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Ab Initio Study of CO2 Capture Mechanisms in Monoethanolamine Aqueous Solution: Reaction Pathways from Carbamate to Bicarbonate

机译:二乙醇胺水溶液中CO2捕获机制的AB INITIO研究:氨基甲酸酯对碳酸氢盐的反应途径

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Ab initio calculations combined with the continuum solvation model have been conducted to obtain complete reaction pathways involved in the CO2 capture into monoethanol (MEA) aqueous solution. We have investigated the reaction pathways for the decomposition of MEA carbamate into bicarbonate. Although the already known pathways invoke a generation of free CO2(aq), we are concerned with another mechanism which does not involve such an intermediate. The neutral hydrolysis of the MEA carbamate was found to be a slow reaction that has an essentially two-step nature. We propose an alternative pathway that involves the carbamic acid as an intermediate that undergoes an alkaline hydrolysis leading to the formation of bicarbonate. Taking account of the novel reaction pathways elucidated here as well as the established routes for the formation of carbamate and bicarbonate may lead to a comprehensive understanding and a better prediction of the chemical CO2 capture process under specific conditions including pH (concentration of amine) and partial pressure of CO2.
机译:已经进行了与连续溶解模型相结合的AB初始计算,以获得CO 2捕获成单乙醇(MEA)水溶液中的完全反应途径。我们研究了MEA氨基甲酸酯分解成碳酸氢盐的反应途径。虽然已经已知的途径援引了一代免费的CO2(AQ),但我们涉及不涉及这种中间体的另一种机制。发现MEA氨基甲酸酯的中性水解是具有基本上两步性的缓慢反应。我们提出一种替代途径,其涉及氨基甲酸作为经过碱性水解的中间体,导致碳酸氢盐的形成。考虑到这里阐明的新型反应途径以及形成氨基甲酸酯和碳酸氢盐的建立的途径可能导致综合了解和更好地预测在包括pH(胺浓度)和部分的特定条件下的化学二氧化碳捕获过程CO2的压力。

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