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Fouling mechanisms of ultrafiltration membranes fouled with whey model solutions

机译:乳清模型溶液对超滤膜的污染机理

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In this work, three ultrafiltration (UF) membranes with different molecular weight cut-offs (MWCOs) and made of different materials were fouled with several whey model solutions that consisted of bovine serum albumin (BSA) (1% w/w), BSA (1% w/w) and CaCl2 (0.06% w/w in calcium) and whey protein concentrate (WPC) with a total protein content of 45% w/w at three different concentrations (22.2,33.3 and 44.4 g.L(-)1). The influence of MWCO and membrane material on the fouling mechanism dominating the UF process was investigated. Experiments were performed using two flat-sheet organic membranes and a ceramic monotubular membrane whose MWCOs were 5,30 and 15 kDa, respectively. Hermia's models adapted to crossflow UF, a combined model based on complete blocking and cake formation equations and a resistance-in-series model were fitted to permeate flux decline curves. The results demonstrated that permeate flux decline was accurately predicted by all the models studied. However, the models that fitted the best to permeate flux decline experimental data were the combined model and the resistance-in-series model. Therefore, complete blocking and cake formation were the predominant mechanisms for all the membranes and feed solutions tested. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,用不同的材料制成的三种具有不同分子量截留值(MWCO)的超滤(UF)膜被几种乳清模型溶液污染,这些溶液由牛血清白蛋白(BSA)(1%w / w),BSA组成(1%w / w)和CaCl2(钙中0.06%w / w)和乳清蛋白浓缩物(WPC)在三种不同浓度(22.2、33.3和44.4 gL(-)时总蛋白含量为45%w / w 1)。研究了MWCO和膜材料对UF过程中结垢机理的影响。实验使用了两个平板有机膜和一个陶瓷单管膜,其MWCO分别为5,30和15 kDa。 Hermia的模型适用于错流超滤,基于完整的阻塞和滤饼形成方程的组合模型以及串联电阻模型适合渗透通量下降曲线。结果表明,所研究的所有模型均能准确预测渗透通量下降。但是,最适合渗透通量下降实验数据的模型是组合模型和串联电阻模型。因此,完全阻塞和结块形成是测试的所有膜和进料溶液的主要机理。 (C)2015 Elsevier B.V.保留所有权利。

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