Invention Application
US20160296893A1 MEMBRANES FOR FLUE GAS SEPARATION COMPRISING CROSSLINKED, THERMALLY REARRANGED POLY(BENZOXAZOLE-CO-IMIDE) AND PREPARATION METHOD THEREOF
审中-公开
含有交联的,热重复聚(苯并噻唑-CO-IMIDE)的含氟气分离膜及其制备方法
- Patent Title: MEMBRANES FOR FLUE GAS SEPARATION COMPRISING CROSSLINKED, THERMALLY REARRANGED POLY(BENZOXAZOLE-CO-IMIDE) AND PREPARATION METHOD THEREOF
- Patent Title (中): 含有交联的,热重复聚(苯并噻唑-CO-IMIDE)的含氟气分离膜及其制备方法
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Application No.: US15036727Application Date: 2014-11-05
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Publication No.: US20160296893A1Publication Date: 2016-10-13
- Inventor: Young Moo LEE , Mariola CALLE , Hye Jin JO , Jongmyeong LEE
- Applicant: SAMSUNG ELECTRONICS CO.,LTD
- Applicant Address: KR Seoul
- Assignee: IUCF-HYU (INDUSTRY-UNIVERSITY COOPERATION FOUNDATION HANYANG UNIVERSITY)
- Current Assignee: IUCF-HYU (INDUSTRY-UNIVERSITY COOPERATION FOUNDATION HANYANG UNIVERSITY)
- Current Assignee Address: KR Seoul
- Priority: GB1418802.3 20141022
- International Application: PCT/KR2015/010537 WO 20141105
- Main IPC: B01D71/64
- IPC: B01D71/64 ; C08J3/24 ; C08G73/22 ; B01D67/00 ; B01D53/22

Abstract:
The present disclosure relates to a membrane for flue gas separation containing a crosslinked, thermally rearranged poly(benzoxazole-co-imide) copolymer prepared simply by heat-treating a membrane prepared from an o-hydroxypolyimide copolymer having carboxylic acid groups such that thermal crosslinking and thermal rearrangement occur simultaneously or a membrane for flue gas separation containing a crosslinked, thermally rearranged poly(benzoxazole-co-imide) copolymer having a benzoxazole group content of less than 80% in the polymer chain, prepared from transesterification crosslinking of an o-hydroxypolyimide copolymer having carboxylic acid groups and a diol-based compound followed by thermal rearrangement, and a method for preparing the same.In accordance with the present disclosure, a crosslinked, thermally rearranged poly(benzoxazole-co-imide) copolymer membrane for flue gas separation can be prepared simply through heat treatment without requiring a complicated process such as chemical crosslinking, UV irradiation, etc. for forming a crosslinked structure and a membrane for flue gas separation prepared therefrom exhibits superior permeability and selectivity. Also, the method is applicable to commercial-scale production because the preparation process is simple.
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