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Sintering technologies of sinter mixtures containing high proportions of magnetite concentrates

机译:烧结技术的烧结混合物含有高比例的磁铁矿浓缩物

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Due to the international depletion of reserves of traditional high-grade iron ore, the ore resources available throughout the world, especially in steel mills in East Asia, have changed drastically from hard hematitic to more goethitic ore types, such as pisolitic and Marra Mamba ores. The level of impurities and loss on ignition in iron ore has also been slowly increasing. Finally, the proportion of fine material in the available products has increased considerably for most iron ore fines. This has been found to have significant impacts on sinter quality and sintering performance. Magnetite concentrate is typically high in Fe grade and releases extra heat when oxidised to hematite. The amount of magnetite concentrates is expected to increase due to the recent development of a number of magnetite projects. Some of these magnetite concentrates will end in sinter blends. This will not only improve the sinter quality and but also have a beneficial impact on the fuel consumption of the sintering process. However, most of the concentrates available are very fine, which will negatively impact the green bed permeability and consequently the productivity of the sintering process. This paper reviews and comments on the recent technological advances in sintering with high proportions of magnetite concentrates.
机译:由于国际高档铁矿石储量的国际消耗,全球各地提供的矿石资源,特别是在东亚的钢铁厂,从硬血分炎到更多的鹅毛石矿石类型,如平壤和Marra Mamba Ores 。铁矿石中的杂质和点火损失的水平也一直在慢慢增加。最后,对于大多数铁矿石罚款,可用产品中的细材料的比例增加了大部分。这已被发现对烧结质量和烧结性能产生重大影响。磁铁矿浓缩物通常在Fe等级中高,并在氧化到赤铁矿时释放出额外的热量。由于最近一些磁铁矿项目的发展,磁铁矿浓缩物的量预计会增加。这些磁铁矿浓缩物中的一些将在烧结中结束。这不仅会改善烧结品质,而且对烧结过程的燃料消耗也有益。然而,大多数可用的浓缩物非常好,这将对绿床渗透率产生负面影响,从而产生烧结过程的生产率。本文以高比例的磁铁矿浓缩物烧结技术进步的审查和评论。

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