Graduate Program in Environmental Science and Technology, Universidade Federal da Fronteira Sul, Erechim, RS, 99700-970, Brazil.
Graduate Program in Civil Engineering, Universidade Federal Do Rio Grande Do Sul, Porto Alegre, RS, 90035-190, Brazil.
Environ Sci Pollut Res Int. 2024 Jul;31(34):47071-47083. doi: 10.1007/s11356-024-34234-5. Epub 2024 Jul 10.
Understanding the strength behavior and leaching characteristics of mining tailings stabilized with alkali-activated cements in the short, medium, and long term is crucial for the feasibility of material applications. In this context, this study assessed the stabilization/solidification of iron ore tailings (IOT) using alkali-activated binder (AAB) composed of sugarcane bagasse ash and eggshell lime at curing times of 7, 28, 60, 90, 180, and 365 days. Additionally, leaching tests were conducted, along with the examination of possible changes in the chemical and mineralogical composition resulting from exposure to acidic environments. Tests included unconfined compression strength (UCS), leaching, X-ray diffraction, and Fourier-transform infrared spectroscopy for the IOT-AAB mixtures. The highest increase in UCS was observed between 7 and 60 days, reaching 6.47 MPa, with minimal variation thereafter. The AAB-bonded IOT exhibited no metal toxicity over time. Elements Ba, Mn, Pb, and Zn present in IOT and ash were encapsulated in the cemented matrix, with complete encapsulation of all metals observed from 90 days of curing time. The mineralogy of the stabilized/solidified tailings showed no changes resulting from leaching tests. Characteristic bands associated with the presence of N-A-S-H gel were identified in both pre-leaching and post-leaching samples for all curing times analyzed. Exposure to acidic environments altered bands related to carbonate bonds formed in the IOT-AAB mixture.
了解用碱激发胶凝材料稳定的采矿尾矿在短期、中期和长期内的力学行为和浸出特性对于材料应用的可行性至关重要。在这方面,本研究评估了采用糖渣灰和蛋壳石灰组成的碱激发胶凝材料(AAB)稳定/固化铁矿尾矿(IOT),养护时间为 7、28、60、90、180 和 365 天。此外,还进行了浸出试验,并研究了暴露于酸性环境中可能导致的化学成分和矿物组成的变化。试验包括无侧限抗压强度(UCS)、浸出、X 射线衍射和傅里叶变换红外光谱分析,用于 IOT-AAB 混合物。在 7 至 60 天之间观察到 UCS 最大增加,达到 6.47 MPa,此后变化最小。随着时间的推移,AAB 粘结的 IOT 没有表现出金属毒性。IOT 和灰分中存在的 Ba、Mn、Pb 和 Zn 元素被包裹在胶结基质中,从 90 天的养护时间开始观察到所有金属完全包裹。稳定/固化尾矿的矿物学没有因浸出试验而发生变化。在所分析的所有养护时间的预浸出和后浸出样品中,都鉴定出与存在 N-A-S-H 凝胶相关的特征带。暴露于酸性环境会改变 IOT-AAB 混合物中形成的碳酸盐键相关的带。