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Screening Ionic Liquids as Candidates for Separation of Acid Gases: Solubility of Hydrogen Sulfide, Methane, and Ethane

机译:筛选作为分离酸性气体的候选离子液体:硫化氢,甲烷和乙烷的溶解度

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摘要

The solubility of the major constituents of natural gas in ionic liquids (ILs) can be used to identify their potential for acid gas removal from a producing gas stream. We have developed models for the solubility of H2S, CH4, and C2H6 in ILs at typical conditions encountered in natural gas treatment. In this work, a conductor-like screening model for realistic solvation was used to predict the activity coefficients for solutes in ILs and a cubic EOS was used for vapor-phase corrections from ideality. Empirical correlations were developed to extrapolate solubilities where experimental data are not available at desired conditions; targeted in this study at 298.15 K and 2000 kPa. Over 400 possible ILs were ranked based on the higher selectivity of absorption of CO2 and H2S over CH4 and C2H6. The best 15% (58) of promising ILs for sour gas treatment predominantly contain the anions BF4, NO3, and CH3SO4 and the cations N_(4111), pmg, and tmg.
机译:天然气主要成分在离子液体(ILs)中的溶解度可用于确定其从生产气流中去除酸性气体的潜力。我们开发了在天然气处理中遇到的典型条件下,H2S,CH4和C2H6在IL中的溶解度模型。在这项工作中,使用用于实际溶剂化的类似导体的筛选模型来预测IL中溶质的活度系数,并使用立方EOS从理想状态进行气相校正。建立了经验相关性以推断在所需条件下无法获得实验数据的溶解度。这项研究的目标是298.15 K和2000 kPa。基于CO2和H2S相对于CH4和C2H6的更高的吸收选择性对超过400种可能的IL进行了排名。最好的15%(58)有望用于酸性气体处理的ILs主要包含阴离子BF4,NO3和CH3SO4,以及阳离子N_(4111),pmg和tmg。

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