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基于6FDA-mPDA/DABA(3:2)聚酰亚胺的碳分子筛膜的气体分离性能

Gas separation performance of carbon molecular sieve membranes based on 6FDA-mPDA/DABA (3:2) polyimide.

作者信息

Qiu Wulin, Zhang Kuang, Li Fuyue Stephanie, Zhang Ke, Koros William J

机构信息

School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, 778 Atlantic Drive, Atlanta, GA 30332-0100 (USA).

出版信息

ChemSusChem. 2014 Apr;7(4):1186-94. doi: 10.1002/cssc.201300851. Epub 2014 Feb 23.

Abstract

6FDA-mPDA/DABA (3:2) polyimide was synthesized and characterized for uncross-linked, thermally crosslinked, and carbon molecular sieve (CMS) membranes. The membranes were characterized with thermogravimetric analysis, FTIR spectroscopy, wide-angle X-ray diffraction, and gas permeation tests. Variations in the d spacing, the formation of pore structures, and changes in the pore sizes of the CMS membranes were discussed in relation to pyrolysis protocols. The uncross-linked polymer membranes showed high CO2 /CH4 selectivity, whereas thermally crosslinked membranes exhibited significantly improved CO2 permeability and excellent CO2 plasticization resistance. The CMS membranes showed even higher CO2 permeability and CO2 /CH4 selectivity. An increase in the pyrolysis temperature resulted in CMS membranes with lower gas permeability but higher selectivity. The 550 °C pyrolyzed CMS membranes showed CO2 permeability as high as 14 750 Barrer with CO2 /CH4 selectivity of approximately 52. Even 800 °C pyrolyzed CMS membranes still showed high CO2 permeability of 2610 Barrer with high CO2 /CH4 selectivity of approximately 118. Both polymer membranes and the CMS membranes are very attractive in aggressive natural gas purification applications.

摘要

合成了6FDA-mPDA/DABA(3:2)聚酰亚胺,并对未交联、热交联和碳分子筛(CMS)膜进行了表征。通过热重分析、傅里叶变换红外光谱、广角X射线衍射和气体渗透测试对膜进行了表征。讨论了与热解方案相关的CMS膜的d间距变化、孔结构形成和孔径变化。未交联的聚合物膜表现出高的CO2/CH4选择性,而热交联膜表现出显著提高的CO2渗透性和优异的抗CO2增塑性能。CMS膜表现出更高的CO2渗透性和CO2/CH4选择性。热解温度的升高导致CMS膜的气体渗透性降低但选择性提高。550℃热解的CMS膜表现出高达14750巴耳的CO2渗透性,CO2/CH4选择性约为52。即使是800℃热解的CMS膜仍表现出2610巴耳的高CO2渗透性,高CO2/CH4选择性约为118。聚合物膜和CMS膜在苛刻的天然气净化应用中都非常有吸引力。

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