Development of dual-functionalized ionic liquids for biphasic solvents: Enhancing the CO2 absorption through two-stage reaction and promoting the energy-saving regeneration

离子液体 解吸 溶剂 吸收(声学) 氨基甲酸 化学 氨基甲酸酯 相(物质) 剥离(纤维) 二乙烯三胺 化学工程 体积热力学 材料科学 核化学 有机化学 催化作用 吸附 复合材料 工程类 渔业 物理 生物 量子力学
作者
Rujie Wang,Cairao Qi,Jian Jun Zheng,Huajun Zhao,Pan Zhang,Shanlong An,Qiangwei Li,Lidong Wang
出处
期刊:Fuel [Elsevier BV]
卷期号:359: 130382-130382 被引量:9
标识
DOI:10.1016/j.fuel.2023.130382
摘要

A dual-functionalized ionic liquid was synthesized by facile neutralizing routes from Diethylenetriamine (DETA) and lysine (Lys), which was designated as [DETA]Lys. It could absorb CO2 through a two-stage reaction, achieving a CO2 capacity of up to 2.16 mol CO2/mol ILs. And N-methyl-2-pyrrolidone (NMP) was validated as a good phase splitting agent for [DETA]Lys-based biphasic solvent by tailoring the polarity and hydrogen bonding effect. Thus, DETA-carbamate, Lys-carbamate, and HCO3−/CO32− were formed during CO2 absorption and gathered in the lower layer, while most of the NMP stayed in the upper layer. Finally, the CO2-rich phase took up 53.84 % of the total volume and 99.03 % of the captured CO2, exhibiting a CO2 loading of 4.78 mol CO2/L. The significantly enhanced CO2 loading (4.78 mol/L), decreased stripping volume (53.84 %), and reduced desorption energy (1.28 GJ/ton CO2) allowed for a great reduction in regeneration energy to 1.89 GJ/ton CO2, which was merely 47.37 % of 5 M MEA (3.80 GJ/ton CO2). The regeneration efficiency of the solvent remained at 91.5 % after the 3rd absorption/desorption cycle. Furthermore, the corrosion speeds of the rich and lean phases were merely 0.18 % and 12.35 % of 5 M MEA. The excellent CO2 capture performance and good energy-saving potential enabled the [DETA]Lys + NMP + H2O system an effective absorbent for carbon capture.
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