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Evaluation of mine tailings' potential as supplementary cementitious materials based on chemical, mineralogical and physical characteristics

机译:根据化学,矿物学和物理特性评估矿山尾矿作为水泥辅助材料的潜力

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摘要

In order to reduce emissions of CO_2 from cement production and avoid severe environmental pollution from the deposition of mine waste, this study investigated the possibility of utilizing mine tailings as supplementary cementitious materials (SCM) for partially replacement of cement in concrete. This study provides a characterization study of mine tailings to evaluate their potential for contributing chemically or physically as SCM. 13 mine tailing samples were characterized in regards to chemical composition (XRF, Loss on Ignition, CaCO_3 and pH), mineralogical content (XRD) and physical characteristics (Grain size distribution, Specific Surface Area, SEM-analysis). The characterization study showed five mine tailings to possess potential chemical contribution as SCM based on their chemical composition (SiO_2, Al_2O_3, Fe_2O_3 and CaO) and amorphous content. Three mine tailings showed potential physical contribution as SCM based on grain size and grain morphology. The remainder mine tailing characteristics suggest that their potential as SCM may be improved by pretreatment such as milling and/or thermal treatment.
机译:为了减少水泥生产中的CO_2排放并避免矿山废物沉积对环境造成的严重污染,本研究调查了利用矿山尾矿作为补充水泥材料(SCM)来部分替代混凝土中水泥的可能性。这项研究提供了矿山尾矿的表征研究,以评估其作为SCM在化学或物理上的贡献潜力。根据化学成分(XRF,燃烧失重,CaCO_3和pH),矿物学含量(XRD)和物理特征(粒度分布,比表面积,SEM分析)对13个矿山尾矿样品进行了表征。表征研究表明,基于其化学成分(SiO_2,Al_2O_3,Fe_2O_3和CaO)和无定形含量,五个矿山尾矿具有潜在的化学成分作为SCM。根据晶粒大小和形态,三个矿山尾矿显示出作为SCM的潜在物理贡献。其余的矿山尾矿特征表明,通过预处理(例如铣削和/或热处理)可以提高其作为SCM的潜力。

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