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胺功能化氨基酸基离子液体作为高效、高容量的 CO(2)吸收剂。

Amine-functionalized amino acid-based ionic liquids as efficient and high-capacity absorbents for CO(2).

出版信息

ChemSusChem. 2014 Mar;7(3):897-902. doi: 10.1002/cssc.201300691.

Abstract

Ionic liquids (ILs) comprised of ammonium cations and anions of naturally occurring amino acids containing an additional amine group (e.g., lysine, histidine, asparagine, and glutamine) were examined as high-capacity absorbents for CO2. An absorption capacity of 2.1 mol CO2 per mol of IL (3.5 mol CO2 per kg IL, 13.1 wt% CO2) was measured for [N66614][Lys] at ambient temperature and about 1 mol CO2 per mol of IL at 808C (under 1 bar of CO2). This demonstrated that desorption is possible under CO2-rich conditions by temperature-swing absorption; three consecutive sorption cycles were performed with the IL. The mechanistic and kinetic study of the absorption process was further substantiated by NMR spectroscopy and in situ attenuated total reflectance FTIR for [N66614][Lys] and the homologous phosphonium-based IL [P66614][Lys]. This study revealed that carbamic acid was formed with CO2 in both ILs by chemisorption; however, the amino acid–carboxyl groups on the anion played an important—but different—catalytic role for the sorption kinetics in the two ILs. The origin of the cationic effect is speculated to be correlated with the strength of the ion interactions in the two ILs.

摘要

含有额外胺基(如赖氨酸、组氨酸、天冬酰胺和谷氨酰胺)的天然氨基酸的铵阳离子和阴离子组成的离子液体(ILs)被用作 CO2 的高容量吸收剂进行了研究。在环境温度下,[N66614][Lys] 的 CO2 吸收容量为 2.1 mol CO2/mol IL(3.5 mol CO2/kg IL,13.1wt% CO2),而在 80°C(1 bar CO2 下)为 1 mol CO2/mol IL。这表明通过温度摆动吸收可以在富 CO2 条件下进行解吸;使用 IL 进行了三个连续的吸附循环。通过 NMR 光谱和原位衰减全反射 FTIR 进一步证实了吸收过程的机理和动力学研究[对于[N66614][Lys]和同系的磷鎓基 IL [P66614][Lys]。这项研究表明,在这两种 IL 中,CO2 通过化学吸附形成氨基甲酸;然而,阴离子上的氨基酸-羧基基团在两种 IL 的吸附动力学中发挥了重要但不同的催化作用。阳离子效应的起源被推测与两种 IL 中离子相互作用的强度有关。

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