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Gaseous Hydrocarbon Separations Using Functionalized Ionic Liquids

机译:使用功能化离子液体的气态烃分离

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摘要

The functionalization of the side chains on the cation or the anion of an ionic liquid is a common approach to tailor its properties for different processes including the separation of gases. In this paper, we present the current state of the art concerning the usage of ionic liquids for hydrocarbon separations. We also show how the functionalization of ionic liquids or the appropriate anion/cation combinations can contribute to the increase of the performance of the ionic liquids for the separation of gaseous hydrocarbons - either by improving the capacity of the ionic liquid to absorb a given gas or by increasing the selectivity towards a particular hydrocarbon. Original results concerning the usage of olefin-complexing metal salts of lithium (I), nickel (II) and copper (II) dissolved in ionic liquids for selectively absorbing light olefins are presented. It is observed that the absorption capacity of an imidazolium-based ionic liquid is doubled by the addition of a copper (II) salt. This result is compared with the effect of the functionalization of the ionic liquid and the advantages and difficulties of the two approaches are analyzed.
机译:阳离子液体或阴离子液体上的侧链官能化是针对包括气体分离在内的不同过程调整其性质的常用方法。在本文中,我们介绍了有关将离子液体用于烃类分离的最新技术。我们还展示了离子液体的功能化或适当的阴离子/阳离子组合如何通过提高离子液体吸收给定气体的能力或通过提高离子液体对给定气体的吸收能力或提高离子液体分离气态烃的性能来做出贡献。通过增加对特定烃的选择性。提出了关于使用溶解在离子液体中的锂(I),镍(II)和铜(II)的烯烃复合金属盐用于选择性吸收轻质烯烃的原始结果。观察到,通过添加铜(II)盐,基于咪唑鎓的离子液体的吸收能力增加了一倍。将该结果与离子液体官能化的效果进行了比较,并分析了两种方法的优缺点。

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