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SBR改造为A^(2)O工艺设计的应用

Application of Process Design of Transforming SBR into A^(2)O
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摘要 近几年,随着国家各项环保政策的颁布,人们的环境保护意识逐渐增强,污水处理厂提标改造成为趋势。在污水处理厂提标改造过程中,诸多污水处理工艺得到改造,其中,SBR工艺的改造比较典型。本文分析了某污水处理厂生物处理段SBR改造为A^(2)O的工艺设计应用实例。实践证明,改造后处理效果显著,出水稳定达标,这对于现状为SBR工艺的污水处理厂提标改造具有借鉴意义。 In recent years,with the promulgation of various national environmental protection policies,people’s awareness of environmental protection has gradually increased,and the upgrading and renovation of sewage treatment plants has become a trend.In the process of upgrading and renovation of the sewage treatment plant,many sewage treatment processes have been transformed,among which the transformation of the SBR process is typical.This paper analyzes the application example of process design for the transformation of SBR into A^(2)O in the biological treatment section of a sewage treatment plant.Practice has proved that the post-transformation treatment effect is remarkable,and the effluent reaches the standard stably,which has reference significance for the upgrading and renovation of sewage treatment plants with SBR process.
作者 曹令通 CAO Lingtong(Anhui Urban Construction Design Institute Co.,Ltd.,Hefei 230000,China)
出处 《中国资源综合利用》 2022年第5期192-194,共3页 China Resources Comprehensive Utilization
关键词 污水处理厂 提标改造 SBR A^(2)O 工艺设计 sewage treatment plant upgrading and renovation SBR A^(2)O process design
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  • 1国家环境保护总局.水和废水监测分析方法[M](第四版)[M].北京:中国环境科学出版社,2002..
  • 2Oehmen A,Saunders A,Blackall L L,et al.The effect of GAOs on anaerobic carbon requirement in full-scale Australian EBPR plants[C].Enviro IWA World Water Congress,Melbourne Australia,2002.
  • 3Wen-Tso Liu,Nakamur K,Matsuo T.Internal energy-based competition between polyphosphate and glycogen accumulation bacteria in biological phosphorus removal reactors-effect of P/C feeding ratio[J].Wat Res.,1997,31(6):1430-1438.
  • 4Filipe C D M,Glen T,Daigger C P,et al.pH as a key factor in the competition between glycogen-accumulation organisms and phosphorus accumulating organisms[J].Wat Environ Res.,2001,73(2):223-232.
  • 5Smolders G J F,van der Meij,van Loosdrecht MCM,et al.Model of the anaerobic metabolism of the biological phosphorus removal process-stoichiometry and pH influence[J].Biotechnol Bioeng.,1994,43(6):461-470.
  • 6Liu WT,Mino T,Nakamura K,et al.Glycogen accumulating population and its anaerobic substrate uptake in anaerobic-aerobic activated sludge without biological phosphorus removal[J].Water research,1996,30(1):75-82.
  • 7Hu J Y,Ong S L,Ng W J,et al.A new method for characterizing denitrifying phosphorus removal bacteria by using three different types of electron acceptors[J].Water research,2003,37 (14):3463-3471.
  • 8Filipe C D M,Daigger G T,Grady C P L.Stoichiometry and kinetics of acetate uptake under anaerobic conditions by an enriched culture of phosphorus-accumulating organisms at different pHs[J].Biotechnil Bioeng.,2001,76(1):32-43
  • 9Filipe C D M,Daigger G T,Grady C P L.A metabolic model for acetate uptake under anaerobic conditions by glycogen-accumulating organisms:stoichiometry,kinetics,and the effect of pH[J].Biotechnol Bioeng.,2001,76(1):17-31.
  • 10Zeng R J,Yuan Z,van Loosdrecht M C M,et al.Proposed modifications to metabolic model for glycogen accumulating organisms under anaerobic conditions[J].Biotechnol Bioeng.,2002,80(3):277-279.

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