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张早校

博士生导师
硕士生导师
职称:教授
教师姓名:张早校
电子邮箱:
学历:博士研究生毕业
性别:男
学位:博士
在职信息:在职
毕业院校:西安交通大学
所属院系:化学工程与技术学院
学科:动力工程及工程热物理
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祝贺课题组博士生范会峰 (Fan Huifeng)论文被Separation and Purification Technology期刊接收
发布时间:2023-01-26    点击次数:

发布时间:2023-01-26

文章标题:祝贺课题组博士生范会峰 (Fan Huifeng)论文被Separation and Purification Technology期刊接收

内容:

Performance comparation of MEA and EDA in electrochemically-mediated amine regeneration for CO2 capture

 

Huifeng Fan1,2, Yuanhao Mao1,2, Hongxia Wang1,2, Yunsong Yu1, Xiaomei Wu1*, Zaoxiao Zhang1,2*

 

Separation and Purification Technology 311 (2023) 123282

 

Abstract

Electrochemically-mediated amine regeneration (EMAR) for CO2 capture was recently developed as a promising substitute for conventional amine-based CO2 capture by avoiding the amine thermal regeneration process. A suitable solvent is signiffcant for the overall performance and the scale-up of the EMAR system. However, there is currently a lack of comprehensive solvent comparison methods. In this work, a systematic comparison was conducted to elucidate the absorption and desorption behavior of the most discussed monoethanolamine (MEA) and ethylenediamine (EDA) in the EMAR process. Firstly, the CO2 absorption performance was compared by considering the CO2 absorption capacity, absorption rate, and coordination ability separately. Subsequently, the performance of absorbents was compared from the perspective of thermodynamics. Results indicated that the complex of Cu(II)-EDA shows higher stability which means it is more competitive than MEA in releasing the absorbed CO2 in the EMAR process. Then, the electrochemical behaviors comparison of MEA and EDA shows that the electrochemical reactions in EDA solvent are simpler and easier to occur, but the poor diffusion performance of reactive ions in EDA hinders its scale-up application. Finally, the CO2 desorption performance in MEA and EDA was carefully studied. A competitive and practically instructive desorption energy consumption of 42.4 kJe/mol CO2 with 300 A/m2 current density was obtained in EDA solvent. Overall, compared with MEA, EDA is more recommended to be used as an absorbent in the EMAR system.

 

 

https://doi.org/10.1016/j.seppur.2023.123282