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Effects of cyclic voltammetric scan rates, scan time, temperatures and carbon addition on sulphation of Pb disc electrodes in aqueous H2SO4

机译:循环伏安扫描速率,扫描时间,温度和碳添加对H2SO4水溶液中Pb盘电极硫酸盐的影响

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Herein, we aim to specifying effects of cyclic voltammetric scan rates, scan time, temperatures and carbon addition on electrochemical sulphation of lead disk electrodes. Electrochemical transformation between solid Pb and solid PbSO4 was investigated by cyclic voltammetries (CVs) of Pb disk electrodes in aqueous H2SO4, in line with the morphology change of electrodes before and after CV polarizations. Too rapid or slow scan rates tend to cause more irreversible sulphation. Long-duration cycling inevitably causes loss of active layer on the electrode surface and incurs more irreversible sulphation. Sulphation becomes more efficient and reversible at elevated temperature. Reversibility of sulphation of lead gets enhanced with the formation of more uniform and less crystalline particles. The irreversible sulphation became less with the addition of carbons (CNT or AB) in the electrolyte, due to lower polarizations upon carbon addition. The protocol of carbon addition is more effective at initial stage of cycling and becomes less effective at later stages. It is acknowledged that the improvement on long-term cycling remains a challenge, yet, which deserves further study.
机译:在此,我们旨在指定循环伏安扫描速率,扫描时间,温度和碳添加对铅盘电极的电化学硫化的影响。通过H 2 SO 4水溶液中的Pb盘电极的循环伏安法(CVS)研究了固体Pb和固体PBSO4之间的电化学转化,与CV偏振之前和之后电极的形态变化。太快或缓慢的扫描速率往往会引起更不可逆转的硫化。长持续时间循环不可避免地导致电极表面上的有源层的损失,并引起更不可逆转的硫酸盐。硫化在升高的温度下变得更有效和可逆。通过形成更均匀且较少的结晶颗粒,铅的硫化铅的可逆性得到增强。由于在碳加成时,通过在电解质中加入碳(CNT或AB),不可逆硫酸盐变少。碳添加方案在循环的初始阶段更有效,并且在以后的阶段变得较低。人们承认,长期循环的改善仍然是一个挑战,也值得进一步研究。

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