DOI QR코드

DOI QR Code

A Study of Nitrification Kinetics in the Biofilter Process for Aquaculture Water Treatment: A Review

양식 수처리를 위한 생물막 공정에서 질산화 영향인자에 대한 고찰

  • Park, Noh Back (Aquaculture Management Division, National Fisheries Research & Development Institute) ;
  • Park, Mi Seon (Aquaculture Management Division, National Fisheries Research & Development Institute) ;
  • Lee, Jin Hwan (Aquaculture Management Division, National Fisheries Research & Development Institute) ;
  • Myeong, Jeong In (Aquaculture Management Division, National Fisheries Research & Development Institute)
  • 박노백 (국립수산과학원 양식관리과) ;
  • 박미선 (국립수산과학원 양식관리과) ;
  • 이진환 (국립수산과학원 양식관리과) ;
  • 명정인 (국립수산과학원 양식관리과)
  • Received : 2013.09.23
  • Accepted : 2013.12.04
  • Published : 2013.12.31

Abstract

There have been many studies on biofilter process regarding satisfactory water quality and the operational conditions of Recirculating Aquaculture Systems (RAS). For effective nitrification processes, it is necessary to dynamically identify and apply nitrifying microorganisms. Physical, chemical and biological processes concerning biofilms can be applied and influential factors including substrate, dissolved oxygen concentrations, organic matter, temperature, pH, alkalinity, salinity and mixing velocity intensity need to be considered. Also, designing and managing the process based on the dynamic interpretation of these factors are prerequisites for engineering applications of the biofilter process. This paper draws on current literature on the kinetics of nitrification of biofilms in the biofilter process. Influential factors for nitrification are crucial during the biofilter process and are expected to be critical in informing the design and operation of recirculating aquaculture systems.

Keywords

References

  1. Anthonisen AC, Loeth RC, Prakasam TB and Srinath EG. 1976. Inhibition of nitrification by ammonia and nitrous acid. Wat Pollut Control Fed 48, 835-852.
  2. Antoniou P, Hamilton J, Koopman B, Jain R, Holloway B, Ly­beratos G and Svoronos A. 1990. Effect of temperature and pH on the effective maximum specific growth rate of nitrify­ing bacteria. Wat Res 24, 97-101. https://doi.org/10.1016/0043-1354(90)90070-M
  3. Barnard JL. 1975. Biological nutrient removal without the addi­tion of chemical. Wat Res 13, 185.
  4. Beccari H, Marani D and Ramadori R. 1980. A critical analysis of nitrification alternatives. Wat Res 13, 185-192.
  5. Bidstrup SM and Grady CPL. 1988. SSSP-Simulation of single-sludge processes. Wat Pollut Control Fed 60, 351.
  6. Boon B and Laudelout H. 1962. Kinetics of nitrite oxidation by Nitrobacter Winogradskyi. Biochem 85, 440-447. https://doi.org/10.1042/bj0850440
  7. Bryers JD and Characklis WG. 1982. Process governing prima­ry biofilm formation. Biotechnol and Bioeng 14, 2451-2476.
  8. Buswell AM, Shiota T, Lawrence N and Meter IV. 1954. Labo­ratory studies in the kinetics of the growth of nitrosomonas with relation to the nitrification phase of the BOD test. Appl Microbiol 2, 21-25.
  9. Carrera J, Vicent T and Lafuente J. 2004. Effect of influ­ent COD/N ratio on biological nitrogen removal (BNR) from high-strength ammonia industrial wastewater. Pro­cess Biochem 39, 2035-2041. http://dx.doi.org/10.1016/j. procbio.2003.10.005.
  10. Charey RC, Hooper DG and McLee AG. 1979. Nitrification kinetics in activated sludge at various temperature and dis­solved oxygen concentrations. Omperial Chemical Inc. Bill­ing, Cleveland, England.
  11. Chen S, Ling J and Blancheton JP. 2006. Nitrification kinetics of biofilm as affected by water quality factors. Aquacult Eng 34, 179-197. http://dx.doi.org/10.1016/j.aquaeng.2005.09.004.
  12. Colt J and Armstrong DA. 1981. Nitrogen toxicity to crusta­ceans, fish and mollusks. In: Allen LJ and Kinney EC (Eds.), Proceedings of the Bio-Engineering Symposium for Fish Culture. Ame Fisher Soc, 34-47.
  13. Downing AL and Hopwood AP. 1964a. Some observations on the kinetics of nitrifying activated sludge plants. Schweizeri­sche Aeitschrift fur Hydrologie 26, 271-288.
  14. Downing AL, Painter HA and Knowles G. 1964b. Nitrification in the activated sludge process. J of Sewage Purification, 130-158.
  15. Engel MS and Alexander M. 1958. Growth and autotrophic me­tabolism of nitrosomonas europaea. J Bact 76, 217-222. https://doi.org/10.1002/path.1700760125
  16. Fitch MW, Pearson N, Richards G and Burken JG. 1998. Bio­logical fixed-film systems. Wat Environ 70, 495-518. https://doi.org/10.2175/106143098X134226
  17. Forster JRM. 1974. Studies on nitrification in marine biological filters. Aquaculture 4, 387-397. https://doi.org/10.1016/0044-8486(74)90067-2
  18. Gujer W and Boller M. 1986. Design of a nitrifying tertiary trickling filter based on theoretical concepts. Wat Res 70, 495-518.
  19. Hagopian DS and Riley JG. 1998. A closer look at the bacteriol­ogy of nitrification. Aquacult Eng 18, 223-244. https://doi.org/10.1016/S0144-8609(98)00032-6
  20. Hall ER and Murphy KL. 1980. Estimation of nitrifying bio­mass and kinetics in wastewater. Wat Res 14, 297-304. https://doi.org/10.1016/0043-1354(80)90075-5
  21. Haug RT and McCarty PL. 1972. Nitrification with submerged filters. Wat Pollut Control Fed 44, 2086-2102.
  22. Hitdlebaugh JA and Miller RD. 1981. Operational problems with rotating biological contactors. Wat Pollut Control Fed 53, 1283.
  23. Huguenin JE and Colt J. 1989. Design and operating guide for aquaculture seawater systems. Developments in Aquacul­ture and Fisheries Science 20, Elsevier Science Pulishers B.V., Amsterdam, The Netherlands.
  24. Hultman B. 1971. Kinetics of biological nitrogen removal. Inst. Vattenforsorjmingsoch Avloppsteknik samt vattenkemi, stockholmi: KTH Pub 71.
  25. Jung YH and Yun ZW. 2003. The effects of organic concentra­tion in nitritating biofilm reactor. J of KSEE 25, 963-969.
  26. Kawai A, Yoshida Y and Kimata M. 1965. Biochemical studies on the bacteria in the aquarium with a circulating system II. Nitrifying activity of the filter sand. Bull Jpn Sor Fish 31, 65-71. https://doi.org/10.2331/suisan.31.65
  27. Kim DJ, Lee DI and Keller J. 2006. Effect of temperature and free ammonia on nitrification and nitrite accumulation in landfill leachate and analysis of its nitrifying bacterial com­munity by FISH. Bioresour Technol 97, 459-468. http:// dx.doi.org/10.1016/j.biortech.2005.03.032.
  28. Knowles G, Downing AL and Barrett MJ. 1965. Determination of kinetic constants for nitrifying bacteria in nixed culture with the aid of an electronic computer. J Gen Microbiol 38, 263-278. https://doi.org/10.1099/00221287-38-2-263
  29. Landelout H. and Van Tichelen L. 1960. Kinetics of nitrite oxi­dation Nitrobacter-Winogradskyi. J Bact 79, 39-42.
  30. Lawrence AW and Brown CG. 1976. Design and control of ni­trifying activated sludge system. Wat Pollut Control Fed 48, 1779-1803.
  31. Lees H. 1954. Biochemistry of the nitrifying bacteria. In Auto­trophic Microorganisms (Fry BA and Peel JL, eds), Cam­bridge Univ. Press, New York, U.S.A., 84-98.
  32. Losordo TW and Westers H. 1994. System carrying capacity and flow estimation. In: Timmons MB and Losordo TM. (Eds.), Aquaculture Water Reuse Systems: Engineering De­sign and Management. Elsevier, 9-60.
  33. Loveless JE and Painter HA. 1968. The influence of metal ion concentration and pH value on the growth of a nitrosomono­nas strain isolated from activated sludge. J Gen Microbiol 52, 1-14. https://doi.org/10.1099/00221287-52-1-1
  34. Masser MP, Rackocy J and Losordo TM. 1999. Recirculating aquaculture tank production system: management of re­circulating system. Southern Regional Aquaculture Center 452, 1-12.
  35. Meade JW. 1985. Allowable ammonia for fish culture. Prog Fish Cult 47, 135-145. https://doi.org/10.1577/1548-8640(1985)47<135:AAFFC>2.0.CO;2
  36. Metcalf and Eddy. 1973. Wastewater Engineering: Collection. Treatment and Disposal, McGraw-Hill, New York, U.S.A.
  37. Miller DC, Poucher S, Cardin JA and Hansen D. 1990. The acute and chronic toxicity of ammonia to marine fish and a mysid. Arch Environ Contam Toxicol 19, 40-48. https://doi.org/10.1007/BF01059811
  38. Mosquera-Corral A, Gonzalez F, Campos JL and Mendez R. 2005. Partial nitrification in a SHARON reactor in the presence of salts and organic carbon compounds. Pro­cess Biochem 40, 3109-3118. http://dx.doi.org/10.1016/j. procbio.2005.03.042.
  39. Nogueira R, Lazarova V, Manem J and Melo LF. 1998. Influ­ence of dissolved oxygen on the nitrification kinetics in a circulating bed biofilm reactor. Bioprocess Eng 19, 441-449. https://doi.org/10.1007/s004490050546
  40. Painter HA and Loveless JE. 1983. Effect of temperature and pH values on the growth rate constants of nitrifying bacteria in the activated sludge process. Wat Res 17, 237-248. https://doi.org/10.1016/0043-1354(83)90176-8
  41. Park NB, Choi WY, Yoon AH, Jun HB and Park SM. 2010. Ef­fects of environmental Factors on nitrite accumulation in a strong nitrogen removal system. J of KSWW 24, 51-62.
  42. Princic A, Ivan M, France M, Eldor AP and James MT. 1998. Effect of pH and oxygen and ammonium concentrations on the community structure of nitrifying bacteria from waste­water. Appl and Environ Microbiol 64, 3584-3590.
  43. Qiao S, Matsumoto N, Shinohara T, Nishiyama T, Fufii T, Bhatti Z and Furukawa K. 2010. High-rate partial nitrification per­formance of high ammonium containing wastewater under low temperatures. Bioresour Technol 101, 111-117. http:// dx.doi.org/10.1016/j.biorcech.2009.08.003.
  44. Rimer AE and Woodward RL. 1972. Two stage activated sludge pilot-plant operation of Fitchburg, Massachusetts. Wat Pol­lut Control Fed 44, 101-106.
  45. Rittmann BE and McCarty PL. 1978. Variable-order model of bacterial-film kinetics. Environ Engr 104, 889-900.
  46. Rittmann BE and McCarty PL. 1980. Model of steady-state­biofilm kinetics. Biotechnol Bioeng 22, 2343-2357. https://doi.org/10.1002/bit.260221110
  47. Rittmann BE and McCarty PL. 2002. Environmental biotech­nology: Principles and Application. McGraw-Hill Inc.
  48. Schoberl P and Engel H. 1964. Dar verhalten der nitrification kakterien gegenuber gelostem. Archiv Fin Mikrobiolgie, 393-400.
  49. Sharma B and Ahlert RC. 1977. Nitrification and nitrogen re­moval. Wat Res 11, 897-925. https://doi.org/10.1016/0043-1354(77)90078-1
  50. Srna RF and Baggaley A. 1975. Kinetic response of perturbed marine nitrification system. Wat Pollut Control Fed 47, 472-486.
  51. Sudarno U, Winter J and Gallert G. 2011. Effect of varying salinity, temperature, ammonia and nitrous acid concen­trations on nitrification of saline wastewater in fixed-bed reactor. Bioresour Technol 102, 5665-5673. http://dx.doi. org/10.1016/j.biortech.2011.02.078.
  52. Trussell RP. 1972. The percent un-ionized ammonia in aqueous ammonia solutions at different pH levels and temperatures. J Fish Res Board Can 29, 1505-1507. https://doi.org/10.1139/f72-236
  53. US Environmental Protection Agency. 1975. Process design manual for nitrogen control. Office Technology Transfer, Washington DC, U.S.A.
  54. Vadivelu VM, Keller J and Yuan Z. 2007. Free ammonia and free nitrous acid inhibition on the anabolic and catabolic processes of Nitrosomonas and Nitrobactor. Wat Sci Tech 65, 89-97. http://dx.doi.org/10.2166/wst.2007.612.
  55. van Rijn J. 1996. The potential for integrated biological treat­ment systems in recirculating fish culture-a review. Aqua­culture 139, 181-201. https://doi.org/10.1016/0044-8486(95)01151-X
  56. Villaverde S, Garcia-encina PA and Fdz-Polanco F. 1997. In­fluence of pH over nitrifying biofilm activity in submerged biofilters. Wat Res 31, 1180-1186. https://doi.org/10.1016/S0043-1354(96)00376-4
  57. Weon SY, Koopman B and Lee SI. 2004. Effects of toxicants on nitrifying biomass in flocs vs. carriers. Environ Technol 25, 193-199. http://dx.doi.org/10.1080/09593330409355452.
  58. Wheaton FW, Hochheimer JN, Kaiser GE, Krones MJ, Libey GS and Easter CC. 1994. Nitrification principles: In Tim-mons MB and Losordo TM (Eds.), Aquaculture water reuse systems: Engineering design and Management. Elsevier, Amsterdam, 101-126.
  59. Williamson KJ and McCarty PL. 1976. Verification studies of the biofilm model for bacterial substrate utilization. J Water Poll: Control Fedr 48, 281-289.
  60. Wuhrman K. 1963. Effect of oxygen tension on bio-chemical reaction in sewage purification plants. In: Proceedings of the 3rd Manhattan Conference on Advances in Biological Waste Treatment. McMillan, New York, U.S.A.
  61. Zhu S and Chen S. 1999. An experimental study on nitrification biofilm performances using a series reactor system. Aquac Eng 20, 245-259. https://doi.org/10.1016/S0144-8609(99)00019-9

Cited by

  1. Nitrification and Denitrification of Land-based Fish Farm Wastewater using an Anaerobic-Aerobic Upflow Biological Aerated Filter vol.47, pp.5, 2014, https://doi.org/10.5657/KFAS.2014.0622