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Effects of activator type/concentration and curing temperature on alkali-activated binder based on copper mine tailings

机译:活化剂类型/浓度和固化温度对基于铜矿尾矿的碱活化粘结剂的影响

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This article investigates the effects of activator type/concentration and curing temperature on alkali-activated binder based on copper mine tailings (MT). Different alkaline activators including sodium hydroxide (NaOH), sodium silicate (SS), and sodium aluminate (SA) at different compositions and concentrations were used and four different curing temperatures, 60, 75, 90, and 120 °C, were considered. Scanning electron microscopy/energy-dispersive X-ray spectroscopy (SEM/EDX), and X-ray diffraction (XRD) were conducted to investigate the effect of these factors on the unconfined compressive strength (UCS), microstructure, and phase composition of the binder. The results indicate that NaOH concentration and curing temperature are two important factors that affect the UCS and micro-structural properties of the alkali-activated MT binder. The optimum curing temperature, i.e., the curing temperature at the maximum UCS, depends on the NaOH concentration, lower optimum curing temperature at smaller NaOH concentration. Addition of aqueous SS to the NaOH solution can lead to strength improvement, with the highest UCS obtained at a SiO2/Na2O ratio of 1.0–1.26. Addition of powder SA to the NaOH solution profoundly delays the setting at 60 °C but improves the UCS at 90 °C. The SEM/EDX results show highly heterogeneous microstructure for the alkali-activated MT binder as evidenced by the variable Si/Al ratios in different phases. The XRD patterns indicate a newly formed crystalline phase, zeolite, in the 90 °C-cured specimens. The results of this study provide useful information for recycling and utilization of copper MT as construction material through the geopolymerization technology.
机译:本文研究了活化剂类型/浓度和固化温度对基于铜矿尾矿(MT)的碱活化粘合剂的影响。使用了不同组成和浓度的不同碱性活化剂,包括氢氧化钠(NaOH),硅酸钠(SS)和铝酸钠(SA),并考虑了四种不同的固化温度,分别为60、75、90和120°C。进行了扫描电子显微镜/能量色散X射线光谱(SEM / EDX)和X射线衍射(XRD),以研究这些因素对无定形抗压强度(UCS),微观结构和相组成的影响。粘合剂。结果表明,NaOH浓度和固化温度是影响UCS和碱活化MT粘合剂的微观结构性能的两个重要因素。最佳固化温度,即最大UCS时的固化温度,取决于NaOH浓度,在较低NaOH浓度下的最佳固化温度较低。在NaOH溶液中添加SS水溶液可以提高强度,在SiO2 / Na2 O比为1.0-1.26时可获得最高的UCS。将粉末SA添加到NaOH溶液中会大大延迟60°C时的凝固速度,但会改善90°C时的UCS。 SEM / EDX结果显示了碱活化MT粘合剂的高度异质微观结构,这是由不同相中Si / Al比例可变所证明的。 XRD图谱表明在90°C固化的样品中新形成的结晶相沸石。这项研究的结果为通过地质聚合技术将铜MT作为建筑材料的回收和利用提供了有用的信息。

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  • 来源
    《Journal of Materials Science 》 |2012年第16期| p.5933-5945| 共13页
  • 作者单位

    Department of Civil Engineering and Engineering Mechanics, University of Arizona, Tucson, AZ, USA;

    Department of Civil Engineering and Engineering Mechanics, University of Arizona, Tucson, AZ, USA;

    Department of Mining and Geological Engineering, University of Arizona, Tucson, AZ, USA;

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