首页> 外文期刊>Journal of power sources >A novel flow battery-A lead-acid battery based on an electrolyte with soluble lead(II) V. Studies of the lead negative electrode
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A novel flow battery-A lead-acid battery based on an electrolyte with soluble lead(II) V. Studies of the lead negative electrode

机译:新型液流电池-一种基于具有可溶铅(II)V的电解质的铅酸电池。铅负极的研究

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摘要

The structure of lead deposits (approximately 1 mm thick) formed in conditions likely to be met at the negative electrode during the charge/discharge cycling of a soluble lead-acid flow battery is examined. The quality of the lead deposit could be improved by appropriate additives and the preferred additive was shown to be the hexadecyltrimethylammonium cation, C_(16)H_(33)(CH_3)_3N~+, at a concentration of 5 mM. In the presence of this additive, thick layers with acceptable uniformity could be formed over a range of current densities (20-80 mA cm~(-2)) and solution compositions. While electrolyte compositions with lead(II) concentrations in the range 0.1 -1.5 M and methanesulfonic acid concentrations in the range 0-2.4 M have been investigated, the best quality deposits are formed at lower concentrations of both species. Surprisingly, the acid concentration was more important than the lead(II) concentration; hence a possible initial electrolyte composition is 1.2 M Pb(II) + 5 mM C_(16)H_(33)(CH_3)_3N~+ without added acid.
机译:检查了在可溶性铅酸液流电池的充电/放电循环期间在负极可能会遇到的条件下形成的铅沉积物(约1 mm厚)的结构。铅沉积物的质量可以通过添加适当的添加剂来改善,优选的添加剂显示为十六烷基三甲基铵阳离子C_(16)H_(33)(CH_3)_3N〜+,浓度为5 mM。在这种添加剂的存在下,可以在一定的电流密度(20-80 mA cm〜(-2))和溶液组成的范围内形成具有可接受的均匀性的厚层。尽管已经研究了铅(II)浓度在0.1 -1.5 M范围内和甲磺酸浓度在0-2.4 M范围内的电解质组合物,但在两种物质的较低浓度下都可以形成质量最好的沉积物。令人惊讶的是,酸的浓度比铅(II)的浓度更重要。因此,可能的初始电解质成分为1.2 M Pb(II)+ 5 mM C_(16)H_(33)(CH_3)_3N〜+,而未添加酸。

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