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Minimization of short-term low-pressure membrane fouling using a magnetic ion exchange (MIEX (R)) resin

机译:使用磁性离子交换(MIEX(R))树脂最大限度地减少短期低压膜污染

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Two challenges to low-pressure membrane (LPM) filtration are limited rejection of dissolved organic matter (DOM) and membrane fouling by DOM. The magnetic ion exchange resin MIEX (R) (Ixom Watercare Inc.) has been demonstrated to remove substantial amounts of DOM from many source waters, suggesting that MIEX can both reduce DOM content in membrane feed waters and minimize LPM fouling. We tested the effect of MIEX pretreatment on the reduction of short-term LPM fouling potential using feed waters varying in DOM concentration and composition. Four natural and two synthetic waters were studied and a polyvinylidene fluoride (PVDF) hollow-fiber ultrafiltration membrane was used in membrane fouling tests. To evaluate whether MIEX removes the fractions of DOM that cause LPM fouling, the DOM in raw, MIEX-treated, and membrane feed and backwash waters was characterized in terms of DOM concentration and composition. Results showed that: (i) the efficacy of MIEX to reduce LPM fouling varies broadly with source water; (ii) MIEX preferentially removes terrestrial DOM over microbial DOM; (iii) microbial DOM is a more important contributor to LPM fouling than terrestrial DOM, relative to their respective concentrations in source waters; and (iv) the fluorescence intensity of microbial DOM in source waters can be used as a quantitative indicator of the ability of MIEX to reduce their membrane fouling potential. Thus, when ion exchange resin processes are used for DOM removal towards membrane fouling reduction, it is advisable to use a resin that has been designed to effectively remove microbial DOM. (C) 2016 Elsevier Ltd. All rights reserved.
机译:低压膜(LPM)过滤面临的两个挑战是有限的溶解有机物(DOM)排斥和DOM污染膜。已经证明磁性离子交换树脂MIEX(R)(Ixom Watercare Inc.)可以从许多水源中去除大量的DOM,这表明MIEX既可以减少膜进水中的DOM含量,又可以将LPM污染最小化。我们使用DOM浓度和组成各异的给水测试了MIEX预处理对减少短期LPM结垢潜力的影响。对四种天然水和两种合成水进行了研究,并将聚偏二氟乙烯(PVDF)中空纤维超滤膜用于膜污染测试。为了评估MIEX是否去除了导致LPM结垢的DOM馏分,根据DOM浓度和组成对原水,MIEX处理过的,膜进料和反洗水中的DOM进行了表征。结果表明:(i)MIEX减少LPM结垢的功效因水源水而有很大差异; (ii)与微生物DOM相比,MIEX优先去除陆地DOM; (iii)相对于源水中的微生物DOM而言,微生物DOM比陆地DOM更易造成LPM结垢; (iv)源水中微生物DOM的荧光强度可用作MIEX降低其膜污染潜力的能力的定量指标。因此,当使用离子交换树脂工艺去除DOM以减少膜污染时,建议使用已设计为有效去除微生物DOM的树脂。 (C)2016 Elsevier Ltd.保留所有权利。

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