首页> 外文期刊>Bulletin of the Chemical Society of Japan >Divide-and-Conquer Density-Functional Tight-Binding Molecular Dynamics Study on the Formation of Carbamate Ions during CO2 Chemical Absorption in Aqueous Amine Solution
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Divide-and-Conquer Density-Functional Tight-Binding Molecular Dynamics Study on the Formation of Carbamate Ions during CO2 Chemical Absorption in Aqueous Amine Solution

机译:含二氧化碳化学吸收过程中氨基甲酸酯离子在胺溶液中形成的分割和征服密度官能的紧密分子动力学研究

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摘要

Divide-and-conquer-type density-functional tight-binding molecular dynamics simulations of the CO2 absorption process in monoethanolamine (MEA) solution have been performed for systems containing thousands of atoms. The formation of carbamate anions has been widely investigated for neutral systems via ab initio molecular dynamics simulations, yet the present study is aimed at identifying the role of hydroxide ions in acid-base equilibrium. The structural and electronic analyses reveal that the hydroxide ion approaches, via Grotthuss-type shuttling, the zwitterionic intermediates and abstracts a proton from the nitrogen atom of MEA. We also estimated the fraction of reacted CO2 and carbamate formed at different initial CO2 concentrations that confirm a high absorbed CO2 concentration decreases the fraction of MEA(C) formed due to the abundance of MEA(Z) in the solution.
机译:已经对含有成千上万原子的系统进行了单乙醇胺(MEA)溶液中的CO2吸收过程的CO 2吸收过程的分型和征管型密度功能紧密分子动力学模拟。 通过AB初始分子动力学模拟已广泛研究氨基甲酸酯阴离子的中性系统,但目前的研究旨在鉴定氢氧化物离子在酸碱平衡中的作用。 结构和电子分析揭示了氢氧化物离子方法,通过麦克风型梭,两性离子中间体和摘要来自MEA的氮原子的质子。 我们还估计了在不同初始CO 2浓度下形成的反应二氧化碳和氨基甲酸酯的部分,其证实高吸收的CO 2浓度降低了由于溶液中的MEA(Z)的丰度而形成的MEA(C)的级分。

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