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A novel flow battery: A lead acid battery based on an electrolyte with soluble lead(II) - Part VII. Further studies of the lead dioxide positive electrode

机译:一种新颖的液流电池:基于具有可溶铅(II)的电解质的铅酸电池-第七部分。二氧化铅正极的进一步研究

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Extensive cycling of the soluble lead flow battery has revealed unexpected problems with the reduction of lead dioxide at the positive electrode during discharge. This has led to a more detailed study of the PbO{sub}2/Pb{sup}(2+) couple in methanesulfonic acid. The variation of the phase composition (XRD) and deposit structure (SEM) have been defined as a function of current density, Pb{sup}(2+) and H{sup}+ concentrations, deposition charge and temperature as well as the consequences of charge cycling. Pure α-PbO{sub}2, pure β-PbO{sub}2 and their mixtures can be deposited from methanesulfonic acid media. The α-phase deposits as a more compact, smoother layer, which is well suited to charge cycling. While the anodic deposition of thick layers of PbO{sub}2 is straightforward, their reduction is not; the complexities are explained by an increase in pH within the pores of the deposit. The results suggest that operating the battery at lead(II) concentrations <0.3 M and elevated temperatures should be avoided.
机译:可溶性铅流电池的广泛循环显示出放电期间正极上的二氧化铅减少的出乎意料的问题。这导致对甲磺酸中的PbO {sub} 2 / Pb {sup}(2+)对进行更详细的研究。相组成(XRD)和沉积物结构(SEM)的变化已定义为电流密度,Pb {sup}(2+)和H {sup} +浓度,沉积电荷和温度以及后果的函数充电循环。可以从甲磺酸介质中沉积纯α-PbO{sub} 2,纯β-PbO{sub} 2及其混合物。 α相沉积为更致密,更光滑的层,非常适合电荷循环。虽然厚厚的PbO {sub} 2阳极沉积很简单,但还原却并非如此。复杂性可以通过沉积物孔内pH值的增加来解释。结果表明,应避免在铅(II)浓度<0.3 M和升高的温度下操作电池。

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