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Performance increase of vacuum systems in vegetable oil sector

Performance Increase of Vacuum Systemsin Vegetable Oil Sector

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Page 1: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

Performance increase of vacuum systems

in vegetable oil sector

Page 2: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• VACUUM TECHNOLOGY IN VEGETABLE OIL SECTOR

• EFFECT OF VACUUM ON PRODUCTION OF VEGETABLE OIL.

• TO OBTAIN VACUUM PERFORMANCE. • USEFUL NOTES

Page 3: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

VACUUM TECHNOLOGY

IN VEGETABLE OIL

SECTOR

Page 4: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
Page 5: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
Page 6: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
Page 7: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• EFFECT OF VACUUM

ON PRODUCTION

OF VEGETABLE OIL.

Page 8: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

DEODORISATION PARAMETER :

• VACUUM VALUE

• REACTION TEMPERATURE

• TIME OF REACTION

• CONTENT OF STRIPPING STEAM

Page 9: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

VACUUM VALUE

• SHORTER DEODORISATION TIME Lower pressure permits shorter deodorisation time Less hydrolysis occurs lower oil loss and production of an oil with min. FFA

Page 10: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• DECREASING OF CONSUMPTION OF STRIPPING STEAM The quantity of stripping steam required is directly proportional to absolute pressure. At 24 mm Hg for example twice as much steam will be required as at 12 mm Hg . four times as much as at 6 mm Hg. 6 mm Hg X stripping steam 12 mm Hg 2X stripping steam 24 mm Hg 4X stripping steam

Page 11: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• INCREASE OF UNSAPONIFIABLE SUBSTANCES IN FATTY ACID.

Page 12: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

ENERGY EFFICIENCY

• Less Consumption of electricity. • Less Consumption of steam. • High performans of cooling water • Less Consumption of fuel-oil. • Less maintanence cost.

Page 13: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

INCREASING OF VACUUM

PERFORMANCE

Page 14: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

INCREASING OF VACUUM PERFORMANCE

• ORIANTATION OF EQUIPMENT • PROCESS CONTROL • MECHANIC PROCESS CONTROL

• PROJECT FOR HIGH VACUUM PERFORMANCE

Page 15: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• ORIANTATION OF EQUIPMENT

Page 16: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
Page 17: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• PROCESS CONTROL

Page 18: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
Page 19: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

•MECHANIC PROCESS CONTROL

Page 20: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

• MECHANİC PROCESS CONTROL 1. STEAM PROJECT A) VACUUM JET B) STRIPPING STEAM

2. COOLING WATER PROJECT. 3. VACUUM PROJECT.

4. . PRODUCTION PROCESS

Page 21: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
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Page 25: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

PROJECT OF HIGH VACUUM PERFORMANCE

Page 26: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

HELPFUL

RESOURCES

Page 27: Performance Increase of Vacuum Systemsin Vegetable Oil Sector

HELPFUL RESOURCES

• VACUUM TECHNOLOGY - KÖRTİNG

• FLUID MECHANICS – METU–HALUK AKSEL

• HEAT TRANSFER –J.P.HOLMAN

• VEGETABLE OIL TECHNOLOGY-SWERN

• STEAM TECHNOLOGY- TMMOB

• OLIVE OIL TECHNOLOGY- G. MORCHIO

Page 28: Performance Increase of Vacuum Systemsin Vegetable Oil Sector
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