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Effect of activated sludge properties and membrane operation conditions on fouling characteristics in membrane bioreactors

机译:活性污泥特性和膜操作条件对膜生物反应器结垢特性的影响

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Biofouling control is considered to be a major challenge in operating membrane bioreactors (MBRs) for the treatment of waste-water. This study examined the impact of biological, chemical, and physical properties of activated sludge on membrane filtration performance in laboratory-scale MBRs. Sludges with different microbial communities were produced using pseudo-continuous stirred-tank reactors and pseudo-plug flow reactors treating a synthetic paper mill wastewater. Various filtration resistances were used to investigate membrane fouling characteristics, and molecular biology tools targeting 16S ribosomal DNA gene sequences were used to identify predominant bacterial populations in the sludges or attached to the fouled membranes. Filtration experiments using axenic cultures of Escherichia coli, Acineto-bacter calcoaceticus, and Gordonia amarae were also performed to better understand the initiation and development of biofouling. The results showed that the tendency of membranes to biofoul depended upon membrane operating conditions as well as the properties of the activated sludge in the MBR systems. Specific bacterial populations, which were not dominant in the activated sludges, were selectively accumulated on the membrane surface leading to the development of irreversible biofouling.
机译:在操作膜生物反应器(MBR)处理废水时,生物污损控制被认为是一项重大挑战。这项研究检查了活性污泥的生物学,化学和物理特性对实验室规模MBR膜过滤性能的影响。使用伪连续搅拌釜反应器和伪塞流反应器处理合成造纸厂废水可产生具有不同微生物群落的污泥。使用各种抗滤性来研究膜的结垢特性,并使用针对16S核糖体DNA基因序列的分子生物学工具来鉴定污泥中或附着在结垢膜上的主要细菌种群。还进行了使用大肠埃希氏菌,不动杆菌钙乙酸杆菌和a戈登菌的过滤实验,以更好地了解生物污染的发生和发展。结果表明,膜发生生物结垢的趋势取决于膜的操作条件以及MBR系统中活性污泥的性质。在活性污泥中不占优势的特定细菌种群选择性地聚集在膜表面,导致不可逆的生物污染的发展。

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