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聚合物渗透汽化膜的制备、性能、表现及分离应用综述

Fabrication, Properties, Performances, and Separation Application of Polymeric Pervaporation Membranes: A Review.

作者信息

Wang Luchen, Wang Yan, Wu Lianying, Wei Gang

机构信息

College of Applied Technology, Qingdao University, Qingdao 266100, China.

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266071, China.

出版信息

Polymers (Basel). 2020 Jun 30;12(7):1466. doi: 10.3390/polym12071466.

Abstract

Membrane separation technologies have attracted great attentions in chemical engineering, food science, analytical science, and environmental science. Compared to traditional membrane separation techniques like reverse osmosis (RO), ultrafiltration (UF), electrodialysis (ED) and others, pervaporation (PV)-based membrane separation shows not only mutual advantages such as small floor area, simplicity, and flexibility, but also unique characteristics including low cost as well as high energy and separation efficiency. Recently, different polymer, ceramic and composite membranes have shown promising separation applications through the PV-based techniques. To show the importance of PV for membrane separation applications, we present recent advances in the fabrication, properties and performances of polymeric membranes for PV separation of various chemicals in petrochemical, desalination, medicine, food, environmental protection, and other industrial fields. To promote the easy understanding of readers, the preparation methods and the PV separation mechanisms of various polymer membranes are introduced and discussed in detail. This work will be helpful for developing novel functional polymer-based membranes and facile techniques to promote the applications of PV techniques in different fields.

摘要

膜分离技术在化学工程、食品科学、分析科学和环境科学领域备受关注。与传统的膜分离技术如反渗透(RO)、超滤(UF)、电渗析(ED)等相比,基于渗透汽化(PV)的膜分离不仅具有占地面积小、操作简单和灵活性高等共同优点,还具有低成本以及高能量和分离效率等独特特性。近年来,不同的聚合物、陶瓷和复合膜通过基于PV的技术展现出了有前景的分离应用。为了展示PV在膜分离应用中的重要性,我们介绍了用于石化、海水淡化、医药、食品、环境保护及其他工业领域中各种化学品PV分离的聚合物膜在制备、性能和表现方面的最新进展。为便于读者理解,详细介绍并讨论了各种聚合物膜的制备方法和PV分离机理。这项工作将有助于开发新型功能性聚合物基膜和简便技术,以推动PV技术在不同领域的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d555/7408584/9fca43847199/polymers-12-01466-g001.jpg

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