首页> 外文期刊>Journal of materials in civil engineering >Alkali Activation of Copper Mine Tailings and Low-Calcium Flash-Furnace Copper Smelter Slag
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Alkali Activation of Copper Mine Tailings and Low-Calcium Flash-Furnace Copper Smelter Slag

机译:铜尾矿和低钙闪蒸炉铜冶炼炉渣的碱活化

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This paper studies alkali activation of copper mine tailings (MT) and low-calcium flash-furnace copper smelter slag (SG), two major types of wastes from the mining industry. The effect of SG content, curing temperature, and curing time on the unconfined compressive strength (UCS) of the MT/SG-based geopolymer is investigated systematically. Scanning electron microscopy/energy-dispersive X-ray spectroscopy (SEM/EDX), X-ray diffraction (XRD), and Fourier transform infrared (FTER) spectroscopy are also used to investigate the microstructure and elemental and phase composition of the MT/SG-based geopolymer. The results show that the addition of SG significantly improves the UCS and microstructure of the geopolymer. The improvement is mainly attributed to the high solubility of silica in the SG and the fine particle size of the SG. The inclusion of SG also leads to decrease of the optimum curing temperature (i.e., the temperature at the highest UCS) because of its higher reactivity than MT. In addition, the MT/SG-based geopolymer sets fast and gains a major portion of its ultimate strength within only 7 days. Based on the results, it can be concluded that the MT/SG-based geopolymer is a promising sustainable construction material for civil engineering applications.
机译:本文研究了铜尾矿(MT)和低钙闪蒸炉铜冶炼炉渣(SG)的碱活化,这是采矿业的两种主要废物。系统研究了SG含量,固化温度和固化时间对MT / SG基地质聚合物的无侧限抗压强度(UCS)的影响。扫描电子显微镜/能量色散X射线光谱(SEM / EDX),X射线衍射(XRD)和傅里叶变换红外(FTER)光谱也用于研究MT / SG的微观结构以及元素和相组成基地质聚合物。结果表明,SG的加入显着改善了地质聚合物的UCS和微观结构。该改善主要归因于二氧化硅在SG中的高溶解度和SG的细粒度。 SG的加入由于其比MT更高的反应性,还导致最佳固化温度(即,最高UCS的温度)的降低。此外,基于MT / SG的地质聚合物凝固速度很快,并且仅在7天内即可获得其极限强度的很大一部分。根据结果​​,可以得出结论,基于MT / SG的地聚合物是一种有前途的可持续土木工程应用建筑材料。

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