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Fouling of a microfiltration membrane by humic-like substances: a mathematical approach to modelling permeate flux and membrane retention

机译:腐殖质样物质对微滤膜的污染:模拟渗透通量和膜保留的数学方法

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Membrane retention of the humic-like substances present in a soluble microbial products (SMP) suspension was studied by using a dead-end filtration system. The SMP suspension was extracted from the sludge of an enhanced biological phosphorus removal-membrane bioreactor. Our results showed that both adsorption and steric retention of the humic-like substances governed their transport through the membrane during the filtration. The adsorption, which followed pseudo-first order kinetics, did not cause substantial decline of permeate flux. The steric retention, on the other hand, formed a gel layer, which in turn led to a major decrease in the flux. The reduction of permeate flux was well predicted by cake filtration theory. Based on the adsorption and the steric retention, a new model was developed for predicting the overall membrane retention of the humic-like substances. The general trend of the modelled overall retention was in partial agreement with the experimental results.
机译:通过使用死端过滤系统研究了可溶性微生物产品(SMP)悬浮液中存在的腐殖质样物质的膜截留率。从增强型生物除磷膜生物反应器的污泥中提取SMP悬浮液。我们的结果表明,在过滤过程中,腐殖质类物质的吸附和空间保留都控制着它们通过膜的传输。遵循拟一级动力学的吸附并未引起渗透通量的大幅下降。另一方面,空间保留形成凝胶层,这又导致通量大大降低。滤饼过滤理论很好地预测了渗透通量的减少。基于吸附和空间保留,开发了一个新模型来预测类腐殖质的总体膜保留。建模的总体保留的总体趋势与实验结果部分吻合。

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