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现代矿业 ›› 2026, Vol. 42 ›› Issue (06): 137-140.

• 矿物加工工程 • 上一篇    下一篇

南非某低品位铬铁矿选矿试验研究

卢 昊1,2 吕廷蛟3 王 前1,2 王兆连1,2 彭少伟1,2 刘风亮1,2   

  1. 1. 山东省智能磁电装备与选矿技术重点实验室;2. 山东华特磁电集团股份有限公司; 3. 临朐县自然资源和规划局
  • 出版日期:2026-06-25 发布日期:2026-07-27

Experimental Study on Beneficiation of a Low-grade Chromite Ore in South Africa

LU Hao1,2 LYU Tingjiao3 WANG Qian1,2 WANG Zhaolian1,2 PENG Shaowei1,2 LIU Fengliang1,2   

  1. 1. Shandong Provincial Key Laboratory of Intelligent Magnetic-Electrical Equipment and Mineral Process⁃ ing Technology;2. Shandong Huate Magnet Technoiogy Co.,Ltd;3. Linqu County Natural Resources and Planning Bureau
  • Online:2026-06-25 Published:2026-07-27

摘要: 针对南非某低品位铬铁矿石,开展了系统的选矿工艺探索。原矿 Cr₂O₃品位为 23.78%,主要金属矿物为铬铁矿,主要脉石矿物为橄榄石、斜长石及石英,其中 SiO₂含量为 22.37%。 试验采用“破碎—分级—X 射线智能分选—干式强磁选—磨矿—立环粗选—平板精选”的联合工 艺。具体流程为原矿破碎至-60 mm 后经 10 mm 分级,60~10 mm 粒级经 X 射线智能分选机预选抛 废,预选精矿与-10 mm 粒级混合后经高压辊磨至-3 mm,再经 CFLJ 磁选机 1 粗 1 扫干式磁选,所得 粗选与扫选混合精矿磨至-0.15 mm,依次经立环高梯度磁选机粗选和平板磁选机精选。全流程试 验获得 Cr₂O₃品位 46.12%、回收率 72.78% 的合格铬精矿产品。该工艺有效解决了低品位铬铁矿与 脉石矿物嵌布紧密、单体解离困难等问题,显著提高了精矿品位和回收率。研究成果为南非低品 位铬铁矿资源的高效开发利用提供了技术依据,并可根据不同矿区矿石特性对抛废率、磨矿细度 等参数进行调整,具有良好的工业应用前景和推广价值。

关键词: 铬铁矿, X射线智能分选, 强磁预选, 板式磁选机

Abstract: A systematic exploration of beneficiation process was carried out for a low-grade chromite ore in South Africa. The grade of Cr2O3 in the raw ore is 23.78%. The main metal mineral is chromite,and the main gangue minerals are olivine,plagioclase and quartz. The content of SiO2 is 22.37%. The test ad⁃ opted the combined process of crushing-classification-X-ray intelligent separation-dry high intensity mag⁃ netic separation-grinding-vertical ring roughing-plate cleaning. The specific process is as follows: the raw ore is crushed to -60 mm and then graded by 10 mm; the 60~10 mm grade is pre-selected and discarded by X-ray intelligent separator; the pre-selected concentrate is mixed with -10 mm grade and then milled to - 3 mm by high pressure grinding roller,and then subjected to one roughing and one scavenging dry magnetic separation by CFLJ magnetic separator. The obtained mixed concentrate of roughing and scaveng⁃ ing was ground to -0.15 mm,and then subjected to roughing by vertical ring high gradient magnetic sepa⁃ rator and cleaning by flat magnetic separator. Cr2O3 grade of 46.12% and recovery of 72.78% of qualified chromium concentrate products were obtained by the whole process test. The process effectively solves the problems of low-grade chromite and gangue minerals being closely embedded and difficult to monomer dis⁃ sociation,and significantly improves the concentrate grade and recovery rate. The research results provide a technical basis for the efficient development and utilization of low-grade chromite resources in South Afri⁃ ca,and can adjust the parameters such as discarding rate and grinding fineness according to the ore char⁃ acteristics of different mining areas,which has good industrial application prospects and promotion value.

Key words: chromite, X-ray intelligent sorting, high-intensity magnetic pre-concentration, plate mag? netic separator