首页> 外文期刊>The Journal of Chemical Physics >SEPARATION OF CARBON DIOXIDE-METHANE MIXTURES BY ADSORPTION - EFFECTS GEOMETRY AND ENERGETICS ON SELECTIVITY
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SEPARATION OF CARBON DIOXIDE-METHANE MIXTURES BY ADSORPTION - EFFECTS GEOMETRY AND ENERGETICS ON SELECTIVITY

机译:吸附法分离二氧化碳-甲醇混合物-几何和能量对选择性的影响。

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摘要

The adsorption of methane-carbon dioxide mixtures in micropores having either slit or cylindrical geometries, and different adsorption energies, has been studied using molecular simulation. The pore models were constructed from close packed layers of simple atoms whose Lennard-Jones interaction parameters could be varied. For realistic choices of the adsorbent parameters, adsorption selectivity outside the molecular sieving regime was found to vary over a range between about 4 and about 1/4, denoting a preference for either CO2 or for methane, depending on geometry and choice of parameters. The variations in selectivity are interpreted in terms of a balance between energetic factors, including adsorbate-adsorbent interactions and cooperative adsorbate interactions, and entropic factors associated with the constraints on rotational freedom of the CO2 molecule imposed mainly by the geometry of the pore spaces. (C) 1996 American Institute of Physics. [References: 17]
机译:使用分子模拟研究了甲烷-二氧化碳混合物在具有狭缝或圆柱形几何形状以及不同吸附能的微孔中的吸附。孔隙模型是由紧密堆积的简单原子层构成的,这些原子的Lennard-Jones相互作用参数可以改变。为了实际选择吸附剂参数,发现分子筛方案之外的吸附选择性在约4至约1/4的范围内变化,这表示对CO2或甲烷的偏好取决于几何形状和参数选择。选择性的变化是根据高能因素之间的平衡来解释的,这些高能因素包括吸附剂-吸附剂相互作用和协同吸附剂相互作用,以及与主要由孔隙空间的几何形状强加的对CO2分子旋转自由度的约束有关的熵因子。 (C)1996年美国物理研究所。 [参考:17]

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