A Sulfide Capacity Prediction Model of CaO-SiO2-MgO-FeO-MnO-Al2O3 Slags during the LF Refining Process Based on the Ion and Molecule Coexistence Theory

被引:0
|
作者
Xue-Min Yang
Meng Zhang
Cheng-Bin Shi
Guo-Ming Chai
Jian Zhang
机构
[1] Institute of Process Engineering,State Key Laboratory of Multiphase Complex Systems
[2] Chinese Academy of Sciences,School of Metallurgical and Ecological Engineering
[3] University of Science and Technology Beijing,undefined
[4] Institute of Process Engineering,undefined
[5] Chinese Academy of Sciences,undefined
来源
Metallurgical and Materials Transactions B | 2012年 / 43卷
关键词
Molten Steel; Sulfide Capacity; Optical Basicity; Ladle Furnace; Desulfurization Reaction;
D O I
暂无
中图分类号
学科分类号
摘要
A sulfide capacity prediction model of CaO-SiO2-MgO-FeO-MnO-Al2O3 ladle furnace (LF) refining slags has been developed based on the ion and molecule coexistence theory (IMCT). The predicted sulfide capacity of the LF refining slags has better accuracy than the measured sulfide capacity of the slags at the middle and final stages during the LF refining process. Increasing slag binary basicity, optical basicity, and the Mannesmann index can lead to an increase of the predicted sulfide capacity for the LF refining slags as well as to an increase of the sulfur distribution ratio between the slags and molten steel at the middle and final stages during the LF refining process. The calculated equilibrium mole numbers, mass action concentrations of structural units or ion couples, rather than mass percentages of components, are recommended to represent the slag composition for correlating with the sulfide capacity of the slags. The developed sulfide capacity IMCT model can calculate not only the total sulfide capacity of the slags but also the respective sulfide capacity of free CaO, MgO, FeO, and MnO in the slags. The comprehensive contribution of the combined ion couples (Ca2+ + O2−) and (Mn2+ + O2−) on the desulfurization reactions accounts for 96.23 pct; meanwhile, the average contribution of the ion couple (Fe2+ + O2−) and (Mg2+ + O2−) only has a negligible contribution as 3.13 pct and 0.25 pct during the LF refining process, respectively. The oxygen activity of bulk molten steel in LF is controlled by the [Al]–[O] equilibrium, and the oxygen activity of molten steel at the slag–metal interface is controlled by the (FeO)–[O] equilibrium. The ratio of the oxygen activity of molten steel at the slag–metal interface to the oxygen activity of bulk molten steel will decrease from 37 to 5 at the initial stage, and further decrease from 28 to 4 at the middle stage, but will maintain at a reliable constant as 5 to 14 at the final stage during the LF refining process. The proposed high-oxygen potential layer of molten steel beneath the slag–metal interface can be quantitatively verified.
引用
收藏
页码:241 / 266
页数:25
相关论文
共 34 条
  • [21] SULFIDE CAPACITIES OF CAO-MGO-SIO2-AL2O3 SLAGS CONTAINING SMALL AMOUNTS OF CR2O3
    DRAKALIYSKY, E
    SRINIVASAN, NS
    STAFFANSSON, LI
    SCANDINAVIAN JOURNAL OF METALLURGY, 1991, 20 (04) : 251 - 255
  • [22] Sulfide Capacity of CaO-SiO2-MgO-Al2O3-BaO-Na2O Slag at 1773 K
    Liu, Wenguo
    Chen, Yanbiao
    Wang, Jingsong
    Zuo, Haibin
    JOURNAL OF SUSTAINABLE METALLURGY, 2021, 7 (03) : 1169 - 1177
  • [23] Viscosity Model for Iron Blast Furnace Slags in SiO2-Al2O3-CaO-MgO System
    Han, Chen
    Chen, Mao
    Zhang, Weidong
    Zhao, Zhixing
    Evans, Tim
    Nguyen, Anh V.
    Zhao, Baojun
    STEEL RESEARCH INTERNATIONAL, 2015, 86 (06) : 678 - 685
  • [24] Sulphide capacity of CaO-SiO2-Al2O3-MgO-TiO2-FetO slag with high titanium and high FeO content based on HIsmelt process
    Gao, Yanjia
    Liu, Ran
    Lan, Chenchen
    Chen, Shujun
    Wang, Yan
    Yan, Guangshi
    Lyu, Qing
    IRONMAKING & STEELMAKING, 2023, 50 (08) : 991 - 998
  • [25] Sulfide Capacity of CaO–SiO2–MgO–Al2O3–BaO–Na2O Slag at 1773 K
    Wenguo Liu
    Yanbiao Chen
    Jingsong Wang
    Haibin Zuo
    Journal of Sustainable Metallurgy, 2021, 7 : 1169 - 1177
  • [26] Sulphide capacity of CaO-SiO2-8%MgO-Al2O3-BaO slags ranging from 0% to 5% in BaO
    Ju, Jiantao
    Liu, Wenguo
    Xing, Xiangdong
    Wang, Jing
    An, Jialiang
    METALLURGICAL RESEARCH & TECHNOLOGY, 2018, 116 (01)
  • [27] Viscosity and viscosity estimation model of fully liquid slags in TiO2-Al2O3-CaO-SiO2 and TiO2-Al2O3-CaO-SiO2-MgO systems with high TiO2 concentration and low mass ratio of CaO to SiO2
    Dong, X. -J.
    Sun, H. -Y.
    She, X. -F.
    Xue, Q. G.
    Wang, J. -S.
    IRONMAKING & STEELMAKING, 2014, 41 (02) : 99 - 106
  • [28] RELATIONSHIP BETWEEN THE CALCULATED OXYGEN ACTIVITY AND THE SULFUR PARTITION RATIO FOR CaO-Al2O3-SiO2-MgO SLAG DURING LADLE REFINING
    Slovic, Zoran
    Raic, Karlo T.
    Nedeljkovic, Ljubomir
    Volkov-Husovic, Tatjana
    MATERIALI IN TEHNOLOGIJE, 2012, 46 (06): : 683 - 688
  • [29] Sulphide capacity prediction of CaO-SiO2-MgO-Al2O3slag system by using regularized extreme learning machine
    Xin, Zi-Cheng
    Zhang, Jiang-Shan
    Lin, Wen-Hui
    Zhang, Jun-Guo
    Jin, Yu
    Zheng, Jin
    Cui, Jia-Feng
    Liu, Qing
    IRONMAKING & STEELMAKING, 2021, 48 (03) : 275 - 283
  • [30] Influence Mechanism of Ce2O3 on Dephosphorization Process using CaO-Al2O3-SiO2-MnO Based Slag
    Sun, Jiali
    Liu, Chengjun
    Jiang, Maofa
    ISIJ INTERNATIONAL, 2022, 62 (03) : 515 - 523