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金属矿山 ›› 2024, Vol. 53 ›› Issue (3): 89-.

• 矿物工程 • 上一篇    下一篇

白云鄂博某难选铁矿石氢基矿相转化—磁选尾矿浮选稀土试验#br#

赵德贵1 陈宏超1 曾永杰1 刘文丽1 彭海平1 张艳清1 张智超1 
韩跃新2 高 鹏2 宁继来2
  

  1. 1. 包钢钢联股份有限公司白云选矿分公司,内蒙古 包头 014010;2. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2023-03-15 发布日期:2024-04-24
  • 基金资助:
    国家自然科学基金重点项目(编号:52130406)。

Experiment on Rare Earth Flotation from Hydrogen-based Mineral Phase Transformation-magnetic Separation Tailings for a Refractory Iron Ores in Bayan Obo

ZHAO Degui1 CHEN Hongchao1 ZENG Yongjie1 LIU Wenli1 PENG Haiping1 ZHANG Yanqing1#br#  ZHANG Zhichao1 HAN Yuexin2 GAO Peng2 NING Jilai2#br#   

  1. 1. Baiyun Beneficiation Branch Co. of Baotou Steel Union Co. ,Ltd. ,Baotou 014010,China; 2. School of Resources and Civil Engineering ,Northeastern University ,Shenyang 110819,China
  • Online:2023-03-15 Published:2024-04-24

摘要: 堆置多年的白云鄂博中贫氧化矿含有铁、稀土等成分,常规工艺难以高效分选,但氢基矿相转化—磁选 工艺可高效回收其中的铁。为了解氢基矿相转化过程是否影响富稀土铁尾矿中稀土矿物的可浮性,进行了系统的选 矿试验。结果表明,在506E 用量4 200 g/ t、水玻璃用量1 800 g/ t、矿浆温度65 ℃条件下,采用2 粗3 精、中矿顺序返 回闭路浮选流程处理矿样,能够获得REO 品位59. 00%、REO 回收率67. 91%的稀土精矿。化学成分分析及X 射线衍 射分析结果表明,浮选精矿中主要成分为稀土氧化物(Ce7O12)、独居石及少量萤石,稀土组分有效富集在精矿中;氢基 矿相转化过程未对稀土组分的浮选回收造成不利影响。

Abstract: The medium-poor oxidized ore in Bayan Obo deposited for many years contains iron,rare earth and other composition, which is difficult to be separated efficiently by conventional process,but the iron can be recovered efficiently by hydrogen- based ore phase transformation-magnetic separation process. In order to understand whether the phase conversion process of hydrogen-based ore affects the floatability of rare earth minerals in rare-earth-rich iron tailings,a systematic beneficiation test was carried out. The results showed that under the conditions of 506E dosage of 4 200 g/ t,sodium silicate dosage of 1 800 g/ t and slurry temperature of 65 ℃,the closed circuit flotation with two roughing and three cleaning achieved a rare earth ore concentrate with an REO grade of 59. 00% and an REO recovery of 67. 91%. Chemical composition analysis and X-ray diffraction showed that the main components were rare earth oxides (Ce7O12),monazite and a small amount of fluorite. The rare earth elements were effectively enriched in the concentrate,demonstrating that the hydrogen-based mineral phase transformation process did not adversely affect the flotation recovery of rare earth elements.