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Coal Mining Waste as a Future Eco-Efficient Supplementary Cementing Material: Scientific Aspects

机译:煤矿废料作为未来的生态高效补充胶凝材料:科学方面

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The stockpiling of tailings around coal mines poses a major environmental problem. Nonetheless, this clay mineral (kaolinite)-based waste can be reused as a supplementary cementitious material (recycled metakaolinite) in the manufacture of future eco-efficient cements. This paper explores the most significant scientific questions posed in connection with the conversion of this waste into pozzolans, such as the variation in product mineralogy depending on the sintering temperature and its effect on reaction kinetics in the pozzolan/Ca(OH) 2 system over a period of 365 days. The findings show that the optimal sintering temperature is 600 °C, such that the cementitious properties of the activated product are determined solely by the conversion of kaolinite into metakaolinite and are unaffected by the other clay minerals (micas). The presence of 20% activated coal waste favors the formation of larger amounts of aluminous phases such as C 4 AH 13 and C 4 AcH 12 than in the reference paste and enhances C–S–H gel polymerization.
机译:煤矿周围尾矿的储存带来了主要的环境问题。尽管如此,这种基于粘土矿物(高岭石)的废物仍可以作为补充胶凝材料(回收的偏高岭石)再用于制造未来的生态高效水泥。本文探讨了与这些废物转化为火山灰有关的最重要的科学问题,例如取决于烧结温度的产品矿物学变化及其对火山灰/ Ca(OH)2体系在一定温度下的反应动力学的影响。期限为365天。研究结果表明,最佳烧结温度为600°C,因此,活化产品的胶凝性能仅由高岭石向偏高岭石的转化决定,而不受其他粘土矿物(云母)的影响。活性煤废料的存在比参考糊剂更有利于形成更多的铝相,例如C 4 AH 13和C 4 AcH 12,并增强了C–S–H凝胶聚合。

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