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Enhanced resistance to organic fouling in a surface-modified reverse osmosis desalination membrane

机译:表面改性反渗透脱水膜中增强了对有机污垢的抗性

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Membrane surface modification with the aim of lowering foulant to surface affinity, has recently gained considerable attention. In this article, we report improved performance (permeate flux, salt rejection, and resistance to alginate fouling) of surface-modified reverse osmosis (RO) membranes, under cross-flow filtration conditions. The surface of RO membranes was modified by amphiphilic hydroxethyl methacrylate-co-perfluorodecyl acrylate (HEMA-co-PFDA) copolymer films. The amphiphilic coatings were deposited via an all-dry and solventless vapor deposition technique, termed as initiated chemical vapor deposition. Scanning electron microscopy revealed that a dense and continuous layer of alginate formed on the surface of the unmodified membranes, whereas foulant deposition on the surface-modified membranes was found to be more sporadic and discontinuous. The coatings were found stable even after 6h of exposure to sodium alginate at higher pressure (800 psi), as evidenced by ATR-FTIR analysis of the post-fouled membranes.
机译:膜表面改性目的是降低污垢到表面亲和力,最近获得了相当大的关注。在本文中,在交叉流动过滤条件下,我们报告了表面改性的反渗透(RO)膜的改善的性能(渗透助焊剂,抗藻酸盐抗性)。通过两亲羟乙基甲基丙烯酸酯 - 共聚丙烯酸酯(HEMA-CO-PFDA)共聚物薄膜改性RO膜的表面。通过所有干燥和无溶剂气相沉积技术沉积两亲涂层,称为引发的化学气相沉积。扫描电子显微镜显示,在未改性膜的表面上形成的致密和连续的藻酸盐层,而发现表面改性膜上的污垢沉积更加散向和不连续。即使在较高压力(800psi)暴露于藻酸钠(800psi)后,涂层也被发现稳定,如污染后膜的ATR-FTIR分析所证明的。

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