DOI QR코드

DOI QR Code

RESEARCH PAPERS : INFLUENCE OF SULFATE AS AN ELECTRON ACCEPTOR ON THE ANAEROBIC HYDROLYSIS AND ACIDOGENESIS OF PARTICULATE ORGANICS


초록

키워드

참고문헌

  1. DOE, '97 Current Status of Production and Treatment of Waste in Korea (1998)
  2. Koh, S. C., Song, Y. C., and Kim, I. S., 'Efficient Treatment of Food Waste by EM (Effective Microorganisms) and Their Recycling,' J of Korea Solid Wastes Engineers Society, 14(7), 729-740 (1997)
  3. Song, Y. C., Kim, M. K., Shin, H. S., Paik, B. C., and Kim, J. O., 'Environmental Conditions on the Acidogenesis of Food Waste,' Proceeding of the 2000 KSWES Autumn Conference, Taegu, Korea, pp. 156-259(2000)
  4. Henze, M. and Mladenovski, C., 'Hydrolysis of Particulate Substrate by Activated Sludge under Aerobic, Anoxic and Anaerobic Conditions,' Water Res., 25(1), 61-64(1991)
  5. Veeken, A., Kalyuzhnyi, S., Scharff, H., and Hamelers, B., 'Effect of pH and VFA on Hydrolysis of Organic Solid Waste,' J. Environ. Engineer., 126(12), 1076-1081 (2000)
  6. Jain, S., Lala, A. K., Bhatia, S. K., and Kudchadker, A. P., 'Modelling of Hydrolysis Controlled Anaerobic Digestion,' J. of Chem. Tech. Biotech., 53, 337-344 (1992)
  7. Ruzicka, M., 'The Effect of Hydrogen on Acidogenic Glucose Cleavage,' Water Res., 30(10), 2447-2451 (1996)
  8. APHA, AWWA, and WPCF, Standard Methods for the examination of water and wastewater, 18th ed., American Public Health Association, Washington, DC (1987)
  9. Mizuno, O., Li, Y. Y., and Noike, T., 'The Behavior of Sulfate-reducing Bacteria in Acidogenic Phase of Anaerobic Digestion,' Water Res., 32(5), 1626-1634 (1998)
  10. Lin, C. Y. and Hsiu, M. W., 'Effects of sulfide, sulfite and sulfate on acidogenesis in upflow anaerobic sludge blanket process,' J. Environ. Sci. Health, A32(4), 1171-1184 (1997)
  11. Manilal, V. B., Litvin-scramm, S. B., and Suidan, M. T., 'Effect of Sulphidogenesis on Acid-Phase Digestion of Waste Activated Sludge,' Bioprocess Eng., 23, 595-597 (2000) https://doi.org/10.1007/s004490000205

피인용 문헌

  1. Enhanced Current Production by Electroactive Biofilm of Sulfate-Reducing Bacteria in the Microbial Fuel Cell vol.18, pp.4, 2013, https://doi.org/10.4491/eer.2013.18.4.277