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现代矿业 ›› 2026, Vol. 42 ›› Issue (02): 65-69,73.

• 矿物加工工程 • 上一篇    下一篇

酒钢难选铁矿石悬浮磁化焙烧—磁选试验研究

李博超1 秦丽娜1 郭 忆1 边立国1 涂 威1 樊庆龙2,3 靳建平2,3   

  1. 1. 酒泉钢铁(集团)有限责任公司;2. 矿物加工科学与技术全国重点实验室; 3. 东北大学资源与土木工程学院
  • 出版日期:2026-02-25 发布日期:2026-03-10

Experimental Study on Suspension Magnetizing Roasting and Magnetic Separation of a Refractory Iron Ore from JISCO

  1. 1. Jiuquan Iron & Steel(Group)Co.,Ltd.;2. State Key Laboratory of Mineral Processing; 3. School of Resources and Civil Engineering,Northeastern University
  • Online:2026-02-25 Published:2026-03-10

摘要: 磁化焙烧工艺是处理复杂难选铁矿石最有效的手段之一。为高效开发国内复杂难 选铁矿资源,以酒钢难选铁矿为研究对象,在工艺矿物学分析基础上,系统开展了悬浮磁化焙烧— 磁选分离试验研究。原矿中主要有用矿物为赤铁矿和菱铁矿,通过系统考察焙烧温度、CO 浓度、 焙烧时间、磨矿细度及磁场强度等关键参数对分选指标的影响,确定了最佳工艺条件。悬浮磁化 焙烧—磁选试验结果表明,在焙烧温度 475 ℃、焙烧时间 8 min、CO 浓度 20%、磨矿细度-0.1 mm、磁 场强度 144 kA/m 的条件下,获得了铁品位 55.97%、铁回收率 93.52% 的磁选精矿。XRD 与化学成分 分析表明,磁选精矿中磁铁矿含量增加,杂质成分如SiO2、Ba、S、K等显著降低,验证了该工艺在提升 铁品位和降低有害元素方面的有效性。物相分析及SEM分析表明,焙烧后赤铁矿和菱铁矿基本转化 为磁铁矿,磁选精矿中铁主要以磁性铁形式存在,分布率达93.23%。研究结果说明磁化焙烧—磁选 工艺对铁矿物具有良好的富集效果。

关键词: 难选铁矿, 磁化焙烧, 还原, 磁选

Abstract: uquan Iron and Steel Co.,Ltd. and systematically conducted experimental re⁃ search on suspension magnetizing roasting—magnetic separation based on process mineralogy analysis. The primary valuable minerals in the raw ore are hematite and siderite. By systematically investigating the influence of key parameters:roasting temperature,CO concentration,roasting time,grinding fineness, and magnetic field intensity on separation performance,the optimal process conditions were determined. The results of the suspension magnetizing roasting—magnetic separation tests showed that under the condi⁃ tions of a roasting temperature of 475 ℃,roasting time of 8 minutes,CO concentration of 20%,grinding fineness of -0.1 mm,and magnetic field intensity of 144 kA/m,a magnetic concentrate with an iron grade of 55.97% and an iron recovery rate of 93.52% was obtained. XRD and chemical composition analyses indi⁃ cated that the magnetite content in the magnetic concentrate increased,while impurity components such as SiO₂,Ba,S,and K were significantly reduced,validating the effectiveness of this process in enhancing iron grade and reducing harmful elements. Phase analysis and SEM analysis revealed that after roasting, hematite and siderite were almost completely converted into magnetite. In the magnetic concentrate,iron mainly existed in the form of magnetic iron,with a distribution rate reaching 93.23%. The research find⁃ ings demonstrate that the magnetizing roasting—magnetic separation process has a favorable enrichment ef⁃ fect on iron minerals.

Key words: refractory iron ore, magnetizing roasting, reduction, magnetic separation