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首页> 外文期刊>Journal of power sources >Measuring the state of charge of the electrolyte solution in a vanadium redox flow battery using a four-pole cell device
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Measuring the state of charge of the electrolyte solution in a vanadium redox flow battery using a four-pole cell device

机译:使用四极电池装置测量钒氧化还原液流电池中电解液的电荷状态

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The decrease in the efficiency and capacity of a vanadium redox flow battery (VRB) caused by an electrolyte imbalance is an important impediment to its long-term operation. Knowing the state of charge (SOC) of an electrolyte solution can quantify the level of the electrolyte imbalance in the VRB. In this study, a four-pole cell device is devised and employed to predict the SOC. The proposed method directly measures the ionic resistance of the electrolyte solution and is sufficiently precise to be applied in real-time mode. Experimental studies on the effects of the operating current on the four-pole cell and the concentrations of vanadium and sulfuric acid in the electrolyte solution are carried out. The results show that the four-pole cell method can be utilized to measure the electrolyte SOC. The concentrations of vanadium and sulfuric acid in the electrolyte solution affect the ionic resistance of the solution. Regarding the capacity and efficiency of the VRB system, the results indicate that the electrical charge is determined from the concentration of vanadium and that the cell voltage depends on the concentration of sulfuric acid in the electrolyte solution. The decreased vanadium concentration and increased sulfuric acid concentration improves the cell voltage efficiency. (C) 2015 Elsevier B.V. All rights reserved.
机译:由电解质不平衡引起的钒氧化还原液流电池(VRB)的效率和容量的下降是对其长期运行的重要障碍。知道电解质溶液的电荷状态(SOC)可以量化VRB中电解质不平衡的程度。在这项研究中,设计了一种四极电池器件并将其用于预测SOC。所提出的方法直接测量电解质溶液的离子电阻,并且足够精确以用于实时模式。对工作电流对四极电池以及电解液中钒和硫酸浓度的影响进行了实验研究。结果表明,四极电池法可用于测量电解质SOC。电解液中钒和硫酸的浓度会影响溶液的离子电阻。关于VRB系统的容量和效率,结果表明,电荷是由钒的浓度确定的,并且电池电压取决于电解质溶液中硫酸的浓度。降低的钒浓度和增加的硫酸浓度提高了电池电压效率。 (C)2015 Elsevier B.V.保留所有权利。

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