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The importance of the equilibrium zincate ion concentration in modeling a cylindrical alkaline cell

机译:平衡锌酸根离子浓度在圆柱碱性电池建模中的重要性

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A mathematica1 model of the Zn/MnO_2 cylindrical alkaline cell is revised by using a more appropriate expression for the equilibrium zincate ion concentration. The new expression models the equilibrium behavior of solid zinc oxide in alkaline electrolyte, whereas the previous expression models the solid zinc dihydroxide equi1ibrium. The new expression results in the prediction of lower and more uniform zincate ion concentration profiles. The influence of the equilibrium zincate ion concentration is analyzed through the precipitation rate of zinc oxide. The zincate ion concentration profiles for the revised case are responsible for the simulated improvement in cell performance. Adverse cell voltage fluctuations near the end of discharging are determined to be caused by a localized region where the zincate ion concentration is zero. These fluctuations are considered numerical discrepancies and are not physically realistic. Numerical remedies that successfully remove the cell voltage fluctuations are provided, but they are employed by weakening the assumption of concentrated ternary electrolyte theory.
机译:Zn / MnO_2圆柱碱性电池的mathematica1模型通过使用更合适的表达式来平衡锌酸根离子浓度来修改。新的表达式模拟了固体氧化锌在碱性电解液中的平衡行为,而以前的表达式模拟了固体二氢氧化锌平衡。新的表达式可预测较低且更均匀的锌酸盐离子浓度曲线。通过氧化锌的沉淀速率来分析平衡锌酸根离子浓度的影响。修改后的情况下的锌酸盐离子浓度曲线负责模拟电池性能的改善。确定在放电结束附近的电池不良电压波动是由锌酸盐离子浓度为零的局部区域引起的。这些波动被认为是数值差异,在物理上并不现实。提供了可以成功消除电池电压波动的数值方法,但是通过削弱集中的三元电解质理论的假设来采用它们。

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