Fast and efficient CO2 absorption in non-aqueous tertiary amines promoted by ethylene glycol

Meisi Chen, Mengjia Li, Feng Zhang, Xingbang Hu, Youting Wu
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引用次数: 10

Abstract

With the catalytic induction of EG, anhydrous DMEA shows CO absorption performance via chemical binding and physical storage under normal pressure. Among the absorbents, pure DMEA can hardly absorb CO directly but when the zwitterionic alkylcarbonates are formed between CO and DMEA-EG which can be characterized by C NMR and FTIR, the absorption rate of CO will be improved at this time. An increasing the CO loading as the mass fraction of EG in DMEA-EG, 90wt.% EG captures up to 0.72 mol/mol. The amount of chemically bound and physically stored is directly dependent on temperature, within the range of 293 to 323K, an absorption-regeneration cycle can be formed in a closed vessel because of the zwitterion DMEA-EG-CO is unstable at the higher temperature. In other words, DMEA-EG-CO can be easily regenerated upon appropriate depressurization or heating, corresponding thermodynamic calculations prove that the regenerative energy of DMEA-EG-CO is 25.49kJ/mol.
乙二醇促进非水叔胺中快速高效的CO2吸收
在EG的催化诱导下,无水DMEA在常压下通过化学结合和物理储存表现出吸收sco的性能。在吸收剂中,纯dmea几乎不能直接吸收CO,但当CO与DMEA-EG之间形成两性离子基碳酸酯时,CO的吸收率会提高,这可以用C - NMR和FTIR进行表征。随着EG的质量分数的增加,CO的负荷也随之增加。% EG能捕获0.72 mol/mol。化学结合和物理储存的数量直接取决于温度,在293至323K范围内,由于两性离子dmea - eg - co在较高温度下不稳定,可以在封闭容器中形成吸收再生循环。换句话说,只要适当的减压或加热,DMEA-EG-CO就可以很容易地再生,相应的热力学计算证明DMEA-EG-CO的再生能为25.49kJ/mol。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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