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Zinc deposition and dissolution in methanesulfonic acid onto a carbon composite electrode as the negative electrode reactions in a hybrid redox flow battery

机译:混合氧化还原液流电池中的负电极反应,锌沉积并溶解在甲磺酸中的碳复合电极上

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Electrodeposition and dissolution of zinc in methanesulfonic acid were studied as the negative electrode reactions in a hybrid redox flow battery. Cyclic voltammetry at a rotating disk electrode was used to characterize the electrochemistry and the effect of process conditions on the deposition and dissolution rate of zinc in aqueous methanesulfonic acid. At a sufficiently high current density, the deposition process became a mass transport controlled reaction. The diffusion coefficient of Zn~(2+) ions was 7.5 × 10~(-6) cm~2 s~(-1). The performance of the zinc negative electrode in a parallel plate flow cell was also studied as a function of Zn~(2+) ion concentration, methanesulfonic acid concentration, current density, electrolyte flow rate, operating temperature and the addition of electrolytic additives, including potassium sodium tartarate, tetrabutylammonium hydroxide, and indium oxide. The current-, voltage- and energy efficiencies of the zinc-half cell reaction and the morphologies of the zinc deposits are also discussed. The energy efficiency improved from 62% in the absence of additives to 73% upon the addition of 2 × 10~(-3) mol dm~(-3) of indium oxide as a hydrogen suppressant. In aqueous methanesulfonic acid with or without additives, there was no significant dendrite formation after zinc electrodeposition for 4 h at 50 mA cm~(-2).
机译:作为混合氧化还原液流电池中的负极反应,研究了锌在甲磺酸中的电沉积和溶解。使用旋转圆盘电极上的循环伏安法来表征电化学以及工艺条件对锌在甲磺酸水溶液中的沉积和溶解速率的影响。在足够高的电流密度下,沉积过程成为质量传输控制的反应。 Zn〜(2+)离子的扩散系数为7.5×10〜(-6)cm〜2 s〜(-1)。还研究了平行板流通池中锌负极的性能与Zn〜(2+)离子浓度,甲磺酸浓度,电流密度,电解质流速,工作温度以及电解质添加剂的添加的关系,包括酒石酸钾钠,氢氧化四丁铵和氧化铟。还讨论了锌半电池反应的电流,电压和能量效率以及锌沉积物的形态。当添加2×10〜(-3)mol dm〜(-3)氧化铟作为氢抑制剂时,能量效率从无添加剂时的62%提高到73%。在有或没有添加剂的甲磺酸水溶液中,锌在50 mA cm〜(-2)下电沉积4 h后,没有明显的枝晶形成。

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