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Zeolite powder addition to improve the performance of submerged gravitation-filtration membrane bioreactor 被引量:8

Zeolite powder addition to improve the performance of submerged gravitation-filtration membrane bioreactor
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摘要 In this study, the effect of zeolite powder addition on submerged membrane bioreactor (SMBR) on membrane permeability, and the removals for COD, NH3-N, TN were investigated. Through the parallel operation of control and test systems, it was found that the zeolite powder addition could alleviate the ultra-filtration membrane fouling and enhance the membrane permeability. On the basis of experimental investigations, a concept of "protection coating layer" was proposed to illustrate the phenomenon of UF membrane fouling. In addition, the removal for COD in test system was more stable, a little higher compared to the control system. Due to the combination of nitrification and ion exchange, a more excellent removal for NH3-N in test system was obtained regardless of influent NH3-N loading rate. It was also found that a mean 25% higher TN removal took place in the test system, and ion exchange and simultaneous nitrification and de-nitrification were analyzed to be main factors. During the stable operation period, the SOURs of test zeolite powder added sludge and control activated sludge were measured to be 75 mgO2/(gMLVSS, h) and 24 mgO2/(gMLVSS, h) respectively, it meant that the zeolite powder addition could enhance the microorganism activity significantly. In this study, the effect of zeolite powder addition on submerged membrane bioreactor (SMBR) on membrane permeability, and the removals for COD, NH3-N, TN were investigated. Through the parallel operation of control and test systems, it was found that the zeolite powder addition could alleviate the ultra-filtration membrane fouling and enhance the membrane permeability. On the basis of experimental investigations, a concept of "protection coating layer" was proposed to illustrate the phenomenon of UF membrane fouling. In addition, the removal for COD in test system was more stable, a little higher compared to the control system. Due to the combination of nitrification and ion exchange, a more excellent removal for NH3-N in test system was obtained regardless of influent NH3-N loading rate. It was also found that a mean 25% higher TN removal took place in the test system, and ion exchange and simultaneous nitrification and de-nitrification were analyzed to be main factors. During the stable operation period, the SOURs of test zeolite powder added sludge and control activated sludge were measured to be 75 mgO2/(gMLVSS, h) and 24 mgO2/(gMLVSS, h) respectively, it meant that the zeolite powder addition could enhance the microorganism activity significantly.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2006年第2期242-247,共6页 环境科学学报(英文版)
基金 TheFokYingTungEducationFoundation (N o.94004)andtheN aturalScienceFoundationofShanghaiCity (No.04ZR14010)
关键词 submerged gravitation-filtration membrane bioreactor PERFORMANCE zeolite powder membrane fouling microorganism activity submerged gravitation-filtration membrane bioreactor performance zeolite powder membrane fouling microorganism activity
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  • 1APHA,1995.Standard methods for the examination of water and wastewater [M].19th ed.Washington,DC:American Public Health Association.
  • 2Athanasiadis K,Helmreich B,2005.Influence of chemical conditioning on the ion exchange capacity and on kinetic of zinc uptake by clinoptilolite[J].Water Research,39(8):1527-1532.
  • 3Barger M,Carnahan R P,1991.Fouling prediction in reverse osmosis processes[J].Desalination,83:23-33.
  • 4Cantet J,Paul E,Clauss F,1996.Upgrading performance of an activated sludge process through addition of talqueous powder [J].Water Science and Technology,34(5/6):75-83.
  • 5Chiemchaisri C,Yamamoto K,1994.Performance of membrane separation bioreactor at various temperatures for domestic wastewater treatment[J].J Membrane Science,87:119-129.
  • 6Choo I S,Lee C H,1998.Hydrodynamic behavior of anaerobic biosolids during crossflow filtration in the membrane anaerobic bioreactor[J].Water Research,32(11):3387-3397.
  • 7De Barros S T D,Andrade C M G,Mendes E S et al.,2003.Study of fouling mechanism in pineapple juice clarification by ultrafiltration[J].Journal of Membrane Science,215(1/2):213-224.
  • 8He S B,Xue G,2005.An approach to enhance permeate flux of submerged ultra-filtration membrane system [C].Proceedings of the International Water Association Conference.Xi'an,China.611-619.
  • 9Jefferson B,Laine A L,Judd S J et al.,2000.Membrane bioreactors and their role in wastewater reuse[J].Water Science and Technology,41(1):197-204.
  • 10Li A Y,Kothari D,Corrado J J,1984.Application of membrane anaerobic reactor system for the treatment of industrial wastewater[C].Proceedings of 39th Industrial Waste Conference.Purdue University.

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