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Electrolyte features and microstructure affecting the electrochemical performance of a Pb-Sb alloy for lead-acid battery components

机译:电解质特性和微结构会影响铅酸电池组件中Pb-Sb合金的电化学性能

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摘要

The aim of this paper is to develop a comparative experimental study on the electrochemical features of a Pb-1 wt% Sb casting alloy in two different sulfuric acid solutions at room temperature. A water-cooled unidirectional solidification system was used to obtain alloy samples having different microstructural characteristics. These samples were subjected to tests in two different sulfuric acid (H_2SO_4) solutions: 0.5 M and 5.0 M H_2SO_4 and the resulting electrochemical impedance spectroscopy (EIS) plots, potentio-dynamic polarization curves and an equivalent circuit analysis were used to evaluate the corresponding electrochemical behaviour. The experimental current density was found to be similar for all the examined Pb-Sb samples, and decreased with the increase in the cellular spacing, independently of the concentration of sulfuric acid in the solution. However, the EIS parameters demonstrated to be more affected by the scale of the cellular array in a 5 M H_2SO_4 solution. Nevertheless, it is shown that Pb-Sb alloys having coarse cell spacings have higher potential for application as grid material in lead-acid batteries.
机译:本文的目的是在室温下,对两种不同硫酸溶液中Pb-1 wt%Sb铸造合金的电化学特性进行对比实验研究。水冷单向凝固系统用于获得具有不同显微组织特征的合金样品。这些样品在两种不同的硫酸(H_2SO_4)溶液:0.5 M和5.0 M H_2SO_4中进行测试,并使用所得的电化学阻抗谱(EIS)图,电势极化曲线和等效电路分析来评估相应的电化学行为。发现所有被检查的Pb-Sb样品的实验电流密度都相似,并且随着细胞间距的增加而降低,而与溶液中硫酸的浓度无关。但是,在5 M H_2SO_4溶液中,EIS参数显示出受到细胞阵列规模的更大影响。然而,已表明具有较粗的单元间距的Pb-Sb合金具有较高的潜力,可以用作铅酸电池中的栅极材料。

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