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A Review on Reverse Osmosis and Nanofiltration Membranes for Water Purification

机译:水净化反渗透和纳米过滤膜的综述

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摘要

Sustainable and affordable supply of clean, safe, and adequate water is one of the most challenging issues facing the world. Membrane separation technology is one of the most cost-effective and widely applied technologies for water purification. Polymeric membranes such as cellulose-based (CA) membranes and thin-film composite (TFC) membranes have dominated the industry since 1980. Although further development of polymeric membranes for better performance is laborious, the research findings and sustained progress in inorganic membrane development have grown fast and solve some remaining problems. In addition to conventional ceramic metal oxide membranes, membranes prepared by graphene oxide (GO), carbon nanotubes (CNTs), and mixed matrix materials (MMMs) have attracted enormous attention due to their desirable properties such as tunable pore structure, excellent chemical, mechanical, and thermal tolerance, good salt rejection and/or high water permeability. This review provides insight into synthesis approaches and structural properties of recent reverse osmosis (RO) and nanofiltration (NF) membranes which are used to retain dissolved species such as heavy metals, electrolytes, and inorganic salts in various aqueous solutions. A specific focus has been placed on introducing and comparing water purification performance of different classes of polymeric and ceramic membranes in related water treatment industries. Furthermore, the development challenges and research opportunities of organic and inorganic membranes are discussed and the further perspectives are analyzed.
机译:可持续和经济适用的干净,安全和充足的水是世界上最具挑战性的问题之一。膜分离技术是水净化最具成本效益和最广泛应用的技术之一。聚合物膜如纤维素的(CA)膜和薄膜复合物(TFC)膜已经占据了该行业,自1980年以来为行业占主导地位。虽然聚合物膜的进一步发展以实现更好的性能,但无机膜发育的研究发现和持续进展生长快,解决了一些剩下的问题。除了传统的陶瓷金属氧化物膜外,由于石墨烯(GO),碳纳米管(CNT)和混合基质材料(MMMS)制备的膜引起了由于其所需的性能,如可调谐孔结构,优质的化学,机械,热耐受性,良好的盐排斥和/或高渗透性。该综述提供了近期反渗透(RO)和纳米滤膜(NF)膜的合成方法和结构性能的见解,其用于保留各种水溶液中的溶解物种如重金属,电解质和无机盐。介绍了在相关水处理行业中的不同类别聚合物和陶瓷膜的净水性能引入和比较了特定的重点。此外,讨论了有机和无机膜的发展挑战和研究机会,并分析了进一步的观点。

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