Perspectives on Surface Functionalization of Polymeric Membranes with Metal and Metal-Oxide Nanoparticles for Water/Wastewater Treatment

X. Chen, W. Huang, B. Zhang
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Abstract

Membrane filtration technology has been extensively applied in water/wastewater treatment to help address the issue of water shortage, in which polymeric membranes are most commonly used. However, the hydrophobic nature of polymeric membranes would contribute to membrane damage caused by accumulation of organic/inorganic fouling during filtration processes. The strategy of membrane surface functionalization with nanoparticles (NPs) has been investigated and utilized to effectively improve membrane performance. Herein, recent research efforts on surface functionalization of polymeric membranes with a variety of NPs for water/wastewater treatment were concisely reviewed, focusing on metal and metal-oxide NPs. Methods for the immobilization of NPs on membrane surface and their influences on membrane properties and performances were overviewed. Results and contributions achieved in the improvement of membrane performances through surface functionalization with NPs were summarized, and emphasis was given to membrane hydrophilicity, stability, as well as antifouling and antibacterial property. Furthermore, perspectives on the current challenges and future research needs in the development and application of surface functionalized polymeric membranes were discussed.
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金属和金属氧化物纳米颗粒聚合物膜表面功能化在水/废水处理中的研究进展
膜过滤技术已广泛应用于水/废水处理,以帮助解决水资源短缺的问题,其中最常用的是聚合物膜。然而,聚合物膜的疏水性会导致膜在过滤过程中由于有机/无机污垢的积累而受到损伤。研究了纳米颗粒对膜表面的功能化策略,并利用该策略有效地改善了膜的性能。本文简要综述了近年来各种NPs用于水/废水处理的聚合物膜表面功能化的研究进展,重点介绍了金属和金属氧化物NPs。综述了NPs在膜表面的固定化方法及其对膜性能的影响。综述了NPs表面功能化在改善膜性能方面取得的成果和贡献,重点介绍了膜的亲水性、稳定性、防污性和抗菌性。最后,对表面功能化聚合物膜的发展和应用面临的挑战和未来的研究需求进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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