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首页> 外文期刊>Journal of power sources >State of charge monitoring methods for vanadium redox flow battery control
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State of charge monitoring methods for vanadium redox flow battery control

机译:钒还原液流电池控制的充电状态监控方法

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摘要

During operation of redox flow batteries, differential transfer of ions and electrolyte across the membrane and gassing side reactions during charging, can lead to an imbalance between the two half-cells that results in loss of capacity. This capacity loss can be corrected by either simple remixing of the two solutions, or by chemical or electrochemical rebalancing. In order to develop automated electrolyte management systems therefore, the state-of-charge of each half-cell electrolyte needs to be known. In this study, two state-of-charge monitoring methods are investigated for use in the vanadium redox flow battery. The first method utilizes conductivity measurements to independently measure the state-of-charge of each half-cell electrolyte. The second method is based on spectrophotometric principles and uses the different colours of the charged and discharged anolyte and catholyte to monitor system balance and state-of charge of each half-cell of the VRB during operation.
机译:在氧化还原液流电池运行期间,离子和电解质在膜上的差异转移以及充电过程中产生的副反应会导致两个半电池之间的不平衡,从而导致容量损失。可以通过两种溶液的简单重新混合,或通过化学或电化学重新平衡来纠正这种容量损失。因此,为了开发自动化的电解质管理系统,需要知道每种半电池电解质的荷电状态。在这项研究中,研究了两种用于钒还原液流电池的荷电状态监测方法。第一种方法利用电导率测量值来独立测量每种半电池电解质的荷电状态。第二种方法基于分光光度法原理,并使用带电和带电的阳极电解液和阴极电解液的不同颜色来监视系统平衡和运行期间VRB每个半电池的荷电状态。

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