首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >The reduction behaviour of iron from low grade nickel laterite ore using a solid state deoxidisation method
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The reduction behaviour of iron from low grade nickel laterite ore using a solid state deoxidisation method

机译:固态脱氧法从低品位红土镍矿矿石中还原铁的行为

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The reduction behaviour of iron from low grade nickel laterite ore using a solid state deoxidisation method was investigated. The results showed that the α_(FeO) was strongly influenced by the reaction temperature in both gas-solid and solid-solid reduction processes, and a higher temperature was more favourable for iron reduction, but the conversion percentage decreased when a gaseous reductant was used at 850°C because of phase transformation. The conversion percentage of Fe_2O_3 to FeO first increased and then decreased with increasing, reduction time. Because the reduction mechanism of nickel laterite ore is indirect, a higher α_(FeO) (>75%) can be obtained by increasing CO and carbon content. In the gas-solid reduction process, a smaller particle size was beneficial to iron reduction. In the solid-solid reduction process, the conversion percentage first increased and then decreased with increasing CaO content. In both reduction processes, forsterite was found by XRD in the reduced ore, and the peak intensity of forsterite increased with increasing reduction temperature. SEM revealed that the nickel laterite ore was transformed from large granular and sandwich structures to small granular arid flocculent structures during the reduction process.
机译:研究了使用固态脱氧方法从低品位镍红土矿石中还原铁的行为。结果表明,α_(FeO)在气固还原和固-固还原过程中都受到反应温度的强烈影响,较高的温度更有利于铁的还原,但当使用气态还原剂时转化率降低由于相变,温度在850°C。 Fe_2O_3转化为FeO的转化率随还原时间的增加先增加后降低。由于红土镍矿的还原机理是间接的,因此可以通过增加CO和碳含量来获得更高的α_(FeO)(> 75%)。在气固还原过程中,较小的粒径有利于铁的还原。在固-固还原过程中,转化率先随CaO含量的增加而增加,然后降低。在这两个还原过程中,通过XRD在还原的矿石中发现了镁橄榄石,并且镁橄榄石的峰强度随还原温度的升高而增加。扫描电镜显示,还原过程中红土镍矿从大颗粒和夹心结构转变为小颗粒和絮凝结构。

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