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Solubility of greenhouse and acid gases on the C(4)mimMeSO4 ionic liquid for gas separation and CO2 conversion

机译:温室气体和酸性气体在C(4)mim MeSO4离子液体上的溶解度,用于气体分离和CO2转化

摘要

Ionic liquids (ILs) are an exciting class of compounds of high interest from a technological point of view. One of the applications that is raising more interest is their possible use as solvents to carry out the conversion of CO2 into more valuable compounds. Theoretical approaches provide an attractive option to screen ILs properties and give quick answers to guide the experiments, becoming a crucial tool for process design. This work illustrates a practical example based on the solubility of greenhouse and acid gases on the butylmethylimidazolium methylsulfate [C(4)mim][MeSO4] IL, in order to study its feasibility for gas separation and conversion. A simple but reliable molecular model is presented for the ionic liquid based on structural information and molecular simulations, and coarse-grained models are used to model the different gases. The absorption of relevant gases for the separation/conversion process (CO2, CH4, CO, H-2, SO2, H2S) in [C(4)mim][MeSO4] is modeled and compared with experimental data using a minimum amount of binary data. From this information, the ternary diagrams of [C(4)mim][MeSO4] with CO2 and the acid gases SO2 and H2S are predicted, and the selectivity of CO2 by respect all the gases is evaluated, with particular attention to the contaminants above mentioned. (C) 2015 Elsevier B.V. All rights reserved.
机译:从技术角度来看,离子液体(ILs)是令人兴奋的令人关注的一类化合物。引起更多关注的应用之一是它们可能用作溶剂以将CO2转化为更有价值的化合物。理论方法为筛选IL的特性提供了一个有吸引力的选择,并提供了快速的答案来指导实验,成为过程设计的重要工具。这项工作举例说明了一个实例,该实例基于温室气体和酸性气体在甲基硫酸丁基甲基咪唑鎓[C(4)mim] [MeSO4] IL上的溶解度,从而研究其在气体分离和转化中的可行性。基于结构信息和分子模拟,为离子液体提供了一个简单但可靠的分子模型,并使用粗粒度模型对不同的气体进行了建模。对[C(4)mim] [MeSO4]中用于分离/转化过程的相关气体(CO2,CH4,CO,H-2,SO2,H2S)的吸收进行了建模,并与实验数据进行了比较,并使用了最小量的二元数据。根据这些信息,可以预测[C(4)mim] [MeSO4]与CO2以及酸性气体SO2和H2S的三元图,并评估了相对于所有气体的CO2选择性,尤其要注意上述污染物提到。 (C)2015 Elsevier B.V.保留所有权利。

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