Recovery of valuable metals from a low-grade nickel ore using an ammonium sulfate roasting-leaching process

被引:0
作者
Xin-wei Liu
Ya-li Feng
Hao-ran Li
Zhi-chao Yang
Zhen-lei Cai
机构
[1] University of Science and Technology,Civil and Environmental Engineering School
[2] Chinese Academy of Science,National Key State Laboratory of Biochemical Engineering, Institute of Process Engineering
来源
International Journal of Minerals, Metallurgy, and Materials | 2012年 / 19卷
关键词
nickel ore treatment; ammonium sulfate; roasting; leaching; kinetics; diffusion;
D O I
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中图分类号
学科分类号
摘要
Metal leaching from a low-grade nickel ore was investigated using an ammonium sulfate roasting-water leaching process. The nickel ore was mixed with ammonium sulfate, followed by roasting and finally leaching with water. During the process the effects of the amount of ammonium sulfate, roasting temperature, and roasting time on the leaching recovery of metal elements were analyzed. The optimum technological parameters were determined as follows: ammonium sulfate/ore ratio, 0.8 g/g; roasting temperature, 400°C; and roasting time, 2 h. Under the optimum condition the leaching recoveries of Ni, Cu, Fe, and Mg were 83.48%, 76.24%, 56.43%, and 62.15%, respectively. Furthermore, the dissolution kinetics of Ni and Mg from the nickel ore was studied. The apparent activation energies for the leaching reaction of Ni and Mg were 18.782 and 10.038 kJ·mol−1, which were consistent with the values of diffusion control reactions. Therefore, the results demonstrated that the leaching recoveries of Ni and Mg were controlled by diffusion.
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页码:377 / 383
页数:6
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共 51 条
  • [1] Agrawal A.(2007)Recovery of nickel powder from copper bleed electrolyte of an Indian copper smelter by electrolysis Powder Technol 177 133-undefined
  • [2] Bagchi D.(2009)Column bioleaching of a low grade nickel-bearing sulfide ore containing high magnesium as olivine, chlorite and antigorite Hydrometallurgy 96 337-undefined
  • [3] Kumari S.(2005)Development and implementation of a new flowsheet for the flotation of a new grade nickel ore Int. J. Miner. Process. 78 49-undefined
  • [4] Kumar V.(2005)Pentlandite-lizardite interactions and implications for their separation by flotation Colloids Surf. A 252 207-undefined
  • [5] Pandey B.D.(2005)The contribution of direct and indirect actions in bioleaching of pentlandite Hydrometallurgy 80 59-undefined
  • [6] Zhen S.J.(2006)Bacterial leaching of nickel-bearing pyrrhotite Hydrometallurgy 82 172-undefined
  • [7] Yan Z.Q.(2004)Bioleaching the open stripe nickel ore in Jinchuan Mine of China J. Univ. Sci. Technol. Beijing 26 584-undefined
  • [8] Zhang Y.S.(2001)Influence of Ni Hydrometallurgy 61 151-undefined
  • [9] Wang J.(2001) and Mg Miner. Eng. 14 113-undefined
  • [10] Cambell M.(2009) on the growth and activity of Cu Chin. J. Process Eng. 9 264-undefined