流动电池
过电位
电池(电)
电解质
储能
电极
材料科学
工作(物理)
计算机科学
工艺工程
汽车工程
工程类
化学
机械工程
热力学
功率(物理)
电化学
物理
物理化学
作者
Ye-Qi Zhang,Guang-Xu Wang,Ru-Yi Liu,Tian-Hu Wang
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2023-03-27
卷期号:16 (7): 3043-3043
被引量:10
摘要
Zinc–bromine redox flow battery (ZBFB) is one of the most promising candidates for large-scale energy storage due to its high energy density, low cost, and long cycle life. However, numerical simulation studies on ZBFB are limited. The effects of operational parameters on battery performance and battery design strategy remain unclear. Herein, a 2D transient model of ZBFB is developed to reveal the effects of electrolyte flow rate, electrode thickness, and electrode porosity on battery performance. The results show that higher positive electrolyte flow rates can improve battery performance; however, increasing electrode thickness or porosity causes a larger overpotential, thus deteriorating battery performance. On the basis of these findings, a genetic algorithm was performed to optimize the batter performance considering all the operational parameters. It is found that the battery energy efficiency can reach 79.42% at a current density of 20 mA cm−2. This work is helpful to understand the energy storage characteristics and high-performance design of ZBFB operating at various conditions.
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