首页> 外文会议>Annual Meeting Exhibition of The Minerals, Metals Materials Society >A Study of Processing High-Grade Magnetite Concentrates by Combination of Magnetic Separation and Reverse Flotation Separation to Prepare Raw Materials for Ferrite Magnet
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A Study of Processing High-Grade Magnetite Concentrates by Combination of Magnetic Separation and Reverse Flotation Separation to Prepare Raw Materials for Ferrite Magnet

机译:用磁分离和逆浮选分离组合加工高等磁铁矿浓缩物,以制备铁氧体磁体的原料

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Permanent magnets (PM) are critical components for electric motors and power generators. Non-rare earth (non-RE) PMs typically have small supply risks and low cost compared to rare earth element (REE) PMs. There is a try to purify super high-grade magnetic concentrate to prepare raw materials for ferrite magnet of non-RE PMs. Beneflciation of a high-grade (68%) iron ore concentrate was investigated by combination of the low-intensity magnetic separation and reverse flotation methods. The granulometric composition was determined by laser particle size analyzer. Element analysis was assessed by semiquantitative XRF analysis, and mineralogical composition was evaluated by powder X-ray diffraction. The effects of the magnetic field intensity during magnetic separation were investigated on the performance of the wet low-intensity magnetic separation (WLIMS). The optimum flotation conditions of starch as depressant were determined. With the combination of magnetic separation and reverse flotation separation, product of >72% Fe and <0.2% silicate grade was produced for preparing ferrite magnet.
机译:永磁体(PM)是电动机和发电机的关键部件。与稀土元素(REE)PMS相比,非稀土(非RE)PMS通常具有小的供应风险和低成本。有试图纯化超级高级磁性浓缩物,以制备非重新重新进入铁氧体磁体的原料。采用低强度磁分离和逆浮选方法的组合研究了高等级(68%)铁矿石浓缩物的益处。通过激光粒度分析仪测定粒度组合物。通过半定位XRF分析评估元素分析,通过粉末X射线衍射评价矿物质组合物。研究了磁性分离过程中的磁场强度的影响,对湿低强度磁分离(WLIM)的性能进行了研究。确定淀粉作为抑制剂的最佳浮选条件。通过磁性分离和反向浮选分离的组合,制备> 72%Fe和<0.2%硅酸盐等级的产物,用于制备铁氧体磁体。

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