用于铝-空气电池阳极的 Al-0.1Sn-0.1In-0.05Ga 合金的放电性能

IF 8.9 2区 工程技术 Q1 ENERGY & FUELS
Acong Meng, Yaoning Sun, Wangjun Cheng, Liufei Huang, Yufeng Chen
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引用次数: 0

摘要

为了满足低碳发展的需要,我们研究了 Al-0.1Sn-0.1In-0.05Ga 合金作为铝-空气电池阳极的性能。根据低熔点金属元素在铝中的固体溶解度,采用微合金化方法将其添加到高纯度铝(99.9999%)中,以扩散分布或第二相的形式添加。建立了 Al-0.1Sn-0.1In-0.05Ga 合金的微观结构与电化学性质之间的相关性。实验在 4.0 mol/l 的 NaOH 溶液中进行。通过电位极化、电化学阻抗谱和电静电放电实验评估了 Al-0.1Sn-0.1In-0.05Ga 阳极的电化学特性。结果表明,锡、铟和镓元素的加入提高了铝阳极的耐腐蚀性和放电活性。这可归因于 Al-0.1Sn-0.1In-0.05Ga 合金中存在纳米级第二相颗粒和均匀的微观结构,从而有效抑制了局部结晶腐蚀。与纯铝相比,Al-0.1Sn-0.1In-0.05Ga 合金的腐蚀电流密度降低了 24.77%,阳极效率提高了 40%。当以 10 mA/cm2 的电流密度放电时,带有 Al-0.1Sn-0.1In-0.05Ga 阳极的铝空气电池的放电电压为 1.523 V,放电容量为 2214 Ah/kg,阳极效率为 74.31 %。这项研究有望推动铝空气电池的发展,并为全球可持续发展做出重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Discharge performance of Al-0.1Sn-0.1In-0.05Ga alloy for Al–air battery anodes

Discharge performance of Al-0.1Sn-0.1In-0.05Ga alloy for Al–air battery anodes

The performance of Al-0.1Sn-0.1In-0.05Ga alloys as anodes for Al–air batteries is investigated for low carbon development needs. Low melting point elemental metals were added to high purity Al (99.9999 %) using micro alloying, either in a diffuse distribution or as a second phase, depending on their solid solubility in the Al. The correlation between the microstructure and electrochemical properties of Al-0.1Sn-0.1In-0.05Ga alloys was established. The experiments were conducted in a 4.0 mol/l NaOH solution. The electrochemical characteristics of the Al-0.1Sn-0.1In-0.05Ga anodes were assessed by using potentiodynamic polarization, electrochemical impedance spectroscopy, and galvanostatic discharge experiments. It is indicated that the inclusion of Sn, In, and Ga elements results in improved corrosion resistance and discharge activity in the anode composed of Al. This can be attributed to the presence of nano-scale second phase particles and a uniform microstructure in the Al-0.1Sn-0.1In-0.05Ga alloy, which effectively inhibits localized crystallographic corrosion. In comparison to pure Al, the Al-0.1Sn-0.1In-0.05Ga alloy exhibits a reduction in corrosion current density by 24.77 % and an increase in anode efficiency by 40 %. When discharged at a current density of 10 mA/cm2, an Al–air battery with an Al-0.1Sn-0.1In-0.05Ga anode exhibits a discharge voltage of 1.523 V, a discharge capacity of 2214 Ah/kg, and an anode efficiency of 74.31 %. The research has the potential to advance Al–air batteries' progress and significantly contribute to global sustainability efforts.

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来源期刊
Journal of energy storage
Journal of energy storage Energy-Renewable Energy, Sustainability and the Environment
CiteScore
11.80
自引率
24.50%
发文量
2262
审稿时长
69 days
期刊介绍: Journal of energy storage focusses on all aspects of energy storage, in particular systems integration, electric grid integration, modelling and analysis, novel energy storage technologies, sizing and management strategies, business models for operation of storage systems and energy storage developments worldwide.
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