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Ironmaking & Steelmaking
Processes, Products and Applications
Volume 50, 2023 - Issue 11
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Articles

Analysing the HIsmelt process for smelting vanadium–titanium magnetite

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Pages 1645-1651 | Received 23 Apr 2023, Accepted 05 Jun 2023, Published online: 01 Jul 2023

References

  • Liang W, Wang GW, Xu RS, et al. Life cycle assessment of blast furnace ironmaking processes: a comparison of fossil fuels and biomass hydrochar applications. Fuel. 2023;345:128138. doi:10.1016/j.fuel.2023.128138
  • Xin HJ, Wang SS, Chun T, et al. Effective pathways for energy conservation and emission reduction in iron and steel industry towards peaking carbon emissions in China: case study of Henan. J Cleaner Prod. 2023;399. doi:10.1016/j.jclepro.2023.136637
  • Lan CC, Hao YJ, Shao JN, et al. Effect of H2 on blast furnace ironmaking: a review. Metals. 2022;12(11):1864. doi:10.3390/met12111864
  • Liu R, Zhang ZF, Liu XJ, et al. Development trend and prospect of low-carbon green ironmaking technology. Iron Steel. 2022;57:1–10. doi:10.13228/j.boyuan.issn0449-749x.20210736
  • Pang J, Wang Z, Li R, et al. Numerical simulation of the HIsmelt main reactor for optimizing heat transfer and combustion at different hot air oxygen contents and daily iron production. Combust Sci. Technol. 2023. doi:10.1080/00102202.2023.2168538 (Online).
  • Gao YJ, Liu R, Lan CC, et al. Sulphide capacity of CaO-SiO2-Al2O3-MgO-TiO2-FetO slag with high titanium and high FeO content based on HIsmelt process. Ironmak Steelmak. 2023: 1–8. doi:10.1080/03019233.2023.2169486 (Online)
  • Hou YL, Hua W, Qing S, et al. Research on influence factors of carbon content of the molten iron in HIsmelt melting reduction. Mater Rep. 2011;25:234–237.
  • Liu J, Peng ZH. Commercial test of HIsmelt process in smelting vanadium-titanium magnetite. Ironmaking. 2022;41(54):54–61.
  • Wang GL, Zhang JL, Liu ZJ, et al. Cracking and microstructure transition of iron ore containing goethite in Fe-C melt based on the HIsmelt process. Minerals. 2023;13(3):448. doi:10.3390/min13030448
  • Liao JF, Zhao BJ. Phase equilibrium studies of titanomagnetite and ilmenite smelting slags. Int J Miner Metall Mater. 2022;29(12):2162–2171. doi:10.1007/s12613-021-2376-1
  • Jia LJ, Tang YL. Process coal consumption and production practice of HIsmelt melt reduction ironmaking technology. Shand Metall. 2021;43(4):3–6.
  • Jia LJ, Tang YL. Current situation of HIsmelt smelting reduction technology and production practice. Indus Furn. 2022;44(1):20–23.
  • Wang XQ. Blast furnace smelting of vanadium titanium magnetite. Beijing: Metallurgical Industry Press; 1994.
  • Du HG. Principle of vanadium-titanium magnetite smelting in blast furnace. Beijing: Science Press; 1996.
  • Zhang SS, Hu P, Rao JT, et al. Effect of smelting time on vanadium and titanium distribution behavior and slag viscosity in HIsmelt. Metals. 2022;12(6):1019. doi:10.3390/met12061019
  • Zhang SS, Wang ZY, Hu P, et al. Distribution behavior of vanadium and titanium between hot metal and high titanium slag relevant to HIsmelt smelting condition. J Mater Res Technol. 2022;19:4517–4524. doi:10.1016/j.jmrt.2022.07.020
  • Wang S, Guo Y, Jiang T, et al. Comprehensive utilization and industrial development direction of vanadium-titanium magnetite. China Metall. 2016;26(10):40–44. doi:10.13228/j.boyuan.issn1006-9356.20160012
  • Ma JY, Sun XW, and Sheng SX. Intensified smelting of vanadium and titanium magnetite in blast furnace. Iron Steel. 2000; 35(1):4–8 + 12. doi:10.13228/j.boyuan.issn0449-749x.2000.01.002
  • Chu MS, Tang Y, Liu ZG, et al. Present situation and progress of comprehensive utilization for high-chromium vanadium-bearing titanomagnetie. J Iron Steel Res Int. 2017;29(5):335–344. doi:10.13228/j.boyuan.issn1001-0963.20170030
  • Hou YL, Wang H, Qing S. Smelting conditions of reduction ironmaking from ilmenite mixed with high phosphorus iron ore by top-blown oxygen. Chinese J Proc Eng. 2011;11(6):1024–1029.
  • Liu Y, Wang H, Qing S, et al. Research on the behavior of impurity elements in the oxygen-rich topblowing smelting reduction process of ilmenite. Mater Rep. 2016;30(S2):396–400.
  • Ma HB, Jiao KX, Zhang JL. The influence of basicity and TiO2 on the crystallization behavior of high ti-bearing slags. CrystEngComm. 2022;22(2):361–370. doi:10.1039/c9ce01695c
  • Ma HB, Jiao KX, Zhang JL, et al. Viscosity of CaO-MgO-Al2O3-SiO2-TiO2-FeO slag with varying TiO2 content: the effect of crystallization on viscosity abrupt behavior. Ceram Int. 2021;47(12):17445–17454. doi:10.1016/j.ceramint.2021.03.061
  • Zhang SS, Hu P, Rao JT, et al. Comprehensive utilization status of vanadium-titanium magnetite and feasibility analysis of HIsmelt smelting. J Cent South Univ (Engl. Ed). 2021;52(09):3085–3092. doi:10.11817/j.issn.1672-7207.2021.09.010
  • Goodman N, Dry RE. HIsmelt plant ramp-up. Proceedings of the 5th International Congress on the Science and Technology of Ironmaking, Shanghai China; 2009.
  • Zhang JL, Zhang GQ, Liu ZJ, et al. Production overview and main characteristics of HIsmelt process in Shandong Molong. China Metall. 2018;28:37–41 + 46. doi:10.13228/j.boyuan.issn1006-9356.20180021
  • Wang M, Ren RX, Dong HW, et al. Latest technology of melting reduction ironmaking process and discussion of process route choice. Iron Steel. 2020;55(8):145–150. doi:10.13228/j.boyuan.issn0449-749x.20190550
  • Wang ZY, Li RY, Zong YB, et al. Simulation of the flow, temperature, and concentration fields in the reactor of the HIsmelt process. Ironmak Steelmak. 2022;49(10):968–975.
  • Li B, Li L, Guo H, et al. A phosphorus distribution prediction model for CaO-SiO2-MgO-FeO-Fe2O3-Al2O3-P2O5 slags based on the IMCT. Ironmak Steelmak. 2019;47(7):771–780. doi:10.1080/03019233.2019.1608421
  • Zhang GQ, Chen QM, Wang JX, et al. Application of magnesite in HIsmelt smelting reduction process. Hebei Metall. 2022;(01):48–52. doi:10.13630/j.cnki.13-1172.2022.0110
  • Ito K, Fruehan RJ. Study on the foaming of CaO-SiO2-FeO slags: Part1. Foaming parameters and experimental results. Metall Trans B. 1989;20(4):509–514. doi:10.1007/Bf02654600
  • Jia B, Qi BM. Experimental study of foaming phenomenon of titaniferous slag during V-Ti-bearing magnetite smelting, steel, iron, vanadium. Titanium. 1996;17(04):10–14 + 18.
  • Ozturk B, Fruehan RJ. Effect of temperature on slag foaming. Metall Mater Trans B. 1995;26(5):1086–1088. doi:10.1007/Bf02654111
  • Shan C. The slag foaming originated from reactions of titanium-bearing blast furnace slag [master’s thesis]. Chongqing: Chongqing University; 2017.

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