Effect of Coke Reactivity on Sinter Softening-melting Property by Simultaneous Evaluation Method of Carbonaceous and Ferrous Burdens in Blast Furnace
スポンサーリンク
概要
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In future blast furnace operation which aims at low carbon consumption, it is indispensable to optimize the quality of carbonaceous and ferrous burdens, not evaluations of each individual but both sides of them considering interactions under the coexistence. Therefore, a simultaneous evaluation method of carbonaceous and ferrous burdens at cohensive zone of blast furnaces by softening-melting test which simulated the temperature profile in blast furnaces determined by reactivity of coke was developed. The effect of sinter ore reducibility and coke reactivity on sinter soften-melting property at cohensive zone of blast furnaces were evaluated. With increasing CRI, coke reactivity, gasification start temperature lowers as a result of increasing the reduction rate of sinter at 900–1000°C and increasing softening shrinkage resistance at the initial stage of the shrinkage near 1200°C.
著者
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UJISAWA Yutaka
Corporate Research & Development Laboratories, Sumitomo Metal Industries, Ltd.
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Sunahara Kohei
Corporate R&D Labs., Sumitomo Metal Industries, Ltd.
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SUNAHARA Kohei
Corporate R&D Labs, Sumitomo Metal Industries Ltd.
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Natsui Takuya
Corporate R&D Labs., Sumitomo Metal Industries, Ltd.
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Shizawa Kyoichiro
Corporate R&D Labs., Sumitomo Metal Industries, Ltd.
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Ujisawa Yutaka
Corporate R&D Labs., Sumitomo Metal Industries, Ltd.
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UJISAWA Yutaka
Corporate R&D Labs, Sumitomo Metal Industries Ltd.
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Natsui Takuya
Corporate R&D Labs., Sumitomo Metal Industries, Ltd.
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Shizawa Kyoichiro
Corporate R&D Labs., Sumitomo Metal Industries, Ltd.
関連論文
- Three-dimensional Dynamic Simulator for Blast Furnace
- Operation and Design of Scrap Melting Process of the Packed Bed Type
- Effect of High Al_2O_3 Slag on the Blast Furnace Operations
- Effect of Coke Reactivity on Sinter Softening-melting Property by Simultaneous Evaluation Method of Carbonaceous and Ferrous Burdens in Blast Furnace
- Subjects for Achievement of Blast Furnace Operation with Low Reducing Agent Rate