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High-Performance TiO2 Nanotubes/Poly(aryl ether sulfone) Hybrid Self-Cleaning Anti-Fouling Ultrafiltration Membranes

机译:高性能TiO2纳米管/聚(芳醚砜)杂化自清洁防污超滤膜

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摘要

A series of novel self-cleaning hybrid photocatalytic ultrafiltration (UF) membranes were fabricated to separate polyacrylamide, which is widely used as a commercial flocculant. To maximize the self-cleaning and anti-fouling properties of hybrid membranes, high surface area TiO2 nanotubes (TNTs) with excellent photocatalytic activity were homogeneously introduced into a poly(aryl ether sulfone) matrix by chemical bonds. The chemical structure, micromorphology, hydrophilicity, separation efficiency, fouling behavior, and self-cleaning property of the prepared hybrid membranes were well characterized and evaluated. For the optimal sample, the flux recovery ratio increased from ~40% to ~80% after simulated sunlight irradiation for 20 min, which was attributable to the homogeneous dispersion and efficient photocatalytic degradation ability of TNTs. Furthermore, the intelligent fabrication strategy enhanced the anti-aging ability of the hybrid membranes via the use of a fluorine-containing poly matrix. This work provided new insight into the fabrication of high-performance self-cleaning inorganic/organic hybrid membranes.
机译:制备了一系列新颖的自清洁混合光催化超滤(UF)膜,以分离聚丙烯酰胺,聚丙烯酰胺被广泛用作商业絮凝剂。为了最大化混合膜的自清洁和防污性能,将具有优异光催化活性的高表面积TiO2纳米管(TNT)通过化学键均匀地引入到聚(芳基醚砜)基质中。对制备的杂化膜的化学结构,微观形貌,亲水性,分离效率,结垢行为和自清洁性能进行了很好的表征和评估。对于最佳样品,模拟阳光照射20分钟后,通量回收率从〜40%增加至〜80%,这归因于TNT的均匀分散和有效的光催化降解能力。此外,智能制造策略通过使用含氟聚矩阵增强了杂化膜的抗老化能力。这项工作为高性能自清洁无机/有机杂化膜的制造提供了新的见识。

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