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Effect of KOH concentration and anions on the performance of an Ni-H_2 battery positive plate

机译:KOH浓度和阴离子对Ni-H_2电池正极板性能的影响

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The capacity and voltage behavior of electrochemically impregnated sintered nickel positive plates was examined by galvanostatic charging and discharging in a flooded electrolyte cell. Three different concentrations of potassium hydroxide (KOH) (40%, 31% and 26%) and 31% KOH containing dissolved nitrate, sulfate, or silicate were investigated. The end-of-charge voltage at C/10 charge and at 10℃ showed the following order: 40% KOH > 31 % KOH alone, and in the presence of the anions > 26% KOH. The mid-discharge voltage at C/2 discharge was higher in 26% KOH, almost the same for 31% KOH with and without the added contaminants, and much lower for 40% KOH. The plate capacity was marginally affected by cycling in all cases except for 40% KOH, where the capacity declined after 1000 cycles at 80% depth-of-discharge (DOD). At the end of cycling all the plates tested experienced a weight loss, except in the case of 31% KOH, as a result of active material extrusion. Cyclic voltammetry of miniature electrodes in 31% KOH showed that the cathodic peak potentials are less polarized at -5℃ (compared to 25℃) in the presence and absence of silicate. This indicates a slightly higher voltage during discharge in an Ni-H_2 battery. Furthermore, the features of the current-potential profile were practically unchanged in the presence of silicate.
机译:通过充满电的电解质电池中的恒流充电和放电检查电化学浸渍的烧结镍正极板的容量和电压行为。研究了三种不同浓度的氢氧化钾(KOH)(分别为40%,31%和26%)和31%的KOH,其中包含溶解的硝酸盐,硫酸盐或硅酸盐。 C / 10充电和10℃时的充电终止电压显示以下顺序:单独的40%KOH> 31%KOH,并且在存在阴离子的情况下> 26%KOH。 C / 2放电时的中间放电电压在26%KOH中较高,对于有和没有添加污染物的31%KOH几乎相同,而对于40%KOH则较低。除40%KOH外,所有情况下印版容量均受循环的影响,KOH在80%的放电深度(DOD)下经过1000次循环后容量下降。在循环结束时,由于活性材料挤出,所有测试的板都经历了重量损失,除了在31%KOH的情况下。微型电极在31%KOH中的循环伏安法表明,在存在和不存在硅酸盐的情况下,在-5℃(相比于25℃),阴极峰电位的极化程度较小。这表明镍氢电池中的放电过程中电压略高。此外,在存在硅酸盐的情况下,电流电势曲线的特征几乎没有变化。

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