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Effect of coagulation mechanism on membrane permeability in coagulation-assisted microfiltration for spent filter backwash water recycling

机译:凝结机理对凝结辅助微滤膜滤池反冲洗水循环利用中膜渗透性的影响

摘要

Coagulation is an effective pre-treatment process in membrane filtration for recycling spent filter backwash water (SFBW). To optimize the operation of the coagulation/filtration process for SFBW recycling, it is important to understand the critical role of coagulation mechanism on membrane filtration. In this study, SFBW samples were coagulated with polyaluminum chloride (PACI), followed by a dead-end micro-filtration (MF), and the mean permeate flux and permeate quality were determined. The results showed that pre-coagulation improved the flux decline and the degree of the improvement was closely related to coagulation mechanisms. The permeate flux was enhanced most effectively by precipitation charge neutralization (PCN) coagulation, followed by charge neutralization and then sweep flocculation. Close examination of cake properties indicated that the reduced cake resistance (R(c)) was subjected to the coagulated SFBW flocs in response to different coagulation mechanism. Smaller flocs, induced by PCN, were more compact and stronger, forming less compressible cake, which facilitated membrane filtration, while slower membrane filtration was observed when more compressible cake formed from larger flocs of looser and weaker structure. Coagulation mechanism also governed the size distribution of SFBW floc, which is strongly related to the subsequent cake compressibility as well as membrane permeability in membrane filtration. (C) 2011 Elsevier B.V. All rights reserved.
机译:在膜过滤中,混凝是一种有效的预处理工艺,用于回收用过的过滤器反冲洗水(SFBW)。为了优化SFBW循环的凝结/过滤过程的操作,重要的是要了解凝结机制在膜过滤中的关键作用。在这项研究中,SFBW样品先用聚氯化铝(PACI)进行凝结,然后进行死端微滤(MF),然后确定平均渗透通量和渗透质量。结果表明,预混凝改善了通量的下降,改善程度与混凝机理密切相关。通过沉淀电荷中和(PCN)凝结,然后电荷中和,然后吹扫絮凝,可以最有效地提高渗透通量。对蛋糕性能的仔细检查表明,响应于不同的凝结机理,降低的蛋糕抗性(R(c))经受了SFBW絮凝。由PCN诱导的较小絮凝物更紧密,更结实,形成的可压缩饼状物较少,从而有利于膜过滤,而当由较大的疏松和较弱结构的絮凝物形成的可压缩饼状物时,膜的过滤速度较慢。凝结机理也控制着SFBW絮凝物的尺寸分布,这与随后的滤饼可压缩性以及膜过滤中的膜渗透性密切相关。 (C)2011 Elsevier B.V.保留所有权利。

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