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首页> 外文期刊>Journal of Membrane Science & Technology >A Comprehensive Review on Polymeric Nano-Composite Membranes for Water Treatment
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A Comprehensive Review on Polymeric Nano-Composite Membranes for Water Treatment

机译:高分子纳米复合水处理膜的综述

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摘要

During last few decades, membrane technology has emerged as an efficient technique over conventional methods due to its high removal capacity, ease in operation and cost effectiveness for wastewater treatment and production of clean water. Membrane based separations are commonly based on polymeric membranes because of their higher flexibility, easily pore forming mechanism, low cost and smaller space for installation as compared to inorganic membranes. Commonly employed membrane fabrication phase inversion method has been shortly reviewed in this article. Major limitation of membrane based separations is fouling and polymeric membranes being hydrophobic in nature are more prone to fouling. Fouling is a deposition of various colloidal particles, macromolecules (polysaccharides, proteins), salts etc. on membrane surface and within pores thus impedes membrane performance, reduces flux and results in high cost. Modification of polymeric membranes due to its tailoring ability with nanomaterials such as metal based and carbon based results in polymeric nano-composite membranes with high antifouling characteristics. Nanomaterials impart high selectivity, permeability, hydrophilicity, thermal stability, mechanical strength, and antibacterial properties to polymeric membranes via blending, coating etc. modification methods. Characterization techniques has also discussed in later section for studying morphological properties and performance of polymer nano-composite membranes.Graphical Abstract.
机译:在过去的几十年中,膜技术具有很高的去除能力,易于操作以及废水处理和生产清洁水的成本效益,已成为一种比常规方法更有效的技术。基于膜的分离通常基于聚合物膜,因为与无机膜相比,它们具有更高的柔韧性,易于成孔的机制,低成本以及较小的安装空间。本文简要回顾了常用的膜制备相转化方法。基于膜的分离的主要限制是结垢,并且疏水性的聚合物膜更易于结垢。结垢是各种胶体颗粒,大分子(多糖,蛋白质),盐等在膜表面和孔内的沉积,因此会阻碍膜性能,降低通量并导致高成本。由于其对纳米材料(例如基于金属和基于碳的材料)的定制能力,对聚合物膜的改性导致具有高防污特性的聚合物纳米复合膜。纳米材料通过共混,涂覆等改性方法赋予聚合物膜高的选择性,渗透性,亲水性,热稳定性,机械强度和抗菌性能。表征技术也将在后面的章节中讨论,以研究聚合物纳米复合膜的形态和性能。

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