Exploring the influence of bismuth content on the electrochemical performance of aluminum anodes in Aluminum-air battery

IF 1.9 4区 工程技术 Q3 ELECTROCHEMISTRY Journal of Electrochemical Energy Conversion and Storage Pub Date : 2022-06-16 DOI:10.1115/1.4054820
Haotian Tan, Y. Li, Tianyu Zhao, Faqiang Wang, Qun-e Zhao, Gang Xie, Xiaohua Yu
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Abstract

Bi is one of important alloying elements in aluminum anode of alkaline battery. In this work, Al-Bi alloy used as anode material.And how to optimize the addition amount of Bi in aluminum anode was studied to improve the discharge performance of aluminum anode. Using 4 mol/L−1 NaOH solution as electrolyte, the electrochemical properties of Aluminum anode Al-xBi (x=0, 0.2, 0.4, 0.6, 0.8, 1.0wt%) with different Bi content were studied. The results show that the addition of Bi will destroy the passivation film on the surface of aluminum alloy, making the reaction further. The addition of Bi element has the effect of refining grain and homogenizing microstructure, and reduces the solution resistance and polarization resistance during discharge to a certain extent. Under the condition of 4 mol/L-1 NaOH solution as the electrolyte, Al-0.8Bi anode plate has better corrosion resistance and electrode activity compatibility.
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探讨了铋含量对铝-空气电池铝阳极电化学性能的影响
铋是碱性电池铝阳极中重要的合金元素之一。本研究采用铝铋合金作为阳极材料。并对如何优化铝阳极中铋的添加量以提高铝阳极的放电性能进行了研究。以4 mol/L−1 NaOH溶液为电解液,研究了不同Bi含量铝阳极Al-xBi (x=0、0.2、0.4、0.6、0.8、1.0wt%)的电化学性能。结果表明,Bi的加入会破坏铝合金表面的钝化膜,使反应进一步深入。Bi元素的加入具有细化晶粒和均匀化组织的作用,并在一定程度上降低了放电时的固溶电阻和极化电阻。在4 mol/L-1 NaOH溶液作为电解液的条件下,Al-0.8Bi阳极极板具有较好的耐腐蚀性和电极活性相容性。
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来源期刊
CiteScore
4.90
自引率
4.00%
发文量
69
期刊介绍: The Journal of Electrochemical Energy Conversion and Storage focuses on processes, components, devices and systems that store and convert electrical and chemical energy. This journal publishes peer-reviewed archival scholarly articles, research papers, technical briefs, review articles, perspective articles, and special volumes. Specific areas of interest include electrochemical engineering, electrocatalysis, novel materials, analysis and design of components, devices, and systems, balance of plant, novel numerical and analytical simulations, advanced materials characterization, innovative material synthesis and manufacturing methods, thermal management, reliability, durability, and damage tolerance.
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