Numerical study on the mixing process of hot desulfurization slag and converter steel slag

被引:4
|
作者
Wang, Shuai [1 ]
Wen, Zhi [1 ]
Dou, Ruifeng [1 ]
Xiao, Yongli [2 ]
Guan, Yunze [2 ]
Liu, Xunliang [1 ]
机构
[1] Univ Sci & Technol Beijing, Sch Energy & Environm Engn, Beijing 100083, Peoples R China
[2] Baoshan Iron & Steel Co Ltd, Energy & Environm Res Inst, Cent Res Inst, Shanghai 201999, Peoples R China
关键词
Iron desulfurization slag; Converter steel slag; Mixing process; Simulation; SIMULATION;
D O I
10.1016/j.csite.2022.102561
中图分类号
O414.1 [热力学];
学科分类号
摘要
Slag mixing technique is a process that eliminates the lumping phenomenon of slag and iron in desulfurization slag. This process is conducted by mixing the high-temperature converter slag and iron desulfurization slag. The slag crushing difficulty is remarkably reduced after mixing. This technique eliminates the lumping phenomenon in the iron desulfurization slag. A numerical model based on Eulerian multiphase flow was established for the mixing process. The model obtained the characteristics of the phase field distribution inside the slag tank. The slag expansion phenomenon was identical with experimental results. A simplified temperature dropping model of slag mixing process was established based on the principle of energy conservation. According to this simplified model, the time dependence of the chemical reaction rate and temperature was investigated. The simplified model built by multifactor regression method can effectively predict the chemical reaction rate and temperature change under the following conditions: converter slag with an initial mass of 4-12 t, an initial iron oxide content of 20%-40%, an iron desulfurization slag mixing volume of 1-5 t, and an iron desulfurization slag mass flow rate of 0.1-1 t/s. The simplified model provides basic physical parameters for post-processing while ensuring safe production.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] A Physical Modeling Study on Slag Behavior in the AOD Converter Process
    Lundkvist, Nicholas
    Ni, Peiyuan
    Iguchi, Manabu
    Tilliander, Anders
    Jonsson, Par G.
    STEEL RESEARCH INTERNATIONAL, 2018, 89 (06)
  • [22] Effect of FeO in the slag and silicon in the metal on the desulfurization of hot metal
    P. K. Iwamasa
    R. J. Fruehan
    Metallurgical and Materials Transactions B, 1997, 28 : 47 - 57
  • [23] Effect of FeO in the slag and silicon in the metal on the desulfurization of hot metal
    Iwamasa, PK
    Fruehan, RJ
    METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, 1997, 28 (01): : 47 - 57
  • [24] INFLUENCE OF SLAG COMPONENT ON DEPHOSPHORIZATION AND DESULFURIZATION IN HOT METAL PRETREATMENT
    WASHIO, M
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1985, 71 : S946 - S946
  • [25] Characterization of Metal Droplets in Slag after Desulfurization of Hot Metal
    Yang, Annika Fang
    Karasev, Andrey
    Jonsson, Par Goran
    ISIJ INTERNATIONAL, 2015, 55 (03) : 570 - 577
  • [26] Influence of Solid CaO and Liquid Slag on Hot Metal Desulfurization
    Takahashi, Koichi
    Utagawa, Keita
    Shibata, Hiroyuki
    Kitamura, Shin-ya
    Kikuchi, Naoki
    Kishimoto, Yasushi
    ISIJ INTERNATIONAL, 2012, 52 (01) : 10 - 17
  • [27] Influence of combined blowing process in oxygen converter on steel cleanness and slag structure
    Mihok, L
    Pribulova, A
    Behan, B
    Zofcak, J
    METALURGIJA, 1997, 36 (04): : 239 - 243
  • [28] Influence of combined blowing process in oxygen converter on steel cleanness and slag structure
    Technical Univ, Kosice, Slovakia
    Metal, 4 (239-243):
  • [29] Kinetics of Dephosphorization at Different Slag Basicities in the Double Slag Converter Steelmaking Process
    Zhang, Runhao
    Yang, Jian
    Sun, Han
    Yang, Wenkui
    STEEL RESEARCH INTERNATIONAL, 2021, 92 (11)
  • [30] Microstructure and Viscosity of Dephosphorization Slag in New Double Slag Converter Steelmaking Process
    Yang, Wenkui
    Yang, Jian
    Zhang, Runhao
    Sun, Han
    ISIJ INTERNATIONAL, 2021, 61 (10) : 2490 - 2500