Evaluation of the addition of cement ash to the PVA/TEOS/HCl gel electrolyte on the performance of aluminium air batteries

Firman Ridwan , Dandi Agusta , Muhammad Akbar Husin , Dahyunir Dahlan
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Abstract

Cement manufacturing presents substantial environmental challenges due to the volume of waste generated, including cement ash. Therefore, it is crucial to discover novel methods to utilize cement waste effectively. This study aimed to examine the impact of different concentrations of cement ash (1, 1.5, 2, and 2.5 g) on the conductivity of PVA/TEOS/HCl (PTH) gel electrolyte materials. The primary goal was to determine the ideal concentration of cement ash that would yield maximum conductivity. The research findings demonstrated that the PTH2.5CA sample attained the greatest conductivity of 2.78 mS/cm when adding 2.5 g of cement ash. In addition, this material exhibits a capacity of 0.354 mAh, a specific capacity of 0.12826 mAh/g, and a density capacity of 0.11813 mAh/cm2. The power and power densities were measured as 6.48 mW/cm2 and 25.94 mW, respectively. These findings offer promising prospects for implementing sustainable practices in the industry and highlight the viability of utilizing cement waste as a significant element in battery membrane materials. This technique addresses environmental issues related to cement waste and contributes to advancing a more eco-friendly waste management system.

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评估在 PVA/TEOS/HCl 凝胶电解液中添加水泥灰对铝空气电池性能的影响
水泥生产过程中会产生大量废物,包括水泥灰,这给环境带来了巨大挑战。因此,探索有效利用水泥废料的新方法至关重要。本研究旨在考察不同浓度的水泥灰(1、1.5、2 和 2.5 克)对 PVA/TEOS/HCl (PTH) 凝胶电解质材料电导率的影响。主要目标是确定能产生最大电导率的理想水泥灰浓度。研究结果表明,当加入 2.5 克水泥灰时,PTH2.5CA 样品的电导率最高,达到 2.78 mS/cm。此外,这种材料的容量为 0.354 mAh,比容量为 0.12826 mAh/g,密度容量为 0.11813 mAh/cm2。测得的功率密度和功率密度分别为 6.48 mW/cm2 和 25.94 mW。这些发现为在工业中实施可持续发展实践提供了广阔的前景,并凸显了利用水泥废料作为电池膜材料重要元素的可行性。这项技术解决了与水泥废料有关的环境问题,并有助于推进更环保的废料管理系统。
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来源期刊
Materials Science for Energy Technologies
Materials Science for Energy Technologies Materials Science-Materials Science (miscellaneous)
CiteScore
16.50
自引率
0.00%
发文量
41
审稿时长
39 days
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