首页> 外文期刊>Journal of solid state electrochemistry >Electrochemical performance of 5 kW all-vanadium redox flow battery stack with a flow frame of multi-distribution channels
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Electrochemical performance of 5 kW all-vanadium redox flow battery stack with a flow frame of multi-distribution channels

机译:5 kW全钒氧化还原流电池堆的电化学性能,具有多分配通道的流量框架

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In this paper, a flow frame with multi-distribution channels is designed. The electrolyte flow distribution in the graphite felt electrode is simulated to be uniform at some degree with the tool of a commercial computational fluid dynamics (CFD) package of Star-CCM+. A 5 kW-class vanadium redox flow battery (VRB) stack composed of 40 single cells is assembled. The electrochemical performance of the VRB stack is investigated. Under the applied current density of 60 mA cm(-2) during the charge and discharge processes, the current and energy efficiencies are delivered to be 93.9 and 80.8 %, respectively. A higher average output power of 7.2 kW can be achieved at the current density of 80 mA cm(-2) with a lower energy efficiency of 78.4 %. The studies of kW-class VRB stack can be beneficial to the development of large-scale energy storage.
机译:本文设计了一种具有多分配通道的流量框架。 使用石墨+的商业计算流体动力学(CFD)+的工具,模拟石墨毡电极中的电解质流量分布在某种程度上是均匀的。 组装5千瓦级钒氧化还原电池(VRB)堆叠组成,由40个单电池组成。 研究了VRB堆栈的电化学性能。 在充电和放电过程中施加电流密度为60 mA cm(-2),电流和能量效率分别为93.9和80.8%。 7.2 kW的较高平均输出功率可以在80 mA cm(-2)的电流密度下实现,其能量效率为78.4%。 KW级VRB堆栈的研究可能有利于大规模储能的发展。

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