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Modelling of primary alkaline battery cathodes: A simplified model

机译:一次碱性电池正极的建模:简化模型

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摘要

A simplified model, to that produced previously by the authors, for the galvanostatic discharge of primary alkaline battery cathodes is presented. Laplace transform and perturbation methods are employed to obtain the leading order spatial and temporal behaviour of the porous cathode over two distinct size scales. It is shown that for a wide range of industrially relevant discharge conditions the time taken for KOH electrolyte to diffuse into a porous electrolytic manganese dioxide particle is fast compared with the cathodic discharge time and that ohmic losses within the graphite phase of the cathode can be considered to be negligible. Numerical solution of the simplified model equations is discussed and the results are validated against relevant experimental data.
机译:提出了一种由作者先前产生的简化模型,用于一次碱性电池阴极的恒电流放电。使用拉普拉斯变换和摄动方法来获得多孔阴极在两个不同尺寸尺度上的前导时空行为。结果表明,在广泛的工业相关放电条件下,与阴极放电时间相比,KOH电解质扩散到多孔电解二氧化锰颗粒中所花费的时间要快,并且可以考虑到阴极石墨相内的欧姆损耗可以忽略不计。讨论了简化模型方程的数值解,并针对相关实验数据验证了结果。

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