利用铝渣作为水泥替代材料促进混凝土的可持续发展

Nur Hidayah Mohd Zahari, Ali Salmiaton, S. Sobri, N. A. Mohd. Nasir, Nor Shafizah Ishak
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引用次数: 0

摘要

从铝渣废料中回收铝需要大量的成本和能源。因此,有必要将其作为一种工程材料,在混凝土生产中用作填充材料。由于原材料短缺和向大气排放二氧化碳的可持续发展问题,水泥行业正面临诸多困难。在此基础上,本研究旨在利用铝渣作为水泥的替代材料,开发可持续混凝土。在本研究中,对照混凝土样品的结果与按水泥重量计含 5%、10% 和 15%铝渣的混凝土样品的结果进行了比较。对使用铝渣作为水泥替代材料的 M40 级混凝土进行了力学和化学分析。结果发现,铝渣的最佳比例为 10%,与传统混凝土相比效果更好。它的最高强度为 41.3MPa。进行了热重分析,测定了混凝土的重量损失、水合化合物的分解和氢氧化钙的百分比。扫描电子显微镜分析表明,由于基体中存在埃特林针晶和硅酸钙水合物,混凝土的密度增加了。此外,毒性分析表明,混凝土中的氨含量和微量元素浸出率都很低,在可接受范围内。研究结果表明,铝渣作为混凝土中的一种额外胶凝材料,对克服与铝渣管理相关的环境问题和减少水泥用量,生产出更可持续的混凝土具有积极作用。
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Utilization of Aluminum Dross as a Cement Replacement Material for Sustainable Concrete Development
The recovery of aluminum from aluminum dross waste involves intensive cost and energy. Therefore, there is a need for its utilization as an engineering material by using it as a filler material in concrete production. The cement industry is battling numerous difficulties due to the shortage of raw materials and sustainability issues related to the emission of CO2 into the atmosphere. On this basis, the present study aims to utilize aluminum dross as a replacement material for cement to develop sustainable concrete. In this study, the results of control concrete samples were compared to the results of concrete samples containing aluminum dross by 5%, 10%, and 15% by weight of cement. The mechanical and chemical analysis of the M40 grade concrete employing aluminum dross as a replacement material in cement was analyzed. It was noticed that the best percentage of aluminum dross was 10%, providing better results compared with conventional concrete. It recorded the highest strength of 41.3MPa. Thermogravimetric analysis was conducted in which weight loss, decomposition of hydration compounds, and percentage of calcium hydroxide from concrete were determined. Scanning electron microscopy analysis showed that the density of concrete increased owing to the presence of ettringite needles and calcium silicate hydrate in the matrix. Moreover, the toxicity analysis revealed that the ammonia content and the leachability of trace elements from the concrete were both low and within acceptable ranges. The findings indicate that aluminum dross has positive results as an additional cementitious material in concrete to overcome environmental problems related to dross management and reduce cement utilization, producing more sustainable concrete.
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