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Pasted positive plate of lead-acid battery General analysis of discharge process

机译:铅酸电池粘贴正极板放电过程一般分析

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摘要

A general analysis of the discharge process of pasted positive plates of lead-acid batteries is presented. Two models are explored in order to understand qualitatively the phenomenon: a solid-state reaction model and a dissolution-precipitation reaction model. The two models are presented and related to two important phenomena: the existence, always during the discharge, of a reaction zone going from the surface to the bulk of the plate active material and the possibility, for low H_2SO_4 concentrations and high rates of discharge, of H_2SO_4 depletion, producing the reduction of the used active material. The influence of the rate of discharge and sulfuric acid concentration on potential versus charge curves during the discharge, on capacity and on plate resistance during the discharge transient, especially for very low discharge rate conditions are analyzed. Two equivalent plates from two different manufacturing technologies are tested. Both models, sometimes with the introduction of some modifications from traditional formulations, explain the different results found.
机译:介绍了铅酸电池粘贴正极板放电过程的一般分析。为了定性地理解该现象,探索了两个模型:固态反应模型和溶解-沉淀反应模型。提出了这两种模型,并与两个重要现象相关:在放电过程中,始终存在从表面到板状活性物质的反应区,并且存在低H_2SO_4浓度和高放电速率的可能性, H_2SO_4的消耗量减少,导致所用活性物质减少。分析了放电速率和硫酸浓度对放电过程中电势-电荷曲线,放电瞬态期间的容量和极板电阻的影响,特别是对于非常低的放电速率条件。测试了来自两种不同制造技术的两个等效板。这两个模型有时会引入对传统配方的一些修改,以解释发现的不同结果。

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