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Separation of methane from ethane and propane by selective adsorption and diffusion in MOF Cu-BTC: A molecular simulation study

机译:通过在MOF Cu-BTC中的选择性吸附和扩散来分离甲烷和丙烷的分离:分子模拟研究

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Pure methane is an alternative source of cleaner energy. Although, natural gas contains around 90% of methane, there are other heavier alkanes such as ethane and propane. Presence of these heavier hydrocarbons affects the reusability of an adsorbed natural gas system (ANG). Thus, separation of these higher alkanes from methane is important. In the present study, we employed molecular simulation techniques to assess the performance of MOF Cu-BTC for separation of methane from ethane and propane at 298 K and for a range of pressure. The assessment was carried out on the basis of variety of performance metrics suitable for adsorption based separation. The performance metrics that we relied upon are adsorption selectivity, working capacity, regenerability (R%), adsorption performance score (APS), diffusion selectivity, and membrane selectivity. We investigated the performance for two equimolar binary mixtures - methane/ethane and methane/propane, and two ternary mixtures - one equimolar mixture and the other containing 90% methane, 7% ethane, and 3% propane. The adsorption selectivity of ethane over methane and propane over methane are really attractive indicating good performance of the MOF in separating the two binary mixtures. We also investigated the effect of the presence of ethane and propane on the mobility of methane. The diffusivities of methane, although, reduces by some factor in presence of ethane and propane, are sufficiently higher at all the pressures and at different compositions with ethane and propane. Finally, we assessed the performance of Cu-BTC as a membrane for separation of methane from ethane and propane. (C) 2020 Elsevier Inc. All rights reserved.
机译:纯甲烷是一种清洁能量的替代来源。虽然天然气含有约90%的甲烷,但还有其他较重的烷烃如乙烷和丙烷。这些较重烃的存在影响吸附的天然气系统(Ang)的可重用性。因此,将这些高烷烃与甲烷的分离是重要的。在本研究中,我们采用分子模拟技术来评估MOF Cu-BTC的性能,将甲烷与乙烷分离在298k和一系列压力范围内。该评估是在适合于基于吸附分离的各种性能指标的基础上进行的。我们依赖于吸附选择性,工作能力,再生性(R%),吸附性能评分(APS),扩散选择性和膜选择性的性能指标。我们研究了两种等摩尔二元混合物 - 甲烷/乙烷和甲烷/丙烷的性能,以及两种三元混合物 - 一种等摩尔混合物,另一个含有90%甲烷,7%乙烷和3%丙烷。甲烷对甲烷和丙烷对甲烷的吸附选择性真正有吸引力,表明在分离两个二元混合物时的MOF良好的性能。我们还研究了乙烷和丙烷在甲烷的流动性上的影响。甲烷的扩散性虽然在乙烷和丙烷存在下的某种因素减少,但在所有压力和用乙烷和丙烷的不同组合物处足够高。最后,我们评估了Cu-BTC作为乙烷和丙烷分离甲烷的膜的性能。 (c)2020 Elsevier Inc.保留所有权利。

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