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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
论文成果
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Systematic study of an energy efficient MEA-based electrochemical CO2 capture process: From mechanism to practical application
发布时间:2025-04-30    点击次数:

发布时间:2025-04-30

论文名称:Systematic study of an energy efficient MEA-based electrochemical CO2 capture process: From mechanism to practical application

发表刊物:Applied Energy

摘要:https://doi.org/10.1016/j.apenergy.2022.120014
Abstract
Electrochemically-mediated amine regeneration (EMAR) is a promising technology for CO2 capture, especially in
industries where thermal energy is not available. However, the EMAR technology is still at an early stage for
commercial application because of its energy-intensive, operating at impractically low current densities, kinet ically slow or amine degradation. To solve these problems, we report an energy efficient MEA-based electro chemical CO2 capture process. The redox of copper is the fundamental step in the EMAR process, which
determines the energy consumption, energy efficiency and cycling performance of the whole system. A sys tematic study of the redox reactions of copper ions and the effect of other mediums have been comprehensively
studied in this work. Besides, amine oxidative degradation in EMAR has been firstly discussed from the
perspective of the solution electrochemical mechanism. Moreover, the copper cycling performance and energy
consumption of the proposed system have been carefully studied, results show that a suitable current density and
appropriate disturbance are beneficial to improve the circulation performance of the system. The regeneration
energy consumption is 60.76 kJ/mol CO2, with a current density of 0.02 A/cm2 and stirring speed of 200 rpm,
which is extremely competitive to be used in CO2 capture compared with traditional CO2 chemical absorption
methods.

合写作者:Xiaomei Wu, Huifeng Fan, Yuanhao Mao, Maimoona Sharif, Yunsong Yu , Zaoxiao Zhang, Guangxin Liu

卷号:327()

页面范围:120014

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发表时间:2022-10-08