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首页> 外文期刊>Journal of Fluorine Chemistry >Gas separation membranes prepared with copolymers of perfluoro(2-methylene-4,5-dimethyl-1,3-dioxlane) and chlorotrifluoroethylene
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Gas separation membranes prepared with copolymers of perfluoro(2-methylene-4,5-dimethyl-1,3-dioxlane) and chlorotrifluoroethylene

机译:用全氟(2-亚甲基-4,5-二甲基-1,3-二恶烷)和三氟氯乙烯共聚物制备的气体分离膜

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Several families of hydrocarbon polymers (polysulfones, polycarbonates, cellulose acetates, polyamides, and polyimides) have been established as common industrial gas separation membranes over the past three decades. Fluoropolymer membranes have found commercial use because of their unique gas separation properties in addition to their extraordinary chemical resistance and thermo-oxidative stability. To date, studies of gas transport in fluoropolymers have been limited largely to variants of the commercially available perfluoropolymers: Teflon (R) AF, Cytop (TM), and Hyflon (R) AD. Here, we describe gas transport in composite membranes fabricated from copolymers of perfluoro(2-methylene-4,5-dimethyl-1,3-dioxolane) (PFMDD) and chlorotrifluoroethlyene (CTFE). This poly(PFMDD-co-CTFE)-based membranes have far superior gas separation performance compared to the commercial perfluoropolymers for a number of gas pairs, including H-2/CH4, He/CH4, and CO2/CH4. The gas separation performance of the membranes depends strongly on the copolymer composition. Increasing the amount of CTFE up to 30 mol % in the copolymer increases the membrane selectivity and reduces permeance. The membranes based on 70 mol% PFMDD-30 mol% CTFE poly(PFMDD-co-CTFE) show H-2/CH4 and He/CH4 selectivities of 210 and 480, respectively, values that far exceed those possible with the known commercial perfluoropolymers. (C) 2016 Elsevier B.V. All rights reserved.
机译:在过去的三十年中,已经建立了几种烃类聚合物(聚砜,聚碳酸酯,醋酸纤维素,聚酰胺和聚酰亚胺)作为常见的工业气体分离膜。含氟聚合物膜由于其独特的气体分离特性以及出色的耐化学性和热氧化稳定性而获得了商业应用。迄今为止,含氟聚合物中气体传输的研究主要限于市售全氟聚合物的变体:Teflon AF,Cytop TM和Hyflon AD。在这里,我们描述了由全氟(2-亚甲基-4,5-二甲基-1,3-二氧戊环)(PFMDD)和三氟氯乙烯(CTFE)共聚物制成的复合膜中的气体传输。与市售的全氟聚合物相比,这种基于聚(PFMDD-co-CTFE)的膜对多种气体对(包括H-2 / CH4,He / CH4和CO2 / CH4)的气体分离性能远远优于市售的全氟聚合物。膜的气体分离性能在很大程度上取决于共聚物的组成。将CTFE的量增加至共聚物中的30mol%会增加膜的选择性并降低渗透性。基于70摩尔%PFMDD-30摩尔%CTFE聚(PFMDD-co-CTFE)的膜分别显示出H-2 / CH4和He / CH4选择性分别为210和480,其值远远超过了已知的全氟聚合物。 (C)2016 Elsevier B.V.保留所有权利。

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