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Matrimid-based carbon tubular membranes: The effect of the polymer composition

机译:基质胶基碳纤维管膜:聚合物组成的影响

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In this article, we present a development study of new membrane materials and enhancements of productive membranes to improve the current performance of polymeric membranes. Carbon membranes are a promising material for this matter as they offer an improvement in the gas-separation performance and exhibit a good combination of permeability and selectivity. Carbon membranes produced from the carbonization of polymeric materials have been reported to be effective for gas separation because of their ability to separate gases with almost similar molecular sizes. In this study, a carbon support membrane was prepared with Matrimid 5218 as a polymeric precursor. The polymer solution was coated on the surface of a tubular support with the dip-coating method. The polymer tubular membrane was then carbonized under a nitrogen atmosphere with different polymer compositions of 5-18 wt %. The carbonization process was performed at 850 degrees C at a heating rate of 2 degrees C/min. Matrimid-based carbon tubular membranes were fabricated and characterized in terms of their structural morphology, thermal stability, and gas-permeation properties with scanning electron microscopy,thermogravimetric analysis, Fourier transform infrared spectroscopy, and a pure-gas-permeation system, respectively. Pure-gas-permeation tests were performed with the pure gases carbon dioxide (CO2) and N-2 at room temperature at a pressure of 8 bar. On the basis of the results, the highest CO2/N-2 selectivity of 75.73 was obtained for the carbon membrane prepared with a 15 wt % polymer composition. (C) 2015 Wiley Periodicals, Inc.
机译:在本文中,我们提出了一种新的膜材料的开发研究,并提高了生产性膜的性能,以改善聚合物膜的当前性能。碳膜是解决这一问题的有前途的材料,因为它们可以改善气体分离性能,并具有良好的渗透性和选择性结合。已经报道了由聚合材料的碳化产生的碳膜对于气体分离是有效的,因为它们能够分离具有几乎相似的分子大小的气体。在这项研究中,用Matrimid 5218作为聚合物前体制备了碳支撑膜。用浸涂法将聚合物溶液涂布在管状载体的表面上。然后在氮气氛下用5-18wt%的不同聚合物组成将聚合物管状膜碳化。碳化过程在850℃下以2℃/ min的加热速率进行。制备了基于Matrimid的碳管形膜,并通过扫描电子显微镜,热重分析,傅立叶变换红外光谱和纯净气体渗透系统对其结构形态,热稳定性和气体渗透性能进行了表征。在室温,压力为8 bar的情况下,使用纯净气体二氧化碳(CO2)和N-2进行纯净气体渗透测试。基于该结果,对于用15重量%的聚合物组合物制备的碳膜,获得最高的CO 2 / N 2选择性为75.73。 (C)2015年Wiley Periodicals,Inc.

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