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Recycling and Application of Mine Tailings in Alkali-Activated Cements and Mortars—Strength Development and Environmental Assessment

机译:碱活性水泥和迫击炮力量发展和环境评估中矿井尾矿的回收与应用

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摘要

Mine tailings (MT) could represent a step forward in terms of the quality of the aggregates usually used in civil engineering applications, mostly due to its high density. The Portuguese Neves Corvo copper mine, owned by the Lundin Mining Corporation, produces approximately 3 million tonnes per year. Nevertheless, it cannot be used in its original state, due to its high levels of sulphur and other metals (As, Cr, Cu, Pb, Zn). This paper focuses on the stabilisation/solidification of high-sulphur MT, without any previous thermal treatment, using alkali-activated fly ash (FA). The variables considered were the MT/FA ratio and the activator type and concentration. A fine aggregate was then added to the pastes to assess the quality of the resulting mortar. Maximum compressive strengths of 14 MPa and 24 MPa were obtained for the pastes and mortars, respectively, after curing for 24 h at 85 °C. Thermogravimetric analysis, scanning electron microscopy, X-ray energy dispersive spectroscopy, X-ray diffraction, and infrared spectroscopy were used to characterize the reaction products, and two types of leaching tests were performed to assess the environmental performance. The results showed that the strength increase is related with the formation of a N-A-S-H gel, although sodium sulphate carbonate was also developed, suggesting that the total sodium intake could be optimized without strength loss. The solubility of the analysed metals in the paste with 78% MT and 22% FA was below the threshold for non-hazardous waste.
机译:矿井尾矿(MT)可以代表通常在土木工程应用中使用的聚集体的质量方面的前进,主要是由于其高密度。德伦丁矿业公司拥有的葡萄牙语克罗沃铜矿,每年生产约300万吨。然而,由于其高水平的硫和其他金属(如,Cr,Cu,Pb,Zn),它不能用于原始状态。本文侧重于使用碱活化的粉煤灰(FA)的高硫MT的稳定/凝固,无需任何先前的热处理。所考虑的变量是MT / FA比和激活型和浓度。然后将细骨料加入浆料中以评估所得砂浆的质量。在85℃下固化24小时后,分别为糊剂和砂浆获得14MPa和24MPa的最大压缩强度。热重分析,扫描电子显微镜,X射线能量色散光谱,X射线衍射和红外光谱鉴定反应产物,进行两种类型的浸出试验以评估环境性能。结果表明,尽管还开发了硫酸钠碳酸钠,但强度增加与N-A-S-H凝胶的形成有关,表明可以优化总钠的摄入而不会损失优化。分析的金属在浆料中的溶解度具有78%MT和22%Fa的糊状物低于非危险废物的阈值。

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