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Solid State Reduction of Preoxidized Chromite-iron Ore Pellets by Coal

机译:煤固相还原预氧化铬铁矿粒

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A comparative study on coal-based solid state reduction of preoxidized chromite pellets and chromite-iron ore pellets was conducted to investigate the reduction behavior of these two types of pellets. And the enhancement mechanism of chromite reduction reactions due to the pre-oxidation process of chromite with magnetite was revealed by means of optical microscopy, SEM with EDS. The results show the presence of iron ore and pre-oxidation process both are advantageous to the reduction of chromite. Pre-oxidation of chromite and iron ore mixture at 1323 K for 15 min contributes to more formation of sesquioxide solid solution (Fe, Cr, Al)_(2)O_(3) than pure chromite oxidation. Massive cations exchange and diffusion occur between chromite and iron ore, which normally cause the decrease of magnesium content and aluminum content and the increase of iron content in spinel solid solution. Accordingly, the chromite reduction is enhanced with the metallization rate of chromite raised from 20.83% in prereduced chromite pellets to 47.98% in prereduced composite pellets at temperature of 1473 K for 90 min and C/O ratio=1.06, but no further improvement is observed above 1473 K. The mechanism study based on carbothemic reduction thermodynamics and the microstructure of prereduced pellets reveals the reduction of sesquioxide solid solution (Fe, Cr, Al)_(2)O_(3) is more thermodynamically supported and the high iron, low magnesium and aluminum spinel solid solution formed in pre-oxidation process is also favorable for chromite reduction because of lower outward diffusion resistance of Fe~(2+) to the interface with CO gas.
机译:进行了煤基固态还原预氧化铬铁矿球团和铬铁矿球团的还原研究,以研究这两种球团的还原行为。通过光学显微镜,SEM和EDS等手段揭示了铬铁矿与磁铁矿的预氧化过程引起的铬铁矿还原反应的增强机理。结果表明,铁矿石的存在和预氧化过程均有利于铬铁矿的还原。与纯铬铁矿氧化相比,铬铁矿和铁矿石混合物在1323 K下预氧化15分钟有助于形成更多的倍半氧化物固溶体(Fe,Cr,Al)_(2)O_(3)。亚铬酸盐与铁矿石之间发生大量的阳离子交换和扩散,这通常导致尖晶石固溶体中镁含量和铝含量降低,铁含量增加。因此,在1473 K的温度下90分钟和C / O比= 1.06,铬铁矿的金属化率从预还原的铬铁矿球团的20.83%提高到预还原的复合球团的47.98%,从而提高了铬铁矿的还原率,但未见进一步改善高于1473K。基于碳热还原热力学和预还原颗粒的微观结构的机理研究表明,倍半氧化物固溶体(Fe,Cr,Al)_(2)O_(3)的还原受到热力学支持,高铁,低铁在预氧化过程中形成的镁和铝尖晶石固溶体也有利于铬铁矿的还原,因为Fe〜(2+)与CO气体界面的向外扩散阻力较低。

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