Behavior of magnesium in saprolite nickel laterite by carbothermic reduction in vacuum

被引:0
|
作者
机构
[1] [1,2,Luo, Qi
[2] 1,2,Qu, Tao
[3] 1,2,Liu, Da-Chun
[4] 1,2,Xu, Bao-Qiang
[5] 1,2,Yang, Bin
[6] 1,2,Dai, Yong-Nian
来源
Qu, T. (qutao_82@126.com) | 2012年 / Central South University of Technology卷 / 43期
关键词
Chemical composition analysis - Condensing systems - Critical temperatures - Nickel laterite - Reduction process - Reduction ratios - Solid state reduction - Vacuum metallurgy;
D O I
暂无
中图分类号
学科分类号
摘要
The thermodynamic of vacuum carbothermic reduction of Yuanjiang saprolite nickel laterite and the mineral phases transformation and the volatilization and condensation mechanisms of Mg were researched, and the vacuum carbothermic reduction behavior of Mg in saprolite nickel laterite was also researched by means of XRD, SEM-EDS and chemical composition analysis. The results show that the reaction between MgO and C is solid-state reduction in vacuum and the critical temperature is 1467 K. The reduction Mg will extremely volatilized, and desublimated in condensing system. The SiC, Fe-Si alloy, Mg2SiO4, Mg and SiO are found during the reduction processes, and then the SiO disproportionates into Si and SiO2 in the condensing system. With the increases of temperature, carbon content and reaction time, the reduction ratio of Mg increases significantly; The catalytic effect are different from the kinds of additives, especially, CaO and CaF2 have better catalytic effect than other additives. Mg reacted with CO, O2 and Si transforms into MgO or Mg2Si in condensing system at low temperature, in which the purity of Mg metal decreases.
引用
收藏
相关论文
共 50 条
  • [41] Behavior Analysis of CaF2 in Magnesia Carbothermic Reduction Process in Vacuum
    Tian, Yang
    Qu, Tao
    Yang, Bin
    Dai, Yong-Nian
    Xu, Bao-Qiang
    Geng, Sen
    METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, 2012, 43 (03): : 657 - 661
  • [42] Thermodynamic analysis of the carbothermic reduction roasting of a nickeliferous limonitic laterite ore
    Pickles, C. A.
    Forster, J.
    Elliott, R.
    MINERALS ENGINEERING, 2014, 65 : 33 - 40
  • [43] Ferronickel particle formation during the carbothermic reduction of a limonitic laterite ore
    Elliott, R.
    Pickles, C. A.
    Peacey, J.
    MINERALS ENGINEERING, 2017, 100 : 166 - 176
  • [44] Analysis of Magnesia Carbothermic Reduction Process in Vacuum
    Yang Tian
    Bao-qiang Xu
    Cheng-bo Yang
    Bin Yang
    Tao Qu
    Hong-xiang Liu
    Yong-nian Dai
    Da-chun Liu
    Metallurgical and Materials Transactions B, 2014, 45 : 1936 - 1941
  • [45] Analysis of Magnesia Carbothermic Reduction Process in Vacuum
    Tian, Yang
    Xu, Bao-Qiang
    Yang, Cheng-Bo
    Yang, Bin
    Qu, Tao
    Liu, Hong-Xiang
    Dai, Yong-Nian
    Liu, Da-Chun
    METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, 2014, 45 (05): : 1936 - 1941
  • [46] Calcination and reduction of laterite nickel ores
    Orth, A
    Kerstiens, B
    INTERNATIONAL LATERITE NICKEL SYMPOSIUM-2004, 2004, : 493 - 502
  • [47] Selective Reduction of Laterite Nickel Ore
    Pintowantoro, Sungging
    Abdul, Fakhreza
    MATERIALS TRANSACTIONS, 2019, 60 (11) : 2245 - 2254
  • [48] Study on Carbothermic Reduction of Titanium Dioxide in Vacuum
    Xu Bao-qiang
    Yang Bin
    He Jian-ping
    Seng Wei
    Dai Yong-nian
    Liu Da-chun
    VACUUM TECHNOLOGY AND SURFACE ENGINEERING - PROCEEDINGS OF THE 9TH VACUUM METALLURGY AND SURFACE ENGINEERING CONFERENCE, 2009, : 499 - +
  • [49] Carbothermic Reduction and Chlorination of Alumina with Coal in Vacuum
    Yu Qingchun
    Wang Pingyan
    Yang Bin
    Cui Chonglong
    Zhang Han
    Wang Chen
    MANUFACTURING SCIENCE AND MATERIALS ENGINEERING, PTS 1 AND 2, 2012, 443-444 : 862 - +
  • [50] Effect of Co-Reduction Conditions of Nickel Laterite Ore and Red Mud on Ferronickel Particle Size Characteristics and Grindability of Carbothermic Reduction Products
    Guo, Xiaoshuang
    Li, Zhengyao
    Wang, Zijun
    Sun, Tichang
    MINERALS, 2022, 12 (03)