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Chemical Absorption of CO2 Enhanced by Solutions of Alkali Hydroxides and Alkoxides at Room Temperature

机译:室温下碱氢氧化物和醇盐溶液增强了CO2的化学吸收

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This article presents the study of CO2 capture through aqueous solutions with high basicity conditions.Systematic experiments were conducted to assess the performance of alcohols mixed with aqueous alkaline hydroxides for carbon dioxide capture.Alcohols can work as a catalyst in the capture of CO2 providing greater basicity,a lower surface tension,and an amphiphilic character in the polar aqueous solvent/(nonpolar CO2 and N2)gas mixture interface,and a lower temperature of solvent regeneration.The results showed that short-chain alcohols,such as methanol and ethanol,and alkaline metals of greater molar mass(i.e.,K compared to Na)can produce greater basicity and a higher CO2 absorption rate in the mixtures than conventional aqueous solutions such as ammonia or mono-ethanolamine in the same concentration.DFT calculations of electronic and thermodynamic properties for CO2 absorption reactions were carried out to analyze the nucleophilic trend of the short-chain alkoxides studied.The volumetric proportion between water and alcohol,as well as the concentration of alkaline hydroxide,influences the rate of CO2 absorption,the temperature of regeneration and volatility of the solvent,and the formation of precipitates.CO2 absorption rates greater than 90% v/v and solvent regeneration temperatures of approximately 78℃ were achieved using ethanol,water,and KOH.
机译:本文介绍了二氧化碳捕获的研究通过与高碱度水溶液条件。评估醇混合的性能水碱性氢氧化物为二氧化碳捕捉。捕获的二氧化碳提供更大的碱度、较低的表面张力和两亲性角色极地水溶剂/(非极性二氧化碳和N2)气体混合物接口和一个较低的温度溶剂的再生。短链醇如甲醇和乙醇,和碱性金属更大的摩尔质量(即。碱度和二氧化碳吸收率更高比传统的水混合解决方案等氨或mono-ethanolamine相同浓度。热力学性质对二氧化碳的吸收反应进行了分析短链醇盐的亲核的趋势研究。和酒精的浓度碱性氢氧化物,二氧化碳的速率的影响吸收、再生和温度溶剂的波动性和形成的沉淀。90% v / v和溶剂再生温度通过使用约78℃乙醇、水和KOH。

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