[1]Chuang S H,Ouyang C F.The biomass fraction of the heterotrophs and phosphate-accumulating organisms in a nitrogen and phosphorus removal system[J].Wat Res,2000,34(8):2238-2290.
[2]Comeau Y,Hall K J,Hancock R E W,et al.Biochemical model for enhanced biological phosphorus removal[J].Wat Res,1986,20(12):1511-1521.
[3]Comeau Y,Oldham W K,Hall K J.Dynamics of carbon reserves in biological dephosphatation of wastewater[M]// Ramadori R.Advances in Water Pollution Control:Biological Phosphate Removal from Wastewaters.Oxford:Pergamon Press,1987:39-55.
[4]Kerrn-Jespersen J P,Henze M.Biological phosphorus uptake under anoxic and aerobic conditions[J].Wat Res,1993,27:617-624.
[5]赵庆,关卫省,王志盈.不同电子受体条件下的聚磷试验研究[J].水处理技术,2005,31(8):35-38.
[6]Wachtmeisster A,Kuba T,van Loosdrecht M C M,et al.A sludge characterization assay for aerobic and denitrifying phosphorus removing sludge[J].Wat Res,1997,31(3):471-478.
[7]Kuba T,van Loosdrecht M C M,Heijnen J J.Phosphorus and nitrogen removal with minimal COD requirement by integration of denitrifying dephosphatation and nitrification in a two-sludge system[J].Wat Res,1996,30(7):1702-1710.
[8]Jenkins D,Tandoi V.The applied microbiology of enhanced biological phosphate removal:accomplishments and needs[J].Wat Res,1991,25(12):1471-1478.
[9]王晓莲,王淑莹,马勇,等.A2/O工艺中反硝化除磷及过量曝气对生物除磷的影响[J].化工学报,2005,56(8):1565-1570.
[10]王晓莲,王淑莹,王亚宜,等.强化A2/O工艺反硝化除磷性能的运行控制策略[J].环境科学学报,2006,26(5):722-727.
[11]杨国靖,李小明,曾光明,等.一体化生物除磷脱氮技术:反硝化除磷[J].环境科技技术,2005,28(2):106-109.
[12]国家环境保护总局水和废水监测分析方法编委会.水和废水监测分析方法[M].4版.北京:中国环境科学出版社,2002.
[13]Somiya I,Tsuno H,Matsumoto M.Phosphorus release-storage reaction and organic substrate behavior in biological phosphorus removal[J].Wat Res,1988,22(1):49-58.
[14]Kuba T,Wachtmeister A,van Loosdrecht M C M,et al.Effect of nitrate on phosphorus release in biological phosphorus removal systems[J].Wat Sci Technol,1994,30:263-269.
[15]Kuba T,van Loosdrecht M C M,Heijnen J J.Effect of cyclic oxygen exposure on the activity of denitrifying phosphorus removing bacteria[J].Wat Sci Tech,1996,34:33-34.
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