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Ionic liquids for acetylene and ethylene separation: Material selection and solubility investigation

机译:用于乙炔和乙烯分离的离子液体:材料选择和溶解度研究

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摘要

Potential applications of ionic liquids (ILs) for the green separation process of acetylene in ethylene and for the storage of acetylene were investigated. To deal with this proposal, the solubilities of the unsaturated hydrocarbons in various ionic liquids were evaluated. The solubility of ethylene shows a solubility parameter-dependent behavior as indicated by the proportional relationship between the natural log value of Henry's law constant and the inverse molar volume of ILs. This correlation suggests the most important role of voids formation within IL to accommodate the solutes and the applicability of regular solution theory to model the solubility behavior. Whereas, in addition to the free-volume contribution of ILs, the solubility of acetylene is largely controlled by a specific solute-solvent interaction as a result from the association of the acidic hydrogen character in acetylene and the relative basicity of the anion. Those two different solubility behaviors result in a high absorption selectivity of acetylene over ethylene in the basic ILs. ~1H NMR experiment clearly demonstrated the presence of a substantial interaction between the acetylene and the anion of IL. Interestingly, this solute-solvent interaction is reversible as indicated by the absorption-desorption test of acetylene in [BMIM][Me2PO4].
机译:研究了乙烯中乙炔绿色分离过程的离子液体(ILS)和储存乙炔的潜在应用。为了处理该提议,评价了不饱和烃在各种离子液体中的溶解度。乙烯的溶解度显示溶解度参数依赖性行为,如亨利法律常数的自然对数值与ILS的反摩尔体积之间的比例关系所示。这种相关性表明空隙在IL内部形成的最重要作用,以适应常规解决方案理论模拟溶解度行为的溶质和适用性。然而,除了ILS的自由体积贡献之外,乙炔的溶解度大大通过特定的溶质溶剂相互作用来控制,因为酸性氢特征在乙炔中的缔合物和阴离子的相对碱度的关系。这两种不同的溶解度行为导致碱性ILS中乙烯对乙炔的高吸收选择性。 〜1H NMR实验清楚地证明了乙炔与IL的阴离子之间存在显着相互作用。有趣的是,这种溶质 - 溶剂相互作用是如[BMIM] [ME2PO4]中的乙炔的吸收 - 解吸试验所示。

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