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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Vapor permeation of hydrocarbons through supported liquid membranes based on ionic liquids
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Vapor permeation of hydrocarbons through supported liquid membranes based on ionic liquids

机译:碳氢化合物通过基于离子液体的支撑液膜的蒸汽渗透

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Separation of benzene and cyclohexane is one of the most challenging processes in the chemical industry. In our previous paper, we examined the separation of a mixed solution of benzene and cyclohexane using a supported liquid membrane (SLM) based on ionic liquids. In this study, vapor permeation (VP) of benzene/cyclohexane through a SLM using ionic liquids based on l-alkyl-3-methylimidazolium and quaternary ammonium salts was performed. We examined the effects of ionic liquids and the benzene fraction in the feed on the permeation flux and separation factor, and the stability of the SLM based on ionic liquid. It was found that the sorption step mainly affected the separation factor depending on the hydrophilicity of the ionic liquid. The hydrophilic liquid membrane that used N,N-diethyl-N-methyl-N-(2-methoxyethyl) ammonium tetrafluoroborate, which showed the highest selectivity of 47.1 for the mixed solution, gave the highest separation factor, 185 for 53 wt.% benzene and 950 for 11 wt.% benzene for the VP, which are superior to the previously reported values obtained by pervaporation. Over 1 month, a steady flux and separation factor were obtained, suggesting that the membrane was extremely stable.
机译:苯和环己烷的分离是化学工业中最具挑战性的过程之一。在我们以前的论文中,我们研究了使用基于离子液体的支撑液膜(SLM)分离苯和环己烷的混合溶液的方法。在这项研究中,使用基于1-烷基-3-甲基咪唑鎓和季铵盐的离子液体,通过SLM对苯/环己烷进行了蒸汽渗透(VP)。我们研究了离子液体和进料中苯部分对渗透通量和分离因子的影响,以及基于离子液体的SLM的稳定性。已经发现,吸附步骤主要取决于离子液体的亲水性而影响分离因子。使用N,N-二乙基-N-甲基-N-(2-甲氧基乙基)四氟硼酸铵的亲水性液膜对混合溶液的选择性最高,为47.1,分离系数最高,为53 wt。%,为185。苯,对于VP来说11%(重量)的苯为950,这要优于先前通过全蒸发获得的报告值。在1个月的时间内,获得了稳定的通量和分离系数,表明该膜非常稳定。

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