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Eco-efficient treatment of ion exchange spent brine via electrodialysis to recover NaCl and minimize waste disposal

机译:通过电渗析对离子交换废盐水进行生态高效处理,以回收氯化钠并最大程度地减少废物处置

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摘要

Natural organic matter (NOM) is removed from potable water for aesthetic, operational and indirect health concerns. NOM removal via ion exchange (IX) resins is receiving increasing attention owing to its simple operation. However, production of a spent brine during IX regeneration is the main drawback due to strict discharge regulations and limited and costly brine management options. In this study, the viability of desalinating the IX brine was assessed via electrodialysis (ED). ED desalination of the IX brine led to the production of highly pure NaCl and NOM-rich solutions which can be used for the IX regeneration and agricultural applications, respectively. Of particular interests were the impacts of the membrane permselectivity and implementation of pulsed electric field (PEF) on membrane fouling, desalination, purity of the NaCl solution and energy consumption. Our results demonstrated that ED desalination with monovalent ion permselective membranes consumed approximately 2 Wh per g of produced NaCl, achieved 88.8% desalination, produced pure NaCl solution with negligible membrane fouling. Furthermore, for the first time, we demonstrated that the PEF-ED intensified the process and decreased membrane fouling only when the conventional ion-exchange membranes were used; while no significant difference was detected when the PEF-ED was operated with the monovalent ion permselective membranes. (C) 2019 Elsevier B.V. All rights reserved.
机译:从美观,操作和间接健康方面考虑,从饮用水中去除了天然有机物(NOM)。由于其操作简单,通过离子交换(IX)树脂去除NOM受到越来越多的关注。然而,由于严格的排放法规和有限且昂贵的盐水管理选择,IX再生期间废盐水的产生是主要缺点。在这项研究中,通过电渗析(ED)评估了IX盐水脱盐的可行性。 ED对IX盐水进行脱盐处理导致产生了高纯度NaCl和富含NOM的溶液,可分别用于IX再生和农业应用。特别令人感兴趣的是膜渗透选择性和脉冲电场(PEF)的实施对膜结垢,脱盐,NaCl溶液纯度和能耗的影响。我们的结果表明,用单价离子渗透选择性膜进行ED脱盐,每克生产的NaCl消耗约2 Wh,达到88.8%的脱盐率,产生的纯NaCl溶液的膜污染可忽略不计。此外,我们首次证明,仅当使用常规离子交换膜时,PEF-ED才能增强工艺并减少膜污染。当PEF-ED与单价离子渗透选择性膜一起操作时,没有发现显着差异。 (C)2019 Elsevier B.V.保留所有权利。

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