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Effects of Na2SO4 on iron and nickel reduction in a high-iron and low-nickel laterite ore

机译:Na2SO4对高铁和低镍红矿石铁和镍镍的影响

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摘要

This study investigates the reactions of Na2SO4 and its effects on iron and nickel reduction in the roasting of a high-iron and low-nickel laterite ore through gas composition, X-ray diffraction, and scanning electron microscope analyses. Results showed that a reduction reaction of Na2SO4 to SO2 was performed with roasting up to 600A degrees C. However, no clear influence on iron and nickel reductions appeared, because only a small amount of Na2SO4 reacted to produce SO2. Na2SO4 reacted completely at 1000A degrees C, mainly producing troilite and nepheline, which remarkably improves selective reduction of nickel. Furthermore, the production of low-melting-point minerals, including troilite and nepheline, accelerated nickel reduction and delayed iron reduction, which is attributed to the concurrent production of magnesium magnetite, whose structure is more stable than the structure of magnetite. Reduction reactions of Na2SO4 resulted in weakening of the reduction atmosphere, and the main product of Na2SO4 changed and delayed the reduction of iron. Eventually, iron metallization was effectively controlled during laterite ore reduction roasting, leading to iron mainly being found in wustite and high iron-containing olivine.
机译:该研究研究了Na2SO4的反应及其对铁和镍通过气体组合物,X射线衍射和扫描电子显微镜分析烘烤的铁和镍的影响。结果表明,Na 2 SO 4至SO 2的还原反应焙烧至600A℃。然而,对铁和镍减少没有明显影响,因为只有少量的Na 2 SO 4反应产生SO 2。 Na2SO4完全在1000A的C中完全反应,主要产生毒品,显着提高了镍的选择性减少。此外,低熔点矿物质的生产,包括杂物石和尼触线,加速镍还原和延迟的铁还原,这归因于镁磁铁矿的并行产生,其结构比磁铁矿的结构更稳定。 Na 2 SO 4的还原反应导致降低气氛削弱,Na2SO4的主要产物变化并延迟了铁的还原。最终,在红岩矿石减少烘焙过程中有效地控制了铁金属化,导致铁的铁,主要是在硅铁和高铁的橄榄石中发现。

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