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A novel flow battery-A lead-acid battery based on an electrolyte with soluble lead(II) Part VI. Studies of the lead dioxide positive electrode

机译:一种新颖的液流电池-一种基于带有可溶铅(II)第六部分的电解质的铅酸电池。二氧化铅正极的研究

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摘要

The structure of thick lead dioxide deposits (approximately 1 mm) formed in conditions likely to be met at the positive electrode during the charge/discharge cycling of a soluble lead-acid flow battery is examined. Compact and well adherent layers are possible with current densities > 100 mA cm~(-2) in electrolytes containing 0.1-1.5 M lead(II) and methanesulfonic acid concentrations in the range 0-2.4M; the solutions also contained 5 mM hexadecyltrimethylammonium cation, C_(16)H_(33)(CH_3)_3N~+. From the viewpoint of the layer properties, the limitation is stress within the deposit leading to cracking and lifting away from the substrate; the stress appears highest at high acid concentration and high current density. There are, however, other factors limiting the maximum current density for lead dioxide deposition, namely oxygen evolution and the overpotential associated with the deposition of lead dioxide. A strategy for operating the soluble lead-acid flow battery is proposed.
机译:检查了在可溶性铅酸液流电池的充电/放电循环期间在正极可能会遇到的条件下形成的厚的二氧化铅沉积物的结构(约1 mm)。在含有0.1-1.5 M铅(II)和甲磺酸浓度范围为0-2.4M的电解质中,电流密度> 100 mA cm〜(-2)的情况下,可能会形成致密且粘附良好的层。溶液还含有5 mM十六烷基三甲基铵阳离子C_(16)H_(33)(CH_3)_3N〜+。从层性质的角度来看,限制是沉积物内的应力导致破裂和从基底剥离。在高酸浓度和高电流密度下应力最高。但是,还有其他因素限制了二氧化铅沉积的最大电流密度,即氧气的释放和与二氧化铅沉积相关的过电势。提出了操作可溶性铅酸液流电池的策略。

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