 4.20 0.50 CO S50BTS_09 22.70 24.80 2.10 CO S100BTS_09 30.40 32.60 2.20 CO S200BTS_10 4.50 5.20 0.70 CO S40BTS_10 12.70 13.20 0.50 CO S50BTS_11 3.90 4.40 0.50 CO S40BTS_11 11.90 12.45 0.55 CO S50BTS_11 28.85 30.50 1.65 CO S100BTS_13 10.00 10.30 0.30 CO S40BTS_13 17.80 18.30 0.50 CO S50BTS_14 6.10 8.60 2.50 CO S100BTS_14 18.00 19.10 1.10 CO S200BTS_14 26.40 27.74 1.34 CO S300BTS_15 8.40 8.65 0.25 CO S40BTS_15 16.50 17.10 0.60 CO S50BTS_16 11.60 13.45 1.85 CO S100BTS_16 19.45 21.10 1.65 CO S200BTS_16 27.50 28.45 0.95 CO S300BTS_16 37.85 38.60 0.75 CO S400BTS_16 53.25 53.45 0.20 CO S500

BTS09_G 3.14 3.70 0.56 CO S50BTS09_G 22.70 24.64 1.94 CO S100 BTS09_G.1(1-5) 1.75 21.36 14.69 4.32 40.13 40.86 2.64 5927 5466BTS09_G 30.43 31.65 1.22 CO S200 BTS09_G.2(1-5) 1.22 24.00 14.04 3.99 38.49 43.48 3.42 5920 5235BTS09_G 39.96 41.03 1.07 CO S300 BTS09_G.3(1-5) 1.07 21.76 11.93 6.64 40.46 40.97 0.60 6050 5362BTS09_G 50.68 51.58 0.90 CO S400 BTS09_G.4(1-5) 0.84 19.17 12.10 13.87 38.57 35.47 5.21 5450 5007CPDH_49 8.42 9.02 0.60 CO S30CPDH_49 22.86 23.10 0.24 CO S40CPDH_49 31.94 31.94 0.00 CO S50CPDH_49 48.06 50.18 2.12 CO S100CPDH_49 56.16 58.56 2.40 CO S200CPDH_49 63.26 64.28 1.02 CO S300CPDH02 9.70 11.92 2.22 CO S200CPDH02 17.10 17.98 0.88 CO S300CPDH02 28.80 28.96 0.16 CO S400CPDH25 13.74 15.98 2.24 CO S100CPDH25 22.74 24.72 1.98 CO S200CPDH25 32.16 33.22 1.06 CO S300CPDH25 42.94 44.28 1.34 CO S400

CPDH25A 14.80 16.75 1.95 CO S100CPDH25A 23.00 23.11 0.11 CO ?CPDH25A 23.83 25.70 1.87 CO S200CPDH25A 33.56 33.66 0.10 CO ?CPDH25A 33.79 34.23 0.44 CO S300CPDH25A 44.11 44.74 0.63 CO S400

CPDH25A_Q 13.62 15.84 2.22 CO S100 CPDH25A.01.(1-5) 2.2 27.95 13.35 3.35 39.56 43.74 0.73 6006 4990CPDH25A_Q 22.62 24.42 1.80 CO S200 CPDH25A.02.(1-5) 1.9 21.62 12.28 3.19 39.26 45.27 3.19 6070 5424

CPDH25B 14.46 16.18 1.72 CO S100CPDH25B 23.59 24.20 0.61 CO S200CPDH26 0.88 1.50 0.62 CO S200CPDH26 10.68 11.92 1.24 CO S300CPDH26 23.16 24.40 1.24 CO S400

CPDH26A 10.00 11.01 1.01 CO S300CPDH26A 22.00 22.43 0.43 CO S400CPDH26B 9.37 10.41 1.04 CO S300CPDH26B 20.93 22.42 1.49 CO S400CPDH31 12.26 12.64 0.38 CO S30 CPDH 031_30_2 0.3 19.55 8.73 12.43 41.51 37.33 0.51 5986 5276 1.4CPDH31 27.96 28.08 0.12 CO S40CPDH31 36.94 37.08 0.14 CO S50CPDH31 53.22 54.74 1.52 CO S100 CPDH 031_100_2-4 1.52 22.31 11.27 7.00 37.66 44.06 1.98 5958 5217 1.38 56CPDH31 62.24 63.74 1.50 CO S200 CPDH 031_200_2-4 1.5 21.99 12.03 6.22 38.33 43.41 2.80 5989 5313 1.38 57CPDH31 66.90 67.54 0.64 CO S300 CPDH 031_300_2-4 0.64 16.73 8.35 19.00 39.60 33.05 0.64 5413 4912 1.4 52CPDH31 76.44 77.02 0.58 CO S400 CPDH 031_400_2-4 0.58 13.69 6.13 34.40 34.69 24.78 3.04 4179 3860 1.62 65

CPDH31_G 12.30 12.72 0.42 CO S30CPDH31_G 27.76 28.02 0.26 CO S40CPDH31_G 37.16 37.26 0.10 CO S50CPDH31_G 53.46 54.82 1.36 CO S100 CPDH31.01(1-5) 1.5 21.59 14.12 6.73 39.28 39.86 2.06 5754 5258

CPDH32 14.06 14.62 0.56 CO S20CPDH32 30.94 31.34 0.40 CO S30CPDH32 45.54 45.78 0.24 CO S40CPDH32 55.18 55.18 0.00 CO S50CPDH32 70.98 72.44 1.46 CO S100CPDH32 77.86 78.42 0.56 CO S200CPDH32 78.60 79.26 0.66 CO S200CPDH32 87.68 88.30 0.62 CO S300CPDH48 11.86 14.02 2.16 CO S100CPDH48 19.92 21.08 1.16 CO S200CPDH48 21.24 22.20 0.96 CO S200CPDH48 29.84 30.66 0.82 CO S300CPDH48 40.54 41.12 0.58 CO S400

CPDH48_Q 11.90 12.74 0.84 CO S100CPDH48_Q 13.10 13.78 0.68 CO S100CPDH48_Q 20.08 21.94 1.86 CO S200CPDH48_Q 30.02 30.94 0.92 CO S300CPDH48_Q 41.16 41.84 0.68 CO S400

CPDH48_QA 11.80 13.60 1.80 CO S100CPDH48_QA 20.00 21.68 1.68 CO S200CPDH48_QA 29.78 30.74 0.96 CO S300CPDH48_QA 40.98 41.42 0.44 CO S400

CPDH50 7.04 7.34 0.30 CO S30CPDH50 23.26 23.34 0.08 CO S40CPDH50 33.28 33.38 0.10 CO S50CPDH50 49.12 50.40 1.28 CO S100CPDH50 59.00 59.76 0.76 CO S200CPDH50 60.08 61.04 0.96 CO S200CPDH50 62.70 63.52 0.82 CO S300CPDH50 72.48 73.46 0.98 CO S400

CPDH50A 7.16 7.46 0.30 CO S30CPDH50A 23.42 23.52 0.10 CO S40CPDH50A 33.30 33.38 0.08 CO S50CPDH50A 49.12 50.40 1.28 CO S100CPDH50A 59.00 59.76 0.76 CO S200CPDH50A 60.08 61.04 0.96 CO S200CPDH50A 62.70 63.52 0.82 CO S300CPDH50A 72.48 73.46 0.98 CO S400CPDH51 15.98 15.98 0.00 CO S40CPDH51 24.76 25.32 0.56 CO S50CPDH51 40.22 42.30 2.08 CO S100

Coal Interpretation from Geophysical logs Coal Analysis

PT TRISULA KENCANA SAKTI PT DANMAR EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

546

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

CPDH51 49.04 51.10 2.06 CO S200CPDH51 53.46 54.52 1.06 CO S300CPDH51 63.34 64.32 0.98 CO S400CPDH52 30.70 31.00 0.30 CO ?CPDH52 33.10 34.36 1.26 CO S500CPDH53 8.50 10.76 2.26 CO S100CPDH53 15.54 17.72 2.18 CO S200CPDH53 25.62 26.34 0.72 CO S300CPDH53 36.80 37.80 1.00 CO S400

CPDH53A 8.42 11.02 2.60 CO S100CPDH53A 15.40 17.90 2.50 CO S200CPDH53A 25.32 26.48 1.16 CO S300CPDH53A 36.72 37.92 1.20 CO S400CPDH54 7.86 8.18 0.32 CO S30 CPDH 054_30_2 0.32 18.01 7.25 6.86 44.43 41.46 0.31 6315 5582 1.35 46CPDH54 23.40 23.78 0.38 CO S40 CPDH 054_40_2 0.38 23.11 8.16 13.11 38.01 40.72 3.18 5582 4673 1.45 0CPDH54 32.04 32.56 0.52 CO S50 CPDH 054_50_2 0.52 19.39 7.53 20.63 46.82 25.02 0.51 5651 4926 1.41 72CPDH54 48.56 50.70 2.14 CO S100 CPDH 054_100_(2-4) 1.6 21.54 12.18 7.84 39.15 40.83 1.94 5866 5243 1.37 52CPDH54 56.04 58.40 2.36 CO S200 CPDH 054_200_(2-4) 2 22.58 12.57 7.50 38.48 41.45 2.82 5851 5185 1.38 52CPDH56 7.52 7.72 0.20 CO S50CPDH56 24.90 26.62 1.72 CO S100 CPDH 056_100_(2-4) 1.8 21.36 11.07 4.53 42.94 41.46 0.30 6263 5539 1.34 55CPDH56 32.26 34.28 2.02 CO S200 CPDH 056_200_(2-4) 1.45 21.74 8.84 7.48 40.95 42.73 2.84 5844 5017 1.4 53CPDH56 41.22 41.90 0.68 CO S300 CPDH 056_300_(2-4) 0.6 19.18 8.90 5.56 42.28 43.27 0.56 6125 5434 1.35CPDH56 51.46 52.84 1.38 CO S400 CPDH 056_400_(2-4) 1.3 14.50 6.41 10.76 52.71 30.12 2.22 6488 5930 1.32 67

CPDH56_Q 8.24 8.36 0.12 CO S50CPDH56_Q 25.18 26.94 1.76 CO S100 CPDH56.01(1-5) 1.76 16.32 11.93 9.02 39.77 11.04 0.71 2899 2751CPDH56_Q 32.80 34.68 1.88 CO S200 CPDH56.02(1-5) 1.88 21.56 13.31 5.10 39.29 42.30 3.29 5855 5298CPDH56_Q 41.52 42.30 0.78 CO S300 CPDH56.03(1-5) 0.9 19.63 13.07 16.68 34.74 35.50 0.81 5100 4723CPDH57_G 14.70 16.40 1.70 CO S100 CPDH57.1(1-5) 1.74 22.11 13.62 2.08 40.52 43.78 0.52 6062 5466CPDH57_G 22.70 24.90 2.20 CO S200 CPDH57.2(1-5) 2.06 22.81 12.35 5.42 39.80 42.43 3.55 5798 5107CPDH57_G 30.40 30.50 0.10 CO ?CPDH57_G 32.25 33.20 0.95 CO S300 CPDH57.3(1-5) 0.95 23.03 14.06 3.02 38.29 44.64 0.57 6042 5411CPDH57_G 42.70 43.70 1.00 CO S400

CPDH58 11.32 11.96 0.64 CO S30CPDH58 23.48 24.64 1.16 CO S40CPDH58 33.82 33.82 0.00 CO S50CPDH58 49.70 51.66 1.96 CO S100CPDH58 57.30 59.56 2.26 CO S200

CPDH58A 11.48 12.20 0.72 CO S30CPDH58A 23.94 24.66 0.72 CO S40CPDH59 14.08 15.08 1.00 CO S20CPDH59 32.50 32.90 0.40 CO S30CPDH59 44.24 44.90 0.66 CO S40CPDH59 54.46 54.78 0.32 CO S50CPDH59 70.52 72.06 1.54 CO S100CPDH59 77.62 79.48 1.86 CO S200CPDH59 85.08 86.28 1.20 CO S300

CPDH59_Q 13.98 14.70 0.72 CO S20CPDH59_Q 32.12 32.54 0.42 CO S30CPDH59_Q 43.80 44.38 0.58 CO S40CPDH59_Q 54.00 54.22 0.22 CO S50CPDH59_Q 69.84 71.52 1.68 CO S100CPDH59_Q 77.12 78.88 1.76 CO S200

CPDH60 18.70 19.15 0.45 CO S30 CPDH 60-30(1-5) 0.45 22.09 14.23 3.22 45.21 37.34 0.25 6300 5726CPDH60 31.65 31.75 0.10 CO S40CPDH60 44.85 44.85 0.00 CO S50CPDH60 57.05 57.90 0.85 CO S100 CPDH 60-100(1-5) 1.55 22.47 16.74 5.56 38.03 39.67 1.89 5677 5288 1.33CPDH60 58.20 58.60 0.40 CO S100

CPDH60_Q 18.78 19.22 0.44 CO S30CPDH60_Q 31.58 31.84 0.26 CO S40CPDH60_Q 44.70 44.80 0.10 CO S50CPDH60_Q 56.98 57.90 0.92 CO S100CPDH60_Q 58.08 58.48 0.40 CO S100

CPDH61 52.97 53.16 0.19 CO ?CPDH61 56.90 57.10 0.20 CO ?CPDH61 64.20 64.54 0.34 CO S500CPDH61 64.80 65.04 0.24 CO S700CPDH62 4.42 5.04 0.62 CO S20 CPDH 62_20(1-6) 0.55 24.65 16.11 6.76 38.70 38.43 0.47 5616 5051CPDH62 20.72 21.38 0.66 CO S30 CPDH 62_30(1-3) 0.66 21.09 13.19 3.30 47.12 36.39 0.37 6449 5862CPDH62 30.52 31.22 0.70 CO S40 CPDH 62_40(1-3) 0.7 23.61 15.86 24.42 29.35 30.37 1.14 4184 3799CPDH62 44.04 44.48 0.44 CO S50CPDH62 55.64 56.98 1.34 CO S100CPDH63 8.52 8.64 0.12 CO S10CPDH63 23.44 23.94 0.50 CO S20 CPDH 63_20(4-8) 0.5 23.51 16.86 7.35 37.30 38.48 0.71 5506 5069CPDH63 39.70 40.24 0.54 CO S30 CPDH 63_30(1-3) 0.54 23.77 15.46 5.69 41.01 37.84 0.28 5943 5359CPDH63 50.00 50.58 0.58 CO S40CPDH63 63.44 63.62 0.18 CO S50CPDH65 4.70 5.00 0.30 CO S10CPDH65 19.30 19.75 0.45 CO S20CPDH65 34.85 35.40 0.55 CO S30CPDH65 46.40 46.95 0.55 CO S40CPDH65 58.20 58.45 0.25 CO S50

CPDH66A 7.40 7.95 0.55 CO S30 CPDH 66A_30(1-5) 0.55 17.14 11.23 4.94 52.44 31.39 0.29 6668 6228CPDH66A 20.05 20.50 0.45 CO S40CPDH66A 46.90 48.45 1.55 CO S100 CPDH 66A_100(1,3-5) 1.55 21.72 15.62 4.85 39.83 39.70 1.64 5856 5434CPDH66A 53.35 55.00 1.65 CO S200 CPDH 66A_200(1,3,5) 1.65 23.05 17.67 5.37 36.14 40.82 3.02 5547 5185CPDH68 52.16 52.35 0.19 CO S500CPDH68 77.30 78.28 0.98 CO S600CPDH69 2.05 3.65 1.60 CO S100CPDH69 11.00 13.05 2.05 CO S200CPDH69 13.35 13.40 0.05 CO ?CPDH69 18.70 19.55 0.85 CO S300CPDH69 29.50 30.25 0.75 CO S400CPDH70 14.10 14.66 0.56 CO S20 CPDH 70_20(2-5) 0.56 24.12 16.55 11.99 34.14 37.32 0.50 5118 4654CPDH70 31.38 31.94 0.56 CO S30 CPDH 70_200(1,3,5) 0.56 18.70 12.66 3.23 53.63 30.48 0.28 6708 6244CPDH70 42.40 42.96 0.56 CO S40 CPDH 70_40(1-3,5) 0.56 24.47 17.10 4.34 38.24 40.33 0.45 5755 5245CPDH70 54.54 54.70 0.16 CO S50CPDH70 67.92 68.24 0.32 CO S100CPDH70 68.64 69.32 0.68 CO S100CPDH70 75.18 76.70 1.52 CO S200CPDH70 83.00 83.78 0.78 CO S300CPDH71 7.54 7.70 0.16 CO S10CPDH71 22.24 22.84 0.60 CO S20CPDH71 38.44 39.02 0.58 CO S30CPDH71 49.08 49.62 0.54 CO S40CPDH71 62.80 62.98 0.18 CO S50CPDH72 10.84 11.18 0.34 CO S30 CPDH 72_30(1-5) 0.75 25.46 17.23 5.27 36.71 40.80 0.30 5627 5067 1.35CPDH72 22.38 22.66 0.28 CO S40 CPDH 72_40(1-3) 0.28 23.12 14.58 5.32 40.61 39.49 0.27 5850 5265CPDH72 37.18 37.30 0.12 CO S50 CPDH 72_50(1-3) 0.12 20.74 13.70 16.95 39.85 29.50 0.67 5246 4818CPDH72 48.84 49.10 0.26 CO S100 CPDH 72_100_(1-5) 1.36 21.87 14.57 8.60 36.99 39.84 4.77 5461 4994 1.42CPDH72 49.28 50.20 0.92 CO S100 CPDH 72_100_(1-5)CPDH72 56.64 57.32 0.68 CO S200 CPDH 72_200_(1-5) 1.86 24.10 17.26 6.15 36.20 40.39 2.35 5579 5120 1.34CPDH72 57.50 58.50 1.00 CO S200 CPDH 72_200_(1-5)CPDH72 61.66 61.98 0.32 CO S300CPDH74 60.48 61.58 1.10 CO S700

CTKSW_1007 63.60 64.75 1.15 CO S1000 CTKSW1007_H01/(01-05)CTKSW_1014 53.10 53.80 0.70 CO S700U CTKSW1014_H01/(01-05)CTKSW_1014 58.00 58.70 0.70 CO S700L CTKSW1014_H02/(01-05)CTKSW_1016 10.80 11.60 0.80 CO S700L CTKSW1016_H01/(03-05)CTKSW_102 29.10 29.65 0.55 CO S1100 CTKSW_102_H01/(01-05)CTKSW_104 23.45 23.60 0.15 CO S1000CTKSW_104 61.45 62.20 0.75 CO S1100 CTKSW_104_H01/(01-05)CTKSW_106 37.65 38.00 0.35 CO S1200CTKSW_69 19.50 19.85 0.35 CO S850 CTKSW_69_H01/(01-05)CTKSW_69 21.20 21.50 0.30 CO S850CTKSW_69 26.60 26.80 0.20 CO S900 CTKSW_69_H01/(01-05)CTKSW_69 29.00 29.35 0.35 CO S900 CTKSW_69_H02/(01-05)CTKSW_75 13.45 14.05 0.60 CO S700L

CTKSW_75R 13.60 14.35 0.75 CO S700L CTKSW_75R_H01/(01-05)CTKSW_79 48.90 49.75 0.85 CO S700UCTKSW_79 53.10 53.75 0.65 CO S700L

CTKSW_79R 49.15 49.95 0.80 CO S700UCTKSW_79R 53.55 54.15 0.60 CO S700LCTKSW_81 43.46 43.60 0.14 CO ?CTKSW_81 44.35 45.10 0.75 CO S1000CTKSW_85 5.60 6.30 0.70 CO S600UCTKSW_85 8.25 8.85 0.60 CO S600LCTKSW_85 65.60 66.65 1.05 CO S700UCTKSW_85 70.60 71.30 0.70 CO S700L

CTKSW_85R 5.70 6.25 0.55 CO S600UCTKSW_85R 8.10 8.80 0.70 CO S600LCTKSW_85R 65.70 66.60 0.90 CO S700UCTKSW_85R 70.50 71.15 0.65 CO S700LCTKSW_86 34.90 35.40 0.50 CO S1000 CTKSW_086_H01/(01-05)CTKSW_87 36.80 37.10 0.30 CO S800?CTKSW_87 50.55 50.95 0.40 CO S800CTKSW_87 99.05 99.75 0.70 CO S850CTKSW_87 110.85 111.10 0.25 CO S900

CTKSW_87A 36.20 36.50 0.30 CO S800?CTKSW_87A 50.05 50.40 0.35 CO S800CTKSW_87A 98.85 99.45 0.60 CO S850CTKSW_87A 110.30 110.85 0.55 CO S900 CTKSW_87A_H02/(01-05)CTKSW_89 15.45 16.20 0.75 CO S700UCTKSW_89 19.50 20.15 0.65 CO S700L

CTKSW_89A 15.45 16.20 0.75 CO S700UCTKSW_89A 19.40 20.05 0.65 CO S700L CTKSW_89A_H03/(01-05)CTKSW_92A 19.90 20.10 0.20 CO S1000CTKSW_92A 20.20 21.10 0.90 CO S1000CTKSW_93A 7.65 8.00 0.35 CO S800CTKSW_93A 57.25 57.95 0.70 CO S850CTKSW_93A 67.05 67.40 0.35 CO S900CTKSW_97A 59.65 60.55 0.90 CO S700UCTKSW_97A 64.05 65.00 0.95 CO S700LCTKSW_99A 19.40 20.00 0.60 CO S1200 CTKSW_99A_H01/(01-05)CTKSW0001 8.05 8.90 0.85 CO S700U

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

CTKSW0001 11.60 12.55 0.95 CO S700LCTKSW0001 83.75 83.95 0.20 CO S800CTKSW0001 103.95 104.30 0.35 CO S850CTKSW0001 110.70 111.00 0.30 CO S850CTKSW0001 118.70 119.20 0.50 CO S900CTKSW0001 183.65 184.30 0.65 CO S1000CTKSW0001 192.80 193.10 0.30 CO ?CTKSW0001 193.60 193.90 0.30 CO ?CTKSW0001 228.35 228.8 0.45 CO S1100CTKSW0001 263 263.8 0.80 CO S1200CTKSW0002 14.25 14.75 0.50 CO S600UCTKSW0002 16.95 17.65 0.70 CO S600LCTKSW0002 71.25 72.25 1.00 CO S700UCTKSW0002 77.7 78.5 0.80 CO S700LCTKSW0002 134.20 134.21 0.01 COCTKSW0002 141.6 142.05 0.45 CO S800CTKSW0002 158.25 158.45 0.20 CO S850CTKSW0002 169.60 169.85 0.25 CO S900CTKSW0002 226.05 226.50 0.45 CO S1000CTKSW0003 12.25 12.75 0.50 CO S800CTKSW0003 27.00 27.15 0.15 CO S850CTKSW0003 35.55 35.70 0.15 CO S900CTKSW0003 108.45 109.65 1.20 CO S1000CTKSW0003 182.2 182.9 0.70 CO S1100CTKSW0004 53.5 54.2 0.70 CO S700UCTKSW0004 57.8 58.55 0.75 CO S700LCTKSW0004 122.4 122.65 0.25 CO S800CTKSW0004 144.3 144.65 0.35 CO S850CTKSW0004 156.75 157.25 0.50 CO S900CTKSW0004 213.85 214.4 0.55 CO S1000CTKSW0004 265.9 266.2 0.30 CO S1100CTKSW0005 84.9 85.3 0.4 CO S800CTKSW0005 108.4 108.55 0.15 CO S850CTKSW0005 121.7 121.85 0.15 CO S900CTKSW0005 122.2 122.75 0.55 CO S900CTKSW0005 180.6 181.35 0.75 CO S1000CTKSW0006 3.80 4.65 0.85 CO S550CTKSW0006 46.40 47.15 0.75 CO S600UCTKSW0006 50.50 51.45 0.95 CO S600LCTKSW0006 110.75 111.80 1.05 CO S700UCTKSW0006 114.40 115.30 0.90 CO S700LCTKSW0007 83.90 84.55 0.65 CO S1000CTKSW0007 152.25 153.10 0.85 CO S1100CTKSW0007 193.75 194.95 1.20 CO S1200CTKSW0008 55.75 57.30 1.55 CO S700UCTKSW0008 62.05 62.75 0.70 CO S700LCTKSW0008 136.00 136.25 0.25 CO S850CTKSW0008 143.20 143.30 0.10 CO S900CTKSW0008 143.40 143.60 0.20 CO S900CTKSW0008 171.25 171.50 0.25 CO ?CTKSW0008 185.25 185.60 0.35 CO S1000CTKSW0008 185.85 186.45 0.60 CO S1000CTKSW0009 13.15 14.30 1.15 CO S500CTKSW0009 25.80 26.20 0.40 CO S550CTKSW0009 47.20 47.40 0.20 CO S600UCTKSW0009 47.80 48.45 0.65 CO S600UCTKSW0009 48.60 49.10 0.50 CO S600UCTKSW0009 49.80 50.00 0.20 CO S600LCTKSW0009 50.25 50.90 0.65 CO S600LCTKSW0009 51.10 51.30 0.20 CO S600LCTKSW0009 107.20 107.95 0.75 CO S700UCTKSW0009 115.50 116.70 1.20 CO S700LCTKSW0009 180.05 180.65 0.60 CO S800CTKSW0009 214.20 214.60 0.40 CO S900CTKSW0009 215.60 216.20 0.60 CO S900CTKSW0009 280.80 281.70 0.90 CO S1000

CTKSW0009A 16.35 17.45 1.10 CO S550CTKSW0009A 29.00 29.30 0.30 CO ?CTKSW0009A 50.65 51.70 1.05 CO S600UCTKSW0009A 53.40 54.30 0.90 CO S600LCTKSW0009A 110.55 111.30 0.75 CO S700UCTKSW0009A 119.60 120.75 1.15 CO S700LCTKSW0010 20.30 20.60 0.30 CO S700U?CTKSW0010 33.85 34.05 0.20 CO S700L?CTKSW0010 34.40 34.90 0.50 CO S700L?CTKSW0010 62.45 63.10 0.65 CO ?CTKSW0010 104.65 105.35 0.70 CO S800?CTKSW0010 124.85 125.30 0.45 CO S850?CTKSW0010 127.65 127.95 0.30 CO S850?CTKSW0010 140.70 141.15 0.45 CO S900?CTKSW0010 141.70 142.30 0.60 CO S900?CTKSW0010 182.65 183.75 1.10 CO S1000?CTKSW0011 25.50 25.85 0.35 CO S600UCTKSW0011 32.60 32.90 0.30 CO ?CTKSW0011 33.85 34.35 0.50 CO S600LCTKSW0011 98.45 99.30 0.85 CO S700UCTKSW0011 131.95 132.45 0.50 CO S800?CTKSW0011 146.10 146.95 0.85 CO S800CTKSW0014 2.20 3.10 0.90 CO S500?CTKSW0014 30.80 31.35 0.55 CO S550?CTKSW0014 31.40 32.00 0.60 CO S550?CTKSW0017 39.55 40.80 1.25 CO S700UCTKSW0017 46.10 46.95 0.85 CO S700LCTKSW0018 50.40 50.70 0.30 CO S800CTKSW0018 65.50 65.80 0.30 CO S850CTKSW0018 66.20 66.70 0.50 CO S850CTKSW0018 87.20 88.30 1.10 CO S900CTKSW0018 129.30 130.05 0.75 CO S1000CTKSW0019 3.75 4.45 0.70 CO S40CTKSW0019 25.10 26.30 1.20 CO S100CTKSW0019 32.00 32.30 0.30 CO S200CTKSW0022 0.80 1.40 0.60 CO S600L?CTKSW0022 46.40 47.65 1.25 CO S700U?CTKSW0024 26.70 27.65 0.95 CO S100CTKSW0024 34.60 34.80 0.20 CO S200CTKSW0024 40.35 40.60 0.25 CO S300CTKSW0024 56.30 56.55 0.25 CO S400CTKSW0024 91.75 92.20 0.45 CO S500CTKSW0024 110.80 111.65 0.85 CO S550CTKSW0027 29.40 30.60 1.20 CO S700UCTKSW0027 32.60 33.60 1.00 CO S700L

CTKSW0027A 30.80 31.80 1.00 CO S700UCTKSW0027A 33.95 34.85 0.90 CO S700LCTKSW0028 31.2 32.40 1.20 CO S700UCTKSW0028 40.6 40.90 0.30 CO S700LCTKSW0028 41.2 41.50 0.30 CO S700LCTKSW0029 32.50 33.10 0.60 CO S700UCTKSW0029 33.30 33.60 0.30 CO S700UCTKSW0029 43.65 44.40 0.75 CO S700L

CTKSW0029A 32.11 32.70 0.59 CO S700UCTKSW0029A 32.90 33.20 0.30 CO S700UCTKSW0029A 43.40 43.85 0.45 CO S700LCTKSW0030 36.22 36.80 0.58 CO S700UCTKSW0030 44.05 45.20 1.15 CO S700L

CTKSW0030A 36.55 37.05 0.50 CO S700UCTKSW0030A 44.00 45.05 1.05 CO S700LCTKSW0030B 37.20 37.70 0.50 CO S700UCTKSW0030B 44.60 45.70 1.10 CO S700LCTKSW0031 11.45 11.55 0.10 CO ?CTKSW0033 4.19 4.60 0.41 CO S550CTKSW0034 1.75 1.95 0.20 CO S550

CTKSW0034A 2.50 2.75 0.25 CO S550CTKSW0034A 39.55 39.75 0.20 CO S600UCTKSW0034A 44.95 45.30 0.35 CO S600LCTKSW0036 13.90 14.25 0.35 CO S600UCTKSW0036 23.30 23.60 0.30 CO S600LCTKSW0036 23.75 23.98 0.23 CO S600L

CTKSW0036A 7.20 7.50 0.30 CO S600UCTKSW0036A 13.30 13.55 0.25 CO S600U?CTKSW0036A 22.50 22.80 0.30 CO S600LCTKSW0036A 22.90 23.05 0.15 CO S600LCTKSW0039 3.70 4.10 0.40 CO S500CTKSW0039 46.45 47.00 0.55 CO S550

DEV1001 24.23 24.55 0.32 CO S40DEV1001 37.80 38.20 0.40 CO S50 DEV1001/1(2-5) 0.44 20.91 15.60 26.20 28.62 29.58 0.62 3975 3728 1.42DEV1001 50.15 51.84 1.69 CO S100 DEV1001/2(1-5) 1.64 21.46 16.31 6.09 37.27 40.33 1.75 5609 5265 1.32DEV1001 58.20 60.28 2.08 CO S200 DEV1001/3(1-5) 2 21.88 17.80 4.84 36.41 40.94 2.77 5620 5341 1.33DEV1001 64.60 65.50 0.90 CO S300 DEV1001/4(1-5) 0.6 16.51 11.96 26.61 33.89 27.54 0.33 4655 4397 1.45DEV1001 75.00 75.42 0.42 CO S400DEV1002 5.00 6.10 1.10 CO S20DEV1002 36.10 36.40 0.30 CO S40DEV1002 48.10 48.20 0.10 CO S50DEV1002 61.62 63.20 1.58 CO S100DEV1002 69.40 71.22 1.82 CO S200DEV1002 76.38 77.20 0.82 CO S300DEV1002 85.65 85.80 0.15 CO S400DEV1002 105.90 107.35 1.45 CO S500DEV1003 19.20 19.62 0.42 CO S20DEV1003 35.40 35.80 0.40 CO S30DEV1003 46.40 46.65 0.25 CO S40DEV1003 46.75 47.00 0.25 CO S40DEV1003 72.35 74.00 1.65 CO S100DEV1003 78.58 80.50 1.92 CO S200DEV1003 87.90 88.70 0.80 CO S300

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

DEV1003 97.02 97.72 0.70 CO S400 DEV1003/4(1-5) 0.55 19.71 14.56 6.95 39.16 39.33 3.36 5741 5394DEV1004 2.05 2.20 0.15 CO S20DEV1004 18.45 18.60 0.15 CO S30DEV1004 30.90 31.25 0.35 CO S40DEV1004 42.10 42.30 0.20 CO S50DEV1004 42.40 42.70 0.30 CODEV1004 55.40 56.95 1.55 CO S100 DEV1004(1-5) 0.69 23.34 13.76 6.69 37.10 42.45 1.71 4998 4474 1.33DEV1004 61.45 63.60 2.15 CO S200 DEV1004(6-10) 2.18 24.30 12.53 7.26 37.60 42.61 3.80 5719 4953 1.39DEV1004 72.20 73.10 0.90 CO S300DEV1005 1.60 2.45 0.85 CO S200DEV1005 11.42 12.40 0.98 CO S300 DEV1005(1-3) 0.88 21.59 13.72 5.58 40.39 40.31 0.53 5312 4826DEV1005 21.70 22.50 0.80 CO S400 DEV1005(4-6) 0.95 18.91 11.87 15.05 41.92 31.15 2.82 5430 4996DEV1006 6.40 6.80 0.40 CO S20DEV1006 23.20 23.80 0.60 CO S30DEV1006 35.20 35.60 0.40 CO S40DEV1006 59.42 61.20 1.78 CO S100DEV1006 65.90 68.05 2.15 CO S200 DEV1006/2(1-5) 2.05 23.80 16.46 7.07 36.63 39.84 3.91 5535 5050DEV1006 76.45 77.59 1.14 CO S300DEV1007 31.22 31.80 0.58 CO S20DEV1007 59.06 59.55 0.49 CO S40DEV1007 85.68 87.12 1.44 CO S100 DEV1007/1(3PLY) 1.34 20.89 16.34 5.77 37.79 40.11 2.13 5653 5346DEV1007 92.24 94.34 2.10 CO S200 DEV1007/2(1-5) 2.1 21.46 16.40 5.00 37.97 40.63 2.89 5637 5296 1.33DEV1007 100.30 101.26 0.96 CO S300DEV1007 109.50 110.10 0.60 CO S400 DEV1007/4(1-5) 0.84 24.13 14.71 7.62 37.31 40.37 2.98 5564 4950 1.36DEV1008 31.48 32.20 0.72 CO S20DEV1008 48.60 49.00 0.40 CO S30DEV1008 60.15 60.78 0.63 CO S40DEV1008 87.42 88.90 1.48 CO S100 DEV1008/1( 1-5 ) 0.65 20.65 16.61 14.84 32.64 35.91 2.38 4877 4652 1.35DEV1008 95.40 96.68 1.28 CO S200 DEV1008/2( 1-5 ) 2.12 24.45 17.77 3.74 36.40 42.09 2.18 5681 5220 1.29DEV1008 101.64 102.70 1.06 CO S300 DEV1008/3( 1-5 ) 1.22 19.08 13.85 7.33 45.47 33.36 0.45 6158 5779 1.27DEV1008 110.60 111.10 0.50 CO S400 DEV1008/4( 1-5 ) 1.64 22.16 15.51 10.59 36.63 37.27 4.72 5337 4917 1.46DEV1009 16.90 17.64 0.74 CO S20DEV1009 34.30 34.70 0.40 CO S30DEV1009 45.32 45.98 0.66 CO S40DEV1009 72.30 73.10 0.80 CO S100DEV1009 73.20 73.70 0.50 CO S100DEV1009 78.78 81.00 2.22 CO S200DEV1009 87.50 88.70 1.20 CO S300 DEV1009/3( 1-5 ) 0.96 16.92 13.09 11.93 41.13 33.85 0.45 5706 5450DEV1009 96.95 97.22 0.27 CO S400 DEV1009/4( 1-5 ) 0.8 18.33 12.62 20.03 32.95 34.41 3.48 4631 4324DEV1009 97.50 97.80 0.30 CO S400 DEV1009/4( 1-5 )DEV1010 16.02 16.70 0.68 CO S30DEV1010 27.10 27.73 0.63 CO S40DEV1010 54.00 55.40 1.40 CO S100DEV1010 61.24 62.10 0.86 CO S200DEV1010 62.20 63.30 1.10 CO S200DEV1010 67.50 68.42 0.92 CO S300DEV1010 77.90 78.00 0.10 CO S400 DEV1010/4( 1-5 ) 0.37 16.24 10.61 21.34 36.46 31.59 3.11 849 798DEV1011 7.55 8.20 0.65 CO S300DEV1011 17.02 18.00 0.98 CO S400DEV1012 7.46 8.14 0.68 CO S20DEV1012 24.20 24.62 0.42 CO S30DEV1012 36.40 37.10 0.70 CO S40DEV1012 61.58 63.18 1.60 CO S100 DEV1012/1(1-5 ) 1.6 23.54 15.66 3.65 38.48 42.21 0.95 5776 5236DEV1012 68.54 70.80 2.26 CO S200 DEV1012/2(1-5 ) 2.26 24.44 16.90 5.53 37.24 40.32 2.60 5633 5126DEV1012 77.26 78.40 1.14 CO S300 DEV1012/3(1-5 ) 1.14 21.67 15.31 5.51 40.61 38.56 0.38 5850 5408DEV1012 85.90 86.72 0.82 CO S400DEV1013 10.20 10.50 0.30 CO S10DEV1013 26.30 27.00 0.70 CO S20DEV1013 42.65 43.22 0.57 CO S30DEV1013 54.40 55.05 0.65 CO S40DEV1013 68.70 68.90 0.20 CO S50DEV1013 80.50 81.80 1.30 CO S100 DEV1013/1(1-5 ) 1 21.27 16.19 4.53 37.63 41.66 0.64 5716 5371DEV1013 87.10 89.10 2.00 CO S200 DEV1013/2(1-5 ) 2.25 22.44 14.78 6.72 36.27 39.77 1.87 5473 4987DEV1013 94.30 95.15 0.85 CO S300 DEV1013/3(1-5 )DEV1014 19.20 19.90 0.70 CO S20DEV1014 36.75 37.20 0.45 CO S30DEV1014 48.20 48.50 0.30 CO S40DEV1014 62.80 62.90 0.10 CO S50DEV1014 74.80 76.10 1.30 CO S100DEV1014 81.40 82.30 0.90 CO S200 DEV1014/2(1-5 ) 1.3 23.38 17.30 7.70 35.57 39.43 3.15 5402 5005 1.37DEV1014 82.40 83.80 1.40 CO S200 DEV1014/2(1-5 )DEV1014 90.68 91.55 0.87 CO S300 DEV1014/3(1-5 ) 0.8 21.34 15.09 9.12 39.04 36.75 0.52 5649 5230 1.32DEV1014 100.90 101.20 0.30 CO S400 DEV1014/4(1-5 ) 1 18.95 13.19 16.38 40.68 29.76 3.45 5302 4952 1.39DEV1014 101.30 101.58 0.28 CODEV1015 23.30 24.40 1.10 CO S20DEV1015 39.60 40.24 0.64 CO S30DEV1015 51.22 51.80 0.58 CO S40DEV1015 79.20 80.60 1.40 CO S100 DEV1015/1(1-5 ) 1.32 21.51 16.41 7.13 36.98 39.48 1.71 5586 5247DEV1015 86.20 88.44 2.24 CO S200DEV1015 92.96 93.76 0.80 CO S300 DEV1015/3(1-5 ) 0.8 21.35 14.20 9.91 39.50 36.38 0.72 5695 5220DEV1015 102.83 103.64 0.81 CO S400 DEV1015/4(1-5 ) 0.64 19.79 11.44 12.09 42.88 33.60 3.59 5786 5240DEV1016 7.40 8.00 0.60 CO S20DEV1016 23.67 24.20 0.53 CO S30DEV1016 34.20 34.80 0.60 CO S40DEV1016 62.00 63.40 1.40 CO S100DEV1016 70.40 72.70 2.30 CO S200 DEV1016/2(3 PLY) 1.6 22.99 16.13 4.54 37.18 42.15 2.33 5756 5285DEV1016 74.85 75.80 0.95 CO S300DEV1016 80.15 80.80 0.65 CO S400DEV1017 7.45 8.00 0.55 CO S400DEV1017 51.45 52.30 0.85 CO S500DEV1018 14.50 14.60 0.10 CO S30DEV1018 27.17 27.80 0.63 CO S40DEV1018 43.20 43.45 0.25 CO S50DEV1018 53.10 54.40 1.30 CO S100DEV1018 59.96 60.95 0.99 CO S200 DEV1018/2(1-5) 2.17 24.23 17.73 6.15 37.93 38.19 2.17 5556 5118 1.33DEV1018 61.05 62.20 1.15 CODEV1018 68.41 69.50 1.09 CO S300DEV1018 78.29 78.86 0.57 CO S400DEV1019 19.04 19.76 0.72 CO S20DEV1019 34.79 35.10 0.31 CO S30DEV1019 47.04 47.68 0.64 CO S40DEV1019 62.30 62.60 0.30 CO S50DEV1019 73.20 74.52 1.32 CO S100DEV1019 79.64 81.80 2.16 CO S200DEV1019 87.92 89.08 1.16 CO S300 DEV1019/2(1-5) 1.16 22.58 16.04 7.38 41.22 35.36 0.45 5809 5352 1.29DEV1019 97.80 98.30 0.50 CO S400DEV1020 11.40 11.68 0.28 CO S10DEV1020 26.65 27.20 0.55 CO S20DEV1020 43.95 44.38 0.43 CO S30DEV1020 56.60 57.00 0.40 CO S40DEV1020 72.55 72.65 0.10 CO S50DEV1020 73.30 73.56 0.26 CO ?DEV1020 82.88 84.02 1.14 CO S100 DEV1020/1(1-4) 1.14 25.42 15.64 4.46 37.45 42.35 1.72 5715 5052DEV1020 89.25 91.50 2.25 CO S200 DEV1020/2(1-5) 2.35 24.37 15.96 7.72 36.01 40.31 2.91 5508 4956DEV1020 97.55 98.42 0.87 CO S300 DEV1020/3(1-5) 0.87 23.18 14.67 4.81 41.17 39.35 0.57 5997 5401DEV1020 107.85 108.46 0.61 CO S400DEV1021 3.80 4.00 0.20 CO S10DEV1021 19.30 20.10 0.80 CO S20DEV1021 35.30 35.95 0.65 CO S30DEV1021 46.73 47.50 0.77 CO S40DEV1021 76.03 77.60 1.57 CO S100 DEV1021/1(1-5) 1.31 26.56 15.95 3.86 37.95 42.23 1.78 5793 5062DEV1021 83.40 85.62 2.22 CO S200DEV1021 89.22 90.10 0.88 CO S300 DEV1021/2(1-5) 1.95 26.19 13.06 11.15 39.13 36.66 2.56 5532 4694DEV1021 99.02 99.40 0.38 CO S400 DEV1021/3(1-5)DEV1021 99.48 100.00 0.52 CODEV1022 2.20 2.82 0.62 CO S20DEV1022 17.00 17.58 0.58 CO S30DEV1022 28.10 28.70 0.60 CO S40DEV1022 59.23 59.93 0.70 CO S100DEV1022 60.15 60.50 0.35 CO S100DEV1022 66.00 67.93 1.93 CO S200 DEV1022/1(1-5) 1.93 22.96 18.47 5.07 36.31 40.16 2.59 5502 5200 1.35DEV1022 74.60 75.80 1.20 CO S300DEV1023 0.90 2.75 1.85 CO S100DEV1023 8.40 10.71 2.31 CO S200DEV1023 19.40 20.90 1.50 CO S300

DEV1023R 2.36 3.98 1.62 CO S100DEV1023R 9.42 11.77 2.35 CO S200DEV1023R 20.34 21.46 1.12 CO S300DEV1024 12.31 12.83 0.52 CO S30DEV1024 26.55 27.49 0.94 CO S40DEV1024 40.80 41.15 0.35 CO S50DEV1024 51.72 53.28 1.56 CO S100 DEV1024/1( 1-5 ) 1.56 21.05 17.20 5.89 36.22 40.70 2.45 5495 5240 1.36DEV1024 59.90 62.35 2.45 CO S200 DEV1024/2( 1-5 ) 2.35 23.72 17.78 9.96 34.89 37.37 2.69 5121 4758 1.38DEV1024 66.80 68.20 1.40 CO S300 DEV1024/3( 1-5 ) 1.11 21.27 12.89 15.46 35.39 36.26 1.83 5103 4613 1.43DEV1025 28.80 29.50 0.70 CO S20DEV1025 44.50 45.80 1.30 CO S30DEV1025 56.82 57.45 0.63 CO S40DEV1025 82.85 83.20 0.35 CO S100 DEV1025(PLY1-3) 0.41 19.01 14.34 8.67 41.71 35.28 7.22 5587 5284DEV1025 83.85 84.21 0.36 CO S100DEV1025 90.00 92.20 2.20 CO S200 DEV1025(PLY4-8) 2.05 23.35 15.52 5.24 40.25 38.98 2.99 5842 5300 1.33DEV1025 97.95 99.20 1.25 CO S300 DEV1025(PLY9-11) 1.25 21.84 15.29 5.27 41.79 37.65 0.42 6015 5550DEV1025 106.10 106.90 0.80 CO S400 DEV1025(PLY12-15) 0.85 22.52 14.59 11.65 35.89 37.87 3.19 5306 4813 1.42DEV1026 40.60 41.19 0.59 CO ? S30DEV1026 52.75 53.50 0.75 CO S40DEV1026 64.40 65.10 0.70 CO S50DEV1026 68.10 68.70 0.60 CO ?DEV1026 78.50 80.10 1.60 CO S100DEV1026 87.05 87.78 0.73 CO S200 DEV1026(1-4) 0.73 27.04 13.78 20.34 32.28 33.60 3.58 4714 3989DEV1026 87.90 88.90 1.00 CO S200DEV1026 92.70 93.90 1.20 CO S300 DEV1026(5-7) 1 25.95 18.39 3.26 36.51 41.84 0.47 5780 5245DEV1026 102.80 103.42 0.62 CO S400 DEV1026(8-10) 0.7 23.67 14.48 12.62 39.78 33.12 4.30 5431 4847DEV1027 16.78 17.90 1.12 CO S20DEV1027 31.78 32.30 0.52 CO S30DEV1027 43.60 44.30 0.70 CO S40

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

DEV1027 71.22 72.70 1.48 CO S100DEV1027 77.90 79.90 2.00 CO S200DEV1027 88.30 89.10 0.80 CO S300 DEV1027/2(1-5) 0.8 23.46 14.01 8.03 40.16 37.80 0.58 5814 5171 1.29DEV1027 98.83 99.32 0.49 CO S400DEV1028 11.50 12.40 0.90 CO S20DEV1028 27.10 27.40 0.30 CO S30DEV1028 38.20 38.80 0.60 CO S40DEV1028 70.20 71.45 1.25 CO S100 DEV1028/1(1-5) 1.16 20.42 11.73 6.19 39.71 42.37 1.56 5888 5311DEV1028 76.65 78.55 1.90 CO S200 DEV1028/2(1-5) 2.14 21.67 13.19 7.08 37.92 41.81 3.16 5710 5156DEV1028 87.50 88.10 0.60 CO S300 DEV1028/3(1-5) 0.66 19.32 11.12 6.62 43.82 38.44 0.53 6165 5597DEV1028 96.80 97.40 0.60 CO S400DEV1029 15.80 16.25 0.45 CO S40DEV1029 50.40 51.60 1.20 CO S100 DEV1029/1(3 PLY) 0.8 21.77 14.99 4.16 38.49 42.36 1.07 5847 5381 1.34DEV1029 56.40 58.30 1.90 CO S200 DEV1029/2(3 PLY) 0.5 21.02 14.01 11.21 34.77 40.01 0.91 5360 4922 1.46DEV1029 68.50 69.20 0.70 CO S300 DEV1029/3(1-5) 0.9 21.91 15.10 4.02 38.13 42.75 0.49 5913 5441 1.34DEV1029 78.10 78.70 0.60 CO S400DEV1030 5.17 6.60 1.43 CO S300DEV1030 14.56 15.70 1.14 CO S400DEV1031 12.20 12.35 0.15 CO S30DEV1031 26.26 27.00 0.74 CO S40DEV1031 52.26 54.02 1.76 CO S100 DEV1031/1(1-4) 1.66 24.67 16.98 4.76 242.97 40.15 0.73 5675 5150DEV1031 59.58 60.40 0.82 CO S200DEV1031 60.70 61.54 0.84 CODEV1031 66.64 67.84 1.20 CO S300 DEV1031/3(1-4) 1.1 24.37 17.24 5.52 36.52 40.63 0.57 5652 5162DEV1031 75.81 76.62 0.81 CO S400DEV1032 62.18 62.83 0.65 CO S40DEV1032 87.79 88.50 0.71 CO S100DEV1032 88.65 89.41 0.76 CO S100DEV1032 94.10 96.50 2.40 CO S200 DEV1032/2(1-5) 2.4 27.52 12.98 24.34 29.28 33.40 2.03 4282 3569DEV1032 104.90 105.87 0.97 CO S300 DEV1032/3(1-5) 0.97 21.69 14.77 6.44 41.97 36.82 0.81 5933 5455DEV1032 114.18 114.50 0.32 CO S400 DEV1032/4(1-4) 0.51 24.57 16.96 7.68 34.67 40.70 3.44 5401 4906DEV1033 27.17 27.62 0.45 CO S20DEV1033 43.03 43.41 0.38 CO S30DEV1033 54.15 54.75 0.60 CO S40DEV1033 68.25 68.53 0.28 CO S50DEV1033 81.41 82.61 1.20 CO S100DEV1033 86.63 88.67 2.04 CO S200DEV1033 98.82 99.32 0.50 CO S300DEV1034 9.40 9.82 0.42 CO S10DEV1034 18.08 18.94 0.86 CO S20DEV1034 33.95 34.10 0.15 CO S30DEV1034 44.19 44.80 0.61 CO S40DEV1034 75.18 76.38 1.20 CO S100DEV1034 80.70 82.63 1.93 CO S200DEV1034 92.90 93.58 0.68 CO S300DEV1035 12.20 12.85 0.65 CO S20DEV1035 25.00 25.48 0.48 CO S30DEV1035 35.10 35.84 0.74 CO S40DEV1035 68.92 69.92 1.00 CO S100DEV1035 75.00 77.08 2.08 CO S200DEV1036 9.20 10.00 0.80 CO S40DEV1036 45.30 46.50 1.20 CO S100DEV1036 52.50 54.30 1.80 CO S200DEV1036 62.85 63.35 0.50 CO S300 DEV1036/1(1-5) 19.64 13.88 7.56 38.46 40.10 0.60 5730 5347DEV1036 72.35 72.95 0.60 CO S400 DEV1036/2(1-5) 16.82 10.53 26.21 36.33 26.92 3.85 4626 4300DEV1036 73.18 73.40 0.22 CO S400 DEV1036/2(1-5)DEV1037 2.00 3.00 1.00 CO S300DEV1037 12.45 12.70 0.25 CO S400DEV1037 54.90 55.52 0.62 CO S500DEV1038 5.70 6.64 0.94 CO S20DEV1038 21.68 22.54 0.86 CO S30DEV1038 35.60 36.26 0.66 CO S40DEV1038 62.14 63.69 1.55 CO S100DEV1038 67.69 68.80 1.11 CO S200 DEV1038/1(1-5) 2.01 26.79 14.82 5.40 36.82 42.96 2.38 5637 4842 1.35DEV1038 69.10 69.70 0.60 CO S200 DEV1038/1(6-9)DEV1038 80.46 81.40 0.94 CO S300 DEV1038/2(1-5) 0.82 24.80 14.23 5.24 39.62 40.92 0.44 5833 5112 1.33DEV1039 11.43 11.97 0.54 CO S10DEV1039 25.90 26.70 0.80 CO S20DEV1039 54.25 54.90 0.65 CO S40DEV1039 81.72 82.50 0.78 CO S100DEV1039 82.88 83.30 0.42 CO S100DEV1039 88.40 90.60 2.20 CO S200 DEV1039/1(4-5) 0.1 21.74 12.15 22.15 34.54 31.16 2.16 4392 3913DEV1039 98.14 98.70 0.56 CO S300 DEV1039/2(1-5) 0.83 25.80 14.40 4.54 39.31 41.74 0.55 5888 5105 1.34DEV1040 10.15 11.40 1.25 CO S20DEV1040 26.23 26.67 0.44 CO S30DEV1040 38.20 38.92 0.72 CO S40DEV1040 66.92 68.22 1.30 CO S100DEV1040 73.40 74.65 1.25 CO S200DEV1040 84.30 84.81 0.51 CO S300DEV1041 11.02 11.50 0.48 CO S20DEV1041 34.41 34.78 0.37 CO S30DEV1041 44.17 44.75 0.58 CO S40DEV1041 78.09 79.50 1.41 CO S100DEV1041 84.58 86.70 2.12 CO S200 DEV1041/2(1-5) 2.12 26.73 15.81 6.13 36.71 41.36 2.88 5626 4897DEV1041 95.70 96.20 0.50 CO S300DEV1041 103.79 104.50 0.71 CO S400DEV1043 3.70 4.20 0.50 CO S30DEV1043 13.15 13.70 0.55 CO S40DEV1043 49.60 50.70 1.10 CO S100DEV1043 55.70 56.50 0.80 CO S200DEV1043 57.00 57.80 0.80 CO S200DEV1043 77.10 77.70 0.60 CO S400DEV1044 32.38 32.82 0.44 CO S400DEV1044 49.20 49.96 0.76 CO ?DEV1044 65.12 66.08 0.96 CO S500DEV1045 33.69 35.10 1.41 CO S100DEV1045 40.20 42.80 2.60 CO S200DEV1045 51.88 52.92 1.04 CO S300DEV1045 61.60 62.50 0.90 CO S400DEV1045 104.40 105.10 0.70 CO S500DEV1046 13.80 14.40 0.60 CO S30DEV1046 26.04 26.70 0.66 CO S40DEV1046 53.78 55.18 1.40 CO S100DEV1046 59.90 60.70 0.80 CO S200DEV1046 60.90 62.10 1.20 CO S200DEV1046 71.50 72.08 0.58 CO S300DEV1046 80.62 81.58 0.96 CO S400DEV1046 122.80 123.70 0.90 CO S500DEV1047 6.47 7.61 1.14 CO S20DEV1047 21.90 23.10 1.20 CO S30DEV1047 33.40 34.26 0.86 CO S40DEV1047 66.64 68.25 1.61 CO S100DEV1047 73.14 75.64 2.50 CO S200DEV1047 82.80 83.43 0.63 CO S300DEV1047 90.63 91.92 1.29 CO S400DEV1047 92.29 92.46 0.17 CO ?DEV1048 6.20 7.72 1.52 CO S20DEV1048 19.18 19.62 0.44 CO S30DEV1048 28.90 29.52 0.62 CO S40DEV1048 64.10 65.30 1.20 CO S100DEV1048 70.45 72.40 1.95 CO S200DEV1048 81.52 82.13 0.61 CO S300DEV1048 91.05 92.30 1.25 CO S400DEV1051 15.80 16.20 0.40 CO S200DEV1051 32.10 32.50 0.40 CO S300DEV1051 45.70 46.30 0.60 CO S400DEV1058 1.10 1.65 0.55 CO S200DEV1058 16.41 16.75 0.34 CO S300DEV1058 35.32 35.82 0.50 CO S400DEV1058 62.27 62.77 0.50 CO S500DEV1058 63.01 63.23 0.22 CO S500DEV1065 26.95 27.60 0.65 CO S500 DEV1065/1(1-5)DEV1065 49.48 50.48 1.00 CO S550DEV1065 57.32 57.48 0.16 CO ? 0.65 20.38 12.34 3.68 42.38 41.59 1.53 6296 5718 1.3DH02R3 7.70 8.20 0.50 CO S30DH02R3 23.40 23.60 0.20 CO S40DH02R3 32.00 32.57 0.57 CO S50DH02R3 47.70 49.60 1.90 CO S100DH02R3 56.44 58.67 2.23 CO S200DH02R3 60.75 61.45 0.70 CO S300

DH03 23.14 23.36 0.22 CO S50DH03 37.26 39.24 1.98 CO S100DH03 44.28 46.22 1.94 CO S200DH03 52.98 54.02 1.04 CO S300DH03 61.84 62.64 0.80 CO S400DH04 4.00 4.60 0.60 CO S50DH04 23.40 25.45 2.05 CO S100DH04 31.20 33.00 1.80 CO S200DH04 39.30 40.10 0.80 CO S300DH04 49.00 49.60 0.60 CO S400DH07 17.80 18.58 0.78 CO S100DH07 18.88 19.50 0.62 CO S100DH07 24.98 26.76 1.78 CO S200DH07 33.00 33.76 0.76 CO S300DH07 42.88 43.55 0.67 CO S400GT04 15.74 17.62 1.88 CO S100 GT04.01(1-5) 1.9 22.65 14.53 2.47 39.82 43.18 1.20 6091 5513GT04 24.04 25.72 1.68 CO S200 GT04.02(1-5) 1.68 22.12 15.41 6.91 37.30 40.38 3.26 5643 5197GT04 32.24 32.90 0.66 CO S300 GT04.03 0.66 18.67 13.38 5.98 41.18 39.46 0.42 6071 5700IF02 9.15 11.00 1.85 CO S200IF02 18.35 19.00 0.65 CO S300IF02 29.10 30.00 0.90 CO S400IF05 7.70 9.40 1.70 CO S100IF05 15.70 17.10 1.40 CO S200IF05 24.15 24.90 0.75 CO S300

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

IF05 33.75 34.30 0.55 CO S400IF07 2.35 4.30 1.95 CO S200IF07 13.40 14.05 0.65 CO S300IF07 23.25 23.80 0.55 CO S400IF09 19.70 21.10 1.40 CO S100IF09 28.45 30.15 1.70 CO S200IF09 32.60 33.25 0.65 CO S300IF09 41.65 42.25 0.60 CO S400IF12 23.85 25.25 1.40 CO S100IF12 34.90 35.70 0.80 CO S200IF12 35.90 36.65 0.75 CO S200IF12 40.20 40.80 0.60 CO S300IF13 3.85 4.30 0.45 CO S20IF13 18.90 19.20 0.30 CO S30IF13 34.95 35.05 0.10 CO S40IF13 44.70 44.95 0.25 CO S50IF13 61.15 62.15 1.00 CO S100IF13 62.40 62.90 0.50 CO S100IF13 70.25 71.05 0.80 CO S200IF13 71.40 72.05 0.65 CO S200IF13 74.70 75.35 0.65 CO S300IF15 5.60 6.35 0.75 CO S200IF15 6.45 7.50 1.05 CO S200IF15 16.70 17.65 0.95 CO S300IF15 27.45 28.00 0.55 CO S400IS16 26.80 28.66 1.86 CO S100IS16 39.04 39.54 0.50 CO S150IS16 40.90 42.60 1.70 CO S200IS16 42.88 43.38 0.50 CO S200IS16 47.80 48.92 1.12 CO S300IS18 9.68 9.86 0.18 CO S40IS18 22.60 23.04 0.44 CO S50IS18 35.82 36.76 0.94 CO S100IS18 37.02 37.38 0.36 CO S100IS18 43.36 43.94 0.58 CO S200IS18 44.18 45.42 1.24 CO S200IS18 51.70 52.68 0.98 CO S300

NPDH05 3.26 3.54 0.28 CO S600UNPDH05 8.52 8.76 0.24 CO S600LNPDH05 40.50 40.66 0.16 CO S700UNPDH05 46.46 46.62 0.16 CO S700LNPDH05 46.98 47.06 0.08 CO S700LNPDH06 9.88 10.14 0.26 CO S600LNPDH06 44.36 44.52 0.16 CO S700UNPDH06 52.14 52.28 0.14 CO S700LNPDH07 3.30 3.70 0.40 CO S550NPDH07 6.60 6.92 0.32 CO S550NPDH07 38.54 38.68 0.14 CO S600UNPDH07 45.36 45.48 0.12 CO S600LNPDH07 45.76 46.02 0.26 CO S600LNPDH08 35.06 35.60 0.54 CO S600UNPDH09 12.80 13.15 0.35 CO S550NPDH09 13.96 14.24 0.28 CO S550NPDH09 48.98 49.12 0.14 CO S600UNPDH10 6.90 7.20 0.30 CO ?NPDH10 18.60 18.90 0.30 CO S550NPDH10 19.40 19.68 0.28 CO S550NPDH11 18.94 19.20 0.26 CO S550NPDH12 9.58 9.80 0.22 CO S550NPDH14 10.54 10.92 0.38 CO S550NPDH14 46.58 47.13 0.55 CO S600UNPDH14 47.66 48.68 1.02 CO S600LNPDH21 18.04 18.68 0.64 CO S700UNPDH21 19.34 20.06 0.72 CO S700UNPDH21 35.84 36.14 0.30 CO S700LNPDH25 19.20 19.34 0.14 CO S700UNPDH25 19.58 20.20 0.62 CO S700LNPDH26 15.15 15.40 0.25 CO S600LNPDH27 14.80 15.90 1.10 CO ?NPDH29 14.30 15.10 0.80 CO S800NPDH29 25.85 26.10 0.25 CO S850NPDH29 26.55 26.85 0.30 CO S850NPDH29 41.10 41.60 0.50 CO S900NPDH29 44.70 44.98 0.28 CO ?

PDH_19N 60.90 62.05 1.15 CO S700PDH02 5.40 7.72 2.32 CO S200PDH02 13.36 14.30 0.94 CO S300PDH02 24.56 25.60 1.04 CO S400PDH03 44.70 46.46 1.76 CO S500PDH04 47.74 48.32 0.58 CO S500PDH07 6.24 6.98 0.74 CO S400PDH09 11.84 14.02 2.18 CO S100PDH09 20.54 22.14 1.60 CO S200PDH09 22.48 23.02 0.54 CO S200PDH10 70.92 71.68 0.76 CO S600PDH11 0.40 3.00 2.60 CO S600LPDH11 63.20 63.44 0.24 CO S700UPDH12 14.00 15.72 1.72 CO S100PDH12 22.04 23.76 1.72 CO S200PDH12 29.50 30.48 0.98 CO S300PDH12 39.26 40.16 0.90 CO S400PDH14 4.20 5.26 1.06 CO S400PDH15 5.84 6.90 1.06 CO S300PDH15 16.94 18.00 1.06 CO S400PDH16 46.12 47.76 1.64 CO S500PDH17 53.40 53.62 0.22 CO S600UPDH17 64.74 65.02 0.28 CO S600LPDH17 65.30 65.82 0.52 CO S600LPDH19 6.66 7.86 1.20 CO S700PDH19 8.46 8.66 0.20 CO S700

PDH19_Q 7.70 9.16 1.46 CO S700 PDH 19.1(1-5) 2 14.44 9.57 6.45 42.40 41.59 1.90 6463 6117PDH19_Q 9.84 10.06 0.22 CO S700 PDH 19.2(1-5)

PDH24 4.98 6.60 1.62 CO S100PDH24 14.50 15.36 0.86 CO S200PDH24 25.58 26.30 0.72 CO S300PDH24 38.30 38.74 0.44 CO S400PDH27 5.26 5.72 0.46 CO S200PDH27 6.10 6.56 0.46 CO S200PDH27 14.70 15.40 0.70 CO S300PDH27 25.70 26.54 0.84 CO S400PDH29 4.18 4.64 0.46 CO S200PDH29 5.02 5.48 0.46 CO S200PDH29 13.70 14.38 0.68 CO S300PDH29 23.76 24.76 1.00 CO S400PDH30 6.90 7.86 0.96 CO S20PDH30 20.06 20.46 0.40 CO S30PDH30 34.76 35.06 0.30 CO S40PDH30 44.08 44.60 0.52 CO S50PDH30 60.22 61.10 0.88 CO S100PDH30 61.30 61.74 0.44 CO S100PDH30 68.30 69.12 0.82 CO S200PDH30 69.72 70.64 0.92 CO S200PDH30 72.72 73.50 0.78 CO S300PDH30 81.80 82.84 1.04 CO S400PDH31 11.60 12.00 0.40 CO S30PDH31 27.62 27.62 0.00 CO S40PDH31 36.72 37.00 0.28 CO S50PDH31 52.86 54.52 1.66 CO S100PDH31 62.04 63.64 1.60 CO S200PDH31 66.26 67.08 0.82 CO S300PDH31 76.22 76.80 0.58 CO S400PDH32 13.66 14.34 0.68 CO S20PDH32 31.36 31.36 0.00 CO S30PDH32 45.88 46.18 0.30 CO S40PDH32 54.84 54.84 0.00 CO S50PDH32 70.28 71.86 1.58 CO S100PDH32 77.06 77.92 0.86 CO S200PDH32 78.02 78.82 0.80 CO S200PDH32 86.74 87.34 0.60 CO S300PDH33 0.52 1.06 0.54 CO S200PDH33 11.22 12.10 0.88 CO S300PDH36 75.92 76.60 0.68 CO S550PDH38 19.10 19.40 0.30 CO S500PDH38 34.50 35.10 0.60 CO S550PDH38 61.54 62.34 0.80 CO S600L

PDH38_G 63.64 63.98 0.34 CO ?PDH39 18.58 19.38 0.80 CO S500PDH39 60.86 61.32 0.46 CO S600UPDH39 69.90 70.22 0.32 CO S600LPDH39 70.46 70.84 0.38 CO S600L

PDH44A 73.72 75.74 2.02 CO S700PDH44A 76.44 77.96 1.52 CO S700PDH45 36.10 36.60 0.50 CO ?PDH47 3.02 3.38 0.36 CO ?PDH47 10.26 11.82 1.56 CO S500PDH48 12.36 13.34 0.98 CO S100PDH48 13.66 14.38 0.72 CO S100PDH48 20.48 22.40 1.92 CO S200PDH48 30.30 31.18 0.88 CO S300PDH48 41.10 41.72 0.62 CO S400PDH49 8.40 8.86 0.46 CO S30PDH49 24.66 24.66 0.00 CO S40PDH49 31.90 31.91 0.01 CO S50PDH49 48.06 49.24 1.18 CO S100

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

PDH49 49.50 50.02 0.52 CO S100PDH49 56.10 57.42 1.32 CO S200PDH49 57.76 58.44 0.68 CO S200PDH49 63.16 64.08 0.92 CO S300PDH51 15.80 16.20 0.40 CO S40PDH51 24.50 25.20 0.70 CO S50PDH51 40.20 42.40 2.20 CO S100PDH51 49.00 51.00 2.00 CO S200PDH51 53.50 54.50 1.00 CO S300PDH51 63.40 64.00 0.60 CO S400PDH52 30.90 31.30 0.40 CO ?PDH52 33.36 34.86 1.50 CO S500PDH54 7.82 8.32 0.50 CO S30PDH54 23.74 24.00 0.26 CO S40PDH54 32.14 32.68 0.54 CO S50PDH54 48.88 50.74 1.86 CO S100PDH54 56.42 57.28 0.86 CO S200PDH54 57.72 58.48 0.76 CO S200

PDH55A 43.20 44.20 1.00 CO ?PDH55A 44.96 47.02 2.06 CO S500PDH56 6.90 7.16 0.26 CO S50PDH56 24.44 25.00 0.56 CO S100PDH56 25.34 26.32 0.98 CO S100PDH56 31.80 33.88 2.08 CO S200PDH56 40.74 42.00 1.26 CO S300PDH56 51.38 52.32 0.94 CO S400PDH57 14.74 16.38 1.64 CO S100PDH57 22.36 23.50 1.14 CO S200PDH57 23.76 24.68 0.92 CO S200PDH57 31.64 32.44 0.80 CO S300PDH57 42.00 42.72 0.72 CO S400PDH58 11.02 11.94 0.92 CO S30PDH58 23.54 24.36 0.82 CO S40PDH58 33.84 33.84 0.00 CO S50PDH58 49.58 51.60 2.02 CO S100PDH58 57.16 58.34 1.18 CO S200PDH58 58.50 59.32 0.82 CO S200PDH64 12.82 13.92 1.10 CO S20PDH64 29.28 30.16 0.88 CO S30PDH64 40.86 41.86 1.00 CO S40PDH64 53.44 53.44 0.00 CO S50PDH64 66.58 68.60 2.02 CO S100PDH67 1.14 2.40 1.26 CO S300PDH67 12.64 14.10 1.46 CO S400

RTKSW0011 25.25 25.50 0.25 CO S600URTKSW0011 32.45 32.90 0.45 CO S600LRTKSW0011 33.40 33.70 0.30 CO S600LRTKSW0011 99.00 99.90 0.90 CO S700URTKSW0011 109.10 109.40 0.30 CO S700LRTKSW0011 132.50 133.50 1.00 CO S800?RTKSW0011 147.30 148.40 1.10 CO S800RTKSW0011 161.30 161.50 0.20 CO S800?RTKSW0011 161.70 162.30 0.60 CO S800?RTKSW0011 194.60 195.88 1.28 CO S850RTKSW0012 9.35 10.25 0.90 CO S500RTKSW0012 30.40 30.65 0.25 CO ?RTKSW0012 61.15 61.80 0.65 CO S550RTKSW0012 88.25 88.85 0.60 CO S600URTKSW0012 89.10 89.30 0.20 CO S600URTKSW0012 95.55 95.85 0.30 CO S600LRTKSW0012 102.90 103.20 0.30 CO ?RTKSW0012 103.45 103.65 0.20 CO ?RTKSW0012 115.45 115.80 0.35 CO ?RTKSW0012 141.20 141.55 0.35 CO ?RTKSW0012 156.20 156.50 0.30 CO S700URTKSW0012 159.05 159.50 0.45 CO S700LRTKSW0013 31.55 31.90 0.35 CO S50RTKSW0013 54.25 54.85 0.60 CO S100RTKSW0013 65.00 65.55 0.55 CO S200RTKSW0013 84.80 85.20 0.40 CO S300RTKSW0013 110.90 111.10 0.20 CORTKSW0013 122.55 123.40 0.85 CO S500RTKSW0013 168.65 169.50 0.85 CO S550RTKSW0013 202.00 203.20 1.20 CO S600URTKSW0013 206.60 207.45 0.85 CO S600LRTKSW0013 252.45 253.35 0.90 CO S700URTKSW0013 262.60 263.40 0.80 CO S700LRTKSW0014 1.20 1.90 0.70 CO S500RTKSW0014 29.45 30.55 1.10 CO S550RTKSW0014 30.65 31.00 0.35 CO S550RTKSW0014 42.45 42.80 0.35 CO ?RTKSW0014 42.90 43.45 0.55 CO ?RTKSW0014 54.90 55.20 0.30 CO ?RTKSW0014 84.50 84.85 0.35 CO S600URTKSW0014 95.20 95.85 0.65 CO S600LRTKSW0014 96.00 96.20 0.20 CO S600LRTKSW0014 161.65 162.50 0.85 CO S700URTKSW0015 31.50 31.80 0.30 CO S40RTKSW0015 67.40 67.70 0.30 CO S100RTKSW0015 109.55 110.15 0.60 CO S300RTKSW0015 129.50 130.30 0.80 CO S400RTKSW0015 163.60 163.90 0.30 CO S500RTKSW0015 190.05 190.35 0.30 CO S550RTKSW0015 200.20 200.50 0.30 CO ?RTKSW0015 224.15 224.70 0.55 CO S600URTKSW0015 244.80 245.50 0.70 CO S600LRTKSW0015 274.90 275.85 0.95 CO S700URTKSW0016 19.60 19.80 0.20 CO S600URTKSW0016 26.80 27.25 0.45 CO S600LRTKSW0016 94.05 94.60 0.55 CO S700URTKSW0016 136.30 136.95 0.65 CO S700LRTKSW0016 137.50 138.70 1.20 CO S700LRTKSW0016 182.40 183.25 0.85 CO S800RTKSW0017 38.20 39.35 1.15 CO S700URTKSW0017 44.80 45.55 0.75 CO S700LRTKSW0017 152.90 152.91 0.01 CORTKSW0017 164.80 165.05 0.25 CO S850RTKSW0017 165.40 165.80 0.40 CO S850RTKSW0017 184.60 185.20 0.60 CO S900RTKSW0018 49.15 49.45 0.30 CO S800RTKSW0018 64.40 64.70 0.30 CO S850RTKSW0018 64.90 65.50 0.60 CO S850RTKSW0018 85.80 86.90 1.10 CO S900RTKSW0018 127.75 128.80 1.05 CO S1000RTKSW0018 129.00 129.20 0.20 CO S1000RTKSW0018 138.95 139.15 0.20 CO ?RTKSW0018 144.70 145.00 0.30 CO ?RTKSW0018 145.30 145.60 0.30 CO ?RTKSW0018 155.90 156.30 0.40 CO S1100RTKSW0018 156.80 157.40 0.60 CO S1100RTKSW0019 3.35 3.70 0.35 CO S40RTKSW0019 24.50 25.70 1.20 CO S100RTKSW0019 31.35 31.85 0.50 CO S200RTKSW0019 58.60 59.05 0.45 CO S400RTKSW0019 94.40 94.55 0.15 CO S500RTKSW0019 135.40 136.00 0.60 CO S550RTKSW0019 163.85 164.65 0.80 CO S600URTKSW0019 173.05 173.80 0.75 CO S600LRTKSW0019 219.55 220.60 1.05 CO S700URTKSW0019 227.75 228.45 0.70 CO S700LRTKSW0019 291.40 291.85 0.45 CO S800RTKSW0020 92.65 92.75 0.10 CO ?RTKSW0020 93.15 93.45 0.30 CO S850RTKSW0020 103.65 104.45 0.80 CO S900RTKSW0020 151.55 152.40 0.85 CO S1000RTKSW0020 171.75 172.10 0.35 CO ?RTKSW0020 175.80 176.25 0.45 CO S1100RTKSW0021 8.35 8.65 0.30 CO S20RTKSW0021 21.60 21.80 0.20 CO S30RTKSW0021 52.10 52.65 0.55 CO S50RTKSW0021 76.70 77.90 1.20 CO S100RTKSW0021 84.25 84.60 0.35 CO S200RTKSW0021 92.30 92.55 0.25 CO S300RTKSW0021 93.60 93.90 0.30 CO S300RTKSW0021 105.00 105.30 0.30 CO S400RTKSW0021 139.45 140.00 0.55 CO S500RTKSW0021 159.75 160.45 0.70 CO S550RTKSW0021 180.05 180.60 0.55 CO ?RTKSW0021 208.60 209.10 0.50 CO S600URTKSW0021 217.60 218.30 0.70 CO S600LRTKSW0021 263.25 264.05 0.80 CO S700URTKSW0021 270.95 271.55 0.60 CO S700LRTKSW0022 1.60 2.20 0.60 CO S600LRTKSW0022 47.20 48.40 1.20 CO S700URTKSW0022 59.25 59.65 0.40 CO S700LRTKSW0022 59.85 60.30 0.45 CO S700LRTKSW0022 140.80 141.00 0.20 CO ?RTKSW0022 173.30 173.50 0.20 CO S800RTKSW0022 173.75 174.25 0.50 CO S800RTKSW0022 183.40 184.05 0.65 CO S850RTKSW0022 188.70 189.40 0.70 CO S900RTKSW0023 48.30 48.85 0.55 CO S550RTKSW0023 87.70 88.30 0.60 CO S600URTKSW0023 88.70 89.70 1.00 CO S600L

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

RTKSW0023 124.00 125.00 1.00 CO S700URTKSW0023 138.50 138.75 0.25 CO S700LRTKSW0023 139.15 139.50 0.35 CO S700LRTKSW0024 26.70 27.60 0.90 CO S100RTKSW0024 34.55 34.75 0.20 CO S200RTKSW0024 40.25 40.55 0.30 CO S300RTKSW0024 56.35 56.60 0.25 CO S400RTKSW0024 92.35 92.60 0.25 CO S500RTKSW0024 111.00 111.75 0.75 CO S550RTKSW0024 131.15 131.70 0.55 CO ?RTKSW0024 159.40 159.70 0.30 CO S600URTKSW0024 170.05 170.60 0.55 CO S600LRTKSW0024 216.60 217.30 0.70 CO S700URTKSW0024 224.60 225.20 0.60 CO S700LRTKSW0025 70.40 70.78 0.38 CO S500RTKSW0025 70.88 71.65 0.77 CO S500RTKSW0025 92.57 92.83 0.26 CO ?RTKSW0026 19.20 20.17 0.97 CO S100RTKSW0026 105.20 106.61 1.41 CO S500RTKSW0026 106.70 106.9 0.20 CO S500RTKSW0035 24.80 25.20 0.40 CO S400RTKSW0035 56.10 57.20 1.10 CO S500RTKSW0035 109.40 110.00 0.60 CO S550RTKSW0035 132.45 133.60 1.15 CO S600URTKSW0037 1.25 2.30 1.05 CO S100RTKSW0037 8.70 10.60 1.90 CO S200RTKSW0037 18.90 19.65 0.75 CO S300RTKSW0037 28.15 28.80 0.65 CO S400RTKSW0037 102.05 103.00 0.95 CO S550RTKSW0037 153.00 153.50 0.50 CO S600URTKSW0037 176.05 176.95 0.90 CO S600LRTKSW0040 5.20 6.00 0.80 CO S400RTKSW0040 76.20 77.20 1.00 CO S500RTKSW0040 131.20 132.00 0.80 CO S550RTKSW0040 155.60 157.00 1.40 CO S600URTKSW0041 0.40 0.90 0.50 CO S50RTKSW0041 4.20 4.40 0.20 CORTKSW0041 14.70 16.25 1.55 CO S100RTKSW0041 23.00 23.80 0.80 CO S200RTKSW0041 24.05 24.90 0.85 CO S200RTKSW0041 30.60 31.60 1.00 CO S300RTKSW0041 40.90 41.40 0.50 CO S400RTKSW0041 77.80 78.20 0.40 CO ?RTKSW0041 83.10 83.90 0.80 CO S500RTKSW0041 92.80 93.00 0.20 CORTKSW0041 100.00 100.20 0.20 CORTKSW0041 111.40 112.20 0.80 CO ?RTKSW0041 131.60 131.80 0.20 CO S550RTKSW0041 160.00 160.60 0.60 CO ?RTKSW0041 173.00 173.40 0.40 CO S600URTKSW0041 183.40 184.00 0.60 CO S600LRTKSW0041 184.30 184.50 0.20 CO S600LRTKSW0041 190.00 190.20 0.20 CO ?RTKSW0042 68.45 68.85 0.40 CO S1000RTKSW0042 81.95 82.05 0.10 CO ?RTKSW0042 126.80 127.30 0.50 CO S1100RTKSW0042 168.85 169.30 0.45 CO S1200RTKSW0042 169.35 169.90 0.55 CO S1200

SE_07 18.90 19.90 1.00 CO S300SE_07 20.10 20.40 0.30 CO S300

SE_07N 10.30 12.10 1.80 CO S200SE_07N 18.00 18.80 0.80 CO S300SE_07N 27.70 28.80 1.10 CO S400SE_08C 6.04 9.06 3.02 CO S200SE_08C 19.38 20.10 0.72 CO S300

SE_08CX 5.92 9.30 3.38 CO S200SE_12C 0.50 2.30 1.80 CO S200SE_12C 2.60 3.80 1.20 CO S200

SE_12CX 3.90 4.40 0.50 CO S200SE_12CX 4.60 5.60 1.00 CO S200SE_12CX 5.80 6.10 0.30 CO S200SE_12CX 6.65 7.80 1.15 CO S200SE_13N 13.68 15.40 1.72 CO S100SE_13N 21.44 23.40 1.96 CO S200

SE_13NR 13.40 15.30 1.90 CO S100SE_13NR 21.30 23.30 2.00 CO S200SE_13NR 28.60 29.80 1.20 CO S300SE_13NR 37.56 38.26 0.70 CO S400

SE_15 30.82 32.70 1.88 CO S300SE_15 33.40 33.80 0.40 CO S300

SE_15N 7.80 9.80 2.00 CO S100SE_15N 14.90 17.20 2.30 CO S200SE_15N 24.60 25.40 0.80 CO S300SE_15N 33.52 34.50 0.98 CO S400SE_18N 18.15 19.30 1.15 CO S400SE_19N 60.90 62.05 1.15 CO ?SE_20N 3.90 6.30 2.40 CO S600SE_21 38.04 39.82 1.78 CO S600SE_22 68.90 69.40 0.50 CO S600SE_23 62.50 63.50 1.00 CO ?SE_24 43.15 44.25 1.10 CO ?SE_25 47.10 48.00 0.90 CO S700SE_26 14.75 15.40 0.65 CO S700SE_26 15.55 18.90 3.35 CO S700

SE_27CX 46.15 46.90 0.75 CO S700SE_29C 42.35 43.50 1.15 CO ?

SE_29CX 44.10 45.10 1.00 CO S600SE_30C 63.30 64.40 1.10 CO S700SE01_IF 13.48 15.20 1.72 CO S100SE01_IF 21.16 21.84 0.68 CO S200SE01_IF 22.00 22.96 0.96 CO S200SE01_IF 28.70 29.56 0.86 CO S300SE02_IF 7.26 8.84 1.58 CO S100SE02_IF 14.64 15.04 0.40 CO S200SE02_IF 15.16 16.32 1.16 CO S200SE02_IF 24.10 24.80 0.70 CO S300SE03_IF 19.32 21.76 2.44 CO S200SE03R 18.60 20.40 1.80 CO S200SE03R 33.30 34.40 1.10 CO S300

SE04_IF 5.02 6.60 1.58 CO S100SE04_IF 12.96 13.68 0.72 CO S200SE04_IF 13.88 14.80 0.92 CO S200SE04_IF 21.16 21.72 0.56 CO S300SE04_IF 30.20 30.80 0.60 CO S400SE05R 15.50 18.10 2.60 CO S200SE05R 26.80 27.80 1.00 CO S300SE05R 36.00 36.60 0.60 CO S400

SMG003 4.80 5.10 0.30 CO S50 SMG003/1(1-3) 0.2 17.21 9.11 25.83 37.48 27.59 0.65 4668 4227SMG003 21.20 23.00 1.80 CO S100 SMG003/2(1-3) 1.65 22.05 13.57 5.27 38.64 42.51 2.92 5840 5267 1.35SMG003 30.20 32.00 1.80 CO S200 SMG003/3(1-3) 0.7 22.16 11.93 6.32 37.60 44.16 3.79 5870 5188SMG003 34.00 34.60 0.60 CO S300SMG003 43.10 43.70 0.60 CO S400TG001 23.50 24.18 0.68 CO S600

TG0012R 2.58 3.60 1.02 CO ?TG0025R 4.60 5.40 0.80 CO S500TG0028 30.90 31.20 0.30 CO ?TG003 24.25 24.62 0.37 CO S700TG0030 29.20 30.60 1.40 CO S600 TG30/(1-3) 0.3 16.20 7.75 5.47 45.85 40.93 2.59 6715 6102TG004 22.35 23.55 1.20 CO S700TG005 17.28 18.78 1.50 CO S700TG006 1.20 10.50 9.30 CO S600TG006 41.80 42.60 0.80 CO S700TG009 45.24 46.88 1.64 CO S700

TH01AR7C 15.05 16.50 1.45 CO S100TH01AR7C 22.60 23.90 1.30 CO S200TH01AR7C 30.45 31.20 0.75 CO S300TH01AR7C 39.95 40.50 0.55 CO S400

TH01R6 15.15 16.80 1.65 CO S100TH01R6 22.60 23.30 0.70 CO S200TH01R6 23.60 24.25 0.65 CO S200TH01R6 32.95 34.00 1.05 CO S300TH01R6 42.30 43.05 0.75 CO S400

TH01R6Y 14.60 16.80 2.20 CO S200TH01R6Y 19.50 20.30 0.80 CO S300TH01R6Y 30.60 31.30 0.70 CO S400TH01R7 23.55 23.80 0.25 CO S700UTH01R7 49.90 51.50 1.60 CO S700L

TH01R7X 47.20 48.00 0.80 CO S500TH01R7Y 8.65 9.55 0.90 CO S400TH02R6 6.55 6.90 0.35 CO S30TH02R6 19.35 19.75 0.40 CO S40TH02R6 46.15 47.55 1.40 CO S100TH02R6 53.30 54.10 0.80 CO S200TH02R6 54.45 55.05 0.60 CO S200TH02R6 62.25 63.10 0.85 CO S300TH02R6 72.40 72.95 0.55 CO S400

TH02R6X 9.15 9.70 0.55 CO S30TH02R6X 25.15 25.40 0.25 CO S40TH02R6X 38.25 38.65 0.40 CO S50TH02R6X 51.90 53.45 1.55 CO S100TH02R6X 60.30 62.40 2.10 CO S200TH02R6X 66.40 67.40 1.00 CO S300TH02R6X 76.70 78.10 1.40 CO S400TH02R6Y 8.65 9.00 0.35 CO S50

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

TH02R6Y 24.70 26.60 1.90 CO S100TH02R6Y 33.30 35.30 2.00 CO S200TH02R6Y 37.40 38.30 0.90 CO S300TH02R6Y 47.10 47.70 0.60 CO S400TH02R7 4.75 5.15 0.40 CO S50TH02R7 19.00 21.00 2.00 CO S100TH02R7 26.30 28.20 1.90 CO S200TH02R7 34.00 34.70 0.70 CO S300TH02R7 44.00 44.70 0.70 CO S400

TH03R6Y 6.50 6.75 0.25 CO S30TH03R6Y 21.05 21.40 0.35 CO S40TH03R6Y 30.20 30.80 0.60 CO S50TH03R6Y 46.20 48.10 1.90 CO S100TH03R6Y 54.80 56.80 2.00 CO S200TH03R6Y 59.20 60.00 0.80 CO S300TH03R6Y 69.00 69.90 0.90 CO S400TH03R7 14.00 14.20 0.20 CO S40TH03R7 22.70 23.30 0.60 CO S50TH03R7 37.30 39.30 2.00 CO S100TH03R7 44.50 46.30 1.80 CO S200TH03R7 53.20 54.40 1.20 CO S300TH03R7 62.00 62.90 0.90 CO S400

TH03R7X 12.25 14.15 1.90 CO S100TH03R7X 21.05 21.65 0.60 CO S200TH03R7X 21.85 22.85 1.00 CO S200TH03R7X 29.20 30.15 0.95 CO S300TH03R7X 39.85 40.65 0.80 CO S400TH04R6X 10.95 11.50 0.55 CO S50TH04R6X 24.70 27.40 2.70 CO S100TH04R6X 38.10 39.30 1.20 CO S200TH04R6X 42.40 42.60 0.20 CO S300TH04R6X 51.65 52.25 0.60 CO S400TH04R6Y 6.65 7.00 0.35 CO S30TH04R6Y 22.30 22.60 0.30 CO S40TH04R6Y 31.20 31.80 0.60 CO S50TH04R6Y 47.20 49.00 1.80 CO S100TH04R6Y 55.70 57.80 2.10 CO S200TH04R6Y 60.15 60.75 0.60 CO S300TH04R7 5.65 6.05 0.40 CO S30TH04R7 20.85 21.10 0.25 CO S40TH04R7 29.00 29.50 0.50 CO S50TH04R7 44.95 46.15 1.20 CO S100TH04R7 46.40 46.85 0.45 CO S100TH04R7 52.20 54.20 2.00 CO S200TH04R7 59.50 60.30 0.80 CO S300

TH04R7X 2.85 2.95 0.10 CO S40TH04R7X 11.40 11.70 0.30 CO S50TH04R7X 28.70 30.70 2.00 CO S100TH04R7X 37.00 39.00 2.00 CO S200TH04R7X 45.50 46.30 0.80 CO S300TH04R7X 56.60 57.30 0.70 CO S400TH04R7Y 4.65 5.35 0.70 CO S300TH04R7Y 16.10 17.10 1.00 CO S400TH05R6Y 7.50 7.90 0.40 CO S30TH05R6Y 24.80 24.85 0.05 CO S40TH05R6Y 33.35 33.90 0.55 CO S50TH05R6Y 49.00 51.00 2.00 CO S100TH05R6Y 57.45 59.60 2.15 CO S200TH05R6Y 62.55 63.25 0.70 CO S300TH05R6Y 72.30 73.10 0.80 CO S400TH05R7 3.80 4.40 0.60 CO S50TH05R7 23.10 23.85 0.75 CO S100TH05R7 24.15 25.15 1.00 CO S100TH05R7 31.05 31.75 0.70 CO S200TH05R7 32.10 32.70 0.60 CO S200TH05R7 38.70 39.50 0.80 CO S300TH05R7 48.20 49.00 0.80 CO S400

TH05R7X 8.95 9.20 0.25 CO S50TH05R7X 26.00 28.00 2.00 CO S100TH05R7X 34.30 36.15 1.85 CO S200TH05R7X 43.30 44.20 0.90 CO S300TH05R7X 53.30 54.30 1.00 CO S400

TH06AR6C 8.65 9.15 0.50 CO S30TH06AR6C 18.80 19.15 0.35 CO S40TH06AR6C 32.20 32.70 0.50 CO S50TH06AR6C 43.80 45.00 1.20 CO S100TH06AR6C 50.80 52.55 1.75 CO S200TH06AR6C 57.95 59.05 1.10 CO S300TH06R6Y 13.50 13.80 0.30 CO S40TH06R6Y 22.80 23.20 0.40 CO S50TH06R6Y 39.20 41.20 2.00 CO S100TH06R6Y 47.60 49.80 2.20 CO S200TH06R6Y 53.30 54.10 0.80 CO S300TH06R6Y 62.85 64.30 1.45 CO S400TH06R7 8.20 8.50 0.30 CO S600UTH06R7 14.30 15.30 1.00 CO S600L

TH06R7X 3.70 3.90 0.20 CO S50TH06R7X 22.10 23.90 1.80 CO S100TH06R7X 29.40 31.30 1.90 CO S200TH06R7X 38.70 39.80 1.10 CO S300TH06R7X 49.40 50.60 1.20 CO S400TH07R7 23.30 24.60 1.30 CO S700UTH07R7 24.80 25.40 0.60 CO S700L

TH08R7X 18.00 18.60 0.60 CO S500TH08R7X 44.80 46.10 1.30 CO S550TH10R7X 67.10 68.00 0.90 CO S550TH2AR7X 1.90 4.00 2.10 CO S100TH2AR7X 11.90 13.80 1.90 CO S200TH2AR7X 20.10 20.85 0.75 CO S300TH2AR7X 30.40 31.20 0.80 CO S400TH6AR6X 5.20 5.60 0.40 CO S40TH6AR6X 15.90 16.20 0.30 CO S50TH6AR6X 34.00 36.00 2.00 CO S100TH6AR6X 42.85 45.10 2.25 CO S200TH6AR6X 48.70 49.90 1.20 CO S300THO1R6X 4.90 5.45 0.55 CO S20THO1R6X 23.90 24.15 0.25 CO S30THO1R6X 38.40 38.70 0.30 CO S40THO1R6X 49.80 50.40 0.60 CO S50THO1R6X 64.40 66.15 1.75 CO S100THO1R6X 73.80 74.80 1.00 CO S200THO1R6X 75.40 76.20 0.80 CO S200THO5R6X 16.30 16.70 0.40 CO S30THO5R6X 31.85 32.20 0.35 CO S40THO5R6X 42.40 42.41 0.01 CO S50THO5R6X 57.20 58.90 1.70 CO S100THO5R6X 64.30 66.40 2.10 CO S200THO5R6X 73.20 73.80 0.60 CO S300THO6R6X 7.05 7.50 0.45 CO S30THO6R6X 20.90 21.35 0.45 CO S40THO6R6X 30.05 30.50 0.45 CO S50THO6R6X 46.30 48.40 2.10 CO S100THO6R6X 54.10 56.10 2.00 CO S200THO6R6X 59.30 59.90 0.60 CO S300THO7R6X 15.60 17.60 2.00 CO S100THO7R6X 25.20 27.40 2.20 CO S200THO7R6X 31.60 32.40 0.80 CO S300THO7R6X 41.50 42.25 0.75 CO S400TKS_01R 0.00 1.75 1.75 CO ?TKS_01R 7.80 8.60 0.80 CO 300TKS_01R 17.85 18.75 0.90 CO 400

TKS_01R1 0.05 1.75 1.70 CO 200TKS_01R1 7.85 8.60 0.75 CO 300TKS_01R1 17.85 18.75 0.90 CO 400TKS_02R 1.62 3.34 1.72 CO S200?TKS_02R 10.00 10.64 0.64 CO S300?TKS_02R 19.60 20.56 0.96 CO S400?TKS_03R 6.30 7.25 0.95 COTKS_03R 16.18 17.05 0.87 CO

TKS_03R1 6.20 7.05 0.85 COTKS_03R1 16.12 17.00 0.88 CO

TKS_04 0.00 1.76 1.76 CO 100TKS_04 7.72 9.66 1.94 CO 200TKS_04 16.60 17.50 0.90 CO 300TKS_04 26.24 26.84 0.60 CO 400

TKS_04R 0.00 1.76 1.76 CO 100TKS_04R 7.84 9.66 1.82 CO 200TKS_04R 16.40 17.38 0.98 CO 300TKS_04R 26.00 26.84 0.84 CO 400TKS_05 0.00 1.70 1.70 CO 100TKS_05 6.55 8.45 1.90 CO 200TKS_05 16.50 17.25 0.75 CO 300TKS_05 26.05 26.65 0.60 CO 400

TKS_05R 0.40 1.50 1.10 CO 100TKS_05R 6.45 8.35 1.90 CO 200TKS_05R 16.35 17.15 0.80 CO 300TKS_05R 25.85 26.65 0.80 CO 400

TKS_05R1 0.30 1.65 1.35 CO 100TKS_05R1 6.48 8.49 2.01 CO 200TKS_05R1 16.30 17.30 1.00 CO 300TKS_05R1 25.85 26.50 0.65 CO 400

TKS_06 0.40 2.20 1.80 CO 100TKS_06 7.30 9.40 2.10 CO 200TKS_06 16.10 17.20 1.10 CO 300

PT TRISULA KENCANA SAKTI PT DANMAR EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

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TKS COAL PROJECT DRILL DATA SUMMARY JULY, 2014

Hole ID Depth From Depth To Thickness Lithology Seam Sample IDthickness ofsample

TM IM ASH FC VM TS CV (adb) CV (ar) RD HGI

Coal Interpretation from Geophysical logs Coal Analysis

TKS_06 25.60 26.80 1.20 CO 400TKS_06R 0.00 2.00 2.00 CO 100TKS_06R 7.10 9.25 2.15 CO 200TKS_06R 16.20 17.27 1.07 CO 300TKS_06R 25.80 26.80 1.00 CO 400

TKS_06R1 0.00 2.00 2.00 CO 100TKS_06R1 7.05 9.05 2.00 CO 200TKS_06R1 10.25 15.87 5.62 COTKS_06R1 16.00 17.10 1.10 CO 300TKS_06R1 25.65 26.35 0.70 CO 400TKS01_IF 10.58 11.22 0.64 CO S400TKS02_IF 7.14 8.90 1.76 CO S200TKS02_IF 16.70 17.82 1.12 CO S300TKS02_IF 28.36 29.22 0.86 CO S400TKS03_IF 12.06 13.96 1.90 CO S100TKS03_IF 21.88 24.10 2.22 CO S200TKS04_IF 7.28 8.28 1.00 CO S300TKS04_IF 19.82 21.14 1.32 CO S400TKS05_IF 18.24 20.04 1.80 CO S100TKS05_IF 26.66 28.72 2.06 CO S200TKS06_IF 5.44 7.48 2.04 CO S100TKS06_IF 13.90 15.86 1.96 CO S200TKS06_IF 25.30 26.46 1.16 CO S300TKS08_IF 9.96 10.16 0.20 CO S40TKS08_IF 19.82 20.08 0.26 CO S50TKS08_IF 36.38 38.08 1.70 CO S100TKS08_IF 45.38 46.24 0.86 CO S200TKS08_IF 46.44 47.12 0.68 CO S200TKS08_IF 49.38 50.08 0.70 CO S300TKSE_001 15.75 16.40 0.65 CO S850TKSE_001 27.60 28.4 0.80 CO S900TKSE_001 28.46 28.56 0.10 CO S900TKSE_001 88.60 89.5 0.90 CO S1000TKSE_003 94.60 95.50 0.90 CO S700UTKSE_004 19.42 20.75 1.33 CO S700UTKSE_004 31.25 32.00 0.75 CO S700LTKSE-006 10.60 10.95 0.35 CO S600UTKSE-006 11.17 11.60 0.43 CO S600LTKSE-006 93.60 94.40 0.80 CO S700UTKSE-007 46.70 48.18 1.48 CO S700U

TKSW_1001 64.30 65.20 0.90 CO S1100TKSW_1002 34.00 34.70 0.70 CO S1000TKSW_1002 49.75 49.76 0.01 COTKSW_1003 43.60 44.80 1.20 CO S700UTKSW_1003 47.90 48.50 0.60 CO S700LTKSW_1004 52.70 53.10 0.40 CO S800?TKSW_1004 56.30 56.70 0.40 CO S800TKSW_1004 75.20 75.40 0.20 CO S850TKSW_1004 91.00 91.50 0.50 CO S900TKSW_1005 28.40 28.80 0.40 CO S800?TKSW_1005 31.60 32.10 0.50 CO S800TKSW_1005 52.20 52.40 0.20 CO ?TKSW_1005 67.25 67.60 0.35 CO S850TKSW_1005 86.27 86.60 0.33 CO S900TKSW_1006 44.45 45.10 0.65 CO S850TKSW_1006 56.30 56.70 0.40 CO S900TKSW_1007 64.45 65.55 1.10 CO S1000TKSW_1008 0.45 0.85 0.40 CO S1100TKSW_1008 23.20 23.40 0.20 CO S1200TKSW_1009 3.70 4.00 0.30 CO ?TKSW_1011 79.60 80.10 0.50 CO S800?TKSW_1011 92.10 92.60 0.50 CO S800TKSW_1011 179.10 179.40 0.30 CO S1000TKSW_1011 212.70 213.30 0.60 CO S1100TKSW_1011 272.40 272.90 0.50 CO S1200TKSW_1012 35.30 35.65 0.35 CO S800?TKSW_1012 48.40 48.90 0.50 CO S800TKSW_1012 93.05 93.70 0.65 CO S850TKSW_1013 85.35 85.75 0.40 CO 850TKSW_1013 127.25 127.90 0.65 CO S1000TKSW_1014 52.30 53.20 0.90 CO S700UTKSW_1014 57.25 57.80 0.55 CO S700LTKSW_1015 45.40 46.40 1.00 CO S700UTKSW_1015 50.40 50.80 0.40 CO S700LTKSW_1017 67.75 68.00 0.25 CO S850TKSW_1017 78.40 78.95 0.55 CO S900TKSW_1017 121.80 122.45 0.65 CO S1000TKSW_1017 163.00 163.30 0.30 CO ?TKSW_1017 195.30 195.80 0.50 CO S1100TKSW_1017 251.75 252.20 0.45 CO S1200TKSW_1018 8.50 8.80 0.30 CO S800TKSW_1018 15.60 15.90 0.30 CO S800?TKSW_1018 37.85 38.05 0.20 CO ?TKSW_1018 51.80 52.10 0.30 CO S850TKSW_1018 62.35 62.85 0.50 CO S900TKSW_1019 11.70 12.20 0.50 CO S900TKSW_1019 56.05 56.75 0.70 CO S1000TKSW_1019 66.60 66.75 0.15 CO ?TKSW_1019 67.10 67.40 0.30 CO ?TKSW_1020 1.40 1.65 0.25 CO S900TKSW_1020 44.70 45.40 0.70 CO S1000TKSW_1020 55.70 56.20 0.50 CO ?TKSW_1021 20.20 20.60 0.40 CO S1000TKSW_1021 51.60 52.60 1.00 CO S1100TKSW_1022 54.75 55.15 0.40 CO S1100TKSW_1023 23.55 24.10 0.55 CO S1100TKSW_1023 82.90 83.25 0.35 CO S1200TKSW_1025 54.00 54.60 0.60 CO S700UTKSW_1025 60.00 60.60 0.60 CO S700LTKSW_1026 43.40 44.44 1.04 CO S700UTKSW_1026 50.20 51.10 0.90 CO S700LTKSW_1027 49.50 50.60 1.10 CO S700UTKSW_1027 56.30 56.90 0.60 CO S700LTKSW_1027 138.60 138.85 0.25 CO S850TKSW_1027 153.30 153.60 0.30 CO S900TKSW_1027 213.70 214.55 0.85 CO S1000TKSW_1029 37.50 38.20 0.70 CO S1000TKSW_1030 55.60 56.20 0.60 CO S1200TKSW_1038 81.00 81.50 0.50 CO S1200?TKSW_1039 3.60 4.45 0.85 CO S1100TKSW_1039 15.30 15.70 0.40 CO ?TKSW_1039 66.40 66.65 0.25 CO S1200TKSW_104 22.80 23.00 0.20 CO S1000TKSW_104 60.70 61.30 0.60 CO S1100TKSW_1040 39.30 39.90 0.60 CO S1000TKSW_1040 50.20 50.60 0.40 CO ?TKSW_1040 91.10 91.50 0.40 CO S1100TKSW_1041 39.15 39.75 0.60 CO S1000TKSW_1041 49.65 49.75 0.10 CO ?TKSW_1041 95.70 95.71 0.01 COTKSW_1041 114.45 114.90 0.45 CO S1100TKSW_1041 170.60 170.90 0.30 CO S1200TKSW_1047 40.25 40.80 0.55 CO S1000TKSW_1047 117.20 117.60 0.40 CO S1100TKSW_1047 174.90 175.15 0.25 CO S1200TKSW_107 20.20 20.60 0.40 CO S550TKSW_107 21.40 22.20 0.80 CO S550TKSW_107 44.05 44.60 0.55 CO ?TKSW_107 44.95 45.35 0.40 CO ?TKSW_107 93.30 93.85 0.55 CO S600UTKSW_107 102.20 102.21 0.01 COTKSW_69 19.45 19.85 0.40 CO S850TKSW_69 26.15 26.35 0.20 CO S900TKSW_69 28.65 29.10 0.45 CO S900TKSW_76 46.80 47.80 1.00 CO S700UTKSW_76 51.20 51.85 0.65 CO S700LTKSW_78 14.50 15.35 0.85 CO S700UTKSW_78 19.10 19.80 0.70 CO S700LTKSW_81 43.90 44.00 0.10 COTKSW_81 44.65 45.40 0.75 CO S1000TKSW_86 35.55 36.05 0.50 CO S1000TKSW_86 49.65 49.95 0.30 CO ?TKSW_88 7.90 8.20 0.30 CO ?TKSW_88 39.80 40.35 0.55 CO S600UTKSW_88 42.20 42.80 0.60 CO S600LTKSW_92 20.65 21.55 0.90 CO S1000TKSW_93 7.25 7.55 0.30 CO S800TKSW_93 57.15 57.90 0.75 CO S850TKSW_93 67.10 67.50 0.40 CO S900TKSW_97 59.35 60.30 0.95 CO S700UTKSW_97 63.85 64.70 0.85 CO S700LTKSW_99 17.75 18.45 0.70 CO S1200

PT TRISULA KENCANA SAKTI PT DANMAR EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

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TKSCO

ALPR

OJECT

J

RECO

NCILE

WITH

GEO

PHYSICS

TMIM

ASH

VMFC

TSCV

CVCV

Point

Sample

%Min

Max

Ave

MEA

SURE

DINDICAT

EDINFERR

EDTO

TAL

arar

daf

1S10

810

00.12

0.54

0.29

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

n/a

2S20

423

100

0.15

1.52

0.73

2.1

0.3

0.3

2.7

24.12

16.48

9.21

36.45

37.86

0.56

5370

4879

7234

n/a

n/a

n/a

3S30

728

960.10

1.30

0.48

1.8

0.3

0.1

2.1

20.88

12.98

5.38

45.57

36.08

0.32

6252

5685

7631

461.35

1.31

4S40

944

900.08

1.00

0.48

2.5

0.3

0.5

3.3

23.78

15.00

11.78

35.96

37.25

1.02

5277

4731

7159

n/a

1.45

1.38

5S50

744

880.01

0.70

0.33

0.4

0.0

0.4

19.15

8.75

22.12

43.08

26.04

0.55

5288

4685

7374

721.42

1.36

6S100

168

3092

0.30

2.70

1.59

10.1

1.2

3.2

14.4

21.84

14.57

5.79

38.41

41.24

1.77

5762

5272

7218

541.35

1.31

7S200

183

3593

0.20

3.38

1.80

13.3

1.9

1.7

16.8

23.51

14.78

7.63

36.92

40.66

2.82

5576

5005

7194

541.36

1.31

8S300

171

2994

0.20

2.28

0.86

5.3

0.8

1.3

7.5

21.77

14.00

7.92

39.69

38.17

0.60

5775

5253

7399

521.34

1.30

9S400

137

1693

0.10

1.49

0.75

3.7

1.0

1.2

5.9

19.80

12.08

14.84

39.84

33.51

3.64

5374

4902

7342

661.43

1.38

10S500

412

100

0.15

2.06

0.89

4.3

4.3

20.52

15.05

4.65

39.87

40.44

1.29

5980

5595

7441

661.30

1.28

11S550

321

970.20

1.45

0.68

1.2

1.2

18.94

16.51

6.03

38.20

39.25

0.40

5756

5588

7431

n/a

1.32

1.31

12S600

U36

297

0.14

1.40

0.51

1.8

1.8

15.26

10.53

9.13

42.32

38.01

1.38

6182

5855

7687

n/a

1.39

1.36

13S600

L36

197

0.24

2.60

0.73

2.6

2.6

18.74

13.64

3.43

38.81

44.12

0.37

6193

5827

7468

n/a

1.32

1.30

14S700

U58

598

0.14

1.55

0.84

3.0

1.4

4.4

16.17

11.81

7.14

42.12

38.91

2.40

6159

5854

7600

n/a

1.32

1.30

15S700

L54

798

0.14

1.85

0.74

0.8

1.4

1.6

3.8

18.34

13.02

3.56

39.93

43.48

0.69

6315

5929

7569

n/a

1.32

1.29

16S800

261

100

0.20

1.10

0.49

0.3

0.3

15.11

11.17

3.92

40.72

44.17

1.29

6427

6142

7569

n/a

1.30

1.28

17S850

292

100

0.15

1.28

0.51

0.5

0.5

14.97

11.38

11.58

37.38

39.66

0.49

5868

5630

7612

n/a

1.31

1.29

18S900

294

100

0.15

1.10

0.50

0.7

0.1

0.8

14.30

12.16

5.94

39.31

42.59

1.29

6255

6103

7639

n/a

1.32

1.31

19S100

036

210

00.15

1.25

0.70

1.2

1.3

2.4

13.91

10.50

3.41

42.55

43.54

1.48

6546

6296

7606

n/a

1.36

1.34

20S110

021

210

00.30

1.00

0.62

1.4

1.4

12.39

9.94

3.70

42.28

44.07

2.44

6650

6470

7700

n/a

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EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

556

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TKSCO

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EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

557

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TKSCO

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EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

558

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Gemcom Software InternationalSep 12 2013

Block Model Summarybm_tks_sep2012.mdl

Type Y X ZMinimum Coordinates 9892438 291309 230Maximum Coordinates 9898238 302509 201

User Block Size 100 50 2Min. Block Size 25 12.5 0.375

Rotation 0 0 0Axis Length (m) 5800 11200 431

Total Blocks 5328400Storage Efficiency % 97.76

Attribute Name Type Decimals Backgroundash_adb Real 2 999class_res Character UNDEFcv_adb Real 2 999cv_ar Real 2 999cv_daf Real 2 999fc_adb Real 2 999grade Real 2 0im_adb Real 2 999material Character WASTEmine_rec Real 2 1ore_type Integer 5

ply Character OBrock_type Integer 1seam Character OBsg Real 2 0

tm_ar Real 2 999ts_adb Real 2 999vm_adb Real 2 999

Block Model Summary1/1

APPENDIX 5 – TKS JORC RESOURCE REPORT

559

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Gemcom Software International Oct 09 2012

Block model reportConstraints useda. ABOVE DTM cont_fltr_topoclip1_depth50m.dtm Object ID 1 Trisolation ID 1b. NOT ABOVE DTM cont_fltr_topoclip1_situationpit.dtm Object ID 1 Trisolation ID 1

Keep blocks partially in the constraint : False

class_res seam Volume tonnes tm_ar im_adb ash_adb vm_adb fc_adb ts_adb cv_adb cv_ar cv_daf sgUNDEF OB 2.74E+09 0 0 0 0 0 0 0 0 0 0 0Sub Total 2.74E+09 0 0 0 0 0 0 0 0 0 0 0INF S1100 557227 724395 12.39 9.95 3.71 42.27 44.07 2.46 6649.16 6469 7700 1.3

S1200 185977 247349 11.85 9.25 5.1 41.79 43.86 3.93 6563 6375 7662 1.33S1000 461250 618075 13.87 10.48 3.42 42.56 43.54 1.5 6548.71 6301 7606 1.34S850 164648 212396 14.97 11.39 11.16 37.74 39.71 0.5 5901.86 5663 7612 1.29S700U 412734 536555 16.23 11.86 6.33 42.36 39.42 2.46 6219.56 5911 7600 1.3S700L 527695 680727 18.53 12.97 3.5 39.99 43.54 0.69 6323.01 5919 7569 1.29S600L 1029961 1338949 18.74 13.64 3.43 38.81 44.12 0.37 6193 5827 7468 1.3S600U 627305 853134 15.07 10.51 8.96 42.74 37.79 1.3 6212.4 5896 7687 1.36S500 1262813 1616400 20.53 15.19 4.7 39.74 40.38 1.28 5963.78 5588 7441 1.28S300 135938 176719 21.77 14 7.92 39.69 38.17 0.6 5775 5253 7399 1.3S400 145781 201178 19.8 12.08 14.84 39.84 33.51 3.64 5374 4902 7342 1.38S100 1100859 1442126 20.17 15.1 4.38 38.77 41.86 0.95 5922.38 5569 7218 1.31S900 51563 67547 14.16 12.09 5.9 39.37 42.65 1.33 6265.01 6117 7639 1.31S200 232617 304729 23.56 15.19 7.07 37.05 40.68 2.87 5595.25 5043 7194 1.31S40 318164 439066 23.69 14.51 13.54 35.3 36.65 1.22 5162 4608 7159 1.38S20 204492 269930 24.11 16.5 8.76 36.68 38.06 0.55 5408 4915 7234 1.32S800 79219 101400 15.11 11.17 3.92 40.72 44.17 1.29 6427 6142 7569 1.28S30 43125 56494 21.14 13.22 5.11 45.2 36.48 0.32 6238 5669 7631 1.31S550 390938 512128 18.94 16.51 6.03 38.2 39.25 0.4 5756 5588 7431 1.31

Sub Total 7932305 10399296 18.32 13.33 5.71 39.85 41.12 1.29 6064.19 5715 7462.84 1.31IND S1000 463125 620588 14.18 10.63 3.35 42.47 43.55 1.33 6525.12 6266 7606 1.34

S900 241523 316396 14.65 12.37 5.86 39.33 42.44 1.18 6244.47 6082 7639 1.31S700U 1005117 1306652 16 11.68 9.01 41.39 37.92 2.29 6010.31 5716 7600 1.3S700L 348281 449283 18.34 12.69 4.11 39.58 43.62 0.72 6293.13 5886 7569 1.29S400 114727 158323 19.8 12.08 14.84 39.84 33.51 3.64 5374 4902 7342 1.38S200 507891 665337 23.12 15.67 7.08 36.52 40.71 2.38 5561.36 5070 7194 1.31S300 114727 149145 21.77 14 7.92 39.69 38.17 0.6 5775 5253 7399 1.3S100 378164 495395 22.2 14.8 5.39 38.4 41.4 1.66 5757.89 5258 7218 1.31S40 222070 306457 23.72 14.62 13.14 35.43 36.81 1.19 5187.99 4635 7159 1.38S30 243281 318698 20.98 13.12 5.08 45.52 36.29 0.32 6257.45 5691 7631 1.31S20 255703 337528 24.12 16.49 8.9 36.63 37.99 0.55 5397.05 4904 7234 1.32S50 6914 9403 19.67 10.82 22.81 39.16 27.21 0.58 4948.08 4457 7374 1.36

Sub Total 3901523 5133204 19.02 13.16 7.27 39.8 39.76 1.61 5926.7 5527 7448.25 1.32MEA S700L 296016 381860 18.27 13.71 2.66 40.46 43.17 0.65 6338.01 6003 7569 1.29

S400 1098516 1515952 19.8 12.08 14.84 39.84 33.51 3.64 5374 4902 7342 1.38S200 3339141 4374274 22.89 13.86 6.5 37.79 41.85 2.95 5720.04 5120 7194 1.31S100 3562969 4667489 22.04 13.97 5.58 38.93 41.5 1.69 5804.69 5260 7218 1.31S300 1384922 1800398 21.77 14 7.92 39.69 38.17 0.6 5775 5253 7399 1.3S40 1364648 1883215 23.79 15.11 11.51 36.07 37.31 0.97 5292.45 4751 7159 1.38S30 1307695 1713081 20.85 12.93 5.45 45.59 36.03 0.32 6251.84 5683 7631 1.31S20 1578516 2083641 24.12 16.48 9.32 36.39 37.81 0.56 5361.1 4871 7234 1.32S50 275039 374053 19.09 8.39 21.94 43.85 25.83 0.54 5356.04 4730 7374 1.36

Sub Total 14207461 18793963 22.19 13.98 8.03 38.98 39.01 1.67 5689.56 5147 7283.5 1.32Grand Total 2.77E+09 34326463 20.54 13.66 7.21 39.37 39.76 1.55 5838.52 5373 7362.47 1.32

1/1

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Gemcom Software International Oct 09 2012

Block model reportConstraints useda. ABOVE DTM cont_fltr_topoclip1_depth100m.dtm Object ID 1 Trisolation ID 1b. NOT ABOVE DTM cont_fltr_topoclip1_depth50m.dtm Object ID 1 Trisolation ID 1

Keep blocks partially in the constraint : False

class_res seam Volume tonnes tm_ar im_adb ash_adb vm_adb fc_adb ts_adb cv_adb cv_ar cv_daf sgUNDEF OB 2.74E+09 0 0 0 0 0 0 0 0 0 0 0Sub Total 2.74E+09 0 0 0 0 0 0 0 0 0 0 0INF S1100 508828 661477 12.4 9.93 3.69 42.31 44.06 2.4 6652.64 6470 7700 1.3

S1200 235313 312966 11.85 9.25 5.1 41.79 43.86 3.93 6563 6375 7662 1.33S1000 494883 663143 13.87 10.48 3.42 42.56 43.54 1.5 6548.94 6301 7606 1.34S700L 697734 900077 18.65 12.97 3.43 39.99 43.6 0.69 6328.45 5915 7569 1.29S700U 690820 898066 16.22 11.85 6.42 42.33 39.38 2.45 6212.72 5905 7600 1.3S600L 985898 1281668 18.74 13.64 3.43 38.81 44.12 0.37 6193 5827 7468 1.3S600U 666211 906047 15.05 10.5 8.94 42.79 37.77 1.29 6215.82 5900 7687 1.36S500 2121680 2715750 20.53 15.13 4.67 39.8 40.41 1.28 5970.83 5591 7441 1.28S400 755625 1042763 19.8 12.08 14.84 39.84 33.51 3.64 5374 4902 7342 1.38S900 49805 65244 14.22 12.12 5.89 39.35 42.65 1.3 6264.21 6115 7639 1.31S550 509883 667946 18.94 16.51 6.03 38.2 39.25 0.4 5756 5588 7431 1.31S850 184453 237945 14.97 11.39 11.31 37.61 39.7 0.5 5889.7 5652 7612 1.29S300 896953 1166039 21.77 14 7.92 39.69 38.17 0.6 5775 5253 7399 1.3S100 1309922 1715998 21.26 14.87 5.01 38.63 41.52 1.32 5833.49 5396 7218 1.31S200 1039453 1361684 23.59 15.2 7.05 37.05 40.69 2.87 5595.83 5042 7194 1.31S40 9141 12614 23.69 14.51 13.54 35.3 36.65 1.22 5162 4608 7159 1.38S800 122695 157050 15.11 11.17 3.92 40.72 44.17 1.29 6427 6142 7569 1.28

Sub Total 11279297 14766476 18.98 13.44 6.17 39.84 40.55 1.57 5996.99 5613 7444.91 1.31IND S1000 403594 540816 14.11 10.59 3.37 42.49 43.55 1.37 6530.29 6273 7606 1.34

S700L 739570 954046 18.18 12.96 3.88 39.65 43.51 0.67 6294.1 5917 7569 1.29S700U 1267500 1647750 16.17 11.72 7.95 41.96 38.36 2.35 6101.4 5794 7600 1.3S900 303164 397145 14.47 12.25 5.94 39.3 42.51 1.25 6247.31 6089 7639 1.31S400 581602 802610 19.8 12.08 14.84 39.84 33.51 3.64 5374 4902 7342 1.38S300 485391 631008 21.77 14 7.92 39.69 38.17 0.6 5775 5253 7399 1.3S200 926953 1214309 24.74 15.57 7.9 36.49 40.04 2.72 5479.65 4885 7194 1.31S100 513047 672091 21.76 14.57 6.83 37.87 40.72 2.4 5663.64 5187 7218 1.31S40 469 647 23.69 14.51 13.54 35.3 36.65 1.22 5162 4608 7159 1.38S50 28594 38888 19.7 11.13 23.01 38.45 27.41 0.59 4883 4412 7374 1.36

Sub Total 5249883 6899309 19.19 13.04 7.68 39.69 39.6 2.03 5896.56 5480 7440.05 1.31MEA S700L 354844 457748 18.41 13.63 2.39 40.4 43.58 0.58 6381.31 6028 7569 1.29

S400 1575352 2173985 19.8 12.08 14.84 39.84 33.51 3.64 5374 4902 7342 1.38S300 2724961 3542449 21.77 14 7.92 39.69 38.17 0.6 5775 5253 7399 1.3S200 6805898 8915727 23.67 15 8.28 36.55 40.16 2.78 5514.97 4952 7194 1.31S100 4145039 5430001 22.27 14.86 6.54 37.81 40.77 2.13 5668.55 5175 7218 1.31S40 459844 634584 23.84 15.22 10.68 36.38 37.72 0.94 5353.56 4809 7159 1.38S30 41250 54038 21.08 13.23 5.05 45.45 36.28 0.32 6250.86 5685 7631 1.31S50 3164 4303 20.38 14.68 26.15 29.87 29.3 0.63 4072.91 3801 7374 1.36

Sub Total 16110352 21212836 22.48 14.47 8.39 37.83 39.29 2.23 5598.71 5074 7257.74 1.32Grand Total 2.77E+09 42878620 20.75 13.88 7.51 38.82 39.78 1.97 5783.79 5322 7351.53 1.31

1/1

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tks_res_seam_0030_jul2014APPENDIX 5 – TKS JORC RESOURCE REPORT

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APPENDIX 5 – TKS JORC RESOURCE REPORT

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tks_res_seam_1200_jul2014_01APPENDIX 5 – TKS JORC RESOURCE REPORT

581

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TKS COAL PROJECT COAL PRICE ANALYSIS JANUARY, 2015

75% 80% 85% 90% 95%

Jan-09 56.30 42.23 45.04 47.86 50.67 53.49 Jan-09 50.37 0.895Feb-09 57.99 43.49 46.39 49.29 52.19 55.09 Feb-09 51.88 0.895Mar-09 54.02 40.52 43.22 45.92 48.62 51.32 Mar-09 48.33 0.895Apr-09 46.37 34.78 37.10 39.41 41.73 44.05 Apr-09 41.49 0.895May-09 46.21 34.66 36.97 39.28 41.59 43.90 May-09 41.34 0.895Jun-09 46.87 35.15 37.50 39.84 42.18 44.53 Jun-09 41.93 0.895Jul-09 51.59 38.69 41.27 43.85 46.43 49.01 Jul-09 46.16 0.895Aug-09 51.71 38.78 41.37 43.95 46.54 49.12 Aug-09 46.27 0.895Sep-09 51.05 38.29 40.84 43.39 45.95 48.50 Sep-09 45.67 0.895Oct-09 48.68 36.51 38.94 41.38 43.81 46.25 Oct-09 43.55 0.895Nov-09 50.13 37.60 40.10 42.61 45.12 47.62 Nov-09 44.85 0.895Dec-09 53.64 40.23 42.91 45.59 48.28 50.96 Dec-09 47.99 0.895Jan-10 55.47 41.60 44.38 47.15 49.92 52.70 Jan-10 49.63 0.895Feb-10 62.15 46.61 49.72 52.83 55.94 59.04 Feb-10 55.61 0.895Mar-10 61.36 46.02 49.09 52.16 55.22 58.29 Mar-10 54.90 0.895Apr-10 61.32 45.99 49.06 52.12 55.19 58.25 Apr-10 54.86 0.895May-10 64.81 48.61 51.85 55.09 58.33 61.57 May-10 57.99 0.895Jun-10 68.09 51.07 54.47 57.88 61.28 64.69 Jun-10 60.92 0.895Jul-10 67.72 50.79 54.18 57.56 60.95 64.33 Jul-10 60.59 0.895Aug-10 66.59 49.94 53.27 56.60 59.93 63.26 Aug-10 59.58 0.895Sep-10 63.53 47.65 50.82 54.00 57.18 60.35 Sep-10 56.84 0.895Oct-10 65.20 48.90 52.16 55.42 58.68 61.94 Oct-10 58.33 0.895Nov-10 67.00 50.25 53.60 56.95 60.30 63.65 Nov-10 59.95 0.895Dec-10 72.02 54.02 57.62 61.22 64.82 68.42 Dec-10 64.44 0.895Jan-11 77.74 58.31 62.19 66.08 69.97 73.85 Jan-11 69.55 0.895Feb-11 87.06 65.30 69.65 74.00 78.35 82.71 Feb-11 77.89 0.895Mar-11 84.12 63.09 67.30 71.50 75.71 79.91 Mar-11 79.08 0.940Apr-11 85.94 64.46 68.75 73.05 77.35 81.64 Apr-11 76.89 0.895May-11 83.14 62.36 66.51 70.67 74.83 78.98 May-11 74.39 0.895Jun-11 84.04 63.03 67.23 71.43 75.64 79.84 Jun-11 77.32 0.920Jul-11 83.54 62.66 66.83 71.01 75.19 79.36 Jul-11 76.82 0.920Aug-11 82.88 62.16 66.30 70.45 74.59 78.74 Aug-11 76.16 0.919Sep-11 82.28 61.71 65.82 69.94 74.05 78.17 Sep-11 75.56 0.918Oct-11 84.17 63.13 67.34 71.54 75.75 79.96 Oct-11 77.45 0.920Nov-11 82.53 61.90 66.02 70.15 74.28 78.40 Nov-11 75.81 0.919Dec-11 79.99 59.99 63.99 67.99 71.99 75.99 Dec-11 73.21 0.915Jan-12 77.84 58.38 62.27 66.16 70.06 73.95 Jan-12 71.12 0.914Feb-12 79.30 59.48 63.44 67.41 71.37 75.34 Feb-12 72.58 0.915Mar-12 80.12 60.09 64.10 68.10 72.11 76.11 Mar-12 72.40 0.904Apr-12 75.50 56.63 60.40 64.18 67.95 71.73 Apr-12 67.78 0.898May-12 73.28 54.96 58.62 62.29 65.95 69.62 May-12 65.56 0.895Jun-12 69.80 52.35 55.84 59.33 62.82 66.31 Jun-12 62.08 0.889Jul-12 64.02 48.02 51.22 54.42 57.62 60.82 Jul-12 56.30 0.879Aug-12 62.17 46.63 49.74 52.84 55.95 59.06 Aug-12 54.45 0.876Sep-12 63.16 47.37 50.53 53.69 56.84 60.00 Sep-12 55.44 0.878Oct-12 63.05 47.29 50.44 53.59 56.75 59.90 Oct-12 55.33 0.878Nov-12 60.13 45.10 48.10 51.11 54.12 57.12 Nov-12 52.41 0.872Dec-12 60.33 45.25 48.26 51.28 54.30 57.31 Dec-12 52.61 0.872Jan-13 64.02 48.02 51.22 54.42 57.62 60.82 Jan-13 56.30 0.879Feb-13 64.52 48.39 51.62 54.84 58.07 61.29 Feb-13 56.80 0.880Mar-13 65.63 49.22 52.50 55.79 59.07 62.35 Mar-13 57.91 0.882Apr-13 64.66 48.50 51.73 54.96 58.19 61.43 Apr-13 56.94 0.881May-13 62.60 46.95 50.08 53.21 56.34 59.47 May-13 54.88 0.877Jun-13 62.31 46.73 49.85 52.96 56.08 59.19 Jun-13 54.59 0.876Jul-13 60.29 45.22 48.23 51.25 54.26 57.28 Jul-13 52.57 0.872Aug-13 57.11 42.83 45.69 48.54 51.40 54.25 Aug-13 49.39 0.865Sep-13 57.23 42.92 45.78 48.65 51.51 54.37 Sep-13 49.51 0.865Oct-13 57.06 42.80 45.65 48.50 51.35 54.21 Oct-13 49.34 0.865Nov-13 58.02 43.52 46.42 49.32 52.22 55.12 Nov-13 50.30 0.867Dec-13 59.41 44.56 47.53 50.50 53.47 56.44 Dec-13 51.69 0.870Jan-14 60.42 45.32 48.34 51.36 54.38 57.40 Jan-14 52.70 0.872Feb-14 59.49 44.62 47.59 50.57 53.54 56.52 Feb-14 51.77 0.870Mar-14 57.31 42.98 45.85 48.71 51.58 54.44 Mar-14 49.59 0.865Apr-14 55.91 41.93 44.73 47.52 50.32 53.11 Apr-14 48.19 0.862May-14 55.14 41.36 44.11 46.87 49.63 52.38 May-14 47.42 0.860Jun-14 55.17 41.38 44.14 46.89 49.65 52.41 Jun-14 47.45 0.860Jul-14 54.41 40.81 43.53 46.25 48.97 51.69 Jul-14 46.69 0.858Aug-14 53.03 39.77 42.42 45.08 47.73 50.38 Aug-14 45.31 0.854Sep-14 52.65 39.49 42.12 44.75 47.39 50.02 Sep-14 44.93 0.853Oct-14 51.11 38.33 40.89 43.44 46.00 48.55 Oct-14 43.39 0.849Nov-14 50.12 37.59 40.10 42.60 45.11 47.61 Nov-14 42.40 0.846Dec-14 49.45 37.09 39.56 42.03 44.51 46.98 Dec-14 41.73 0.844

AVERAGE 63.93 47.95 51.14 54.34 57.54 60.73 AVERAGE 56.85 0.89

COAL BRAND TM % (ar) ASH % (adb) TS % (adb) CV (ar)ENVIROCOAL 26 1.2 0.1 5000

SUNGKAI HIGH SULPHUR 26 4.5 1.7 5000TKS 24.10 8.20 2.04 4984DIFF -1.90 7.00 1.94 -16

MONTH ENVIROCOAL INDEX SALE PRICE

COAL GRADE DISCOUNT FACTOR SUNGKAI HIGH SULPHUR BRAND NAME

UNITED FIBER SYSTEM LIMITED PT DANMAR EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

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TKSCO

ALPR

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ACIICICO

ALPR

ICECO

MPA

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NJULY,201

4

COAL

PRICEHISTO

RY20

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14

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XEN

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COAL

INDE

XICISUNGKA

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X

160.00

170.00

180.00

190.00

200.00

210.00

AUSTRA

LIAN

INDE

XEN

VIRO

COAL

INDE

XICISUNGKA

IHIGHSU

LPHURINDE

X

9000

100.00

110.00

120.00

130.00

140.00

150.00

OALSALEPRICE$US

30.00

40.00

50.00

60.00

70.00

80.00

90.00

CO

0.00

10.00

20.00

140.00

ENVIRO

COAL

INDEX

YEAR

LYTR

ENDHISTO

RY20

0720

14

77.0

3

136.

18

70.4

341

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79.4

4

45.8

251

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88.7

9

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H

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RO

CO

AL

IND

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2009

2008

2007

100.00

120.00

2014

*80

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57.2

449

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55.1

7

65.9

9

61.0

7

69.0

6

83.1

2

64.6

157

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54.1

0

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5

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0

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2013

2012

2011

2010

60.00

80.00

COALSALEPRICE$US

ENVIRO

COAL

2014

ENVIRO

COAL

2013

ENVIRO

COAL

2012

ENVIRO

COAL

2011

ENVR

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10

ENVIRO

COAL

2009

ENVIRO

COAL

2008

ENVIRO

COAL

2007

*AV

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JU3

2014

0.00

20.00

40.00

JAN

FEB

MAR

APR

MAY

JUN

JUL

AUG

SEP

OCT

NOV

DEC

UNITED

FIBE

RSYSTEM

LIMITED

PTDA

NMAR

EXPLORINDO

APPENDIX 5 – TKS JORC RESOURCE REPORT

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APPENDIX 10.3 CV DANIEL MADRE, PT DANMAR COMPANY PROFILE

APPENDIX 5 – TKS JORC RESOURCE REPORT

584

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DANIEL MADRE , MSc (COAL GEOLOGY)

COAL & MINERAL SPECIALIST

Summary Daniel Madre has been an Australian coal and mineral specialist for 34 years with more than 26 years of full time coal work experience in Indonesia. He is familiar with most of the coal projects in the country and has developed a diverse network of professionals throughout the industry. Daniel has a Master of Science degree in Coal Geology that combined with his Indonesian work experience makes him one of the foremost authorities on coal in the country. Daniel Madre is a member of the Australian Institute of Geoscientists (member no 5632).

At the moment Daniel runs a successful exploration consultancy and has in-house capabilities that range from geology, drilling, mine design and planning. The company recently discovered coal in East Kalimantan and Sumatra which has resulted in several new coal mine developments. The company is formally licensed by the Indonesian Department of Minerals and Energy as a contractor to the Indonesian mining industry (Ijin Usaha Jasa Pertambangan).

Since 2005, the company diversified into nickel and mineral sands exploration and resource development. This work resulted in the development of the first nickel mine in Kalimantan. Other nickel projects investigated by the company are located in Sulawesi, Halmahera and Papua. Mineral sands projects have been investigated in Sumatra and West Papua.

Commodities

Worked in

Experience

Coal, oil shale, nickel laterites, phosphate, gold and mineral sands

Indonesia, Australia, USA, PNG

Nov, 2000 - present PT Danmar Explorindo Jakarta, Indonesia Contractor exploration & management – managing director

established to service the Indonesian coal and minerals industries with a staff of more than 30 geologists and geoscientists, specializing in coal exploration, drilling, geological interpretation, resource modeling, resource estimation

management of more than 50 coal exploration and drilling programs throughout Indonesia

24 JORC studies for coal Resources since 2008 2 X research grants (2010-2011) from NEDO (Government of

Japan) for metallurgical coal exploration studies in forearc basin of Sumatra

1996–Nov 2000 independent consultant Jakarta, IndonesiaConsultant geologist

RESUME

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various projects for foreign investment coal companies including; Petrosea, Arco, Fletcher Challenge, Wesfarmers, Excel Mining, Snowden, Allied Indocoal, Bukit Young Gold Mine, Gantari Utama, Eagle City International, Behre Dolbere, Swords Contractors

regional coal study of Indonesia coal prospect economic viability assessments throughout Indonesia Barito Pacific due diligence for sale of BP share of KPC economics of coal production in Indonesia study coal prospect exploration and evaluation coal prospect generation due diligence study Gunung Bayan Pratamacoal for Mitsui acting manager contract mining Rawas gold mine, Bukit Baiduri coal

mine

1988–1996 PT Petrosea Jakarta, Indonesia Manager of Geology Contract coal mining, resource assessments, mine planning Acting contract mine manager Project manager Santan coal exploration project, CoW application,

exploration, modeling and feasibility assessment Regional study of coal in Indonesia: systematic assessment of coal

prospects throughout the country Coal mining tenders including; Berau, KPC, Petangis, Bukit Baiduri

Enterprize, PT Tambang Batubara Bukit Asam Danau Mas Hitam coal mine exploration, development, mine planning, quality control, acting mine manager (Bengkulu)

Coal mine feasibility assessments and reserve audits Allied Indo Coal, Bukit Baiduri Enterprise, Fajar Bumi Sakti Exploration and evaluation of coal prospects including; regional study Bengkulu Basin, Lais, Meulaboh, Musi Rawas

Mineral tenement evaluations Kumamba mineral sands project due dilligence KPC plant hire acting manager Christmas Island phosphate reserve assessment and mine plan

1982–1988 Greenvale/Esperance group Sydney, AustraliaExploration Manager Oil shale exploration and feasibility studies, Alpha, Nagoorin, Lowmead Oil and gas exploration and production Queensland Australia, Texas USA Mineral lease acquisition and assessment in Australia, USA, PNG Presentation to Geological Society of Australia conference 1985 titled The

Alpha Oil Shale Deposit Presentations to the Australian Oil Shale Workshop 1986 and 1987 titled

The Alpha Oil Shale Deposit

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1981–1982 ORE Pty Ltd Sydney, AustraliaField geologist Coal, oilshale and mineral drilling programs throughout NT and Qld

1980 – 1981 NWS Public Works Department Sydney, Australia Lab attendant

. Off shore Sydney mapping project

Education 1986- 1989 University of Wollongong AustraliaMaster of Science (coal geology)

1978- 1980 University of Sydney Australia

. Bachelor of Science (geology)

Membership Australian Institute of Geoscientists (member no 5632).

Publications 1987, The Geology of the Alpha Oil Shale Deposit, Fuel, Vol.66, Butterworths UK

2000, Coal Geology of the Bengkulu Block, Journal Asian Earth Science,Elsevier Advances in Sedimentology Series, Elsevier Special editions

2014, Coal Geology of Sumatra, World Coal, Palladium Publications Ltd (2014)

Courses 2013 Valuation and Technical-Economic Assessment of Mining Projects, SRK Consultants

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PT Danmar Explorindo – Geology, Exploration, Drilling, Mine design

local knowledge international expertise

PT Danmar Explorindo is an independent explorationcontractor and consultancy specializing in coal exploration and mine development. As managing director and principal shareholder Daniel Madre brings to the company more than 33 years of exploration and coal mining experience, of which 25years has been in Indonesia. Based on this experience the company has a developed a team of experienced professionals and a network of associates that covers all aspects of Indonesian coal exploration, development and mining. At present we employ more than 150 full time employees.

The company owns facilities and equipment including;

Surpac & Minescape mining software 28 diamond rotary drill rigs downhole geophysical logging shallow seismic survey equipment 16 4WD utility vehicles complete geological equipment head office Bali mine design office Jakarta drill fabrication workshop Sumatra project offices in Sumatra & Kalimantan

By providing services ranging from the earliest stages of coal exploration, up until feasibility study and coal reserve optimization, the company can minimize geological risk to clients and maximize returns by providing accurate and detailed coal resource modeling and ‘life of mine’ plans.

For investors, considering new prospects in Indonesia, Danmar Explorindo has a database of most coal properties in the country. We can often provide the background information needed for investors to make informed decisions when acquiring new areas

PT Danmar Explorindo Phone: + 62 361 283631

Fax: + 62 361 283631 E-mail: [email protected]

To contact us:

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PT Danmar Explorindo – Geology, Exploration, Drilling, Mine design

Local knowledge international expertise

PT Danmar Explorindo is an independent consulting practice providing specialist services to the Indonesian exploration and mining industry. The company has in-house capabilities in geology, drilling, computer design, optimization and management for exploration and mining projects. It is the company’s objective to provide a “one stop shop” to cover all exploration needs based on best work practices and the highest levels of integrity.

Our specialist services include;

geology drilling design, execution & management of exploration

programs digital resource modeling, optimization, mine design JORC compliant resource and reserve estimates monitoring mine plan execution and reconciliations due diligence studies investor advice

For companies operating in the Indonesian exploration and mining sectors, and for potential investors considering involvement in Indonesia, our in-depth local knowledge ensures that we can determine the optimal approach for clients to minimize risk and maximize returns. We guarantee international standards of work.

Our project management skills are integrated with our other in-house capabilities such as geological fieldwork, drilling, digital resource modeling, resource estimates and mine design to provide a comprehensive service for projects at any stage from grassroots exploration to development and production.

Informed investment decisions rely on realistic appraisals. As Danmar Explorindo is a totally independent organization we generate objective assessments that are impartial and conflict free.

Our clients include mine operators, explorers, mining contractors, potential investors, concession holders and other technical groups.

PT Danmar Explorindo Phone: + 62 361 283631

Fax: + 62 361 283631 E-mail: [email protected]

To contact us:

Jalan Danau Tamblingan Gang Astasari No.4

Sanur, Bali, INDONESIA

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COAL EXPLORATION COAL MINING

COAL RESOURCE EVALUATION

RESOURCE MODELING & MINE DESIGN

DRILLING MINERAL EXPLORATION

Danmar Explorindo has an in-depth knowledge of the Indonesian coal mining industry.

We offer a comprehensive range of services that cover all geological aspects of coal mine planning and operations including, drilling, resource and reserve assessments (JORC compliant), optimizations and management.

We design, implement and manage exploration programs ranging from target generation to feasibility studies and production. We have worked in most coal fields in Indonesia and our field teams are fully equipped to handle remote work environments.

Geological interpretations can be immediately supported by our drilling service. Digital resource modeling can also be conducted in parallel with field activities to ensure constant and accurate monitoring of progress and interpretation of results.

Exploration is a high risk business. Our local knowledge and international experience ensures that Danmar Explorindo can design and coordinate programs that will minimize risk, reduce costs and save time.

Coal is our specialty, and in Indonesia we are acknowledged as experts.

Danmar Explorindo has conducted assessments of hundreds of Indonesian coal properties. Over the years Danmar Explorindo has accumulated data relating to these coal areas throughout the country. For investors considering new prospects our database can often provide the background information for clients to make informed investment decisions before acquisitions are made.

Danmar Explorindo is a totally independent consultancy which allows us to provide assessments that are impartial and conflict free.

Danmar Explorindo operates the latest computer modeling mining software including Surpac and Minescape.

Our modeling systems allow the generation of accurate resource models and reliable reserve estimates. Our mine design and planning packages ensure the most practical and cost efficient approach to development and production. The company is formally licensed by the Indonesian Department of Minerals and Energy as a contractor to the Indonesian mining industry (Ijin Usaha Jasa Pertambangan). Daniel Madre is a competent person for JORC compliant Resource and Reserve statements.

Surpac mine optimization program can tailor mine design for each specific project to maximize profits. This allows project planning with confidence and optimal rates of return.

Danmar Explorindo has a proven track record in the prediction of coal resources meeting the expectations in actual mining recoveries. Our service includes the monitoring of mine plan execution and reconciliations of mine progress against predicted models.

Danmar Explorindo has an in-house drilling capability to ensure reliable service, efficient operation and accurate results. Danmar also fabricates drills and re-furbishes drill consumables.

Lightweight man portable rigs can be applied to most drilling applications with minimum environmental impact or support. Highly skilled an experienced drill crews with onsite mechanical support ensure efficient and fast completion of drill programs in remote locations.

Man portable drills ensure independent operation without dozer support or the need for specific access roads. For exploration or production our drilling service can provide quick, easy solutions to you drilling needs

Danmar Explorindo has a wide experience in the exploration of a variety of mineral deposits including base metals, precious metals, mineral sands, laterite nickel, industrial minerals and aggregates.

Our field teams are capable of working in all geological environments and are fully equipped for work in remote locations.

Field mapping and sampling can be combined with our in-house drilling using our cost efficient man-portable drills which can operate in even the most remote locations.

Our exploration teams can employ computer modeling in parallel with field activities to ensure constant monitoring of progress and interpretation of results.

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www.danmarexplorindo.com

PT Danmar Explorindo – Geology, Exploration, Drilling, Mine design

local knowledge international expertise

Contact Us

Danmar Explorindo can be contacted by email us at; [email protected]

Jalan Danau Tamblingan Gang Astasari No.4

Sanur, Bali, INDONESIA

To contact us:

Phone : + 62 361 283631 Fax : + 62 361 283631

Email: [email protected]

PT Danmar Explorindo

PT Danmar Explorindo

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