Critical rate of electrolyte circulation for preventing zinc dendrite formation in a zinc–bromine redox flow battery

氧化还原 流动电池 电解质 化学 无机化学 电极 有机化学 物理化学
作者
Hyeon Sun Yang,Jong‐Ho Park,Ho Won,Chang‐Soo Jin,Jung Hoon Yang
出处
期刊:Journal of Power Sources [Elsevier BV]
卷期号:325: 446-452 被引量:68
标识
DOI:10.1016/j.jpowsour.2016.06.038
摘要

In a zinc–bromine redox flow battery, a nonaqueous and dense polybromide phase formed because of bromide oxidation in the positive electrolyte during charging. This formation led to complicated two-phase flow on the electrode surface. The polybromide and aqueous phases led to different kinetics of the Br/Br− redox reaction; poor mixing of the two phases caused uneven redox kinetics on the electrode surface. As the Br/Br− redox reaction was coupled with the zinc deposition reaction, the uneven redox reaction on the positive electrode was accompanied by nonuniform zinc deposition and zinc dendrite formation, which degraded battery stability. A single-flow cell was operated at varying electrolyte circulation rates and current densities. Zinc dendrite formation was observed after cell disassembly following charge–discharge testing. In addition, the flow behavior in the positive compartment was observed by using a transparent version of the cell. At low rate of electrolyte circulation, the polybromide phase clearly separated from the aqueous phase and accumulated at the bottom of the flow frame. In the corresponding area on the negative electrode, a large amount of zinc dendrites was observed after charge–discharge testing. Therefore, a minimum circulation rate should be considered to avoid poor mixing of the positive electrolyte.
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