超贫磁铁矿选矿研究现状及综合利用进展

    Research status and comprehensive utilization progress of ultra-low-grade magnetite ore dressing

    • 摘要: 我国铁矿石资源禀赋以“贫、细、杂”为主,对外依存度高,高效开发利用超贫磁铁矿资源对保障国家资源安全具有重要意义。本文系统综述了我国超贫磁铁矿的资源特征、开发利用现状、核心选矿技术及尾矿综合利用的进展。超贫磁铁矿矿物嵌布粒度细、伴生组分复杂,“高压辊磨-预抛尾技术”可有效降低入磨矿量,提升入选品位,“阶段磨矿-磁选-反浮选”联合工艺是实现铁精矿提质降杂的主流技术路线,其中,反浮选技术是生产高纯铁精矿的核心手段。有价组分的协同回收、建材制备、生态修复基质替代,以及CO2矿化封存等技术,为超贫磁铁矿尾矿的综合利用提供了新路径。

       

      Abstract: China’s iron ore resource endowment is predominantly characterized by low grade, fine dissemination, and complex composition, coupled with a high reliance on external supplies. Thus, the efficient exploitation and utilization of ultra-low-grade magnetite resources hold profound significance for safeguarding national resource security. This paper offers a systematic overview of the resource attributes, development and utilization status, cutting-edge beneficiation technologies, and advancements in the comprehensive utilization of tailings concerning ultra-low-grade magnetite in China. Given the fine particle size of mineral intergrowth and the intricate associated components in ultra-low-grade magnetite, the “high-pressure grinding roll combined with pre-discarding of tailings” technology can effectively reduce the feed for grinding and elevate the feed grade. The integrated process of “staged grinding-magnetic separation - reverse flotation” stands as the mainstream technical route for upgrading iron concentrates and reducing impurities, with reverse flotation serving as the pivotal approach for producing high-purity iron concentrates. Furthermore, technologies encompassing the synergistic recovery of valuable components, the fabrication of construction materials, the substitution of substrates for ecological restoration, and CO2 mineralization and sequestration, have opened up innovative avenues for the comprehensive utilization of ultra-low-grade magnetite tailings.

       

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