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首页> 外文期刊>Journal of water reuse and desalination >Controlling biofouling of reverse osmosis membranes through surface modification via grafting patterned polymer brushes
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Controlling biofouling of reverse osmosis membranes through surface modification via grafting patterned polymer brushes

机译:通过接枝图案化的聚合物刷进行表面改性来控制反渗透膜的生物结垢

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Thin film composite (TFC) polyamide membranes are extensively used as selective barriers in reverse osmosis processes. The major challenge faced with TFC membranes is significant fouling on the surface, which restricts the overall purification performance. To address the fouling problem, we developed novel fouling-resistant surface coatings via polyelectrolyte [poly(allylamine hydrochloride)/poly(styrene sulfonate)] layer-by-layer self-assembly, functionalized with patterned antimicrobial and antifouling/fouling-release polymer brushes. Two types of different polymer brushes, among antimicrobial poly(quaternary ammonium), antifouling poly(sulfobetaine) and fouling-release poly(dimethylsiloxane) (PDMS), were selected and grafted in a checkerboard pattern, with a square feature of 2 μm. The successful patterning and incorporation of different polymer brushes on the membrane was confirmed through X-ray photoelectron spectroscopy analysis. Grafting with sulfobetaine and PDMS significantly increased the hydrophilicity and lowered the surface energy of the membrane, respectively. The fouling-resistant property of the modified membrane was evaluated via static protein (bovine serum albumin) deposition and bacterial (Escherichia coli) cell adhesion tests. Surface modifications proved to diminish protein adhesion and exhibited 70–93% reduction in bacterial cell attachment. This observation suggests that the modified membranes have strong antifouling properties that inhibit the irreversible adhesion of organic and bio-foulants on the membrane surface.
机译:薄膜复合材料(TFC)聚酰胺膜被广泛用作反渗透过程中的选择性屏障。 TFC膜面临的主要挑战是表面明显的结垢,这限制了整体纯化性能。为了解决结垢问题,我们通过聚电解质[聚(烯丙胺盐酸盐)/聚(苯乙烯磺酸盐)]逐层自组装开发了新型的抗结垢表面涂料,并使用了图案化的抗菌和防污/释放污垢的聚合物刷进行了功能化。选择了两种类型的不同聚合物刷,分别是抗菌聚季铵,防污聚磺基甜菜碱和防污释放聚二甲基硅氧烷(PDMS),并以棋盘状图案接枝,其方形特征为2μm。通过X射线光电子能谱分析证实了不同聚合物刷在膜上的成功图案化和结合。磺基甜菜碱和PDMS的接枝分别显着提高了亲水性并降低了膜的表面能。通过静态蛋白(牛血清白蛋白)沉积和细菌(大肠埃希氏大肠杆菌)细胞粘附试验评估了改性膜的抗污垢性能。表面修饰被证明可减少蛋白质粘附,并显示细菌细胞附着减少70-93%。该观察结果表明,改性膜具有很强的防污性能,可抑制有机和生物污垢在膜表面上的不可逆粘附。

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