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首页> 外文期刊>Separation and Purification Technology >Arsenic removal from drinking water through a hybrid ion exchange membrane-Coagulation process
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Arsenic removal from drinking water through a hybrid ion exchange membrane-Coagulation process

机译:通过混合离子交换膜-混凝工艺去除饮用水中的砷

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A hybrid process targeting arsenic (As) removal from drinking water was developed in this study, consisting of arsenate transport through an anion exchange membrane followed by coagulation. The main advantage of this ion exchange membrane (1EM) process is improved drinking water quality through the prevention of secondary contamination by coagulants and pH-controlling agents, a design feature that was successfully confirmed experimentally. This study describes: (1) the selection of an appropriate anion exchange membrane for transporting monovalent and divalent forms of arsenate, (2) the effects of iron (Fe) vs. aluminium (Al) coagulants on the process, (3) the long-term efficacy of the IEM process and (4) a comparison of the IEM process effectiveness with conventional coagulation/filtration. Al was found to be more effective than Fe at preventing membrane scaling, likely due to the contrasting charges of the precipitates, which are repelled from the positively charged membrane in the case of Al, unlike Fe. Arsenate was removed below the maximum contaminant level (6.6 ± 2.8 ppb) during periods with and without Al addition, where minimal operational maintenance was required. The high quality drinking water that is achievable and its ease of operation make the IEM process attractive for treating As-containing water supplies.
机译:在这项研究中,开发了一种针对从饮用水中去除砷(As)的混合工艺,该工艺包括将砷酸盐运输通过阴离子交换膜然后进行凝结。这种离子交换膜(1EM)工艺的主要优点是,通过防止凝结剂和pH控制剂造成的二次污染,可以改善饮用水质量,这一设计特征已​​通过实验得到了成功的证实。这项研究描述:(1)选择合适的阴离子交换膜来运输单价和二价形式的砷酸盐;(2)铁(Fe)与铝(Al)凝结剂对工艺的影响;(3)较长的时间IEM工艺的长期有效性;(4)IEM工艺与常规混凝/过滤的有效性比较。发现铝在防止膜结垢方面比铁更有效,这可能是由于沉淀物的对比电荷所致,与铁不同,在铝的情况下,沉淀物会从带正电的膜上排斥。在添加和不添加铝的过程中,砷的去除都低于最大污染物水平(6.6±2.8 ppb),这需要最少的操作维护。可实现的高质量饮用水及其易操作性使IEM工艺对于处理含As的水源具有吸引力。

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