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Highly selective 3D porous graphene membrane for organic gas separation derived from polyphenylene

机译:源自聚苯撑的用于有机气体分离的高选择性3D多孔石墨烯膜

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In this paper, a 3D nanoporous carbon molecular sieve (CMS) membrane is proposed to investigate the diffusion and separation properties of ethylene/methane and ethylene/acetylene binary mixtures permeating through the structural deformated carbon nanotube (CNT) channels. Combining the results obtained from density functional theory (DFT) calculations and molecular dynamics (MD) simulations, we find that the organic gas permeability and selectivity can be effectively ameliorated by fine-tuning the geometric structure of CNTs gas separation channels. By virtue of the intrinsic structural characteristics, this hybrid CMS configuration established elliptical cylinder channels to separate the organic gas molecules with similar molecular size. Compared with channels with a circular cross section, the gas selectivity for channels with an elliptical cross section is larger, and it increases with an increasing pressure. The selectivity of ethylene over acetylene (methane) increased to similar to 13.8 (5.5) in deformed CNTs channels, which is more than doubled over the original CNT channels. This distinguished hybridization configuration may pave a promising avenue to utilize gas separation materials. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种3D纳米多孔碳分子筛(CMS)膜,以研究渗透穿过结构变形碳纳米管(CNT)通道的乙烯/甲烷和乙烯/乙炔二元混合物的扩散和分离特性。结合从密度泛函理论(DFT)计算和分子动力学(MD)模拟获得的结果,我们发现可以通过微调CNTs气体分离通道的几何结构来有效改善有机气体的渗透性和选择性。由于其固有的结构特征,这种混合CMS构型建立了椭圆圆柱通道,以分离具有相似分子大小的有机气体分子。与具有圆形横截面的通道相比,具有椭圆形横截面的通道的气体选择性更大,并且随着压力的增加而增加。在变形的CNTs通道中,乙烯对乙炔(甲烷)的选择性增加到类似于13.8(5.5),是原始CNT通道的两倍以上。这种杰出的杂交构型可以为利用气体分离材料铺平一条有希望的途径。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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