阴离子交换膜水电解槽连续进料开关循环稳定性试验

IF 2.2 4区 工程技术 Q3 ELECTROCHEMISTRY
A. K. Niaz, Hyung-Tae Lim
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引用次数: 1

摘要

在本研究中,评估了阴离子交换膜水电解槽(AEMWE)电池在开关循环操作中相对于所施加的电偏压(即电流密度为500mA cm-2)和开路的稳定性。使用电化学阻抗谱监测系统在运行期间(~800h)的欧姆电阻和极化电阻。通过持续向电池中加入KOH溶液,特别考虑了电池的欧姆电阻,特别是在开关循环条件下膜的欧姆电阻。由于过量的进料溶液,在开路后立即观察到极化电阻的瞬时增加。过量的进料溶液主要通过使电池经受所施加的电偏压来回收。AEMWE电池在开关循环和连续馈电下(即使在开路下)的稳定性测试可以通过避免欧姆电阻和极化电阻的不可逆增加来保证长期稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability Tests on Anion Exchange Membrane Water Electrolyzer under On-Off Cycling with Continuous Solution Feeding
In this study, the stability of an anion exchange membrane water electrolyzer (AEMWE) cell was evaluated in an on-off cycling operation with respect to an applied electric bias, i.e., a current density of 500 mA cm -2 , and an open circuit. The ohmic and polarization resistances of the system were monitored during operation (~800 h) using electrochemical impedance spectra. Specific consideration was given to the ohmic resistance of the cell, especially that of the membrane under on-off cycling conditions, by consistently feeding the cell with KOH solution. Owing to an excess feed solution, a momen-tary increase in the polarization resistance was observed immediately after the open-circuit. The excess feed solution was mostly recovered by subjecting the cell to the applied electric bias. Stability tests on the AEMWE cell under on-off cycling with continuous feeding even under an open circuit can guarantee long-term stability by avoiding an irreversible increase in ohmic and polarization resistances.
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来源期刊
CiteScore
6.30
自引率
8.10%
发文量
44
期刊介绍: Covering fields: - Batteries and Energy Storage - Biological Electrochemistry - Corrosion Science and Technology - Electroanalytical Chemistry and Sensor Technology - Electrocatalysis - Electrochemical Capacitors & Supercapcitors - Electrochemical Engineering - Electrodeposition and Surface Treatment - Environmental Science and Technology - Fuel Cells - Material Electrochemistry - Molecular Electrochemistry and Organic Electrochemistry - Physical Electrochemistry - Solar Energy Conversion and Photoelectrochemistry
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