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Molecular simulations of adsorption and separation of acetylene and methane and their binary mixture on MOF-5, HKUST-1 and MOF-505 metal-organic frameworks

机译:乙炔和甲烷的吸附和分离的分子模拟及其在MOF-5,HKust-1和MOF-505金属有机框架上的二元混合物

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In this work, the adsorption of acetylene and its binary mixture with methane on MOF-5, HKUST-1 and MOF-505 was studied using Grand Canonical Monte Carlo molecular simulations. The preferred adsorption sites of acetylene and methane molecules into metal-organic frameworks (MOFs) were investigated. The simulated adsorption isotherms of acetylene on MOF-5 and MOF-505 agreed well with the experimental ones without any reparameterisation of the potential parameters but for HKUST-1 the interaction parameters of the acetylene and copper ion were reparameterised. Comparisons of the calculated adsorption isotherms of acetylene in the studied MOFs showed that the MOF-5 had the lowest adsorption capacity. Our results revealed that guest molecules were most adsorbed on the entrance windows of the octagon pore of HKUST-1, while the preferred adsorption sites were large pores and on the metal ion cluster of MOF-505 and MOF-5, respectively. Adsorption of binary mixtures of methane and acetylene on MOF-5, HKUST-1 and MOF-505 revealed that acetylene adsorption is higher than that of methane. Finally, the results showed that C2H2/CH4 selectivity values on HKUST-1 are significantly higher than on MOF-505 and MOF-5. The preferred adsorption sites of acetylene and methane in an equimolar binary mixture were calculated and discussed.
机译:在这项工作中,使用Grand Canonical Monte Carlo Molecular模拟研究了乙炔和其二元混合物与MOF-5,HKust-1和MOF-505上的甲烷的吸附。研究了乙炔和甲烷分子的优选吸附位点,进入金属 - 有机骨架(MOF)。在MOF-5和MOF-505上的乙炔的模拟吸附等温线与实验结果吻合良好,没有任何Reparametation的潜在参数,但对于HKust-1,乙炔和铜离子的相互作用参数是重新的。所研究的MOF中乙炔的计算吸附等温物的比较表明,MOF-5具有最低的吸附能力。我们的研究结果表明,客体分子最吸附在香港甘蓝 - 1的八角形孔的入口窗口上,而优选的吸附位点分别是大孔和MOF-505和MOF-5的金属离子簇。甲烷和乙炔的二元混合物对MOF-5,HKust-1和MOF-505的吸附显示,乙炔吸附高于甲烷。最后,结果表明,HKust-1上的C2H2 / CH 4选择性值显着高于MOF-505和MOF-5。计算并讨论了等摩尔二元混合物中乙炔和甲烷的优选吸附位点。

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