中国炼铁行业碳排放现状及对策

IF 5.6 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Chenmei Tang, Zhengqi Guo, Jian Pan, Deqing Zhu, Siwei Li, Congcong Yang, Hongyu Tian
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引用次数: 4

摘要

钢铁工业是一个高能耗、高污染的行业。中国的ISI是ISI的领头羊,消耗了全国15%的能源,产生了全球ISI碳排放量的50%以上。因此,在全球低碳经济和减排要求的背景下,ISI的低碳冶炼技术在国内越来越受到重视。本文综述了中国ISI的碳排放和能耗现状,探讨了低碳炼铁技术的发展现状和前景。有效降低碳排放的主要途径是发展气基直接还原工艺和用制球代替烧结,两者都侧重于发展制球技术。然而,如何获得高质量的铁精矿是球团工艺发展的挑战。因此,本文还总结了中国选矿技术的发展现状,包括细粒选矿技术、磁化焙烧技术和浮选捕收剂的应用。本文旨在从选矿-冶炼组合的角度为中国ISI的低碳发展提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current situation of carbon emissions and countermeasures in China’s ironmaking industry

The iron and steel industry (ISI) involves high energy consumption and high pollution. ISI in China, a leading country in the ISI, consumed 15% of the country’s total energy and produced more than 50% of the global ISI’s carbon emissions. Therefore, in the context of global low-carbon economy and emission reduction requirements, low-carbon smelting technology in the ISI has attracted increasingly more attention in China. This review summarizes the current status of carbon emissions and energy consumption in China’s ISI and discusses the development status and prospects of low-carbon ironmaking technology. The main route to effectively reducing carbon emissions is to develop a gas-based direct reduction process and replace sintering with pelletizing, both of which focus on developing pelletizing technology. However, the challenge of pelletizing process development is to obtain high-quality iron concentrates. Consequently, the present paper also summarizes the development status of China’s mineral processing technology, including fine-grained mineral processing technology, magnetization roasting technology, and flotation collector application. This paper aims to provide a theoretical basis for the low-carbon development of China’s ISI in terms of a dressing–smelting combination.

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来源期刊
CiteScore
9.30
自引率
16.70%
发文量
205
审稿时长
2 months
期刊介绍: International Journal of Minerals, Metallurgy and Materials (Formerly known as Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material) provides an international medium for the publication of theoretical and experimental studies related to the fields of Minerals, Metallurgy and Materials. Papers dealing with minerals processing, mining, mine safety, environmental pollution and protection of mines, process metallurgy, metallurgical physical chemistry, structure and physical properties of materials, corrosion and resistance of materials, are viewed as suitable for publication.
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