膜
离子液体
催化作用
化学工程
气体分离
化学
合成膜
膜技术
离子键合
材料科学
有机化学
离子
生物化学
工程类
作者
Pavel Izák,Félix D. Bobbink,Martin Hulla,Martina Klepić,Karel Friess,Štěpán Hovorka,Paul J. Dyson
标识
DOI:10.1002/cplu.201700293
摘要
Abstract Membrane technologies enable the facile separation of complex mixtures of gases, vapours, liquids and/or solids under mild conditions. Simultaneous chemical transformations can also be achieved in membranes by using catalytically active membrane materials or embedded catalysts, in so‐called membrane reactors. A particular class of membranes containing or composed of ionic liquids (ILs) or polymeric ionic liquids (pILs) have recently emerged. These membranes often exhibit superior transport and separation properties to those of classical polymeric membranes. ILs and pILs have also been extensively studied as separation solvents, catalysts and co‐catalysts in similar applications for which membranes are employed. In this review, after introducing ILs and their applications in catalysis, catalytic membranes and recent advances in membrane separation processes based on ILs are described. Finally, the nascent concept of catalytic IL membranes is highlighted, in which catalytically active ILs/pILs are incorporated into membrane technologies to act as a catalytic separation layer.
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