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厌氧膜生物反应器处理低强度城市污水时渗透通量的影响参数:文献综述

Parameters governing permeate flux in an anaerobic membrane bioreactor treating low-strength municipal wastewaters: a literature review.

作者信息

Bérubé P R, Hall E R, Sutton P M

机构信息

Department of Civil Engineering, The University of British Columbia, Vancouver, Canada.

出版信息

Water Environ Res. 2006 Aug;78(8):887-96. doi: 10.2175/106143005x72858.

Abstract

The objective of this review was to conduct a comprehensive literature survey to identify the parameters that govern the permeate flux in an anaerobic membrane bioreactor (AnMBR) treating municipal wastewater. Based on the survey, research to date indicates that the optimal membrane system for an AnMBR consists of an organic, hydrophilic, and negatively charged membrane with a pore size of approximately 0.1 microm. The use of both external and submerged membrane configurations shows promise. The operating parameters that affect permeate flux in an external membrane system are transmembrane pressure (TMP) and cross-flow velocity. The operating parameters that affect permeate flux in a submerged membrane system are TMP, sparging intensity, and duration of the relaxation period. Both cross-flow velocity and sparging intensity impart a significant amount of shear force on the biomass in an AnMBR. High shear forces can reduce the microbial activity in an AnMBR. In addition, high shear forces can reduce the size of the biosolids in the mixed liquor and increase the release of soluble microbial products. In this respect, external and submerged membrane systems are expected to perform differently because the magnitude of the shear forces to which the biomass is exposed in an external membrane system is significantly greater than that in a submerged system. The size of the biosolid particles and concentration of soluble microbial products in the mixed liquor affect permeate flux. Higher concentrations of soluble microbial products may be present in the mixed liquor when an AnMBR is operated at relatively low operating temperatures. Aerobic polishing following anaerobic treatment can potentially significantly reduce the concentration of some components of the soluble microbial products in the mixed liquor. It is not possible to remove the foulant layer on an organic membrane with caustic cleaning alone. Acidic cleaning or acidic cleaning followed by caustic cleaning is required to remove the foulant layer. This suggests that both biological/organic and inorganic material contribute to membrane fouling.

摘要

本综述的目的是进行全面的文献调查,以确定在处理城市污水的厌氧膜生物反应器(AnMBR)中控制渗透通量的参数。基于该调查,迄今为止的研究表明,AnMBR的最佳膜系统由孔径约为0.1微米的有机、亲水性和带负电荷的膜组成。外部和浸没式膜配置的使用都显示出前景。影响外部膜系统中渗透通量的操作参数是跨膜压力(TMP)和错流速度。影响浸没式膜系统中渗透通量的操作参数是TMP、曝气强度和松弛期持续时间。错流速度和曝气强度都会对AnMBR中的生物质施加大量剪切力。高剪切力会降低AnMBR中的微生物活性。此外,高剪切力会减小混合液中生物固体的尺寸并增加可溶性微生物产物的释放。在这方面,预计外部和浸没式膜系统的表现会有所不同,因为外部膜系统中生物质所承受的剪切力大小明显大于浸没式系统。混合液中生物固体颗粒的大小和可溶性微生物产物的浓度会影响渗透通量。当AnMBR在相对较低的操作温度下运行时,混合液中可能存在较高浓度的可溶性微生物产物。厌氧处理后的好氧抛光可能会显著降低混合液中某些可溶性微生物产物成分的浓度。仅用苛性碱清洗无法去除有机膜上的污垢层。需要进行酸性清洗或先进行酸性清洗再进行苛性碱清洗以去除污垢层。这表明生物/有机和无机材料都会导致膜污染。

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