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首页> 外文期刊>Metallurgical and Materials Transactions B >Interfaces Between Coke, Slag, and Metal in the Tuyere Level of a Blast Furnace
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Interfaces Between Coke, Slag, and Metal in the Tuyere Level of a Blast Furnace

机译:高炉风口级焦炭,炉渣和金属之间的界面

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摘要

An in-depth understanding about the reactions in the high-temperature zone of a blast furnace is significant to optimize both the current and future blast furnace process. The interfaces between coke, slag, and metal were observed using scanning electronic microscope with samples obtained from the tuyere level of a blast furnace. Two types of slag phases were identified, one originating from coke ash and the other from the bosh slag. Slag formed by coke ash was seen to cover the coke surface, which may hinder the reaction of coke with both gas and liquid iron. The reduction of FeO from the bosh slag (originated from the primary slag) occurs in the coke/slag interface with the reduced iron forming a metal layer surrounding the coke surface. The reduction of SiO2 occurs both in and outside the coke, and the reduced silicon reacts with iron to form iron silicide if the two species come into contact. Further study is proposed based on the results of this study.
机译:深入了解高炉高温区中的反应对于优化当前和未来的高炉工艺具有重要意义。使用扫描电子显微镜观察焦炭,炉渣和金属之间的界面,并从高炉的风口处获得样品。确定了两种类型的炉渣相,一种来自焦炭灰,另一种来自矿渣。观察到由焦炭灰形成的炉渣覆盖了焦炭表面,这可能会阻碍焦炭与气体和液态铁的反应。炉渣(起源于一次炉渣)中FeO的还原发生在焦炭/炉渣界面中,还原铁形成了围绕焦炭表面的金属层。 SiO 2的还原发生在焦炭的内部和外部,并且如果两种物质接触,还原的硅会与铁反应形成硅化铁。根据这项研究的结果提出了进一步的研究。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2015年第3期|1104-1111|共8页
  • 作者单位

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    Department of Materials Science and Engineering University of Toronto">(3);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

    School of Metallurgical and Ecological Engineering University of Science and Technology Beijing">(1);

    State Key Laboratory of Advanced Metallurgy University of Science and Technology Beijing">(2);

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