李春辉,伊元荣,刘伟,等. 热-机械协同活化铜尾矿水化胶凝性能研究[J]. 中国矿业,2024,33(2):149-158. DOI: 10.12075/j.issn.1004-4051.20230667
    引用本文: 李春辉,伊元荣,刘伟,等. 热-机械协同活化铜尾矿水化胶凝性能研究[J]. 中国矿业,2024,33(2):149-158. DOI: 10.12075/j.issn.1004-4051.20230667
    LI Chunhui,YI Yuanrong,LIU Wei,et al. Study on the hydration and gelling properties of copper tailings activated by thermal-mechanical synergy[J]. China Mining Magazine,2024,33(2):149-158. DOI: 10.12075/j.issn.1004-4051.20230667
    Citation: LI Chunhui,YI Yuanrong,LIU Wei,et al. Study on the hydration and gelling properties of copper tailings activated by thermal-mechanical synergy[J]. China Mining Magazine,2024,33(2):149-158. DOI: 10.12075/j.issn.1004-4051.20230667

    热-机械协同活化铜尾矿水化胶凝性能研究

    Study on the hydration and gelling properties of copper tailings activated by thermal-mechanical synergy

    • 摘要: 铜尾矿是铜矿经过一系列工艺选矿完成后剩下的颗粒直径较小的沙粒,其堆存会带来诸多环境问题。铜尾矿结晶度高、活性低,许多研究人员探究激发活性后的铜尾矿作为混凝土等材料的辅料,但利用率较低。本文通过热-机械协同活化的方式激发铜尾矿的活性,分析活性铜尾矿水化胶凝性能,依据抗压强度、粒径分布及矿相成分微观结构变化分析水化反应效果。在此基础上,采用X射线衍射仪(XRD)、傅立叶变换红外光谱(FT-IR)和电子扫描电镜(SEM)对铜尾矿胶凝性能进行分析。研究结果表明:热-机械协同活化激发铜尾矿活性的力学性能有了很大提升,即铜尾矿在600 ℃、机械球磨时间80 min条件下,活性由5.60%上升至89.91%,抗压强度为10.87 MPa;XRD和FT-IR进一步分析出活化铜尾矿多处产生了水化C—S—H凝胶、N—A—S—H凝胶、钙矾石等胶凝物质,其形状多呈现絮凝状、棉团状及短棒状。本文研究为铜尾矿的进一步利用提供理论支撑。

       

      Abstract: Copper tailings are fine sand particles that remain after the beneficiation processes in copper mines. The accumulation of these tailings can lead to various environmental issues. The crystallinity of copper tailings is high, but the activity is low. Many researchers have explored the use of activated copper tailings as auxiliary materials for concrete and other materials, but the utilization rate is relatively low. This paper stimulates the activity of copper tailings through thermal-mechanical synergy activation, analyzes the hydration and cementation performance of activated copper tailings, and analyzes the hydration reaction effect based on compressive strength, particle size distribution, and microstructure changes of mineral phase composition. X-ray Diffractometer(XRD), Fourier Transform Infrared Spectroscopy(FT-IR), and Scanning Electron Microscopy(SEM) are employed to further analyze the gelling properties of copper tailings. The results show that the mechanical properties of copper tailings activated by thermal-mechanical synergy have been greatly improved. Specifically, the activity of copper tailings increases from 5.60% to 89.91% with the conditions of 600 ℃ and the mechanical ball milling time of 80 minutes, resulting in a compressive strength of 10.87 MPa. The XRD and FT-IR analysis reveal the presence of hydrated C—S—H, N—A—S—H, ettringite, and other cementitious substances in various forms such as flocculation, cotton ball, and short rod. The study provides valuable theoretical support for the further utilization of copper tailings.

       

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