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Effects of Surface Heterogeneity on Gas Permeation through Slit-Like Carbon Membranes by Non-Equilibrium Molecular Dynamics Simulations

机译:非平衡分子动力学模拟表面异质性对类似缝隙碳膜的气体渗透的影响

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References(18) Cited-By(24) Computer simulations have been performed to study the effects of surface heterogeneity on gas permeation through slit-like carbon membranes by using a novel simulation technique, μVT ensemble Non-Equilibrium Molecular Dynamics. The energetically heterogeneous surfaces are made by randomly removing a certain number of carbons on the first layer of graphite basal planes. Methane (1) and ethane (2) are used as model gases for pure- and mixed-gas permeations. A small heterogeneity on the pore surface is found to result in a large decrease in the permeation fluxes due to an increase in frequency of molecular collisions onto heterogeneous sites. The densities in equilibrium with feed gases decrease almost linearly with an increase in the surface heterogeneity, though the decrease is not so large as that in permeation fluxes. In the case of the permeation of a binary mixture, permselectivity of a more adsorptive substance (ethane), which is much larger than the ratio of pure gas permeances, P^2/P^1, is found to change only slightly with an increase in the surface heterogeneity.
机译:参考文献(18)被引用人(24)使用新型模拟技术μVT集成非平衡分子动力学进行了计算机模拟,研究了表面异质性对通过缝隙状碳膜的气体渗透的影响。通过在石墨基础平面的第一层上随机去除一定数量的碳,可以制成能量上不均匀的表面。甲烷(1)和乙烷(2)用作纯气和混合气渗透的模型气体。发现由于在异质位点上分子碰撞的频率增加,孔表面上的较小异质性导致渗透通量大大降低。与原料气平衡的密度几乎随表面异质性的增加而线性下降,尽管下降幅度不如渗透通量大。在二元混合物渗透的情况下,发现吸附性更高的物质(乙烷)的渗透选择性比纯气体渗透率(P ^ 2 / P ^ 1)大得多,随渗透率的增加而略有变化。表面异质性。

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