Effect of FeO concentration in sinter iron ore on reduction behavior in a hydrogen-enriched blast furnace

Author:

Ohno Ko-ichiro,Maeda Takayuki,Kunitomo Kazuya,Hara Masashi

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Geochemistry and Petrology,Mechanical Engineering,Mechanics of Materials

Reference21 articles.

1. Greenhouse Gas Inventory Office of Japan and Ministry of the Environment, Japan, ed., National Greenhouse Gas Inventory Report of JAPAN 2022, Center for Global Environmental Research, Earth System Division, National Institute for Environmental Studies, Japan, 2022.

2. T. Miwa and H. Okuda, CO2 ultimate reduction in steelmaking process by innovative technology for cool earth 50 (COURSE50), J. Jpn. Inst. Eng., 89(2010), No. 1, p. 28.

3. S. Ban-Ya, Y. Iguchi, and T. Nagasaka, Rate of reduction of liquid wustite with hydrogen, Tetsu-to-Hagane, 70(1984), No. 14, p. 1689.

4. Y.B. Chen and H.B. Zuo, Review of hydrogen-rich ironmaking technology in blast furnace, Ironmaking Steelmaking, 48(2021), No. 6, p. 749.

5. K.H. Ma, J.Y. Deng, G. Wang, Q. Zhou, and J. Xu, Utilization and impacts of hydrogen in the ironmaking processes: A review from lab-scale basics to industrial practices, Int. J. Hydrogen Energy, 46(2021), No. 52, p. 26646.

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