电解锰渣胶结膏体充填材料性能研究
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三峡大学水利与环境学院

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X753

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宜昌市自然科学研究项目(A21-3-003); 湖北省自然科学基金计划项目(2019CFB201)


Study on properties of filling material cemented with electrolytic manganese residue
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College of Hydraulic Environmental Engineering,China Three Gorges University,Yichang

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    摘要:

    针对电解锰渣占用大量土地资源、易产生重金属污染等问题,使用电解锰渣基胶凝材料、原状电解锰渣、中粗砂等材料制备电解锰渣自胶结膏体充填材料用以矿山回填。通过测试充填材料水化浆体流动度、试件抗压强度和浸出毒性用以评价该材料性能,并用X射线衍射、扫描电镜进行表征。结果表明,该充填材料浆体流动度达到200mm,流动性能满足充填技术要求;充填材料固化体固化28天抗压强度可达到1.5MPa以上,可以达到矿采场充填体强度要求;充填材料浸出毒性明显降低,主要污染重金属Mn、Co被充分固化稳定,浸出毒性满足地下水标准。固化体XRD及SEM分析发现,该充填材料水化生成的水化硅酸钙、钙矾石等晶体是固化体强度稳定、重金属得以固化的主要原因。研究表明,此方法能有效固化/稳定化电解锰渣,降低环境污染风险。

    Abstract:

    Electrolytic manganese residue (EMR) occupies a lot of land resources and may induce to potential heavy metal pollution. In order to solve these problems, electrolytic manganese residue-based cementitious materials, initial electrolytic manganese residue and medium-coarse sand were employed to fabricate the filling material self-cemented with electrolytic manganese residue used for mine backfilling. The fluidity, compressive strength and leaching toxicity of hydration slurry of the filled composite were tested to evaluate the performances of the synthetic material, and the microstructure was characterized with X-ray diffraction and scanning electron microscopy. The results showed that the fluidity of the filling material slurry reached 200 mm, meeting the needs of technical requirements of filling; the compressive strength of the solidified body of the filling material could reach 1.5 MPa or more after curing for 28 days, meeting the conditions of the filling body strength for mining site; the leaching toxicity of the filling material significantly reduced with the main heavy metals including Mn and Co fully solidified and stabilized, meeting the national groundwater quality standard. The results of XRD and SEM analysis make it clear that the hydrated calcium silicate, ettringite and other crystals generated by the hydration of the filling material are the main reasons why the strength of the solidified body was stable and the heavy metals were solidified. All these findings indicated that this method could effectively solidify/stabilize electrolytic manganese residue and reduce the risk of environmental pollution.

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  • 收稿日期:2021-06-24
  • 最后修改日期:2021-11-08
  • 录用日期:2021-11-10
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