References

  1. G. Feijoo, M. Soto, R. Mendez and J.M. Lema, Sodium inhibition in the anaerobic digestion process: antagonism and adaptation phenomena, Enzyme Microb. Technol., 17 (1995) 180–188.
  2. M. Tanticharoen, Research and development on agricultural biotechnology in Thailand [Online], Available: http://home.biotec.or.th/newscenter/Uploads/WE_pic/radC261F.pdf, 2004.
  3. O. Chavalparit and W. Limpaseni, Pollutant load from modified starch factories in Thailand, The Engineering Institute of Thailand Under HM The King's Patronage (EIT), Annual Conference, 1995, pp. 77–89 (in Thai).
  4. A. Rinzema, J. Van Lier and G. Lettinga, Sodium inhibition of acetoclastic methanogens in granular sludge from a UASB reactor, Enzyme Microb. Technol., 10 (1988) 101–109.
  5. B.D. Backus, C.J. Clanton, P.R. Goodrich and H.A. Morris, Carbon to nitrogen ratio and hydrauric retention time effect on the anaerobic digestion of cheese whey, Trans. ASAE, 31(1988) 1274.
  6. F. Kargi and A.R. Dincer, Enhancement of biological treatment performance of saline wastewater by halophilic bacteria, Bioprocess Eng., 15 (1996) 51–58.
  7. P.L. McCarty, Toxic materials and their control, anaerobic waste treatment Fundamentals—Parts III, Public Works, 1964, pp. 91–94.
  8. I.J. Kugelman and P.L. McCarty, Cation toxicity and stimulation in anaerobic waste treatment, J. Water Pollution Control Federation, 37 (1965) 97.
  9. R. Gourdon, C. Comel, P. Vermande and J. Veron, Kinetics of acetate, propionate and butyrate removal in the treatment of a semisynthetic landfill leachate on anaerobic filter, Biotechnol. Bioeng., 33 (1989) 1167–1181.
  10. B.K. Ahring, F. Alatriste-Mondragon, P. Westermann and R.A. Mah, Effects of cations on Methanosarcina thermophila TM-1 growing on moderate concentrations of acetate: Production of single cells, Appl. Microbial. Biotechnol., 35 (1991) 686–689.
  11. K.R. Sowers and R.P. Gunsalus, Adaptation for growth at various saline concentrations by the archebacterium Methanosarcina thermophila, J. Bacteriol., 170 (1988) 998–1002.
  12. J.A. Oleszldewicz and V.J. Thadani, Effects of biofilter media on the performance of Anaerobic Hybrid Reactors, Environ. Technol. Lett., 9 (1988) 89–100.
  13. Y.C. Chung and Y.S. Choi, Microbial activity and performance of an anaerobic reactor combining a fillter and a sludge bed, Water Sci. Technol., 27 (1993) 187–194.
  14. APHA, Standard Method for the Examination of Water and Wastewater, 19th ed., APHA/AWWA/WPCF, Washington, D.C., 1995.
  15. A.D. Brown, Aspects of bacterial response to the ionic environment, Bacteriol. Rev., 28 (1964) 296–329.
  16. D.M. Deana, A.C. Rose and F.R. Mary, Osmoadaptation in Archaea, Appl. Environ. Microbiol., 65 (1999) 1815–1825.
  17. G. Claude, A. Tjakko and R.B. Ian, Physiology of the osmotic stress response in microorganisms, Internat. J. Food Microbiol., 28 (1995) 233–244.
  18. A. Oren, Bioenergetic aspects of halophilism, Microbiol. Mol. Biol. Rev., 63 (1999) 334–348.
  19. R. Markus and M. Volker, Osmoadaptation in bacteria and Archaea: common principles and differences, Environ. Microbiol., 3 (2001) 743–754.