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Electrochemical behaviour of bismuth in sulfuric acid solution

机译:铋在硫酸溶液中的电化学行为

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Bismuth is considered to be a detrimental element to lead-acid batteries because it has lower hydrogen evolution overpotential than lead. On the other hand, bismuth can improve the performances of negative or positive active-materials. It is necessary to understand the performance of bismuth in sulfuric acid solution in order to reduce its detrimental effect on lead-acid batteries and make good use of its beneficial aspects. In this paper, the electrochemical behaviour of bismuth in sulfuric acid solution is studied by cyclic voltammetry (CV), chronoamperometry (CA), electrochemical impedance spectroscopy (EIS), scanning electronic spectroscopy (SEM), and X-ray diffraction (XRD). At potentials near close to the open-circuit value bismuth dissolves actively when it is anodized. As the potential increases, two oxidation peaks are observed. The first peak corresponds to the formation of bismuth sulfate, that follows a dissolution-precipitation mechanism and suppresses the dissolution of bismuth. The second peak due to secondary oxidation of bismuth under the bismuth sulfate film. There is a large current plateau at higher potentials this involves the dissolution of bismuth sulfate into solution, the formation of bismuth sulfate from bismuth oxide, and the formation of bismuth oxide from matrix bismuth. Hydrogen evolution takes place on bismuth just after the potential where the reduction of lead sulfate is completed. Oxygen evolution cannot occur on bismuth covered with bismuth sulfate.
机译:铋被认为是铅酸电池的有害元素,因为它的氢释放超电势比铅低。另一方面,铋可以改善负极或正极活性物质的性能。有必要了解铋在硫酸溶液中的性能,以减少其对铅酸电池的有害影响并充分利用其有益方面。本文通过循环伏安法(CV),计时电流法(CA),电化学阻抗谱(EIS),扫描电子光谱(SEM)和X射线衍射(XRD)研究了铋在硫酸溶液中的电化学行为。铋在阳极氧化时会在接近开路值的电位附近有效溶解。随着电势的增加,观察到两个氧化峰。第一个峰对应于硫酸铋的形成,其遵循溶解-沉淀机理并抑制了铋的溶解。第二峰是由于硫酸铋薄膜下铋的二次氧化所致。在较高的电势下有一个大的电流平稳期,这涉及到硫酸铋溶解到溶液中,氧化铋形成硫酸铋和基体铋形成氧化铋。在硫酸铅还原反应完成之后,铋就开始析氢。覆盖有硫酸铋的铋不会发生氧气逸出。

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