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Carbon molecular sieve membranes derived from thermally labile polymer containing blend polymers and their gas separation properties

机译:含共混聚合物的热不稳定聚合物衍生的碳分子筛膜及其气体分离性能

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Carbon molecular sieve (CMS) membranes were prepared by controlled pyrolysis of polyimide (PI)/polyvinylpyrrolidone (PVP) blends. The average d-spacing values calculated from wide-angle X-ray diffraction data were significantly increased with the amount of PVP. The pyrolytic CMS membranes showed the type I isotherm according to IUPAC classification from the nitrogen adsorption isotherm. From pure gas permeation experiments using He, CO2, O-2, and N-2, it was found that the existence of a thermally labile phase significantly affected the gas permeation performance of the final CMS membranes. The gas permeabilities through the CMS membranes were enhanced by the introduction of thermally labile polymer (PVP) and decreased as the final pyrolysis temperature increased. The CMS membrane derived from PI containing 10wt.% PVP and pyrolyzed at 550 degreesC showed maximum gas permeability for O-2 of 630 Barrers and O-2/N-2 selectivity of 10. For a CMS membrane pyrolyzed at 700 degreesC derived from a precursor containing 10% PVP, the gas permeability for O-2 was 230 Barrers and O-2/N-2, selectivity was 14. (C) 2004 Elsevier B.V. All rights reserved.
机译:碳分子筛(CMS)膜是通过聚酰亚胺(PI)/聚乙烯吡咯烷酮(PVP)共混物的受控热解制备的。从广角X射线衍射数据计算得出的平均d间隔值随PVP的数量而显着增加。热解CMS膜根据氮吸附等温线根据IUPAC分类显示I型等温线。从使用He,CO2,O-2和N-2进行的纯气体渗透实验中,发现热不稳定相的存在会显着影响最终CMS膜的气体渗透性能。通过引入热不稳定聚合物(PVP)可以提高通过CMS膜的气体渗透率,并随着最终热解温度的升高而降低。衍生自含10wt。%PVP的PI的CMS膜在550℃下热解,对O-2的最大气体渗透率为630 Barrers,O-2 / N-2的选择性为10。对于在700℃下热解的CMS膜,含有10%PVP的前驱物,O-2的透气度为230 Barrers,O-2 / N-2的透气度为14。(C)2004 Elsevier BV保留所有权利。

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