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首页> 外文期刊>Russian Metallurgy(Metally) >Reducing Roasting of Hematite Laterite Nickel Ores with the Formation of Granulated Nickel-Containing Cast Iron
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Reducing Roasting of Hematite Laterite Nickel Ores with the Formation of Granulated Nickel-Containing Cast Iron

机译:减少赤铁矿后镍矿石的烘烤,形成粒状含镍的铸铁

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摘要

—The reducing roasting of hematite-type laterite nickel ores with flux CaCO~(3)(limestone) and CaF~(2)(fluorite) additions on a coal substrate in the temperature range 1350–1450°C, which causes the formation of granulated nickel-containing cast iron, is studied. The roasting time is 8–10 min without additional holding. The intense coalescence of metallic particles and the separation of metallic and slag phases is detected at 11–13% solid reducer (coke) in the presence of 7.5–12.5% CaCO~(3)and 1.5–2% CaF~(2)upon reducing roasting at a temperature of ≥1350°C. The yield of cast iron granules is 40–42.5% and the slag yield is 32–35% of the ore mass. 94–99% of iron and almost entire nickel are recovered into cast iron containing up 2.3% Ni and 2.1–2.5% C. The contents of the main components in the slag can change in the following ranges: 32–36% Al~(2)O~(3), 17–24% CaO, 27–28% SiO~(2), and 2.5–3.5 Fe~(tot). The slag can be used as a combined flux addition for the reducing roasting of magnesia–silicate nickel ores in rotary hearth furnaces with the formation of ferronickel ball (Krupp–Renn process), which makes the technology of processing of hematite ores wasteless and economically efficient.
机译:- 用助焊剂Caco〜(3)(石灰石)和CaF〜(2)(萤石)在1350-1450°C的煤基质上加入含赤铁矿型后镍矿石的烘烤,这导致形成研究了颗粒状含镍铸铁。烘焙时间为8-10分钟,无需额外保持。在7.5-12.5%CaCO〜(3)和1.5-2%CAF〜(2)时,在11-13%固体减速剂(焦炭)下检测金属颗粒的强烈聚结和金属和炉渣相的分离。在≥1350°C的温度下减少烤。铸铁颗粒的产率为40-42.5%,渣产率为32-35%。将94-99%的铁和几乎整个镍回收到含有2.3%Ni和2.1-2.5%C的铸铁中。炉渣中主要成分的含量可以改变以下范围:32-36%Al〜( 2)O〜(3),17-24%CaO,27-28%SiO〜(2)和2.5-3.5 Fe〜(Tot)。炉渣可以用作旋转炉膛矿石在旋转炉膛(KRUPP-RENN工艺)中的氧化镁硅酸盐镍矿石的减少烘烤的组合的助焊剂,这使得杂物矿石的加工技术是荒谬的,经济高效的技术。

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  • 来源
    《Russian Metallurgy(Metally)》 |2019年第7期|共6页
  • 作者单位

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
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