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Developing Electrolyte for a Soluble Lead Redox Flow Battery by Reprocessing Spent Lead Acid Battery Electrodes

机译:通过对废铅酸电池电极进行后处理,开发可溶铅氧化还原液流电池用电解质

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The archival value of this paper is the investigation of novel methods to recover lead (II) ions from spent lead acid battery electrodes to be used directly as electrolyte for a soluble lead flow battery. The methods involved heating electrodes of spent lead acid batteries in methanesulfonic acid and hydrogen peroxide to dissolve solid lead and lead dioxide out of the electrode material. The processes yielded lead methanesulfonate, which is an electrolyte for the soluble lead acid battery. The lead (II) ions in the electrolyte were identified using Inductively Coupled Plasma Mass Spectroscopy and their electrochemistry confirmed using cyclic voltammetry. The concentration of lead (II) ions was determined and it was found that using the higher concentration of hydrogen peroxide yielded the highest concentration of lead (II) ions. The method was therefore found to be sufficient to make electrolyte for a soluble lead cell.
机译:本文的档案价值是对从废铅酸电池电极中回收铅离子的新方法的研究,该电极可直接用作可溶性铅液流电池的电解质。该方法包括在甲磺酸和过氧化氢中加热废铅酸电池的电极,以将固体铅和二氧化铅从电极材料中溶解出来。该过程产生了甲磺酸铅,它是可溶性铅酸电池的电解质。使用电感耦合等离子体质谱法鉴定电解质中的铅离子,并使用循环伏安法确认其电化学。测定铅(II)离子的浓度,发现使用较高浓度的过氧化氢产生最高浓度的铅(II)离子。因此,发现该方法足以制造用于可溶铅电池的电解质。

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