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首页> 外文期刊>Journal of power sources >Negative plate macropore surfaces in lead-acid batteries: Porosity, Brunauer-Emmett-Teller area, and capacity
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Negative plate macropore surfaces in lead-acid batteries: Porosity, Brunauer-Emmett-Teller area, and capacity

机译:铅酸电池的负极板大孔表面:孔隙率,Brunauer-Emmett-Teller面积和容量

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摘要

We propose an explanation for the production of an electrochemically active area during the electrochemical formation of lead-acid battery negative plates based on solid-state reactions. Our proposal is supported by experimental data. This study includes a critical review of the literature on charge/discharge mechanisms, porosity, and BET area. The critical review, through the latter two parameters, indicates the existence of both macro and micropores in positive plates, but only macropores in negative plates, with characteristic surface roughness. In the present paper the surface sulfation of the precursor is controlled using various acidic, neutral and alkaline solutions during an electrochemical formation process that does not include soaking. Our results confirm that variable roughness can be produced at the negative plate macropore surfaces. The morphological changes produced by different formation conditions are assessed by measuring the macroporosity, BET area, and capacity of single negative plates. Based on these concepts, a method was developed and applied to measure independently the contributions of geometrical surface macroporosity and roughness to the negative plate capacity.
机译:我们提出了一种基于固态反应在铅酸蓄电池负极板的电化学形成过程中产生电化学活性区域的解释。我们的建议得到实验数据的支持。这项研究包括对充放电机理,孔隙率和BET面积的文献的评论。通过后两个参数进行的严格审查表明,正极板同时存在大孔和微孔,而负极板仅存在具有特征性表面粗糙度的大孔。在本文中,在不包括浸泡的电化学形成过程中,使用各种酸性,中性和碱性溶液控制前体的表面硫酸化。我们的结果证实,可以在负极板大孔表面产生可变的粗糙度。通过测量大孔率,BET面积和单个负极板的容量,可以评估由不同形成条件产生的形态变化。基于这些概念,开发并应用了一种方法来独立测量几何表面大孔和粗糙度对负极板容量的影响。

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