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Phosphorus Removal and Iron Recovery from High-Phosphorus Hematite Using Direct Reduction Followed by Melting Separation

机译:直接还原后熔融分离从高磷赤铁矿中除磷和铁回收

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摘要

To efficiently utilize high-phosphorus oolitic hematite resources, a method using direct reduction followed by melting separation was proposed. In this study, direct reduction behavior of the ore-char briquette and the melting separation behavior of the reduced briquette were investigated. Direct reduction test results show that under investigated conditions, the briquette reached a metallization rate of 80%-88% and a residual carbon value of 0.11-4.85 wt%,and apatite layers were fragmented into tiny particles, some of which were embedded in metallic iron phase. Melting separation test results show that residual carbon can significantly influence the iron recovery rate. For metallic briquettes with the abovementioned qualities, the iron recovery rate ranged from 75% to 98%. To control the phosphorus content in molten iron to be nearly 0.4 wt%, an iron recovery rate of 80% was shown to be adequate.
机译:为了有效利用高磷含量的赤铁矿赤铁矿资源,提出了一种直接还原再熔融分离的方法。在这项研究中,研究了煤焦型煤的直接还原行为和还原型煤的熔融分离行为。直接还原试验结果表明,在所研究的条件下,团块的金属化率为80%-88%,残余碳值为0.11-4.85 wt%,磷灰石层被破碎成细小的颗粒,其中一些嵌入了金属中。铁相。熔融分离测试结果表明,残留的碳会显着影响铁的回收率。对于具有上述质量的金属团块,铁的回收率范围为75%至98%。为了将铁水中的磷含量控制为接近0.4重量%,铁回收率显示为80%是足够的。

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