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Techniques to improve the usability of nickel-hydrogen cells

机译:改善镍氢电池可用性的技术

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The voltages at which the different charging and discharging peaks occur in a nickel electrode were investigated for a set of six representative electrodes. The impact of cycling temperature, electrolyte concentration, and cycling history on these different electrodes resulted in alterations in the usable capacities of the electrodes and/or the efficiency of the charging reaction. The cobalt level in the active material, the KOH concentration of the electrolyte, and the cycling temperature were all found to impact the position of the charging peaks of the beta and the gamma charging reactions. The position of the oxygen evolution characteristic was found to be mainly a function of the cycling temperature. The findings of these studies resulted in recommendations for selecting certain cell design factors and charging protocols that will lead to improved cycle lives and higher levels of usable cell capacities.
机译:对于一组六个代表性电极,研究了镍电极中出现不同充电和放电峰值的电压。循环温度,电解质浓度和循环历史对这些不同电极的影响导致电极的可用容量和/或充电反应效率的改变。发现活性材料中的钴含量,电解质的KOH浓度以及循环温度均会影响β和γ充电反应的充电峰位置。发现氧释放特征的位置主要是循环温度的函数。这些研究的结果为选择某些电池设计因素和充电方案提供了建议,这将改善循环寿命并提高可用电池容量水平。

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