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Kinetics of CO2 capture by ionic liquid-CO2 binding organic liquid dual systems

机译:离子液体-CO2结合有机液体双重体系捕获CO2的动力学

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A dual system, which aims to combine the individual advantages of two different solvents, has been developed for CO2 capture in order to intensify the process by reducing the reboiler duty. The dual system consisted of 1-Butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide ([bmim][Tf2N]) and 1.8-diazabicyclo 5.4.0 undec-7-ene (DBU) in 1-hexanol medium and the relevant kinetics were determined by using a stopped flow equipment. Based on pseudo-first-order reaction kinetics of CO2, the reaction was modeled by a modified termolecular reaction mechanism and rate constants and the activation energies of the [bmim][Tf2N]-DBU system were obtained. In addition, the absorption capacity and the initial absorption rate of the 10 wt% [bmim][Tf2N]-15 wt% DBU dual system were measured in a gas-liquid reactor at 303 K and 2 atm 0.815:1 mol ratio of CO2:DBU was achieved with this dual system - which approximately doubles the capacity of commercial alkanolamine solutions - and the initial CO2 absorption rate of the dual system was found to be 3.500 x 10(-5) kmol/m(2)s. Reversibility of dual system was also briefly investigated by using Fourier transform infrared spectrometry. (C) 2015 Elsevier B.V. All rights reserved.
机译:已开发出一种旨在结合两种不同溶剂各自优点的双重系统,用于二氧化碳捕集,以通过降低再沸器负荷来强化工艺。该双体系由1-己醇介质中的1-丁基-3-甲基咪唑双(三氟甲基磺酰基)酰亚胺([bmim] [Tf2N])和1.8-二氮杂双环5.4.0 undec-7-ene(DBU)组成,相关动力学为通过使用停止流动的设备确定。基于CO2的拟一级反应动力学,通过改进的分子反应机理对反应进行了建模,并获得了速率常数,并获得了[bmim] [Tf2N] -DBU系统的活化能。另外,在气液反应器中在303 K和2 atm的CO2摩尔比为0.815:1的条件下测量了10 wt%[bmim] [Tf2N] -15 wt%DBU双系统的吸收容量和初始吸收率。 :DBU是通过这种双重系统实现的-大约使商用链烷醇胺溶液的容量增加了一倍-并且发现双重系统的初始CO2吸收速率为3.500 x 10(-5)kmol / m(2)s。还使用傅里叶变换红外光谱法对双系统的可逆性进行了简要研究。 (C)2015 Elsevier B.V.保留所有权利。

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