Study on Oxidation Kinetics and Mechanism of Copper Slag Under Non-isothermal Conditions

被引:3
|
作者
Zhang, Lili [1 ,2 ]
Yang, Hongwei [1 ,2 ]
机构
[1] Kunming Univ Sci & Technol, Fac Met & Energy Engn, Kunming 650093, Yunnan, Peoples R China
[2] Kunming Univ Sci & Technol, Natl Engn Res Ctr Vacuum Met, Kunming 650093, Yunnan, Peoples R China
基金
中国国家自然科学基金;
关键词
Copper slag; Non-isothermal kinetics; Oxidation; Thermogravimetry analysis; RECOVERY; REDUCTION;
D O I
10.1007/s42461-022-00614-z
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The oxidation behavior of copper smelting slag under non-isothermal conditions was studied by thermal analysis. The results indicate that the copper slag is mainly composed of fayalite (Fe2SiO4) and magnetite (Fe3O4). The oxidation behavior can be divided into two reaction stages with the increase in temperature; the first stage is the oxidation of fayalite to magnetite, and the second stage is the oxidation of magnetite to hematite. The two reaction stages cannot be strictly separated; that is, the reaction of fayalite is not complete, and magnetite has begun to transform into hematite. Based on the TG (thermogravimetric) curves, the ABS (Achar-Brindley-Sharp-Wendworth) differential and the Coats-Redfern integral methods were employed to investigate the oxidation kinetics of copper slag during the continuous heating process. The oxidation of fayalite into magnetite and amorphous silica phases occurs mainly in the temperature range of 673 to 1083 K. The activation energies calculated by the two methods are 193.69 and 195.52 kJ mol(-1), respectively. The reaction is consistent with Avrami-Erofeev equation, and the mechanism of oxidation is random nucleation and growth. The oxidation of magnetite to hematite occurs at 1083-1303 K. The activation energies are 308.79 and 328.77 kJ mol(-1), respectively. The mechanism conforms to the Jander equation and is controlled by the two-dimensional diffusion.
引用
收藏
页码:1587 / 1596
页数:10
相关论文
共 50 条
  • [1] Study on Oxidation Kinetics and Mechanism of Copper Slag Under Non-isothermal Conditions
    Lili Zhang
    Hongwei Yang
    Mining, Metallurgy & Exploration, 2022, 39 : 1587 - 1596
  • [2] Kinetics of magnetite oxidation under non-isothermal conditions
    Aref Sardari
    Eskandar Keshavarz Alamdari
    Mohammad Noaparast
    Sied Ziaedin Shafaei
    InternationalJournalofMineralsMetallurgyandMaterials, 2017, 24 (05) : 486 - 492
  • [3] Kinetics of magnetite oxidation under non-isothermal conditions
    Sardari, Aref
    Alamdari, Eskandar Keshavarz
    Noaparast, Mohammad
    Shafaei, Sied Ziaedin
    INTERNATIONAL JOURNAL OF MINERALS METALLURGY AND MATERIALS, 2017, 24 (05) : 486 - 492
  • [4] Kinetics of magnetite oxidation under non-isothermal conditions
    Aref Sardari
    Eskandar Keshavarz Alamdari
    Mohammad Noaparast
    Sied Ziaedin Shafaei
    International Journal of Minerals, Metallurgy, and Materials, 2017, 24 : 486 - 492
  • [5] Oxidation behavior of metallurgical silicon slag under non-isothermal and isothermal conditions
    Cao, Jianwei
    Lu, Jinshan
    Jiang, Longxiang
    Wang, Zhi
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2016, 124 (02) : 593 - 599
  • [6] Oxidation behavior of metallurgical silicon slag under non-isothermal and isothermal conditions
    Jianwei Cao
    Jinshan Lu
    Longxiang Jiang
    Zhi Wang
    Journal of Thermal Analysis and Calorimetry, 2016, 124 : 593 - 599
  • [7] Kinetics and mechanism of non-isothermal oxidation for FeO-SiO2-CaO ternary copper slag system
    Zhang, Lili
    Yue, Qiao
    Yang, HongWei
    REACTION KINETICS MECHANISMS AND CATALYSIS, 2021, 134 (02) : 903 - 916
  • [8] Kinetics and mechanism of non-isothermal oxidation for FeO–SiO2–CaO ternary copper slag system
    Lili Zhang
    Qiao Yue
    HongWei Yang
    Reaction Kinetics, Mechanisms and Catalysis, 2021, 134 : 903 - 916
  • [9] HYDROGEN OXIDATION UNDER NON-ISOTHERMAL CONDITIONS
    GONTKOVSKAYA, VT
    GORDOPOLOVA, IS
    OZERKOVSKAYA, NI
    COMBUSTION EXPLOSION AND SHOCK WAVES, 1988, 24 (01) : 48 - 55
  • [10] THE CRYSTALLIZATION KINETICS OF POLYETHYLENE UNDER ISOTHERMAL AND NON-ISOTHERMAL CONDITIONS
    CHEW, S
    GRIFFITHS, JR
    STACHURSKI, ZH
    POLYMER, 1989, 30 (05) : 874 - 881