首页> 外文期刊>Journal of Molecular Liquids >Computational investigation on the effect of [Bmim][BF4] ionic liquid addition to MEA alkanolamine absorbent for enhancing CO2 mass transfer inside membranes
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Computational investigation on the effect of [Bmim][BF4] ionic liquid addition to MEA alkanolamine absorbent for enhancing CO2 mass transfer inside membranes

机译:[BMIM] [BF4]离子液体对MEA链烷醇胺吸收剂作用的计算研究,用于增强膜内CO2质量转移

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Nowadays, various types of liquid solutions have been applied to remove acidic contaminants such as CO2 with the aim of mitigating their pernicious emission to atmosphere. Ionic liquids are recently of tremendous attention as promising solutions for CO2 molecular removal from disparate gaseous mixtures due to their superior characteristics such as regeneration simplicity, low volatility and negligible environmental toxicity. The main objective of this paper is to mathematically implement a model based on finite element approach (FEA) to analyze the governing mass and momentum partial differential equations inside the domains of polytetrafluoroethylene-co-perfluorinated alkyl vinyl ether membrane contactor (PFAMC). Also, a computational fluid dynamics (CFD) simulation is carried out to analyze the CO2 molecular removal percentage using MEA absorbent and a mixed solution containing 30% 1-butyl-3-methylimidazolium tetrafluoroborate ([Bmim][BF4]) ionic liquid and 70% MEA amine solution. The results show that although MEA has been able to remove only 18% of CO2 from the inlet gas, the addition of 30% [Bmim][BF4] ionic liquid to MEA significantly improved the CO2 mass transfer performance and consequently its removal efficiency to 79%. Study on the effect of some operational parameters such as inlet feed gas flow rate, packing density and number of hollow fibers on removing the CO2 molecules is another objective of this paper. (C) 2020 Elsevier B.V. All rights reserved.
机译:如今,已经施用了各种类型的液体溶液,以除去酸性污染物,例如CO2,目的是减轻它们对大气的恶劣发射。最近,离子液体是由于其由于其优异特性,例如再生简单,低挥发性和忽略不计的环境毒性,因此对来自不同气态混合物的CO 2分子除去的有前途的解决方案是巨大的关注。本文的主要目的是在数学上基于有限元方法(FEA)来分析聚四氟乙烯 - 共 - 全氟化烷基乙烯基醚膜接触器(PFAMC)内部的管肿大和动量部分微分方程。此外,进行了计算流体动力学(CFD)模拟,以分析使用MEA吸收剂的CO2分子除去百分比和含有30%的1-丁基-3-甲基咪唑鎓四氟硼酸盐([BMIM] [BF4])离子液体和70的混合溶液%MEA胺溶液。结果表明,尽管MEA能够从入口气体中仅去除18%的二氧化碳,但增加30%[Bmim] [BF4]离子液体至MEA显着提高了CO 2传质性能,并因此将其去除效率降至79 %。研究了一些操作参数的影响,例如入口进给气体流速,填充密度和中空纤维上空纤维的效果是本文的另一个目的。 (c)2020 Elsevier B.v.保留所有权利。

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