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Shape selective adsorption in atomistic nanopores-a study of xylene isomers in silicalite

机译:原子纳米孔中的形状选择性吸附-硅质岩中二甲苯异构体的研究

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Grand Canonical Monte Carlo simulations are used to predict single component and binary mixture adsorption of p- and m-xylene in the ORTHO and PARA phases of silicalite. These predictions are compared with experimental results. Both phases adsorb p- xylene selectively, the ORTHO phase manifesting stronger p-selectivity than the PARA. p-Xylene is able to access the pore space of silicalite relatively easily while m-xylene is able to access the pore space only with difficulty; this diffculty; this seems to be the primary reason for p-selectivity. To contrast with situations where both isomers can access the pore space with relative ease, simulations of adsorption of xylene isomers in a larger pore structure are also performed. Under such conditions we observe that the ability of each component to form ordered clusters in the pore space influences selectivity. Oscillations in selectivity are observed and are attributed to competition between energetic and entropic contributions to adsorption. In all cases, sorbate-sorbate interaction between the components influences selectivity.
机译:大正则蒙特卡罗模拟用于预测硅沸石的ORTHO和PARA相中对二甲苯和间二甲苯的单组分和二元混合物吸附。将这些预测与实验结果进行比较。两相均选择性吸附对二甲苯,ORTHO相显示出比PARA更强的对选择性。对二甲苯相对容易进入硅质岩的孔隙,而间二甲苯则很难进入。这个困难;这似乎是p-选择性的主要原因。为了与两种异构体都可以相对容易地进入孔隙的情况形成对比,还对在较大孔隙结构中二甲苯异构体的吸附进行了模拟。在这种条件下,我们观察到每种组分在孔空间中形成有序簇的能力会影响选择性。观察到选择性的振荡,并且归因于高能和熵对吸附的贡献之间的竞争。在所有情况下,组分之间的山梨酸酯-山梨酸酯相互作用都会影响选择性。

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