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Reuse Potentials of Copper Mine Tailings in Mortar and Concrete Composites

机译:砂浆和混凝土复合材料中铜尾矿的再利用潜力

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The disposal of copper mine tailings (CMT) in finite containment facilities near mine sites is a serious human safety and environmental management challenge in most copper-producing countries of the world. Therefore, this study evaluates the reuse potential of the CMT as a 0%-30% partial substitute material for cement in paste, mortar, and concrete mixtures. The CMT was characterized first, and thereafter its effects on the performance of cement paste and mortar were evaluated via normal consistency, setting time, strength activity index (SAI), X-ray diffraction (XRD), scanning electron microscopy analysis, and autoclave expansion tests. Mechanical strength evolution of CMT-blended concrete mixtures exposed to water-curing and a sulfate-rich environment was also monitored for about a year. Cement paste and mortar test results indicate that while the CMT led to a slight increase in water demand and set retardation, all the CMT-modified mortar mixtures met the minimum SAI requirement of 75% at the 28th and 90th days. Moreover, free lime induced longitudinal expansion generally decreased with increasing content of the CMT in pastes. These improved performances engendered by the CMT were also replicated in concrete. Whereas only the mechanical strengths of concrete incorporating 5%-20% CMT were higher than that of the plain reference concrete, the sulfate resistance of all the CMT-blended mixtures was superior to that of the reference concrete. XRD results also confirmed that the potentials of the CMT as a cement replacement material is high. All in all, the environmental and material sustainability benefits arising from the use of the CMT in cement composites are enormous.
机译:在世界上大多数产铜国,在矿场附近的有限密闭设施中处置铜尾矿(CMT)是一项严重的人类安全和环境管理挑战。因此,本研究评估了CMT作为糊剂,砂浆和混凝土混合物中水泥的0%-30%部分替代材料的重用潜力。首先对CMT进行表征,然后通过正常稠度,凝固时间,强度活性指数(SAI),X射线衍射(XRD),扫描电子显微镜分析和高压釜膨胀来评估其对水泥浆和砂浆性能的影响。测试。还对暴露于水固化和富含硫酸盐的环境中的CMT混合混凝土混合物的机械强度演变进行了大约一年的监测。水泥浆和砂浆测试结果表明,尽管CMT导致需水量和凝结延迟略有增加,但所有CMT改性的砂浆混合物在第28天和第90天均满足最低SAI要求的75%。而且,游离石灰引起的纵向膨胀通常随着糊剂中CMT含量的增加而降低。 CMT带来的这些改进的性能也被复制到混凝土中。尽管仅掺入5%-20%CMT的混凝土的机械强度高于普通参比混凝土,但所有CMT掺和混合物的耐硫酸盐性均优于参比混凝土。 XRD结果也证实了CMT作为水泥替代材料的潜力很大。总而言之,在水泥复合材料中使用CMT所带来的环境和材料可持续性收益是巨大的。

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