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Acidic Gases Separation from Gas Mixtures on the Supported Ionic Liquid Membranes Providing the Facilitated and Solution-Diffusion Transport Mechanisms

机译:从支持的离子液体膜上的气体混合物中分离酸性气体从而提供了便利的溶液扩散扩散机制

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摘要

Nowadays, the imidazolium-based ionic liquids containing acetate counter-ions are attracting much attention as both highly selective absorbents of the acidic gases and CO2 carriers in the supported ionic liquid membranes. In this regard, the investigation of the gas transport properties of such membranes may be appropriate for better understanding of various factors affecting the separation performance and the selection of the optimal operating conditions. In this work, we have tested CH4, CO2 and H2S permeability across the supported ionic liquid membranes impregnated by 1-butyl-3-methylimidazolium acetate (bmim[OAc]) with the following determination of the ideal selectivity in order to compare the facilitated transport membrane performance with the supported ionic liquid membrane (SILM) that provides solution-diffusion mechanism, namely, containing 1-butyl-3-methylimidazolium tetrafluoroborate (bmim[BF4]). Both SILMs have showed modest individual gases permeability and ideal selectivity of CO2/CH4 and H2S/CH4 separation that achieves values up to 15 and 32, respectively. The effect of the feed gas mixture composition on the permeability of acidic gases and permeselectivity of the gas pair was investigated. It turned out that the permeation behavior for the bmim[OAc]-based SILM toward the binary CO2/CH4, H2S/CH4 and ternary CO2/H2S/CH4 mixtures was featured with high acidic gases selectivity due to the relatively low methane penetration through the liquid phase saturated by acidic gases.
机译:如今,作为载体的离子液体膜中酸性气体的高选择性吸收剂和CO2载体,含乙酸根抗衡离子的咪唑基离子液体引起了人们的广泛关注。在这方面,对此类膜的气体传输性质的研究可能适合于更好地理解影响分离性能和选择最佳操作条件的各种因素。在这项工作中,我们测试了乙酸丁酯(bmim [OAc])浸渍的负载型离子液体膜上CH4,CO2和H2S的渗透性,并确定了理想的选择性,以比较促进的转运具有提供溶液扩散机理的负载型离子液体膜(SILM)的膜性能,即包含1-丁基-3-甲基咪唑四氟硼酸酯(bmim [BF4])。两种SILM均显示出适度的单个气体渗透性以及理想的CO2 / CH4和H2S / CH4分离选择性,分别达到了15和32的值。研究了进料气体混合物组成对酸性气体的渗透性和气体对的渗透选择性的影响。结果表明,基于bmim [OAc]的SILM对二元CO2 / CH4,H2S / CH4和三元CO2 / H2S / CH4混合物的渗透行为具有较高的酸性气体选择性,这是因为甲烷相对较低地透过了甲烷。液相被酸性气体饱和。

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