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Influence of temperature and electrolyte saturation on rate and efficiency of oxygen cycle in VRLAB

机译:温度和电解质饱和度对VRLAB中氧气循环速率和效率的影响

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The paper discloses the influence of the temperature and electrolyte saturation of the active block (positive and negative plates and AGM separator) on the rate and efficiency of the oxygen cycle (OC) in valve-regulated lead-acid batteries (VRLAB). Applying steady-state cyclic linear sweep voltammetry and measuring the gas flow leaving the cell, the rate and efficiency of OC were measured at constant temperature and electrolyte saturation as a function of the negative plate potential. The obtained results show that at constant potential of the negative plate the rate of the OC depends slightly on temperature. However, the efficiency of the OC strongly depends on the temperature-the higher the temperature, the lower the OC efficiency. The experimental results for the influence of the electrolyte saturation on the rate and efficiency of the oxygen cycle show that the saturation is the main rate- and efficiency-limiting factor. Combining the gas diffusion approach, porosimetric analysis of the NAM and AGM separator and the recently proposed model of the reactions that take place during the operation of OC, the mechanism of the influence of the electrolyte saturation on the rate and efficiency of the oxygen cycle was elucidated. It was shown that the optimal saturation value is about 93 percent.
机译:该论文揭示了活性成分(正负极板和AGM隔板)的温度和电解质饱和度对阀控式铅酸电池(VRLAB)中氧气循环(OC)的速率和效率的影响。应用稳态循环线性扫描伏安法并测量离开电解池的气体流量,在恒定温度和电解质饱和度下(作为负极板电位的函数)测量OC的速率和效率。获得的结果表明,在负极板的恒定电势下,OC的速率略微取决于温度。但是,OC的效率很大程度上取决于温度-温度越高,OC效率越低。电解质饱和度对氧气循环速率和效率的影响的实验结果表明,饱和度是速率和效率的主要限制因素。结合了气体扩散方法,NAM和AGM分离器的孔隙率分析以及最近提出的在OC操作过程中发生的反应模型,电解质饱和度对氧气循环速率和效率的影响机理为阐明。结果表明,最佳饱和度约为93%。

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