Surface-Modified Nanocomposite Membranes

Sonia R. Lakhotia, M. Mukhopadhyay, P. Kumari
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引用次数: 21

Abstract

Access to enough clean and safe water requires improvement over the current state of filtration technology. Membrane technology is one of the best tools for removing dissolved matters and/or particulates during the cleaning process, but some unavoidable intrinsic properties, like flux decline and fouling, reduce the membrane life, stability and separation capacity. To improve membrane performances, researchers reported the significant role played by associating nanoparticles to membrane polymers. Nanoparticles create a path in the membrane for selective water permeation and pose a barrier for undesired matters. There are two different methods for incorporating nanoparticles in membranes: (i) adding nanoparticles to the polymeric matrix and (ii) depositing nanoparticles on the membrane surface. The deposition/coating of nanoparticles on the membrane surface allows opportunities for water/wastewater treatment. In this review, focus has been given to the development of different nanoparticle-deposited membranes and their possible applications to large-scale water purification processes, where antifouling, permeate quality and self-cleaning properties are required.
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表面改性纳米复合膜
获得足够的清洁和安全的水需要改进过滤技术的现状。膜技术是清洁过程中去除溶解物和/或颗粒的最佳工具之一,但一些不可避免的内在特性,如通量下降和污染,降低了膜的寿命、稳定性和分离能力。为了提高膜的性能,研究人员报道了将纳米颗粒与膜聚合物结合在一起所起的重要作用。纳米颗粒在膜中创造了选择性水渗透的路径,并对不希望的物质构成了屏障。在膜中加入纳米颗粒有两种不同的方法:(i)将纳米颗粒添加到聚合物基质中;(ii)将纳米颗粒沉积在膜表面。纳米颗粒在膜表面的沉积/涂层为水/废水处理提供了机会。在这篇综述中,重点介绍了不同纳米颗粒沉积膜的发展及其在大规模水净化过程中的应用,这些过程需要防污,渗透质量和自清洁性能。
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