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现代矿业 ›› 2026, Vol. 42 ›› Issue (08): 205-209.

• 安全·环保 • 上一篇    下一篇

矿山酸性废水治理技术研究进展

张 景1,2   

  1. 1. 中钢集团马鞍山矿山研究总院股份有限公司;2. 马鞍山市废水资源化利用工程技术研究中心
  • 出版日期:2026-08-25 发布日期:2026-08-21

Research Progress on Treatment Technologies of Acid Mine Drainage

ZHANG Jing1,2   

  1. 1. Sinosteel Maanshan General Institute of Mining Research Co.,Ltd.; 2. Maanshan Engineering Technology Research Center of Wastewater Resource Utilization
  • Online:2026-08-25 Published:2026-08-21

摘要: 为系统阐明矿山酸性废水(AMD)的污染本质,推动治理模式向绿色低碳与资源循环 方向升级,首先梳理了 AMD 的成因机制,综合评估中和沉淀、混凝絮凝及吸附等传统工艺在药剂 消耗、污泥产量、选择性去除及二次污染等方面的局限性;继而重点归纳分级中和、生物协同处理 与人工湿地等组合工艺的技术优势,阐明其通过分段 pH 调控实现金属逐级沉淀、降低石灰用量与 污泥产率的作用机理。进一步阐释了硫酸盐还原菌(SRB)介导的生物还原过程在同步中和酸性、 促进重金属硫化物沉淀及减少固废方面的功能;同时评估有价金属(锰、锌等)回收及处理残渣制 备磷吸附材料等资源化路径的可行性;最后指出综合治理与生态修复一体化策略在源头阻断、过 程调控、末端净化与生态重建协同中的实践价值。单一技术难以兼顾高效性、经济性与可持续性, 而多技术耦合、精细化过程控制与资源回收深度融合的定制化解决方案,可显著提升治理效能与 环境兼容性。针对不同矿区的水文地质条件与污染谱系,构建适配性强、低碳长效的集成治理模 式,是实现 AMD 科学管控与矿区生态可持续修复的关键路径。

关键词: 矿山酸性废水, 重金属污染, 资源化利用, 生态修复

Abstract: In order to systematically clarify the pollution nature of acid mine drainage (AMD) and pro⁃ mote the upgrading of treatment mode to green,low-carbon and resource recycling,the formation mecha⁃ nism of AMD was firstly sorted out,and the limitations of traditional processes such as neutralization sedi⁃ mentation,coagulation flocculation and adsorption in terms of reagent consumption,sludge production,se⁃ lective removal and secondary pollution were comprehensively evaluated. Then,the technical advantages of combined processes such as grading neutralization,biological synergistic treatment and constructed wet⁃ land were summarized,and the mechanism of metal stepwise precipitation,reducing lime dosage and sludge yield by segmented pH regulation was clarified. The functions of sulfate reducing bacteria (SRB) -mediated biological reduction process in simultaneous neutralization of acidity,promotion of heavy metal sulfide pre⁃ cipitation and reduction of solid waste were further explained. At the same time,the feasibility of recycling valuable metals (manganese,zinc,etc.) and the preparation of phosphorus adsorption materials from waste residue were evaluated. Finally,the practical value of the integrated strategy of comprehensive management and ecological restoration in the coordination of source blocking,process control,end purification and eco⁃ logical reconstruction was pointed out. It is difficult for a single technology to balance efficiency,economy and sustainability. The customized solution of multi-technology coupling,refined process control and re⁃ source recovery can significantly improve governance efficiency and environmental compatibility. According to the hydrogeological conditions and pollution pedigree of different mining areas,it is the key path to real⁃ize the scientific management and control of AMD and the sustainable ecological restoration of mining areas to construct an integrated management model with strong adaptability,low carbon and long-term effect.

Key words: Acid Mine Drainage(AMD), heavy metal pollution, resource recovery, ecological restora? tion