Research on efficient utilization of high-phosphorus oolitic hematite for iron enrichment and dephosphorization by hydrogen mineral phase transformation
Research on efficient utilization of high-phosphorus oolitic hematite for iron enrichment and dephosphorization by hydrogen mineral phase transformation
丁浩源 1袁帅 2高鹏 1张洪浩 1王若枫 1雷顺林1
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作者信息
1. School of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China;National-local Joint Engineering Research Center of High-efficient Exploitation Technology for Refractory Iron Ore Resources,Shenyang 110819,China
2. School of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China;National-local Joint Engineering Research Center of High-efficient Exploitation Technology for Refractory Iron Ore Resources,Shenyang 110819,China;State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization,Kunming 650093,China
The paper proposes the innovative technology of hydrogen mineral phase transformation-magnetic separation-acid leaching for iron enrichment and dephosphorization,based on the mineralogical characteristics of high phosphorus oolitic hematite and difficulties that make it difficult to utilize traditional beneficiation for separation.The influences of the reduction temperature,reduction time,and reductant concentration during hydrogen mineral phase transformation on the separation index of high phosphorus oolitic hematite were investigated.The optimal conditions were determined to be a reduction time of 25 min with a reductant concentration of 30%and a reduction temperature of 540℃,under which an iron grade of 65.05%,iron total recovery of 81.86%,and phosphorus content of 0.081%were obtained for the iron concentrate.The evolution of mineral phases,magnetic properties,and mineral microstructures was investigated by XRD,VSM,XPS,SEM,and BET.The results provide new references of technology and theoretical support for the efficient utilization of refractory iron ores.
关键词
高磷鲕状赤铁矿/氢基矿相转化/磁学特性/微观结构/高效利用
Key words
high-phosphorus oolitic hematite/hydrogen mineral phase transformation/magnetic properties/microstructure/efficient utilization
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基金项目
National Key Research and Development Program of China(2021YFC2902404)
Excellent Youth Natural Science Foundation of Liaoning Province,China(2023JH3/10200010)