화학공학소재연구정보센터
Korean Journal of Chemical Engineering, Vol.29, No.10, 1347-1351, October, 2012
Comparative study on the effect of various pretreatment methods on the enrichment of hydrogen producing bacteria in anaerobic granulated sludge from brewery wastewater
E-mail:
Five pretreatment methods, namely chemical, acid, heat-shock, freezing and thawing, and base, were evaluated for the enrichment of hydrogen-producing bacteria in anaerobic granulated sludge, which will be subsequently used as seed in biological hydrogen production. All the pretreatments showed positive effects towards improving hydrogen (H2) generation by the microbial population with higher hydrogen production yield and COD removal efficiency as compared to control. The granulated sludge pretreated by heat-shock showed maximum accumulated H2 (19.48mLg^(-1)-COD), COD removal efficiency (62%), and biomass concentration (22.5 gL^(-1)).
  1. Kotay SM, Das D, Int. J. Hydrog. Energy., 33, 258 (2008)
  2. Chong ML, Abdul Rahim R, Shirai Y, Hassan MA, Int. J.Hydrog. Energy., 34, 764 (2009)
  3. Lin CY, Lee CY, Tseng IC, Shiao IZ, Process Biochem., 41, 915 (2006)
  4. Shi XY, Jin DW, Sun QY, Li WW, Renewable Energy., 35, 1493 (2010)
  5. Chen WM, Tseng ZJ, Lee KS, Chang JS, Int. J. Hydrog.Energy., 30, 1063 (2005)
  6. Levin DB, Islam R, Cicek N, Sparling R, Int. J. Hydrog.Energy., 31, 1496 (2006)
  7. Lin PY, Whang LM, Wu YR, Ren WJ, Hsiao CJ, Li SL, et al., Int. J. Hydrog. Energy., 32, 1728 (2007)
  8. Chong ML, Vikineswary S, Shirai Y, Hassan MA, Int. J.Hydrog. Energy., 34, 3277 (2009)
  9. Krupp M, Widmann R, Int. J. Hydrog. Energy., 34, 4509 (2009)
  10. Yu HQ, Zhu ZH, Hu WR, Zhang HS, Int. J. Hydrog.Energy., 27, 1359 (2002)
  11. Valdez-Vazquez I, Sparling R, Risbey D, Rinderknecht-Seijas N, Poggi-Varaldo HM, Bioresour. Technol., 96(17), 1907 (2005)
  12. Cuetos MJ, Gomez X, Escapa A, Moran A, J. Power Sources, 169(1), 131 (2007)
  13. Zhu J, Wu X, Miller C, Yu F, Chen P, Ruan R, J. Environ.Sci. Health B., 42, 393 (2007)
  14. Leite JAC, Fernandes BS, Pozzi E, Barboza M, Zaiat M, Int. J. Hydrog. Energy., 33, 579 (2008)
  15. Mohan SV, Babu VL, Sarma PN, Bioresour. Technol., 99(1), 59 (2008)
  16. Tang GL, Huang J, Sun ZJ, Tang QQ, Yan CH, Liu GQ, J. Biosci. Bioeng., 106(1), 80 (2008)
  17. Ming L, Youcai Z, Qiang G, Xiaoqing Q, Dongjie N, Renewable Energy., 33, 2573 (2008)
  18. Zhang T, Liu H, Fang H, J. Environ. Manage., 69, 149 (2003)
  19. van Niel EWJ, Claassen PAM, Stams AJM, Biotechnol. Bioeng., 81(3), 255 (2003)
  20. Kotsopoulos TA, Zeng RJ, Angelidaki I, Biotechnol. Bioeng., 94(2), 296 (2006)
  21. Fang HHP, Li CL, Zhang T, Int. J. Hydrog. Energy., 31, 683 (2006)
  22. Kapdan IK, Kargi F, Enzyme Microb. Technol., 38(5), 569 (2006)
  23. Valdez-Vazquez, Rios-Leal E, Carmona-Martinez A, Munoz-Paez K, Poggi-Varald H, Environ. Sci. Technol., 40, 3409 (2006)
  24. Wu K, Chang C, Chang J, Process Biochem., 42, 1165 (2007)
  25. Zhang ZP, Show KY, Tay JH, Liang DT, Lee DJ, Int. J.Hydrog. Energy., 33, 1559 (2008)
  26. Fang HHP, Liu H, Bioresour. Technol., 82(1), 87 (2002)
  27. Kim SH, Han SK, Shin HS, Process Biochem., 41, 199 (2006)
  28. Wang J, Wan W, Int. J. Hydrog. Energy., 34, 799 (2009)
  29. Cheong DY, Hansen CL, Appl. Microbiol. Biotechnol., 72(4), 635 (2006)
  30. Hu B, Chen S, Int. J. Hydrog. Energy., 32, 3266 (2007)
  31. Zhu H, Beland M, Int. J. Hydrog. Energy., 31, 1980 (2006)
  32. Wang J, Wan W, Int. J. Hydrog. Energy., 33, 2934 (2008)
  33. Mu Y, Yu HQ, Wang G, Enzyme Microb. Technol., 40(4), 947 (2007)
  34. O-Thong S, Prasertsan P, Birkeland NK, Bioresour. Technol., 100(2), 909 (2009)
  35. American Public Health Association (APHA), Standard methods for the examination of water and wastewater, 20th Ed., Washington DC, AWWA (1999)