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Integrated nanofiltration cascades with low salt rejection for complete removal of pesticides in drinking water production

机译:集成的纳滤级联系统具有低除盐率,可完全去除饮用水生产中的农药

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摘要

In this study, the aim is to remove micropollutants (pesticides) from water completely while removing only a small fraction of salts. To achieve the latter, loose commercial nanofiltration (NF) membranes were selected (Desal51HL, N30F and NF270). To realize a high removal of organic compounds, combined with a low salt rejection, cascades of NF stages are proposed. Experiments with pesticides (aldrin, atrazine, bentazone, dieldrin, and propazine) and NaCl confirmed that a nearly complete rejection of pesticides is possible, depending on specific properties of the solutes such as molecular size and chemical structure (e.g. hydrophobicity). Salt rejection was highly dependent on the specifications of the membrane and on the ion charge, and ranged from low to high values. Through modeling based on transport equations and mass balances, it was shown that the separation was significantly improved by adopting the principle of an integrated cascade of NF membranes.
机译:在这项研究中,目标是从水中完全去除微量污染物(农药),同时仅去除一小部分盐。为了实现后者,选择了松散的商业纳滤(NF)膜(Desal51HL,N30F和NF270)。为了实现有机化合物的高去除率和低盐截留率,提出了级联的NF级。对农药(艾氏剂,at去津,苯达松,狄氏剂和丙嗪)和NaCl进行的实验证实,取决于溶质的特定性质,例如分子大小和化学结构(例如疏水性),几乎可以完全清除农药。脱盐率高度依赖于膜的规格和离子电荷,范围从低到高。通过基于输运方程和质量平衡的建模,表明采用NF膜集成级联原理可以显着改善分离效果。

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