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金属矿山 ›› 2026, Vol. 55 ›› Issue (3): 290-298.

• 矿物材料 • 上一篇    下一篇

磷石膏基绿色矿山充填材料性能与水化机理研究

卢 波,邬忠虎,刘金源,王 瑶,张荣华,安静宇   

  1. 贵州大学土木工程学院,贵州 贵阳 550025
  • 出版日期:2026-03-15 发布日期:2026-04-02
  • 通讯作者: 邬忠虎(1989—),男,教授,博士,博士研究生导师。
  • 作者简介:卢 波(2002—),男,硕士研究生。
  • 基金资助:
    贵州省科技支撑项目(编号:黔科合支撑[2023]一般136,黔科合支撑[2022]一般227,黔科合支撑[2025] 一般078,黔科合支撑
    [2025]一般080)。

Study on the Properties and Hydration Mechanism of Phosphogypsum-Based Green Mine Filling Materials

LU Bo,WU Zhonghu,LIU Jinyuan,WANG Yao,ZHANG Ronghua,AN Jingyu   

  1. College of Civil Engineering,Guizhou University,Guiyang 550025,China
  • Online:2026-03-15 Published:2026-04-02

摘要: 针对矿产资源开采后遗留的采空区频发的地质灾害及对废弃资源加工的绿色充填材料的需求,本研究
提出了采空区充填的磷石膏(PG)固废矿山充填材料替代传统水泥基材料的方案,旨在实现经济性与环境可持续性的
双重优化。以磷石膏作为胶凝材料并兼作骨料,联合赤泥、高炉矿渣和电石渣(CS),构建了一种多源固废协同体系,
制备磷石膏基固废矿山充填材料(PMFM)。通过流动度、凝结时间、抗压强度、浸出毒性及微观试验,系统评估了材料
工作性能、力学性能与环境安全性。结果表明,PG 掺量为70%、CS 掺量为2%时,试样28 d 抗压强度可达3. 94 MPa,
重金属浸出浓度低于地下水Ⅱ类标准,满足工程充填需求。水化产物主要为C-(A)-S-H 凝胶与钙矾石,显著提升了
材料致密性与固化能力。该体系实现了多种工业固废的资源化利用,为绿色矿山构建提供了理论依据与实践支撑。
关键词 充填材料 磷石膏 工业固废 环境安全性 微观表征

Abstract: In response to the frequent geological hazards occurring in goaf areas left after mineral extraction and the demand
for waste resource processing green filling materials,this study develops a phosphogypsum-based solid waste mine filling
material for goaf filling. The proposed material is intended to replace conventional cement-based binders,providing both economic
efficiency and environmental sustainability. Phosphogypsum (PG) was employed as both the cementitious binder and aggregate,
together with red mud,ground granulated blast-furnace slag,and carbide slag (CS),to develop a multi-source solid
waste synergistic system for the preparation of phosphogypsum-based solid waste mine filling material (PMFM). The workability,
mechanical strength,and environmental safety were systematically evaluated through tests on flowability,setting time,compressive
strength,leaching toxicity,and microstructure. The results show that when the PG content is 70% and the CS content is
2%,the 28-day compressive strength reaches 3. 94 MPa,and the concentrations of heavy metals in leachate are below the Class
Ⅱ groundwater standard,meeting the requirements for engineering filling. The main hydration products are C-(A)-S-H gels
and ettringite,which significantly improve the material′s compactness and solidification performance. This system enables the
resourceful utilization of multiple industrial solid wastes,providing both theoretical guidance and practical support for the development
of green mining.

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