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Effect of permeate flux and tangential flow on membrane fouling for wastewater treatment

机译:渗透通量和切向流量对污水处理膜污染的影响

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Well-controlled membrane filtration experiments were performed to systematically investigate the effect of permeate flux and tangential flow (crossflow) on membrane fouling.Results were analyzed by the resistance-in-series model where the reason for flux decline was subdivided into adsorption,concentration polarization,and reversible and irreversible fouling.A synthesized paper mill wastewater with mainly lignin and 2-chlorophenol,biological suspension (activated sludge),and their mixture were used as feed solutions for ultrafiltration (30 000 Da) and microfiltration (0.3mum) at different concentrations.The filtration experiments demonstrated that permeate flux declined faster with increasing feed concentration and membrane pore size and with decreasing tangential flow.The biological suspension rather than wastewater quality was a major cause for permeate flux decline in membrane bioreactors.In the absence of permeate flux,filtration resistance by foulants adsorption was negligible,as compared to total filtration resistance in the presence of permeate flux.It was also shown that tangential flow had almost no effect on the decline rate of permeate flux at pseudo steady state.Membrane cleaning results revealed that,in the absence of tangential flow,permeate flux decline was dominantly caused by reversible fouling.On the other hand,tangential flow caused slightly higher irreversible fouling due to higher permeation drag,as compared to the case of absence of tangential flow.Autopsy of fouled membranes suggested that the irreversible fouling layer was initially formed by pore blocking of small particles followed by strong interaction of fouling layer with mainly dissolved materials and by fouling layer compaction due to permeation drag.
机译:进行了良好控制的膜过滤实验,以系统地研究渗透通量和切向流(错流)对膜结垢的影响。通过串联阻力模型分析结果,其中将通量下降的原因分为吸附,浓差极化以木质素和2-氯苯酚为主要成分的合成造纸废水,生物悬浮液(活性污泥)及其混合物分别用作超滤(30000 Da)和微滤(0.3mum)的进料溶液。过滤实验表明,随着进料浓度和膜孔径的增加以及切向流量的减小,渗透通量下降得更快。生物悬浮而不是废水质量是导致膜生物反应器渗透通量下降的主要原因。 ,由于污垢吸附引起的过滤阻力可忽略不计,因为在存在渗透通量的情况下,与总过滤阻力相比,切向流对伪稳态下渗透通量的下降速率几乎没有影响。膜清洗结果表明,在没有切向流的情况下,渗透通量下降主要是由可逆结垢引起的。另一方面,与不存在切向流的情况相比,切向流由于较高的渗透阻力而导致较高的不可逆结垢。通过小颗粒的孔堵塞,随后污垢层与主要溶解的物质之间发生强烈相互作用,以及由于渗透阻力而导致的污垢层压实。

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