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废水生物除磷系统的运行与管理 被引量:11

OPERATION AND MANAGEMENT OF BIOLOGICAL TREATMENT SYSTEM TO REMOVE PHOSPHORUS
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摘要 本文介绍了溶解氧、NO_3^-与NO_2^-、有机物浓度、水温、pH、泥龄、剩余污泥处置方式等因素对生物除磷的影响,在此基础上提出了提高生物除磷系统除磷效果的运行管理措施. The effects on biological removal of P caused by various factors such as DO, NO3-, NO2- and organic contents as well as the temperature, pH, sludge age, manner to dispose residual sludge are prescribed in this paper. Some measures to improve the operation and management of biological treatment system to remove P are recommended upon this study.
作者 徐亚同
出处 《给水排水》 CSCD 1994年第6期20-22,共3页 Water & Wastewater Engineering
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同被引文献49

  • 1冯生华,姚念民.生物除磷脱氮工艺的探讨[J].给水排水,1994,20(2):18-21. 被引量:18
  • 2唐建国.除磷、除氮的NOGCO-PULS工艺介绍[J].给水排水,1995,21(12):44-44. 被引量:1
  • 3MervynC.Goronszy,朱明权,K.Wutscher.循环式活性污泥法(CAST)的应用及其发展[J].中国给水排水,1996,12(6):4-10. 被引量:88
  • 4Mogens Henze.Poul Harremoes污水生物处理与化学处理技术[M].国家城市给水排水工程技术研究中心译.北京:中国建筑工业出版社.1999,150-152.
  • 5Jean-Philippe Boisseret et al, Phosphate adsorption in flocculation processes of aluminum sulphate and poly-aluminum-silicate-sulphate[J].Wat.Res, 1997, 31(8):1939-1946.
  • 6Elisabeth et al, Phosohorus removal from wastewaters: experimental and theoretical support for alternative mechanisms[J].Wat. Res,1997,31 (2) : 328-338.
  • 7SEGRERS ENGINEERING WATER. UNITANK—Advanced treatment of industrial and municipal wastewater, 1996.
  • 8T Kuba, Van Loosdrecht M C M, FA Brandse, et al. Occurrence of Denitrifying Phosphorus Removing Bacteria in Moified UCT-TYPE Wastewater Treatment Plant[J]. Wat Res, 1997, 31(4): 777-786.
  • 9Smolders G J F, Van Loosdrecht M C M, Heijnen J J. Steady-state Analysis to Evaluate the Phosphate Removal Capacity and Acetate Requirement of Biological Phosphorus Removing Mainstream and Sidestream Process Configurations [J ]. Wat Res, 1996, 30 (10):2748-2756.
  • 10D Brdjanovie, A Stamet, Van Loosdrecht M C M, et al. Impact of Excessive Aerotion on Biological Phosphorus Removal from Wastewater[J] . Wat Res 1998, 32(1): 200-208.

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