期刊文献+

微氧反应器和好氧对照系统负荷效应对比研究 被引量:1

Comparative study of the loading effect on the micro-aerobic reactor and aerobic control system
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摘要 为了探讨负荷效应对微氧污泥床反应器运行特征的影响,研究比较了上升流式微氧污泥床反应器(UMSB)和好氧对照系统(ACS)在3种不同负荷水平下的运行特征。结果表明,负荷较低时,UMSB和ACS的COD去除率没有显著性差异,而UMSB的TP去除率显著高于ACS。负荷较高时,UMSB和ACS的COD去除率存在显著性差异,而UMSB和ACS的TP去除率不存在显著性差异。有机负荷对UMSB中COD和TP的去除具有较大影响。 In order to discuss the influence of loading effect on the operation characteristics of micro-aerobic sludge blanket reactor,the operation characteristics of upflow micro-aerobic sludge blanket reactor (UMSB) and aerobic control system (ACS) at three kinds of loading levels have been compared and studied. The results show that when the loading is low,the COD removing rates of UMSB and ACS do not have significant difference. The TP removing rate of UMSB is significantly higher than that of ACS. When the loading is higher ,thd COD removing rates of UMSB and ACS have significant difference. The TP removing rates of UMSB and ACS do not have significant differences. Organic loading has greater effect on COD and TP removing rates of UMSB.
出处 《工业水处理》 CAS CSCD 北大核心 2015年第10期50-53,共4页 Industrial Water Treatment
关键词 上升流式微氧污泥床反应器 负荷效应 好氧对照 upflow micro-aerobic sludge blanket reactor loading effect aerobic control
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参考文献15

  • 1Zheng S,Li H,Cui C. An upflow microaerobic sludge blanket reactor operating at high organic loading and low dissolved oxygen levels[J]. Biotechnology Letters,2011,33(4):693-697.
  • 2Daumer M,Beline F,Guiziou F,et al. Influence of pH and biological metabolism on dissolved phosphorus during biological treatment of piggery wastewater[J]. Biosystems Engineering,2007,96(3):379-386.
  • 3Guo J H,Peng Y Z,Peng C Y,et al. Energy saving achieved by limited filamentous bulking sludge under low dissolved oxygen[J]. Bioresoure Technology,2010,101(4):1120-1126.
  • 4李刚,周兴求,伍健东.微氧条件下厌氧折流板反应器运行特性研究[J].环境工程学报,2009,3(7):1263-1267. 被引量:10
  • 5Jenicek P,Keclik F,Maca J,et al. Use of microaerobic conditions for the improvement of anaerobic digestion of solid wastes[J]. Water Science & Technology,2008,58(7):1491-1496.
  • 6Díaz I,Pérez S I,Ferrero E M,et al. Effect of oxygen dosing point and mixing on the microaerobic removal of hydrogen sulphide in sludge digesters[J]. Bioresource Technology,2011,102(4):3768-3775.
  • 7Zitomer D H. Stoichiometry of combined aerobic and methanogenic COD transformation[J]. Water Research,1998,32(3):669-676.
  • 8He S B,Xue G,Wang B Z. Factors affecting simultaneous nitrification and de-nitrification(SND) and its kinetics model in membrane bioreactor[J]. Journal of Hazardous Materials,2009,168(2/3):704-710.
  • 9Hanaki K,Wantawin C,Ohgaki S. Nitrification at low levels of dissolved oxygen with and without organic loading in a suspended-growth reactor[J]. Water Research,1990,24(3):297-302.
  • 10Oehmen A,Lemos P C,Carvalho G,et al. Advances in enhanced biological phosphorus removal:From micro to macro scale[J]. Water Research,2007,41(11):2271-2300.

二级参考文献46

  • 1董春娟,吕炳南,陈志强.微氧条件下厌氧颗粒污泥和消化污泥特性研究[J].南京理工大学学报,2005,29(2):216-218. 被引量:19
  • 2初里冰,张兴文,李晓惠,杨凤林,张金霞.微氧膜生物反应器同时去除有机物和氮的研究[J].环境污染治理技术与设备,2005,6(5):78-82. 被引量:12
  • 3周可新,许木启,曹宏.生物除磷活性污泥系统微生物学研究进展[J].应用与环境生物学报,2005,11(5):638-641. 被引量:15
  • 4Zitomer D. H. , Shrout J. D. Feasibility and benefits of methanogenesis under oxygen-limited conditions. Waste Management, 1998, 18(12) :107 - 116.
  • 5Munch E. V. , Lane P. , Keller J. Simultaneous nitrification and denitrification in bench-scale sequencing batch reactors. WaterRes., 1996, 30(2):277 -284.
  • 6Yang W. , Vollertsen J. , Hvitved-Jacobsen T. Nitrite accumulation in the treatment of wastewater with high ammonia concentration. Water Sci. Tech. , 2003, 48 (3) : 135 - 141.
  • 7He S, Gu AZ, McMahon KD. Progress toward understanding the distribution of Accumulibacter among full-scale enhanced biological phosphorus removal systems. Microb Ecol, 2008, 55 (2): 229-236.
  • 8Crocetti GR, Ban?eld JF, Keller J, Bond PL, Blackall LL. Glycogen-accumulating organisms in laboratory-scale and full-scale wastewater treatment processes. Microbiology-SGM, 2002, 148 (11): 3353-3364.
  • 9Beer M, Kong YH, Seviour RJ. Are some putative glycogen accumulating organisms (GAO) in anaerobic: Aerobic activated sludge systems members of the a-Proteobacteria? Microbiology, 2004, 150 (7): 2267-2275.
  • 10Wong MT, Tan FM, Ng WJ, Liu WT. Identi?cation and occurrence of tetrad-forming Alphaproteobacteria in anaerobic–aerobic activated sludge processes. Microbiology, 2004, 150 (11): 3741-3748.

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