二氧化碳捕集过程中二乙醇胺水溶液的气液平衡

H. Shin, Jin Ho Kim
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摘要

目的:导致全球变暖的酸性气体,如二氧化碳(CO2)和硫化氢(H2S),主要是在化学过程中产生的。燃烧后捕集作为一种还原酸性气体的技术,具有代表性。醇胺水溶液是最具代表性的化学吸收剂,主要用于二氧化碳吸收过程。汽液平衡的热力学数据对工艺设计和运行的经济性具有重要意义。本研究通过测量水+ DEA的汽液平衡数据,将DEA这一仲胺应用于二氧化碳吸收过程,从而设计新的二氧化碳吸收工艺。方法:采用HSGC(顶空气相色谱法)在393.15 K等温条件下测定水+二乙醇胺混合物的气液平衡数据。结果与讨论:利用活度系数模型NRTL对测定的汽液平衡数据进行了相关性分析。此外,作为吸收剂混合物的附加热力学数据,在303.15 K至333.15 K的温度下,使用密度计(Anton Paar DMA4500)测量了DEA水溶液混合物的密度。将测得的混合物密度数据转化为过量体积数据,并利用Redilchi-Kister-Muggianu方程对过量体积数据进行关联。利用实测的水+DEA汽液平衡数据,有望降低二氧化碳吸收工艺的设计成本和运行成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vapor Liquid Equilibrium of Aqueous Diethanolamine Solution for Carbon Dioxide Capture Processes
Objectives : Acid gases such as carbon dioxide (CO2) and hydrogen sulfide (H2S) that cause global warming are mainly generated in chemical processes. As a technology for reducing acid gas, the post-combustion capture process is representative. Aqueous alkanolamine solution, which is mainly used in the carbon dioxide absorption process, is used as the most representative chemical absorbent. Thermodynamic data of vapor-liquid equilibrium are important for the economics of process design and operation. In this study, vapor-liquid equilibrium data of water + DEA are measured so that DEA, a secondary amine, can be used in the carbon dioxide absorption process, so that it can be used for designing a new carbon dioxide absorption process.Methods : Vapor-liquid equilibrium data of a mixture of water + DEA (diethanolamine) were measured under isothermal conditions of 393.15 K using HSGC (Headspace Gas Chromatography).Results and Discussion : The measured vapor-liquid equilibrium data were correlated using NRTL, an activity coefficient model. In addition, as additional thermodynamic data of the absorbent mixture, the density of the DEA aqueous mixture was measured at a temperature of 303.15 K to 333.15 K using a density meter (Anton Paar DMA4500). The measured density data of the mixture was converted into excess volume, and the excess volume data was correlated using the Redilchi-Kister-Muggianu equation. Using the measured water+DEA vapor-liquid equilibrium data, it is expected to reducing the design cost and operating cost of the carbon dioxide absorption processes.
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