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A binary electrolyte model of a cylindrical alkaline cell

机译:圆柱碱性电池的二元电解质模型

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A cylindrical alkaline cell is modeled as a binary electrolyte system by assuming the direct electrochemical formation of ZnO in the anode. Justifications for replacing the dissolution-- precipitation mechanism are provided. Compared to the original model. the binary electrolyte model has a more understandable model formulation, more consistent physical property data, and greater flexibility in certain instances. The binaxy electrolyte model predicts a longer cell life and higher operating voltage than the ternary electrolyte model for the test case discharge rate. There are no numerical difficulties associated with the zincate ion in the binary electrolyte model, because this species is not considered. The characteristics and advantages of the simplified anode behavior are discussed. An application of the binary electrolyte model is included.
机译:通过假设阳极中直接形成ZnO,可将圆柱形碱性电池建模为二元电解质系统。提供了替代溶解-沉淀机理的理由。与原始模型相比。在某些情况下,二元电解质模型具有更易理解的模型公式,更一致的物理特性数据和更大的灵活性。对于测试案例的放电速率,与三元电解质模型相比,二元电解质模型预测的电池寿命更长,工作电压更高。在二元电解质模型中,锌酸根离子没有数值上的困难,因为没有考虑这种物质。讨论了简化阳极行为的特点和优点。包括二元电解质模型的应用。

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