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膜生物反应器系统中原生动物的群落特征 被引量:2

Protozoan Community Diversity in Membrane Bioreactor
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摘要 与常规生物处理工艺相比,膜生物反应器(MBR)系统由于污泥停留时间长、污泥浓度高等特点,因此反应器内微生物种群结构呈现不同的特点.通过对MBR系统中原生动物的群落结构进行为期近2年连续的监测结果表明,过长的污泥龄对系统中原生动物的种类与数量均有负面的影响.研究发现:①在长期不排泥的MBR系统中,当环境温度从11℃上升到25℃,原生动物的多样性呈显著上升趋势;②当污泥龄从350 d下降到30 d,MBR系统中原生动物的种类与数量明显增加.特别在较低的环境温度条件下,系统中原生动物的种类与数量随着污泥龄的缩短呈显著的上升趋势;③与相同污泥龄(SRT=30d)的氧化沟(TOD)系统相比,MBR的污泥中原生动物的种类与数量均低于TOD. Continuous monitoring on the microbial character was performed in the sludge in MBR compared with traditional active sludge process. It was found that the sludge retention time (SRT) and temperature were the dominant factors that control protozoan diversity. The extra-long SRT exhibited a negative effect on the activity of protozoa. When SRT decreased from 350 d to 30 d, protozoan diversity increased significantly. Subsequently, the structure of protozoa community in the MBR was found to be quite sensitive to environment temperature, and protozoan diversity continuously increased with the increasing temperature from 11 to 25℃. The dominant population was alternate and in some order : running Ciliata, Epistylis and Opercularia, Rotifers, then Aeolosomatidae. Further analysis showed that MBR reactor harbored a lower detectable microbial diversity compared with the TOD reactor at the same temperature and SRT.
作者 郑祥 刘俊新
出处 《环境科学》 EI CAS CSCD 北大核心 2009年第9期2635-2640,共6页 Environmental Science
基金 国家自然科学基金项目(50708111) 环境水质学国家重点实验室开放基金项目(200601) 北京科技新星项目(2008A110)
关键词 膜生物反应器 种群结构 原生动物 污泥龄 membrane bioreactor microbial community structure protozoa sludge retention time (SRT)
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参考文献13

  • 1Nicolau A, Dias N, Mota M, et al. Trends in the use of protozoa in the assessment of wastewater treatment [ J ]. Res Mirobiol, 2001, 152 : 621-630.
  • 2Zhou K X, Xu M Q, Dai J Y, et al. The mierofanna communities and operational monitoring of an activated sludge plant in China [J]. Eur J Protistol, 2006, 42:291-295.
  • 3Jiang J G, Wu S G, Shen Y F. Effects of seasonal succession and water pollution on the protozoan community structure in an eutrophic lake [J]. Chemosphere, 2007,66: 523-532.
  • 4郑祥,刘俊新.影响MBR脱氮效率的因素研究[J].环境科学学报,2005,25(10):1325-1329. 被引量:29
  • 5邢传宏,钱易,孟耀斌,Tardieu Eric.错流式膜-生物反应器处理生活污水及其生物学研究[J].环境科学,1997,18(6):23-26. 被引量:13
  • 6Luxmy B S, Nakajima F, Yamamoto K. Analysis of bacterial community in membrane-separation bioreactors by fluorescent in situ hybridization (FISH) and denaturing gradient gel electrophoresis (DGGE) techniques [J]. Water Science Technology, 2000, 41 (10-11) : 259-268.
  • 7Rosenberger S, Kruger U, Witzig R, et al. Performance of a bioreactor with submerged membranes for aerobic treatment of municipal wastewater [J]. Water Research, 2002, 36: 413-420.
  • 8Witzig R, Manz W, Rosenberger S, et al. Mierobiological aspects of a bioreactor with submerged membranes for aerobic treatment of municipal wastewater [J]. Water Research, 2002, 36: 394-402.
  • 9王勇,孙寓姣,黄霞.膜-生物反应器中微型动物变化与活性污泥状态相关性研究[J].环境科学研究,2004,17(5):48-51. 被引量:16
  • 10张军,聂梅生,王宝贞.复合膜生物反应器的生物学研究[J].中国给水排水,2002,18(2):53-55. 被引量:11

二级参考文献32

  • 1郑祥,刘俊新.影响MBR脱氮效率的因素研究[J].环境科学学报,2005,25(10):1325-1329. 被引量:29
  • 2任南琪.水污染控制微生物学[M].黑龙江科学技术出版社,1993..
  • 3[1]Rosenberger S,Kruger U,Witzig R,et al.Performance of a bioreactor with submerged membranes for aerobic treatment of municipal waste water[J].Water Res,2002,36:413-420.
  • 4[2]Witzig R,Manz W,Rosenberger S,et al.Microbiological aspects of a bioreactor with submerged membranes for aerobic treatment of municipal wastewater[J].Water Res,2002,36:394-402.
  • 5[5]吕淑萍.废水生化处理[M].上海:同济大学出版社,1999.141-148.
  • 6[6]L F De A Cybis,Horan N J.Protozoan and metazoan populations in sequencing batch reactors operated for nitrification and or denitrification[J].Water Sci Tech,1996,35(1):81-86.
  • 7[7]Thongchai P,Orathai C.Water quality and occurrences of protozoa and metazoa in two constructed wetlands treating different wastewaters in Thailand[J].Water Sci Tech,1997,36(12):183-188.
  • 8[9]Zhang Boran,Kazuo Yamamoto.Seasonal change of microbial population and activities in a building wastewater reuse system using a membrane separation activated sludge process[J].Water Sci Tech,1996,34(5/6):295-302.
  • 9[11]Eikelboom D H,Van Buijsen H J J.Microscopic sludge investigation manual[M].2nd.Delft:TNO research institute,1983.
  • 10[12]Eikelboom D H.Filamentous organisms observed in activated sludge[J].Water Res,1975,9:365-388.

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