详细信息
Solubility and diffusivity of CO2 in n-butanol + N235 system and absorption mechanism of CO2 in a coupled reactionextraction process
文献类型:期刊文献
中文题名:Solubility and diffusivity of CO2 in n-butanol + N235 system and absorption mechanism of CO2 in a coupled reactionextraction process
英文题名:Solubility and diffusivity of CO2 in n-butanol + N235 system and absorption mechanism of CO2 in a coupled reactionextraction process
作者:Guilan Chen[1];Xingfu Song[1];Shuying Sun[1];Yanxia Xu[1];Jianguo Yu[1]
机构:[1]National Engineering Research Center for Integrated Utilization of Salt Lake Resource, East China University of Science and Technology, Shanghai 200237, China
年份:2016
卷号:10
期号:4
起止页码:480
中文期刊名:Frontiers of Chemical Science and Engineering
外文期刊名:化学科学与工程前沿(英文版)
收录:CSTPCD;;Scopus;CSCD:【CSCD2015_2016】;PubMed;
语种:英文
中文关键词:carbon dioxide;N235;solubility;diffusivity,coupled process
外文关键词:carbon dioxide, N235, solubility, diffusivity,coupled process
摘要:The absorption of CO2 in insoluble organic amine is crucial for understanding the mechanism of coupled reaction-extraction-crystallization process between aqueous chloride and CO2. In this study, the solubility and diffusivity of CO2 in n-butanol+ N235 system were measured and reported. The absorption of CO2 in the system is a physical absorption behavior and the solubility of CO2 decreases with the increase of the mass fraction of N235. The diffusivity of CO2 increases firstly and then decreases with the increase in the mass fraction of N235. Moreover, the absorption mechanism of CO2 in the coupled reaction-extraction-crystallization process was investigated and identified by experiments. The results indicated that in the coupled reaction-extraction-crystallization process, CO2 is absorbed by the aqueous phase rather than by the organic phase and further transferred into the aqueous phase.
The absorption of CO2 in insoluble organic amine is crucial for understanding the mechanism of coupled reaction-extraction-crystallization process between aqueous chloride and CO2. In this study, the solubility and diffusivity of CO2 in n-butanol+ N235 system were measured and reported. The absorption of CO2 in the system is a physical absorption behavior and the solubility of CO2 decreases with the increase of the mass fraction of N235. The diffusivity of CO2 increases firstly and then decreases with the increase in the mass fraction of N235. Moreover, the absorption mechanism of CO2 in the coupled reaction-extraction-crystallization process was investigated and identified by experiments. The results indicated that in the coupled reaction-extraction-crystallization process, CO2 is absorbed by the aqueous phase rather than by the organic phase and further transferred into the aqueous phase.
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