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Performance of Anodes with Proper Active Metal Elements Added to the Al-0.16wtIn in Alkaline Electrolyte for Al-Air Batteries

机译:具有适当的活性金属元素的阳极的性能,在碱电池中加入到Al-0.16wt%中,用于Al-Air电池

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Wind energy and solar energy are stored in aluminum through low-temperature aluminum electrolysis, and then the distributed energy generation by metallic fuel cells realizes renewable energy utilization. Aluminum is an ideal material for metallic fuel cells. In this research, the performance of Al-air batteries based on pure Al, Al-0.16 wt%In, Al-0.16 wt%In-0.1 wt%Ga, Al-0.16 wt%In-0.5 wt%Bi, Al-0.16 wt%In-0.12 wt%Sn, and Al-0.16 wt%In-3 wt%Zn anodes in 4 M NaOH solution was investigated by galvanostatic discharge test. The electrochemical properties of the anodes were investigated in the same electrolyte using electrochemical impedance spectroscopy (EIS) and polarization curves. Battery performance was tested by constant current discharge at 20 mA cm~(-2) current density. The characteristics of the anodes after discharge were investigated by scanning electron microscopy (SEM) and energy dispersive analysis of X-ray (EDAX). Results confirm that compared with pure Al and Al-0.16 wt%In in 4 M NaOH, the electrochemical properties of Al-0.16 wt%In-0.1 wt%Ga anode restrains hydrogen evolution, improves electrochemical activity, and increases anodic utilization rate.
机译:风能和太阳能通过低温铝电解储存在铝中,然后通过金属燃料电池的分布能量实现可再生能源利用。铝是金属燃料电池的理想材料。在本研究中,基于纯Al,Al-0.16wt%,Al-0.16wt%In-0.1wt%Ga,Al-0.16wt%In-0.5wt%Bi,Al-0.16的Al-0.16wt%的性能的性能。通过Galvanostatic放电试验研究了4M NaOH溶液中的0.12wt%Sn和Al-0.16wt%的3wt%Zn阳极。使用电化学阻抗谱(EIS)和偏振曲线在相同电解质中研究阳极的电化学性质。电池性能在20 mA cm〜(-2)电流密度下通过恒流排放来测试。通过扫描电子显微镜(SEM)和X射线(edax)的能量分散分析来研究排出后的阳极特性。结果证实,与4M NaOH中的纯Al和Al-0.16wt%相比,Al-0.16wt%In-0.1wt%Ga阳极抑制氢进化的电化学性能,提高了电化学活性,并提高了阳极利用率。

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