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自具微孔聚合物在渗透汽化膜分离中的应用进展
引用本文:霍朝伟,吴奕辰,周远浩,赵炳钰,叶宏.自具微孔聚合物在渗透汽化膜分离中的应用进展[J].水处理技术,2021,47(2):1-6,26.
作者姓名:霍朝伟  吴奕辰  周远浩  赵炳钰  叶宏
作者单位:北京工商大学食品质量与安全北京实验室;北京工商大学食品质量与安全北京实验室;北京工商大学中国轻工业酿酒分子工程轻工业重点实验室 北京100048
基金项目:国家自然科学基金面上项目(31871749);国家自然科学基金青年基金项目(21503007);酒类风味品质与安全科研创新团队项目(PXM2019-014213-000007);北京市自然科学基金(2172020)。
摘    要:介绍了自具微孔聚合物(PIMs)及其改性膜材料在渗透汽化膜分离领域中的应用研究进展,评述了在优先脱有机物、优先脱水以及有机混合物分离3个领域中所应用的PIMs膜的分子结构设计、改性方法以及分离效果.PIMs是一种依靠自身分子扭曲而具有大量微孔的新型聚合物,具有憎水性以及均一的孔结构,对于不同体系中的目标分离物均有较好的...

关 键 词:自具微孔聚合物  渗透汽化  膜分离

Application Progress of Polymers of Intrinsic Microporosity in Pervaporation Membrane Separation
HUO Chaowei,WU Yichen,ZHOU Yuanhao,ZHAO Bingyu,YE Hong.Application Progress of Polymers of Intrinsic Microporosity in Pervaporation Membrane Separation[J].Technology of Water Treatment,2021,47(2):1-6,26.
Authors:HUO Chaowei  WU Yichen  ZHOU Yuanhao  ZHAO Bingyu  YE Hong
Affiliation:(Beijing Laboratory of Food Quality and Safety,Beijing Technology and Business University;Key Laboratory of Brewing Molecular Engineering of China Light Industry,Beijing Technology and Business University,Beijing 100048,China)
Abstract:The application progresses of polymers of intrinsic microporosity(PIMs)and its modified membrane materials in pervaporation membrane separation have been introduced.It was mainly reviewed that the molecular structure design,modification method,and separation performances of PIMs membranes in pervaporation separation of organic compounds from water,water from organic compounds and organic mixtures.PIMs are a new type of polymer with a large number of micropores relying on its own molecular distortion,and it have good separation performances for various targets from different mixtures due to the hydrophobicity and uniform microporous structures.Thus,PIMs are expected to be a kind of versatile membrane materials for pervaporation.It considered that,more types of PIMs with novel structures should be developed,and the industrial scale-up of PIMs synthesis and the improvement of application stability should be concerned.
Keywords:polymers of intrinsic microporosity  pervaporation  membrane separation
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