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金属矿山 ›› 2026, Vol. 55 ›› Issue (4): 125-133.

• 矿物工程 • 上一篇    下一篇

微细粒贫磁铁矿高效分选关键技术与研究进展

袁改革,马兴宇,王瑞洁,王嘉泽,郭小飞   

  1. 辽宁科技大学矿业工程学院,辽宁 鞍山 114051
  • 出版日期:2026-04-15 发布日期:2026-05-08
  • 通讯作者: 郭小飞(1985—),男,教授,博士,硕士研究生导师。
  • 作者简介:袁改革(1998—),男,硕士研究生。
  • 基金资助:
    辽宁省“兴辽英才计划”项目(编号:XLYC20020208)。

Key Technologies and Research Advances in Efficient Separation of Fine-Grained Lean Magnetite

YUAN Gaige,MA Xingyu,WANG Ruijie,WANG Jiaze,GUO Xiaofei   

  1. School of Mining Engineering,University of Science and Technology Liaoning,Anshan 114051,China
  • Online:2026-04-15 Published:2026-05-08

摘要: 我国铁矿资源呈现出“贫、细、杂”的显著特征,微细粒贫磁铁矿的高效利用已成为选矿领域的关键难
题。本文旨在系统综述此类矿石的资源特性、分选难点及技术进展。文章首先概述了其资源概况与基本特征对分选
的影响;进而,通过综合评述近年来的研究成果,重点分析了三项核心技术的发展现状与应用效果:新型碎磨技术(高
压辊磨机与塔磨机)通过提升解离度与践行“多碎少磨”原则,在节能降耗的同时优化了分选指标;磁重复合力场分选
设备(以磁选柱为代表)可有效提高精矿品质,并具备放粗磨矿细度以降低能耗的潜力;弱磁-反浮选工艺则能高效破
除磁团聚夹杂,在提铁降硅的同时减少阶段磨矿量。结论表明,上述技术的综合应用是解决微细粒贫磁铁矿高效分
选问题的有效途径。最后,对相关技术的发展方向进行了展望。

关键词: 微细粒贫磁铁矿, 选矿技术 , 新型碎磨技术 , 磁重复合力场 , 弱磁选-反浮选

Abstract: Iron ore resources in China are increasingly characterized by low grade,fine dissemination,and complex composition,
making the efficient processing of fine-grained lean magnetite a critical challenge in mineral processing. This paper
aims to systematically review the resource characteristics,processing difficulties,and technological advancements for this type of
ore. It begins by outlining the resource overview and the impact of its basic characteristics on separation. Subsequently,by synthesizing
recent research,the paper focuses on analyzing the current status and application effectiveness of three core technologies.
① Novel comminution technologies (High-Pressure Grinding Rolls and Tower Mills),which enhance mineral liberation
and adhere to the principle of "more crushing and less grinding," optimizing separation indices while saving energy;② Magnetic-
gravity combined force field separation equipment (exemplified by magnetic separation columns),which effectively improves
concentrate quality and shows potential in coarsening the grinding fineness to reduce energy consumption;③ Low-intensity
magnetic separation-reverse flotation technology,which efficiently disrupts magnetic entrainment,achieving iron upgrade
and silica reduction while decreasing the required grinding stages. The conclusion indicates that the integrated application of
these technologies provides an effective pathway for the efficient processing of fine-grained lean magnetite. Finally,future development
directions for related technologies are discussed.

Key words: fine-grained lean magnetite,mineral processing technology,novel comminution technology,magnetic-gravity
combined force field,low-intensity magnetic separation-reverse flotation

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