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Ethanol as an electrolyte additive for alkaline zinc-air flow batteries

机译:乙醇作为碱性锌空气流通电池的电解质添加剂

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摘要

Zinc-air flow batteries exhibit high energy density and offer several appealing advantages. However, their low efficiency of zinc utilization resulted from passivation and corrosion of the zinc anodes has limited their broad application. In this work, ethanol, which is considered as an environmentally friendly solvent, is examined as an electrolyte additive to potassium hydroxide (KOH) aqueous electrolyte to improve electrochemical performance of the batteries. Besides, the effects of adding different percentages of ethanol (0–50% v/v) to 8 M KOH aqueous electrolyte were investigated and discussed. Cyclic voltammograms revealed that the presence of 5–10% v/v ethanol is attributed to the enhancement of zinc dissolution and the hindrance of zinc anode passivation. Also, potentiodynamic polarization and electrochemical impedance spectroscopy confirmed that adding 5–10% v/v ethanol could effectively suppress the formation of passivating layers on the active surface of the zinc anodes. Though the addition of ethanol increased solution resistance and hence slightly decreased the discharge potential of the batteries, a significant enhancement of discharge capacity and energy density could be sought. Also, galvanostatic discharge results indicated that the battery using 10% v/v ethanol electrolyte exhibited the highest electrochemical performance with 30% increase in discharge capacity and 16% increase in specific energy over that of KOH electrolyte without ethanol.
机译:锌空气流通电池显示出高能量密度,并具有几个吸引人的优点。然而,由于锌阳极的钝化和腐蚀而导致的锌利用效率低,限制了它们的广泛应用。在这项工作中,对被认为是环保溶剂的乙醇作为氢氧化钾(KOH)水性电解质的电解质添加剂进行了研究,以改善电池的电化学性能。此外,还研究并讨论了在8 M KOH水性电解液中添加不同百分比的乙醇(0-50%v / v)的效果。循环伏安图显示5-10%v / v乙醇的存在归因于锌溶解的增强和锌阳极钝化的阻碍。此外,电位动力学极化和电化学阻抗谱证实,添加5-10%v / v乙醇可以有效抑制锌阳极活性表面上钝化层的形成。尽管添加乙醇增加了耐溶液性,因此略微降低​​了电池的放电电势,但仍希望显着提高放电容量和能量密度。同样,恒电流放电结果表明,与不含乙醇的KOH电解质相比,使用10%v / v乙醇电解质的电池表现出最高的电化学性能,放电容量增加了30%,比能量增加了16%。

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