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168 REFERENCES 1. Adani F., Gigliotti G., Valentini F. and Laraia R. (2003), ‘Respiration index determination: A comparative study of different methods’, Compost Science and Utilization, Vol.11, pp.144-151. 2. Agdag O.N. and Sponza D.T. (2005), ‘Effect of alkalinity on the performance of a simulated landfill bioreactor digesting organic solid wastes’, Chemosphere, Vol. 59, No.6, pp. 871-879. 3. Aljarallah R.S. and Atwater J. (2000), ‘Denitrification in landfill bioreactors’, Waste Technology, Orlando, FL. 4. Al-Yousfi A.B. (1992), ‘Modeling of Leachate and Gas Production and Composition at Sanitary Landfills’, Dissertation, Civil and Environmental Engineering, University of Pittsburgh. 5. Amokrane A., Comel C. and Veron J. (1997), ‘Landfill leachate pretreatment y coagulation-flocculation’. Water Research, Vol. 31, pp. 2775-2782. 6. Angelidaki I. and Ahring B.K. (1994), ‘Anaerobic thermophilic digestion of manure at different ammonia loads: effect of temperature’, Water Research, Vol.28, pp.727-731. 7. APHA (1998), ‘Standard methods for the examination of water and wastewater’, 20 th edition, Eaton A.D., Clesceri L.S. and Greenburg A.E. (eds.), American Public Health Association, Washington DC, ISBN: 0-87553-235-7. 8. ARRPET - Asian Regional Research Programme on Environmental Technology (2004), ‘Municipal Solid Waste Management in Asia’, Visvanathan C., Josef Trankler, Zhou Gongming, Kurian Joseph, B.F.A. Basnakake, Chart Chiemchaisri (eds.), ISBN 974-417-258-1; Available online: http://www.swlf.ait.ac.th/. 9. Attal A., Akin J., Yamato P., Salmon P. and Paris I. (1992), ‘Anaerobic degradation of municipal wastes in land’, Water Science and Technology, Vol.25, No.7, pp.243-253.

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REFERENCES

1. Adani F., Gigliotti G., Valentini F. and Laraia R. (2003), ‘Respiration index determination: A comparative study of different methods’, Compost Science and Utilization, Vol.11, pp.144-151.

2. Agdag O.N. and Sponza D.T. (2005), ‘Effect of alkalinity on the performance of a simulated landfill bioreactor digesting organic solid wastes’, Chemosphere, Vol. 59, No.6, pp. 871-879.

3. Aljarallah R.S. and Atwater J. (2000), ‘Denitrification in landfill bioreactors’, Waste Technology, Orlando, FL.

4. Al-Yousfi A.B. (1992), ‘Modeling of Leachate and Gas Production and Composition at Sanitary Landfills’, Dissertation, Civil and Environmental Engineering, University of Pittsburgh.

5. Amokrane A., Comel C. and Veron J. (1997), ‘Landfill leachate pretreatment y coagulation-flocculation’. Water Research, Vol. 31, pp. 2775-2782.

6. Angelidaki I. and Ahring B.K. (1994), ‘Anaerobic thermophilic digestion of manure at different ammonia loads: effect of temperature’, Water Research, Vol.28, pp.727-731.

7. APHA (1998), ‘Standard methods for the examination of water and wastewater’, 20th edition, Eaton A.D., Clesceri L.S. and Greenburg A.E. (eds.), American Public Health Association, Washington DC, ISBN: 0-87553-235-7.

8. ARRPET - Asian Regional Research Programme on Environmental Technology (2004), ‘Municipal Solid Waste Management in Asia’, Visvanathan C., Josef Trankler, Zhou Gongming, Kurian Joseph, B.F.A. Basnakake, Chart Chiemchaisri (eds.), ISBN 974-417-258-1; Available online: http://www.swlf.ait.ac.th/.

9. Attal A., Akin J., Yamato P., Salmon P. and Paris I. (1992), ‘Anaerobic degradation of municipal wastes in land’, Water Science and Technology, Vol.25, No.7, pp.243-253.

169

10. Bae J., Kim S. and Chang H. (1997), ‘Treatment of landfill leachates: ammonia removal via nitrification and denitrification and further COD reduction via fenton’s treatment followed by activated sludge’, Water Science and Technology, Vol.36, No.12, pp.341-348.

11. Barlaz M.A., Ham R.K. and Schaefer D.M. (1990), ‘Methane production from municipal refuse: A review of enhancement techniques and microbial dynamics’, Critical Reviews in Environmental Control, Vol. 19, pp. 557-584.

12. Barlaz M.A., Milke M.W. and Ham R.K. (1987), ‘Gas production Parameters in Sanitary Landfill Simulators’, Waste Management and Research, Vol.5, p.27.

13. Barlaz M.A., Rooker A.P., Kjeldsen P., Gabr M.A. and Borden R.C. (2002), ‘Critical evaluation of factors required to terminate the postclosure monitoring period at solid waste landfill’, Environmental Sceince and Technology, Vol.36, pp.3457-3464.

14. Battistoni P., Fava G., Pavan P., Musacco A. and Cecchi F. (1997), ‘Phosphate removal in anaerobic liquors by struvite crystallisation without addition of chemicals: preliminary results’, Water Research, Vol.31, pp.2925-2929.

15. Behera P.K. (2006), ‘Solid and solid waste analysis – A laboratory manual’, First Edition, Dominant Publishers, pp. 47-50.

16. Belevi H. and Baccini P. (1989), ‘Long-term behavior of municipal solid waste landfills’, Waste Management and Research, Vol. 7, No. 1, pp.43-56.

17. Berge N.G., Reinhart D.R. and Townsend T.G. (2005), ‘The fate of nitrogen in bioreactor landfills’, Critical Reviews in Environmental Science and Technology, Vol.35, pp.365-399.

18. Bergey’s Manual of Systematic Biotechnology (1984) John G. Holt (Ed.), William and Wilkin’s Publishers, Baltimore, MD.

19. Bernal M.P., Paredes C., Sanchez-Monedero M.A. and Cegarra J. (1998), ‘Maturity and stability parameters of composts prepared with a wide range of organic wastes’, Bioresource Technology, Vol.63, pp.91-99.

170

20. Bhide A.D. and Shekdar A.V. (1998), ‘Solid waste management in Indian urban centers’, International Solid Waste Association Times (ISWA), Vol.1, pp.26-28.

21. Bickers P.O. and van Oostrom A. J. (2000), ‘Availability for denitrification of organic carbon in meat-processing wastestreams’, Bioresource Technology, Vol.73, pp. 53-58.

22. Boni M.R., Chiavola A. and Sbaffoni S. (2006), ‘Pre-treated waste landfilling: Relation between leachate characteristics and mechanical behaviour’, Waste Management, Vol. 26, pp. 1156-1165.

23. Bonin P. (1995), ‘Anaerobic nitrate reduction to ammonium in two strains isolated from coastal marine sediment: A dissimilatory pathway’, FEMS Microbiology Ecology, Vol.19, pp.27-38.

24. Booker N., Priestley A.J. and Fraser I.H. (1999), ‘Struvite formation in wastewater treatment plants: Opportunities for nutrient recovery’, Environmental Technology, Vol. 20, No.7, pp.777-782.

25. Boonchai W. (2004), ‘Application of membrane bioreactor for landfill leachate treatment’, Ph.D Thesis, Asian Institute of Technology, School of Environmenta, Resources and Development Thailand,

26. Booram C.V., Smith R.J. and Hazen T.E. (1975), ‘Crystalline phosphate precipitation from anaerobic animal waste treatment lagoon liquors’, Transactions of the American Society of Agricultural Engineers, Vol. 18, No.1, pp.340-343.

27. Borglin S.E., Hazen T.C. and Oldenburg C.M. (2004), ‘Comparison of aerobic and anaerobic biotreatment of municipal solid waste’, Journal of Air and Waste management Association, Vol. 54, pp. 815-822.

28. Bozkurt S., Moreno L. and Neretnieks I. (2000), ‘Long-Term Processes in Waste Deposits’, Science of the Total Environment, Vol.250, p.101.

29. Buchanan J.R., Mote C.R. and Robinson R.B. (1994), ‘Thermodynamics of struvite formation’, Transactions of the American Society of Agricultural Engineers, Vol. 37, No.2, pp.617-621.

30. Burton S.A.Q. and Watson Craik I.A. (1998), ‘Ammonia and Nitrogen fluxes in landfill sites: applicability to sustainable landfilling’, Waste Management and Research, Vol. 16, pp. 41-53.

171

31. Burton S.A.Q. and Watson-Craik I.A. (1999), ‘Accelerated landfill refuse decomposition by recirculation of nitrified leachate’, Sardinia 99 Seventh Waste Management and Landfill Symposium, Cagliari, Italy.

32. Calli B., Mertoglu B., Inanc B. and Yenigun O. (2005), ‘Effects of high free ammonia concentrations on the performance of anaerobic bioreactors’, Process Biochemistry, Vol. 40, pp.1285-1292.

33. Castaldi P., Garau G. and Melis P. (2008), ‘Maturity assessment of compost from municipal solid waste through the study of enzyme activities and water-soluble fractions’, Waste Management, Vol.28, No. 3, pp.534-540.

34. Cecchi F., Mata-Alvarez J., Vallini P.P. and Depoli G.F. (1992), ‘Seasonal effects on anaerobic digestion of the source sorted organic fraction of municipal solid waste’, Waste Management and Research, Vol. 10, pp. 435-443.

35. Central Pollution Control Board (CPCB) (2004), ‘Management of Municipal Solid Waste’, Ministry of Environment and Forests, New Delhi, India.

36. Chefetz B., Hadar Y. and Chen Y. (1998), ‘Dissolved organic carbon fractions formed during composting of municipal solid waste: properties and significance’, Acta hydrochimica Hydrobiologyca, Vol.26, pp.172-179.

37. Cheng W., Tsuruta H., Chen G. and Yagi K. (2004), ‘N2O and NO production in various Chinese agricultural soils by nitrification’, Soil Biology and Biochemistry, Vol.36, pp.953-963.

38. Cheung K.C., Chu L.M. and Wong M. (1997). ‘Ammonia stripping as a pretreatment for landfill leachate’. Water, Air, Soil Pollution, Vol. 94, No. 1-2, pp. 209-221.

39. Chian E.S.K and DeWalle E.B. (1976), ‘Basic biochemical processes in landfills’, Sanitary landfilling: Process, Technology and Environmental Impact, Academic Press.

40. Christ O., Wilderer P.A., Angerhofer R. and Fautstich M. (2000), ‘Mathematical modeling of the hydrolysis of anaerobic processes’, Water Science and Technology, Vol. 41, No.3, pp. 61-65.

172

41. Christensen J.B., Jensen D.L., Filip Z., Grøn C. and Christensen T.H. (1998), ‘Characterization of the dissolved organic carbon in landfill polluted groundwater’, Water Research, Vol.32, p.125.

42. Christensen T.H. and Kjeldsen P. (1989), ‘Basic Biochemical Processes in Landfills’, Sanitary Landfilling: Process, Technology and Environmental Impact, Christensen T.H. et al. (ed), Academic Press.

43. Christensen T.H. and Kjeldsen P. (1995), ‘Landfill emissions and environmental impact: An introduction’, In: SARDINIA ’95’, (Christensen T.H., Cossu R. and Stegmann R. Eds.), Fifth International Landfill Symposium, Proceedings, Vol. III, CISA, Cagliari, Italy.

44. Christensen T.H., Kjeldsen P. and Stegmann R. (1992), ‘Effects of landfill management procedures on landfill stabilization and leachate and gas quality’, Landfilling of Waste: Leachate, Elsevier Applied Science ed.

45. Christensen T.H., Kjeldsen P., Albrechtsen, Hans-Jorgen, Heron, Gorms, Neilson, Bjerg P.H., Holm, P.L. and Peter, E. (1994) ‘Attenuation of Landfill Leachate Pollutants in Aquifers-Critical Review’, Environmental Science Technology, Vol. 24, No.2, pp. 119-202.

46. Chugh S., Chynoweth D. P., Clarke W., Pullammanappallil P. and Rudolph V. (1999), ‘Degradation of unsorted municipal solid waste by a leach-bed process’, Bioresource Technology, Vol.69, No.2, pp.103-115.

47. Chugh S., Clarke W., Pulammanappallil P. and Rudolph V. (1998), ‘Effect of recirculated leachate volume on MSW degradation’, Waste Management and Research, Vol. 16, pp. 564-573.

48. Cook H.A. (1967), ‘Microorganisms in household refuse and seepage water from sanitary landfills’, Proceedings of West Virginia Academy of Science, Vol.39, pp.107-112.

49. Damodaran N., Robinson A., David E. and Kalas-Adams N. (2003), ‘Urban solid waste generation and management in India’, Ninth International Waste Management and landfill symposium, Sardinia, Italy.

50. Das K. and Keener H.M. (1997), ‘Moisture effect on compaction and permeability in composts’, Journal of Environmental Engineering, Vol. 123, pp. 275-281.

173

51. de Laclos H.F., Desbois S. and Saint-Joly C. (1997), ‘Anaerobic digestion of municipal solid organic waste: Valorga full-scale plant in tilburg, the Netherlands’, Water Science and Technology., Vol.36, No.6-7, pp.457-462.

52. Demeestere K., Smet E., Van Langenhove H. and Gallbacs Z. (2001), ‘Optimalization of magnesium ammonium phosphate precipitation and its applicability to the removal of ammonium’, Environmental Technology, Vol.22, No. 12, pp. 1419-1428.

53. Dewalle F.B., Chian E.S.K. and Hammerberg E. (1978), ‘Gas Production from Solid Waste in Landfill’, Journal of the Environmental Engineering Division, ASCE, Vol.104, No.EE3, p.415.

54. Dinamarca S., Aroca G., Chamy R. and Guerrero L. (2003), ‘The influence of pH in the hydrolytic stage of anaerobic digestion of the organic fraction of urban solid waste’, Water Science and Technology, Vol. 48, No.6, pp. 249-254.

55. Dominguez B., Lobo A., Ventas X.M. and Tejero I. (2005), ‘Heterotrophic and Anammox nitrogen removal in leachate treatment plants; modeling the coexistence of processes’, in proceedings, 10th international waste management and landfill symposium, Cagliaria, Italy.

56. Doyle J., Watts S., Solley D. and Keller J. (2001), ‘Exceptionally High-rate Nitrification in Sequencing Batch Reactors Treating High Ammonia Landfill Leachate’, Water Science and Technology, Vol.43, No.3, pp. 315-322.

57. Drever J.I. (1988), ‘Geochemistry of natural waters’, 2nd edn. Prentice Hall, Englewood Cliffs, New Jersey, pp.312-318.

58. Durmusoglu E., Corapcioglu M.Y. and Tuncay K. (2005), ‘Landfill settlement with decomposition and gas generation, Journal of Environmental Engineering, Vol. 131, pp. 1311-1321.

59. Durrant A.E., Scrimshaw M.D., Stratful I. and Lester J.N. (1999), ‘Review of feasibility of recovering phosphate from wastewater for use as a raw material by phosphate industry’, Environmental Technology, Vol. 20, No.7, pp. 749-758.

60. Ehrig H. (1983), ‘Quality and quantity of sanitary landfill leachate’, Waste Management and Research, Vol. 1, pp. 53-60.

174

61. Ehrig H.-J. (1988), ‘Water and element balances of Landfills, in The landfill’, Baccini P. (ed.), Springer Verlag, Berlin, Germany, 83. (Lecture Notes in Earth Sciences, Vol. 20).

62. Ehrig H.J. (1989), ‘Leachate quality’, In: Sanitary Landfilling: Process, Technology and Environmental Impact, Christensen T.H., Cossu, R., Stegman R. (eds.), Academic Press, New York, pp.285-297.

63. El-Fadel M., Bou-Zeid E., Chahine W. and Alyali B. (2002) ‘Temporal variation of leachate quality from pre-sorted and baled municipal solid waste with high organic and moisture content’, Waste Management, Vol.22, pp. 269-282.

64. El-Fadel M., Findikakis A.N. and Leckie J.O. (1997), ‘Environmental impacts of solid waste landfilling’, Journal of Environmental Management, Vol. 50, pp. 1-25.

65. Erfle J.P., Boila R.J., Teather R.M., Mabadevan S. and Sauer F.D. (1982), ‘Effect of pH on fermentation characteristics and protein degradation by rumen microorganisms in vitro’, Journal of Diary Science, Vol.65, pp.1457-1464.

66. Esakku S. (2006), ‘Assessment of reclamation and hazard potential of municipal solid waste dumpsites’, Ph.D thesis, Anna University, Chennai, India.

67. Farquhar G.J. and Rovers F.A. (1973), ‘Gas Production During Refuse Decomposition’, Water, Air and Soil Pollution, Vol.2, p.483.

68. Felske A., Rheims H., Wolterink A., Stackebrandt E. and Akkermans A. D. (1997), ‘Ribosome analysis reveals prominent activity of an uncultured member of the class Actinobacteria in grassland soils’, Microbiology, Vol.143, pp.2983-2989.

69. Furukawa K., Lieu P.K., Hatozaki R., Homan H. and Fuji T. (2005), ‘Single stage nitrogen removal using Anammox and partial nitritation (SNAP) process and its application to treatment of synthetic landfill leachate’, in proceedings, 10th international waste management and landfill symposium, Cagliaria, Italy.

70. Gabr M.A., Hossin M.S. and Barlaz M.A. (2000), ‘Solid waste settlement in landfills with leachate recirculation’, Geotechnical News, Vol.18, No.2, pp. 50-55.

175

71. Gallert C. and Winter J. (1997), ‘Mesophilic and thermophilic anaerobic digestion of source sorted organic waste: effect of ammonia on glucose degradation and methane production’, Applied Microbiology and Biotechnology, Vol. 48, pp. 405-410.

72. Garcia C., Hernandez T. and Costa F. (1991), ‘Study on water extract of sewage–sludge composts’, Soil Science and Plant Nutrition, Vol.37, pp.399-408.

73. Gerardi M.H. (2003), ‘Microbiology of Anaerobic digesters’, John Wiley & Sons, Inc. (ISBN 0-471-20693-8).

74. Ghosh G., Mohan K. and Sarkar A. (1996), ‘Characterization of soil-fertiliser P reaction products and their evaluation as sources of P for Gram (Cicer arietinum L.)’, Nutrient Cycle and Agroecosystem, Vol.46, No. 1, pp. 71-79.

75. Gierlich H. and Kollbach J. (1998), ‚Treating Landfill Leachate in European Countries’, Pollution Engineering International, pp. 10-14.

76. Gigliotti G., Kaiser K., Guggenberger G. and Haumaier L. (2002), ‘Differences in the chemical composition of dissolved organic matter from waste materials of different sources’, Biology and Fertility of Soils, Vol.36, pp.321-329.

77. Glenn A.R. (1976), ‘Production of extra cellular proteins by bacteria’, Annual Review in Microbiology, Vol. 30, pp. 41-62.

78. Godon J.J., Zumstein E., Dabert P., Habouzit F. and Moletta R., (1997), ‘Molecular microbial diversity of an anaerobic digestor as determined by small-subunit rDNA sequence analysis’, Applied Environmental Microbiology, Vol.63, pp.2802-2813.

79. Goto I. (1998), ‘Application of phosphorous recovered from sewage plants’, Environment and Conservation Engineering, Vol. 26, No. 7, pp. 418-422.

80. Goyal S., Dhull S.K. and Kapoor K.K. (2005), ‘Chemical and biological changes during composting of different organic wastes and assessment of compost maturity’, Bioresource Technology, Vol. 96, pp. 1584-1591.

176

81. Grady C.P., Daigger G.T. and Lim H.C. (1999), ‘Biological Wastewater Treatment’, Second ed. Marcel Dekker, Inc., New York, NY.

82. Greaves J., Hobbs P., Chadwick D. and Haygarth P. (1999), ‘Prospects for the recovery of p2 phosphorous from animal manures: A review’, Environment Technology, Vol. 20, No.7, pp.697-708.

83. Grosh C. (1996), ‘Analysis of Florida MSW Leachates. MS, Civil and Environmental Engineering’, University of Central Florida, Orlando.

84. Gupta S., Krishna M., Prasad R.K., Gupta S. and Kansal A. (1998), ‘Solid waste management in India: options and opportunities. Resource’, Conservation and Recycling, Vol.24, pp.137-154.

85. Hale Brothe D.D., Smith M.C., Gattie D.K. and Das K.C. (2001), ‘Characterization of microbial populations in landfill leachate and bulk samples during aerobic bioreduction’, Advances in Environmental Research, Vol.5, pp.285-294.

86. Ham R.K. and Bookter T.J. (1982), ‘Decomposition of solid waste in test lysimeters’, Journal of Environmental Engineering, ASCE, Vol.108, pp. 1147-1170.

87. Ham R.K., Norman M.R. and Fritschel P.R. (1993), ‘Chemical characterization of fresh Kills landfill refuses and extracts’, Journal of Environmental Engineering, Vol. 119, pp. 1176-1195.

88. Hanashima M. (1999), ‘Pollution control and stabilization process by semiaerobic landfill type: the Fukuoka method’, In: Proceedings of Sardinia 99 Seventh Waste Management and Landfill Symposium, Cagliari, Italy.

89. Hansen K.H., Angelidaki I. and Ahring B.K. (1998), ‘Anaerobic digestion of swine manure inhibition by ammonia’, Water Research, Vol. 32, pp. 5-12.

90. Hao X., Heijnen J.J. and Van Loosdrecht M. (2002), ‘Model-based evaluation of temperature and inflow variations on a partial nitrification–ANAMMOX biofilm process’, Water Research, Vol.36, pp.4839-4849.

177

91. Harmsen L.W.F., Lourens P.A. and Leeuwen H.J.M.L., (1986) Stikstofverbindingen verwijderen uit afvalwater. P.T./Procestechniek 41, pp.27-29.

92. Hartz K.E., Klink R.E. and Ham R.K. (1982), ‘Temperature Effects: Methane Generation from Landfill’, Journal of the Environmental Engineering Division, ASCE, Vol.108, p.626.

93. Hater G.R. and Green R. (2002), ‘Facultative landfill bioreactor’, Waste Management, Inc., U.S. Patent 6,398,958.

94. Hauben L., Vauterin L., Swings J. and Moore E.R.B. (1997), ‘Comparison of 16S ribosomal DNA sequences of all Xanthomonas species’, International Journal of Systematic Bacteriology, Vol.47, pp.328-335.

95. He P.J., Shao L.M., Qu X., Li G.J. and Lee D.J. (2005a), ‘Effects of feed solutions on of ammonium-nitrogen as pretreatment’, Chemosphere, Vol. 44, pp. 37-43.

96. He R., Liu W.L., Zhang Z.J. and Shen D.S. (2007), ‘Characteristics of the bioreactor landfill system using an anaerobic–aerobic process for nitrogen removal’, Bioresource Technology, Vol.98, pp.2526-2532.

97. He R., Shen D.S., Wang J.Q., He Y.H. and Zhu Y.M. (2005b), ‘Biological degradation of MSW in a methanogenic reactor using treated leachate recirculation’, Process Biochemistry, Vol.40, pp.3660-3666.

98. Heavey M. (2003), ‘Low-cost treatment of landfill leachate using peat’, Waste Management, Vol.23, pp.447-454.

99. Held C., Wellacher M., Robra K.H. and Gubitz G.M. (2002), ‘Two-stage anaerobic fermentation of organic wastes in CSTR and UFAF reactors’, Bioresource Technology, Vol. 81, pp. 19-24.

100. Heyer K.U. and Stegmann R. (1997), ‘Langfristiges Gefahrdungspotential und deponieverhalten von Ablagerungen’, Bericht Zum Teilvorhaben TV 4 im BMBF Verbundvorhaben ‘Deponiekorper’, Projekttrager PTAWAS (Berlin).

101. Heyer K.U. and Stegmann R. (1998), ‘Landfill systems, sanitary landfilling of solid wastes, long-term problems with leachates’, In: biotechnology, Vol. 11a, Wiley-Verlag.

178

102. Hosomi M., Matsusige K., Inamori Y., Sudo R., Yamada K. and Yoshino Z. (1989), ‘Sequencing Batch Reactor Activated Sludge Processes for the Treatment of Municipal Landfill Leachate: Removal of Nitrogen and Refractory Organic Compounds’, Water Science and Technology, Vol.21, pp. 1651-1654.

103. Huang L.N., Chen Y.Q., Zhou H., Luo S., Lan C.Y and Qu L.H. (2003), ‘Characterization of methanogenic Archea in the leachate of a closed municipal solid waste landfills’, FEMS Microbiology Ecology, Vol. 46, pp. 171-177.

104. Hugenholtz P., Goebel B.M. and Pace N.R. (1998), ‘Impact of cultureindependent studies on the emerging phylogenetic view of bacterial diversity’, Journal of Bacteriology, Vol.180, pp.4765-4774.

105. Illies P. (1999), ‘Biological Nitrification and Denitrification of High Ammonia Landfill Leachate Using Pre and Post Treatment Denitrification Systems and Methanol as Supplementary Source of Organic Carbon’, Master Thesis, University of British Columbia, Canada.

106. Inanc B., Idris A., Terazono A. and Sakai S. (2004), ‘Development of a database of landfills and dumpsite in Asian countries’ Journal of Material Cycles and Waste Management, Vol. 6, pp. 97-103.

107. Inbar Y., Hadar Y. and Chen Y. (1993), ‘Recycling of cattle manure - the composting process and characterization of maturity’, Journal of Environmental Quality, Vol.22, pp.857-863.

108. IWM (1999), ‘The Role and Operation of the Flushing Bioreactor’, Institute of Waste Management Sustainable Landfill Working Group.

109. Jalan R.K. and Srivastava V.K. (1995), ‘Incineration, land pollution control alternative – design considerations and its relevance for India’, Indian Journal of Environmental. Protection, Vol.15, No.12, pp.909-913.

110. Janus H.M. and Vander R.H.F. (1997), ‘Don’t reject the idea of treating reject water’, Water Science and Technology, Vol.34, No.3-4, pp.87-94.

179

111. Jetten M.S.K., Schmid M., Schmidt I., Wubben M., Dongen U.V., Abma W., Sliekers O., Revsbech N.P., Beaumont H.J.E, Ottosen L., Volcke E., Laanbroek H.J., Campos-Gomez L.J., Cole J., Loosdrecht M.V., Mulder J.M., Fuerst J., Richardson D., Katinka van de Pas, Mendez-Pampin R., Third K., Cirpus I., Spanning R.V., Bollmann A., Nielsen L.P., Camp H.O., Schultz C., Gundersen J., Vanrolleghem P., Strous M., Wagner M. and Kuenen J.G. (2002), ‘Improved nitrogen removal by application of new nitrogen-cycle bacteria’, Reviews in Environmental science and biotechnology, Vol. 1, pp. 51-63.

112. Jetten M.S.M., Strous M., van de Pas-Schoonen K.T., Schalk J., van Dongen U.G.J.M., van de Graaf A.A., Logemann S., Muyzer G., van Loosdrecht M.C.M. and Kuenen J.G. (1998), ‘The anaerobic oxidation of ammonium’, FEMS Microbiology Review, Vol.22, No.5, pp.421-437.

113. Jetten M.S.M., Wagner M., Fuerst J., van Loosdrecht M., Kuenen G. and Strous M. (2001), ‘Microbiology and application of the anaerobic ammonium oxidation (‘anammox’) process’, Current Opinion in Biotechnology, Vol.12, No.3, pp.283-288.

114. Jewell W.J., Chandler J.A., Dell'Orto S., Fanfoni K.J., Fast S., Jackson D. and Kabrick R.M. (1981), ‘Dry fermentation of agricultural residues’, USA, USGPO, September 1981. SERI TR-90, 38-7. (Solar Energy Research Institute, NTIS).

115. Jha M.K., Sondhi O.A.K. and Pansare M. (2003), ‘Solid waste management – A case study’, Indian Journal of Environmental Protection, Vol.23, No.10, pp.1153-1160.

116. Jimenez E.I. and Garcia V.P. (1998), ‘Determination of maturity indices for city refuse composts’, Agriculture, Ecosystem and Environment, Vol. 38, pp. 331-343.

117. Jokela J.P.Y. and Rintala J.A. (2003), ‘Anaerobic solubilization of nitrogen from municipal solid waste’, Reviews in Environmental Science and Biotechnology, Vol. 2, pp. 67-77.

118. Jokela J.P.Y., Kettunen R.H., Sormunen K.M. and Rintala J.A. (2001), ‘Methane production from landfilled municipal solid waste: effects of source-segregation, moisture control, and landfill operation’, 9th World Congress Anaerobic Digestion 2001, Anaerobic conversion for Sustainability, Part I, pp. 657-662.

180

119. Jokela J.P.Y., Kettunen R.H., Sormunen K.M. and Rintala J.A. (2002), ‘Biological nitrogen removal from municipal landfill leachate: Low-cost nitrification in biofilters and laboratory scale in-situ denitrification’, Water Research., Vol.36, No.16, pp.4079-4087.

120. Jokela J.P.Y., Vavilin V.A. and Rintala J.A. (2005). ‘Hydrolysis rates, methane production and nitrogen solubilization of grey waste components during anaerobic degradation’. Bioresource Technology, Vol. 96, pp. 501-508.

121. Kadam P.C. and Boone D.R. (1996), ‘Influence of pH on Ammonia Accumulation and Toxicity in Halophilic, Methylotrophic Methanogens’, Applied and Environmental Microbiology, Vol. 62, No.12, pp. 4486-4492

122. Kansal A. (2002), ‘Solid waste management strategies for India’, Indian Journal of Environmental Protection, Vol.22, No.4, pp.444-448.

123. Kansal A., Prasad R.K. and Gupta S. (1998), ‘Delhi municipal solid waste and environment – an appraisal’, Indian Journal of Environmental Protection, Vol.18, No.2, pp.123-128.

124. Kayhanian M. (1994), ‘Performance of a high-solids anaerobic digestion process under various ammonia concentrations’, Journal of Chemical Technology and Biotechnology, Vol.59, pp. 349-352.

125. Keenan J.D., Steiner R.L. and Fungaroli A.A. (1984), ‘Landfill leachate treatment’, Journal of Water Pollution Control Federation, Vol. 56, No.1, pp.27-33.

126. Kelley R.J., Shearer B.D., Kim J., Goldsmith C.D., Hater G.R. and Novak J.T. (2006), ‘Relationships between analytical methods utilised as tools in the evaluation of landfill waste stability’, Waste Management, Vol. 26, pp. 1349-1356.

127. Khalil K., Mary B. and Renault P. (2004), ‘Nitrous oxide production by nitrification and denitrification in soil aggregates as affected by O2 concentration’, Soil Biology and Biochemistry, Vol.36, pp.687-699.

128. Khan R.R. (1994), ‘Environmental management of municipal solid wastes’, Indian Journal of Environmental Protection, Vol.14, No.1, pp.26-30.

129. Kjeldsen P., Barlaz M.A., Rooker A.P., Baun A., Ledin A. and Christensen T.H. (2002) ‘Present and long-term composition of MSW landfill leachate: A review’, Critical reviews in Environmental Science and Technology, Vol. 32, No. 4, pp. 297-336.

181

130. Koster I.W. and Lettinga G. (1988), ‘Anaerobic digestion at extreme ammonia concentration’, Biological Waste, Vol. 25, pp. 51-59.

131. Kroeker E.J., Schutle D.D., Sparling A.B. and Lapp H.M. (1979), ‘Anaerobic treatment process stability’, Journal of Water Pollution Control and federation, Vol. 51, pp. 718-727.

132. Krumpelbeck I. and Ehrig H.-J. (1999), ‘Long-term behavior of municipal solid waste landfills in Germany’, In Sardinia 99, Seventh International Waste Management and Landfill Symposium, 4-8 October, Margherita di Pula S. (ed.), Cagliari, Proceedings, Christensen T. H., Cossu R. and Stegmann R. (eds.), CISA — Environmental Sanitary Engineering Centre, Cagliari, Italy, Vol. I, p.27.

133. Kumar S., Tamura K., Jakobsen I.B. and Nei M. (2001), ‘MEGA2: Molecular Evolutionary Genetics Analysis software’, Bioinformatics, Vol.17, pp.1244-1245.

134. Kurian Joseph (2002), ‘Sustainable Landfills for Municipal solid Waste Management’, Procs. National Seminar on Solid waste management – Current Status and strategies for future, Bangalore University, India.

135. Kurian Joseph and Nagendran R. (2002), ‘Landfilling of Municipal Solid Wastes’, Presented at the workshop on Municipal Solid Waste Management in India sponsored by the Department of Science and Technology, Government of India and organized by Indian Institute of Technology, New Delhi.

136. Kurian Joseph, Esakku S. and Nagendran R. (2007), ‘Mining of compost from dumpsites and bioreactor landfills’, International Journal of Environmental Technology and Management, Vol. 7, No.3/7, pp.317-325.

137. Kylefors K. (1997), ‘Landfill Leachate Management- Short and Long Term Perspectives’, Luleå University of Technology, Sweden: ISSN: 1402-1757.

138. Lagerkvist A. and Chen H. (1993), ‘Control of Two Step Anaerobic Degradation of Municipal Solid Waste (MSW) by Enzyme Addition’, Water Science and Technology, Vol.27, No.2, p.47.

182

139. Laima M.C.J. (1994), ‘Is KCl a reliable extractant of 15NH4+ added to

coastal marine sediments?’, Biogeochemistry, Vol.27, pp.83-95.

140. Lane D.J., Pace B., Olsen G.J., Stahl D.A., Sogin M.L. and Pace N.R., (1985), ‘Rapid determination of 16S ribosomal RNA sequences for phylogenetic analyses’, Proceedings of National Academy of Science USA., Vol.82, pp. 6955-6959.

141. Lasardi K.E. and Stentiford E.I. (1998), ‘A simple respirometric technique for assessing compost stability’, Water Research, Vol.32, pp.3717-3723.

142. Lay J.J., Li Y.Y. and Noike T. (1998), ‘Influence of pH and ammonia concentration on the methane production in high-solids digestion processes’, Water Environmental Research., Vol.70, No.5, p.1075.

143. Leckie J.O., Pacey J.G. and Halvadakis C. (1979) ‘Landfill management with moisture control’, Journal of Environmental Engineering Division, Vol. 105, No.2, pp.337-355.

144. Lee S.Y. and Rasheed S. (1990), ‘A simple procedure for maximum yield of high quality plasmid DNA’, Biotechniques, Vol.9, pp. 676-679.

145. Leikam K., Heyer K.U. and Stegmann R. (1999), ‘Aerobic in situ stabilization of completed landfills and old sites’, Waste Management Research, Vol.17, pp.555-562.

146. Leita L. and De Nobili M. (1991), ‘Water-soluble fractions of heavy metal during composting of municipal solid waste’, Journal of Environmental Quality, Vol.22, pp.857- 863.

147. Lema J.M., Mendez R. and Blazquez R. (1988) ‘Characteristics of landfill leachates and alternatives for their treatment: A review’, Water, Air and Soil Pollution, Vol. 40, pp. 223-250.

148. Leuschner A. P. (1989), ‘Enhancement of Degradation: Laboratory Scale Experiments’, Sanitary Landfilling: Process, Technology and Environmental Impact: Academic Press.

149. Li X.Z. and Zhao Q.L. (2003), ‘Recovery of ammonium- nitrogen from landfill leachate as a multi nutrient fertilizer’, Ecological Engineering, Vol. 20, pp. 171-181.

183

150. Li X.Z., Zhao Q.L. and Hao X.D. (1999), ‘Ammonia removal from landfill leachate by chemical precipitation’, Waste Management, Vol. 19, No. 6, pp. 409-415.

151. Ling H.I., Leshchinsky D., Yoshiyuki M. and Toshinori K. (1998), ‘Estimation of municipal solid waste settlement’, Journal of Geotechnology and Geoenvironmental Engineering, Vol. 124, pp. 21-28.

152. Long Y., Guo Q.W., Fang C.R., Zhu Y.M. and Shen D.S. (2008), ‘In situ nitrogen removal in phase-separate bioreactor landfill’, Bioresource Technology, Vol. 99, pp. 5352-5361.

153. Mason R.L., Gunst R.F. and hess J.L. (1989), ‘Statistical design and analysis of experiments’, J Wiley and Sons, New York, pp. 400-445.

154. Mata-Alvarez J. and Martinez-Viturtia A. (1986), ‘Laboratory Simulation of Municipal Solid Waste Fermentation with Leachate Recycle’, Journal of Chemical Technology and Biotechnology, Vol.36, p.547.

155. Matheson T.G. (2002), ‘Material Safety Data Sheet for Ammonia/Air Gas Mixtures’, Parsippany, NJ.

156. McCarty P.L. and McKinney R.E. (1961), ‘Salt Toxicity in Anaerobic Digestion’, Journal of Water Pollution Control Federation., Vol.33, pp.399-415.

157. Metcalf and Eddy (1991), ‘Wastewater Engineering: Treatment, disposal and reuse’, McGraw- Hill, New York, Inc.

158. Micks P., Aber J.D., Boone R.D. and Davidson E.A. (2004), ‘Short-Term Soil Respiration and Nitrogen Immobilization Response to Nitrogen Application in Control and Nitrogen - Enriched Temperate Forests’, Forest Ecology and Management, Vol. 196, pp. 57-70.

159. MoEF (2000), ‘The Gazette of India. Municipal Solid Waste (Management and Handling) Rules, Ministry of Environment and Forests, New Delhi, India.

160. Momberg G.A. and Oellermann R.A. (1992), ‘The removal of phosphate by hydroxyapatite and struvite crystallizationin South Africa’, Water Science and Technology, Vol.26, No. 5-6, pp. 987-996.

184

161. Mulder A. (2003), ‘The quest for sustainable nitrogen removal technologies’, Water Science and Technology, Vol.48, No.1, pp. 67-75.

162. Munasinghe R. (1997), ‘Effect of hydraulic retention time on landfill leachate and gas characteristics’, Ph.D thesis, University of British Columbia.

163. Munch E. and Barr K. (2001), ‘Controlled struvite crystallization for removing phosphorus from anaerobic digester side streams’, Water Research, Vol. 35, No.1, pp.151-159.

164. Nelson D.L. and Cox M.M. (2000), ‘Lehninger Principles of Biochemistry’, III edition. Worth Publisher, New York.

165. Nelson D.L. and Cox M.M. (2002), ‘Lehninger Principles of Biochemistry’, III edition, Worth Publishers, New York.

166. Nielson P.H. (1996), ‘Adsorption of ammonium to activated sludge’, Water Research, Vol.30, No.3, pp.762-764.

167. Nommik H. and Vahtras K. (1982), ‘Retention and fixation of Ammonium and ammonia in soil, In: Nitrogen in Agricultural Soils, American Society of Agronomy Stevenson F.J. (ed.), Madison, WI.

168. Ohlinger K.N., Young T.M. and Schroeder E.D. (1998), ‘Predicting struvite formation in digestion’, Water Research, Vol.32, No.12, pp.3607-3614.

169. Omil F., Mendez R. and Lema J.M. (1995), ‘Anaerobic treatment of saline wastewaters under high sulfide and ammonia content’, Bioresource technology, Vol. 54, pp. 269-278.

170. Onay T.T. and Pohland F.G. (1998), ‘In situ nitrogen management in controlled bioreactor landfills’, Water Research, Vol. 32, No.5, pp.1383-1392.

171. Onay T.T. and Pohland F.G. (2001), ‘Nitrogen and sulfate attenuation in simulated landfill bioreactors’, Water Science and Technology, Vol.44, No.2-3, pp.367-372.

185

172. Orlygsson J., Houwen F.P. and Svensson B.H. (1994), ‘Influence of hydrogenotrophic methane formation on the thermophilic anaerobic degradation of protein and amino acids’, FEMS Microbiology Ecology, Vol.13, pp. 327-334.

173. Oweis I.S. (2006), ‘Estimate of landfill settlement due to mechanical and decompositional processes’, Technical Notes, Journal of Geotechnology and Geoenvironmental Engineering., Vol. 132, pp. 644-650.

174. Pacey J., Augenstein D., Morck R., Reinhart D. and Yazdani R. (1999), ‘The bioreactor landfill - An innovation in solid waste management’, Solid Waste Association of North America (SWANA) bioreactor landfill committee, SWANA available online at <http://www.yolocounty.org/ recycle/docs/Bioreactor_issues.pdf>.

175. Palmisano A.C. and Barlaz M.A. (1996), In: ‘Microbiology of solid waste’, CRC Press, Boca Raton, FL.

176. Pappu A., Saxena M. and Asokar S.R. (2007), ‘Solid Waste Generation in India and Their Recycling Potential in Building Materials’, Journal of Building Environment, Vol.42, No.6, pp.2311-2324.

177. Paredes D., Kuschk P., Mbwette T. S. A., Stange F., Müller R.A. and Köser H. (2007), ‘New Aspects of Microbial Nitrogen Transformations in the Context of Wastewater Treatment – A Review’, Engineering in Life Sciences, Vol.7, No. 1, pp.13-25.

178. Park H.I. and Lee S.R. (2002), ‘Long term settlement behaviour of MSW landfills with various fill ages’, Waste Management and Research, Vol. 20, pp. 259-268.

179. Parkin G.F. and Speece R.E. (1982), ‘Modeling toxicity in methane fermentation system’, ASCE, Vol. 108, No.3, pp. 515-531.

180. Pavlostathis S.G. and Giraldo-Gomez E. (1991), ‘Kinetics of anaerobic treatment: A critical review’, Critical Reviews in Environmental Control, Vol.21, pp.411-490.

181. Poggi-Varaldo H.M. and Oleszkiewicz J. (1992), ‘Anaerobic co-composting of municipal solid waste and waste sludge at high total solids levels’, Environmental Technology, Vol.13, pp.409-421.

186

182. Poggi-Varaldo H.M., Rodriguez-Vazquez R., Fernandez-Villagomez G. and Esparza-Garcia F. (1997), ‘Inhibition of mesophilic solid-substrate anaerobic digestion by ammonia nitrogen’, Applied Microbial Technology, Vol.47, pp. 284-291.

183. Pohland F.C. and Kim J.C. (1999), ‘In-situ anaerobic treatment of leachate in landfill bioreactors’, Water Science and Technology, Vol.40, No. 8, pp. 203-210.

184. Pohland F.G. (1975), ‘Sanitary landfill stabilization with leachate recycle and residual Treatment’, United States Environmental Protection Agency, Cincinnati, Ohio, EPA 600/2-75-043.

185. Pohland F.G. (1980), ‘Leachate recycle as a landfill management option’, Journal of Environmental Engineering, ASCE, Vol. 107, pp. 1057-1071.

186. Pohland F.G. (1994), ‘Landfill bioreactors: historical perspective, fundamental principals, and new horizons in design and operation’, EPA/600/R-95/146, pp.9-24.

187. Pohland F.G. and Harper S.R. (1986), ‘Critical Review and Summary of Leachate and Gas Production from Landfills’, Report No.EPA/600/2-86/073), USEPA.

188. Price G.A. (2001), ‘Long-Term Nitrogen Management in Bioreactor Landfills’, MS thesis, Department of Civil and Environmental Engineering, North Carolina State University, Raleigh.

189. Price G.A., Barlaz M.A. and Hater G.R. (2003), ‘Nitrogen management in bioreactor landfills’, Waste Management, Vol.23, No.7, pp.675-688.

190. Priestley A.J., Cooney E., Booker N.A. and Fraser I. (1997), ‘Nutrients in wastewaters-ecological problem or commercial opportunity?’, In: Proceedings 17Th AWWA Federal convention. Melbourne, Australia, March, 16-21, 1997, pp.340-346.

191. Purcell B.E., Butler A.P., Sollars C.J. and Buss S.E. (1999), ‘Leachate ammonia flushing from landfill simulators’, J. CIWFM, Vol.13.

192. Qasim S.R. and Chiang W. (1994), ‘Sanitary Landfill Leachate’, Technomic Publishing Lancaster, PA.

187

193. Ragle N., Kissel J., Ongerth J.E. and DeWalle F.B. (1995), ‘Composition and variability of leachate from recent and aged areas within a municipal landfill’, Water Environmental. Research, Vol. 62, No.2, pp.238-243.

194. Rathi S. (2006), ‘Alternative approaches for better municipal solid waste management in Mumbai, India’, Journal of. Waste Management, Vol.26, No.10, pp.1192-1200.

195. Ray M.R., Roychoudhury S., Mukherjee G., Roy S. and Lahiri T. (2005), ‘Respiratory and general health impairments of workers employed in a municipal solid waste disposal at open landfill site in Delhi’, International Journal of Hygiene and Environmental Health, Vol.108, No.4, pp.255-262.

196. Read A.D., Hudgins M. and Philips P. (2001), ‘Perpetual landfilling through aeration of the waste mass; lessons from test cells in Georgia (USA)’, Waste Management, Vol.21, pp.617-629.

197. Reddy S. and Galab S. (1998), ‘An Integrated Economic and Environmental Assessment of Solid Waste Management in India’, The Case of Hyderabad, India.

198. Rees J.F. (1980), ‘Optimisation of Methane Production and Refuse Decomposition in Landfills by Temperature Control’, Journal of Chemical Technology and Biotechnology, Vol.30, p.458.

199. Reinhart D.R. (1989), ‘Fate of Selected Organic Pollutants During Landfill Codisposal with Municipal Refuse’, PhD dissertation, Department of Civil Engineering, Georgia Institute of Technology, Atlanta.

200. Reinhart D.R. (1996), ‘Full-scale experiences with leachate recirculating landfills: Case studies’, Waste Management and Research, Vol.14, pp.347- 365.

201. Reinhart D.R. and Al-Yousfi A.B. (1996), ‘The impact of leachate recirculation on municipal solid waste landfill operating characteristics’, Waste Management and Research, Vol. 14, pp. 337-346.

202. Reinhart D.R. and Townsend T.G. (1998), ‘Landfill Bioreactor Design and Operation’, Lewis Publishers: New York, CRC Press, ISBN: 1-56670-259-3.

188

203. Reinhart D.R., McCreanor P.T. and Townsend T. (2002), ‘The bioreactor landfill - its status and future’, Waste Management Research, ISWA, No.30, pp.172-186.

204. Renou S., Givaudan J.G., Poulain S., Dirassouyan F. and Moulin P. (2008), ‘Landfill leachate treatment: review and opportunity’, Journal of Hazardous Materials, Vol.150, No.3, pp. 468-493.

205. Ritzkowski M. and Stegmann R. (2003), ‘Emission behaviors of aerated landfills: results of laboratory scale investigations’, In: Proceedings of Sardinia 2003 Ninth Waste Management and Landfill Symposium, Cagliari, Italy.

206. Rivas F.J. Beltran F., Carvalho F., Acedo B. and Gimeno O. (2004), ‘Stabilized leachates: sequential coagulation-flocculation + chemical oxidation process’, Journal of Hazardous Materials, Vol. 116, No.1-2, pp.95-102.

207. Robbins J.E., Gerhardt S.A. and Kappel T.J. (1989), ‘Effect of total ammonia on anaerobic digestion and an example of digester performance from cattle manure-protein mixtures’, Biological waste, Vol. 27, pp. 1-14.

208. Robinson H.D. (1995), ‘A Review of the composition of leachate from domestic waste in landfill sites’, A report for the UK Department of the Environment. Reference: DE0918 A/FRI.

209. Robinson H.D. and Maris P.J. (1985), ‘The Treatment of Leachates from Domestic Waste in Landfill Sites’, Journal of Water Pollution Control Federation, Vol.57, No.1, pp. 30-38.

210. Romchat R. (2004), ‘Rehabilitation and Material Recovery Assessment in Maung Pathum Dumpsite’, Thailand, Master Thesis, Asian Institute of Technology, Bangkok.

211. Said-Pullicino D. and Gigliotti G. (2007), ‘Oxidative biodegradation of dissolved organic matter during composting’, Chemosphere, Vol. 68, pp. 1030-1040.

212. Said-Pullicino D., Erriquens F.G. and Gigliotti G. (2007), ‘Changes in the chemical characteristics of water-extractable organic matter during composting and their influence on compost stability and maturity’, Bioresource Technology, Vol. 98, No.9, pp. 1822-1831.

189

213. Said-Pullicino D., Kaiser K., Guggenberger G. and Gigliotti G. (2006), ‘Changes in the chemical composition of water extractable organic matter during composting: distribution between stable and labile organic matter pools’, Chemosphere ,Vol. 66, pp. 2166-2176.

214. Sambrook J., Fritsch E.F. and Maniatis T. (1989), ‚Molecular Cloning: A Laboratory Manual’, Cold Spring Harbor, NY: Cold Spring Harbor Laboratory Press.

215. San I. and Onay T.T. (2001), ‘Impact of various leachate recirculation regimes on municipal solid waste degradation’, Journal of Hazardous Materials, Vol. 87, pp. 259-271.

216. Sanchez-Monedero M.A., Roig A., Paredes C. and Bernal M.P. (2001), ‘Nitrogen transformation during organic waste composting by the rutgers system and its effects on pH, EC and maturity of the composting mixtures’, Bioresource Technology, Vol.78, pp.301-308.

217. Scaglia B., Erriquens F.G., Gigliotti G., Taccari M., Ciani M., Genevini P.L. and Adani F. (2007), ‘Precision determination for the specific oxygen uptake rate (SOUR) method used for biological stability products’, Bioresource Technology, Vol. 98, No.3, pp. 706-713.

218. Scheu M. and Bhattacharyya J.K. (1997), ‘Reuse of Decomposed Waste, Lessons from India in Solid Waste Management’, (Adrian Coad ed.), Department of International Development, UK Government.

219. Schimdt T.M., DeLong E.F. and Pace N.R. (1991), ‘Analysis of a marine picoplankton community by 16S rRNA gene cloning and sequencing’, Journal of Bacteriology, Vol.173, pp.4371-4378.

220. Schmidt I., Sliekers O., Schmid M., Bock E., Fuerst J., Kuenen J., Jetten M. and Strous M. (2003), ‘New concepts of microbial treatment processes for the nitrogen removal in wastewater’, FEMS Microbiology Review, Vol.27, pp.481-492.

221. Schubeler P. (1996), ‘Conceptual framework for municipal solid waste management in low income countries’, Urban management program working paper No.9, World bank.

222. Schulze R.R. (1991), ‘The simultaneous chemical precipitation of ammonium and phosphate in the form of magnesium-ammonium-phosphate’, Water Science and Technology, Vol. 23, pp. 659-667.

190

223. Schwab B.S., Ritchie C.J., Kain D.J., Dobrin G.C., King L.W. and Palmisano A.C. (1994), ‘Characterization of compost from a pilot plant-scale composter utilizing simulated solid waste’, Waste Management Research, Vol.12, pp.289-303.

224. Senior E.I., Watson-Craik A. and Kasali G.B. (1990), ‘Control/ promotion of the refuse methanogenic fermentation’, Critical Reviews in Biotechnology, Vol. 10, pp. 93-118.

225. Shannigrahi A.S., Chatterjee N. and Olaniya M.S. (1997), ‘Physico-chemical characteristics of municipal solid wastes in mega city’, Indian Journal of Environmental Protection., Vol.17, No.7, pp.527-529.

226. Sharholy M., Ahmad K., Mahmood G. and Trivedi R.C. (2005), ‘Analysis of municipal solid waste management systems in Delhi – a review’, In: Book of Proceedings for the second International Congress of Chemistry and Environment, Indore, India, pp. 773-777.

227. Sharholy M., Ahmad K., Mahmood G. and Trivedi R.C. (2008), ‘Municipal solid waste management in Indian cities – A review’, Waste Management, Vol.28, pp.459-467.

228. Sharma S. and Shah K.W. (2005), ‘Generation and disposal of solid waste in Hoshangabad’, In: Book of Proceedings of the Second International Congress of Chemistry and Environment, Indore, India, pp. 749-751.

229. Shekdar A.V. (1999), ‘Municipal solid waste management – the Indian perspective’, Journal of Indian Association for Environmental Management, Vol.26, No.2, pp.100-108.

230. Siegrist H. (1996), ‘Nitrogen removal from digester supernatant-comparison of chemical and biological methods’, Water science and technology, Vol. 34, No.1-2, pp.399-406.

231. Siegrist H., Gajcy D., Sulzer S., Roeleved P., Oschwald R., Frischknecht H., Pfund D., Morgeli B. and Hungerbuhler (1994), ‘Nitrogen elimination from digester supernatant with magnesium-ammonium-phosphate precipitation’, In: Chemical water and wastewater treatment, II spring Verlag, Berlin, pp. 457-465.

232. Singh S.K. and Singh R.S. (1998), ‘A study on municipal solid waste and its management practices in Dhanbad-Jharia coalifield’, Indian Journal of Environmental. Protection, Vol.18, No.11, pp.850-852.

191

233. Singhal S. and Pondaye S. (2001), ‘Solid waste management in India: Status and future directions’, TERI information monitor on Environmental Sciences, Vol.6, No.1, pp.

234. Sjoberg R.M. and Persson T. (1998), ‘Turnover of Carbon and Nitrogen in Coniferous Forest Soils of Different N-Status and Under Different 15NH4-N Application Rate’, Environmental Pollution, Vol.102SI, pp.385-393.

235. Smith M.C., Gattie D.K., Boothe D.D. and Das K.C. (2000), ‘Enhancing aerobic bioreduction under controlled conditions in a municipal solid waste landfill through the use of air injection and water recirculation’, Advances in Environmental Research, Vol.3, No.4, pp.459-471.

236. Snoeyink V. and Jenkins D. (1980), ‘Water Chemistry’, John Wiley and Sons, Inc. New York, NY. pp 463-465.

237. Soubes M., Muxõâ L., Fernaândez A., Tarlera S. and Queirolo M. (1994), ‘Inhibition of methanogenesis from acetate by Cr3 and ammonia’, Biotechnological Letters, Vol.16, pp.195-200.

238. Sponza D.T. and Agdag O.N. (2004), ‘Impact of leachate recirculation and recirculation volume on stabilization of municipal solid wastes in simulated anaerobic bioreactors’, Process Biochemistry, Vol.39, pp.2157-2165.

239. Sponza D.T. and Osman N.A. (2005), ‘Effects of shredding of wastes on the treatment of municipal solid wastes (MSWs) in simulated anaerobic recycled reactors’, Enzyme and Microbial Technology, Vol.36, pp. 25-33.

240. Stackebrandt E. and Goebel B.M. (1994), ‘Taxonomic note: a place for DNA-DNA reassociation and 16S rRNA sequence analysis in the present species definition in bacteriology’, International Journal of Systematic Bacteriology, Vol.44, pp.846-849.

241. Statom R.A., Thyne G.D. and McCray J.E. (2004), ‘Temporal changes in leachate chemistry of municipal solid waste landfill cell in Florida’, USA, Environmental Geology, Vol.45, pp. 982-991.

242. Stessel R. and Murphy R. (1992), ‘A lysimeter study of the aerobic landfill concept’, Waste Management. Research, Vol.10, pp.485-503.

192

243. Stratful I., Scrimshaw M.D. and Lester J.N. (2001), ‘Conditions influencing the precipitation of magnesium ammonium phosphate’, Water Research, Vol.35, No.17, pp.4191-4199.

244. Stumm W. and Morgan J.J. (1996), ‘Aquatic Chemistry’, III ed., Wiley, New York.

245. Swati M. and Kurian Joseph (2008), ‘Settlement analysis of fresh and partially stabilised municipal solid waste in simulated controlled dumps and bioreactor landfills’, Waste management, Vol. 28, No.8, pp.1355-1363.

246. Tatsi A.A. and Zouboulis A.I. (2002) ‘A field investigation of the quantity and quality of leachate from a municipal solid waste landfill in a Mediterranean climate (Thessaloniki, Greece)’, Advances in Environmental Research, Vol. 6, pp. 207-219.

247. Tatsi A.A., Zouboulis I., Matis K.A. and Samaras P. (2003), ‘Coagulation-flocculation pretreatment of sanitary landfill leachate’, Chemosphere, Vol. 53, pp. 737-744.

248. Tchobanoglous F., Theisen H. and Vigil S.A. (1993), ‘Integrated Solid Waste Management: Engineering Principles and Management Issues’, McGraw-Hill, New York.

249. ten Brummeler E. (1993), ‘Dry anaerobic digestion of the organic fraction of municipal solid waste’, PhD Thesis, Wageningen Agricultural University, Wageningen, The Netherlands.

250. Tiquia S.M. and Tam N.F.Y. (2000), ‘Fate of nitrogen during composting of chicken litter’, Environmental Pollution, Vol.100, pp.535-541.

251. Trabelsi I., Horibe H., Tanka N. and Matsuto T. (2000), ‘Origin of Low Carbon Nitrogen Ratios in Leachate from Old MSW Landfills’ Waste Management and Research, Vol. 18, pp.224-234.

252. Trankler J., Visvanathan C., Kuruparan P. and Tubtimthai O. (2005), ‘Influence of tropical seasonal variations on landfill leachate characteristics - Results from lysimeter studies’, Waste Management, Vol. 25, pp. 1013-1020.

193

253. Tunay O., Kabdasli I., Morse J., Orhon D. and Kolcak S. (1997), ‘Ammonia Removal by Magnesium Ammonium Phosphate Precipitation in Industrial Wastewater's’, Water Sciences Technology, Vol. 36, Nos. 2-3, pp. 225-228.

254. U.S. Environmental Protection Agency and Waste Management, Inc. Landfills as Bioreactors: Research at the Outer Loop Landfill, Louisville, Kentucky. First Interim Report. US Environmental Protection Agency and Waste Management, Inc., 2003. From NTIS.

255. Valencia R., Vanderzon W., Woelders H., Lubberding H.J. and Gijzen H.J. (2005), ‘Evaluation and fate of nitrogen compounds in pilot scale bioreactor landfills’, Sardinia 2005, Proceedings of the 10th International Waste Management and Landfill Symposium, Cagliari, Italy.

256. van Dongen U., Jetten M.S.M. and van Loosdrecht M.C.M., (2001), ‘The SHARON -/Anammox process for treatment of ammonium rich wastewater’, Water Science and Technology, Vol.44, No.1, pp.153-160.

257. Velsen A.F.M. (1979), ‘Adaptation of methanogenic sludge to high ammonia nitrogen concentration’, Water Research, Vol. 13, pp. 995-999.

258. Visvanathan C., Kuruparan P., Norbu T., Trankler J., Basnayake D.F.A, Chart Chiemchaisri, Kurian Joseph and Gong-Ming Z. (2003), ‘Comparative study on municipal solid waste management in Asia’, ARRPET Report, AIT, Bangkok, Thailand.

259. Wall D.K. and Zeiss C. (1995), ‘Municipal landfill biodegradation and settlement’, Journal of Environmental Engineering., Vol. 121, pp. 214-223.

260. Wang J., Burken J.G., Zhan X.J. and Surampalli R. (2005), ‘Engineered struvite precipitation: Impacts of component ion, Molar ratios and pH’, Journal of Environmental Engineering, ASCE, Vol. 131, No.10, pp.1433-1440.

261. Wang Q., Matsufuji Y., Dong L., Huang Q.F., Hirano F. and Tanaka A. (2006), ‘Research on leachate recirculation from different types of landfills’, Waste Management, Vol.26, pp.815-824.

194

262. Ward M.L., Bitton G., Townsend T.G. and Booth M. (2002), ‘Determining toxicity of leachates from Florida municipal solid waste landfills using a battery-of-tests approach’, Environmental Toxicology, Vol. 17, pp.258-266.

263. Wardwell R.E. and Nelson J.D. (1981), ‘Settlement of sludge landfills with fiber decomposition’. Proceedings, 10th International Conference for soil Mechanics and Foundation Engineering, Sweden, Vol. 2, pp. 397-401.

264. Warith M. (2002), ‘Bioreactor landfills: experimental and field results’, Waste Management, Vol. 22, pp. 7-17.

265. Warith M.A., Zekry W. and Gawri N. (1999), ‘Effect of leachate recirculation on municipal solid waste biodegradation’, Water quality research Journal of Canada, Vol. 34, No.2, pp.267-280.

266. Webb K.M. and Ho. G.E. (1992), ‘Struvite solubility and its application to a piggery effluent problem’, Water Science and Technology, Vol. 26, No.9-11, pp.2229-2232.

267. Wiegant W.M. and Zeeman G. (1986), ‘The mechanism of ammonia inhibition in the thermophilic digestion of livestock wastes’, Agricultural Wastes, Vol.16, pp.243-253.

268. Wujcik W.J. (1980), ‘Dry anaerobic fermentation to methane of organic residues’, Ph D thesis, Cornell University.

269. Ye R.W. and Thomas S.M. (2001), ‘Microbial Nitrogen Cycles: Physiology, genomics and applications’, Current Opinion in Microbiology, Vol.4, pp.307-312.

270. Youcai Z., Luochun W., Renhua H., Dimin X. and Guowei G. (2002), ‘A comparison of refuse attenuation in laboratory and field scale lysimeters’, Waste Management, Vol. 22, pp. 29-35.

271. Yuen S. T. S. (1999), ‘Bioreactor Landfills Promoted by Leachate Recirculation: A Full-Scale Study’, Thesis submitted to the University of Melbourne in total fulfillment of the requirements for the degree of Doctor of Philosophy, Melbourne, Australia.

195

272. Yuen S.T.S. (2001), ‘Bioreactor landfills - Do they work?’, Proceedings of Second Australia-New Zealand Conference on Environmental Geotechnics, Geoenvironment 2001, Newcastle, Australia, available online at <http://webraft.its.unimelb.edu. au/421439/pub/samyuen/references/ bioreactor_paper.pdf>.

273. Yuen S.T.S., Styles J.R. and McMahon T.A. (1995), ‘An active landfill management by leachate recirculation - A review and an outline of a full-scale project’, Proceedings Sardinia 95, International Landfill Symposium S.Margherita di Pula, Cagliari, Italy.

274. Zdybiewska M.W. and Kula B. (1991), ‘Removal of ammonia nitrogen by the precipitation method, on the example of some selected waste waters’, Water Science Technology, Vol.24, No.7, pp.229-234.

275. Ziegler C. (1997), ‘Nitrogen fixation and release from biologically pretreated MSW’, Proceedings of SARDINIA '97 - 6th International Landfill Symposium, Vol. I, CISA, Cagliari, Sardinia, Italy.

276. Zinder S.H. (1993), ‘Physiological Ecology of Methanogens. Methanogenesis’, (Ferry J.G. ed.), Ecology, Physiology, Biochemistry and Genetics’, New York, Chapman and Hall.

277. Zmora-Nahum S., Markovitch O., Tarchitzky J. and Chen Y. (2005), ‘Dissolved organic carbon (DOC) as a parameter of compost maturity’, Soil Biology and Biochemistry, Vol. 37, 2109-2116.

278. Zouboulis A., Chai X. and Katsoyiannis I. (2004), ‘The application of bioflocculant for the removal of humic acids from stabilized landfill leachate’, Journal of Environmental Management, Vol. 70, pp. 35-41.