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Gas separation properties of mixed-matrix membranes containing porous polyimides fillers

机译:含多孔聚酰亚胺填料的混合基质膜的气体分离特性

摘要

Two series of mixed-matrix membranes were prepared by adding three organic polymeric fillers into polyimide matrices to explore the effect of the filler on the membrane preparation, properties and gas separation performance.The fillers were two mesoporous polyimides, with specific surface areas of 605 and 715m2/g, and a microporous one. The polymer matrices used in this study were a commercial polyimide, Matrimid®, and a synthetic polyimide. Due to the chemical affinity between the fillers and the matrices, very good and quick dispersion was achieved in all cases. The spectral characteristics and the thermal properties of the mixtures did not greatly differ from those of the pristine polyimides, as it was checked by FT-IR, TGA and DSC. The gas separation properties of Matrimid® were significantly improved when using the mesoporous fillers because the permeability coefficients were increased up to 3.4 times while the selectivity was maintained or even exceeded. However, when the synthetic matrix, which has much more permeability than Matrimid®, was used, no significant increases in these parameters were observed upon incorporating the porous fillers.
机译:通过在聚酰亚胺基体中加入三种有机聚合物填料制备两种系列的混合基质膜,以探讨填料对膜的制备,性能和气体分离性能的影响。填料为两种介孔聚酰亚胺,比表面积为605和715平方米/克,还有一个微孔。本研究中使用的聚合物基质是市售的聚酰亚胺和合成的聚酰亚胺。由于填料和基体之间的化学亲和力,在所有情况下都可以实现非常好的快速分散。混合物的光谱特性和热特性与原始聚酰亚胺的光谱特性和热特性没有太大差异,因为通过FT-IR,TGA和DSC对其进行了检查。使用中孔填料时,Matrimid®的气体分离性能得到了显着改善,这是因为渗透系数提高了3.4倍,同时保持或什至超过了选择性。但是,当使用比Matrimid®具有更大渗透性的合成基质时,在掺入多孔填料后,这些参数没有显着增加。

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