Blast furnace ironmaking process using pre-reduced iron ore
Kazuya Kunitomo, Yasushi Takamoto, Yasuhiko Fujiwara, Takashi Onuma
Abstract
Kazuya Kunitomo, Yasushi Takamoto, Yasuhiko Fujiwara, Takashi Onuma
Abstract
It may be possible to improve the productivity and flexibility of the blast furnace operation and also to substitute energy sources in the pig iron production processes by combining the partial reduction process using low carbon content energy sources such as natural gas with the blast furnace process. Therefore, the productivity of producing partially reduced ore, the composition of the partially reduced ore and the reducing agents rate in the blast furnace when the partially reduced ore was used were examined. It was found that this method not only reduces energy consumption in the existing blast furnace ironmaking process, but also reduces the energy consumption related to carbon dioxide emission in the total hot metal production processes, including the partial reduction process.
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It may be possible to improve the productivity and flexibility of the blast furnace operation and also to substitute energy sources in the pig iron production processes by combining the partial reduction process using low carbon content energy sources such as natural gas with the blast furnace process. Therefore, the productivity of producing partially reduced ore, the composition of the partially reduced ore and the reducing agents rate in the blast furnace when the partially reduced ore was used were examined. It was found that this method not only reduces energy consumption in the existing blast furnace ironmaking process, but also reduces the energy consumption related to carbon dioxide emission in the total hot metal production processes, including the partial reduction process.
Key concepts: Blast furnace, Iron ore, Pig iron, Blast furnace gas, Energy consumption, Metallurgy, Environmental science, Waste management