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Carbothermic Reduction of Ferruginous Manganese Ore for Mn/Fe Beneficiation: Morphology Evolution and Separation Characteristic

机译:锰铁选矿的锰锰碳热还原:形态演化和分离特性

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In the present paper, beneficiation of Fe and Mn elements from a ferruginous manganese ore via carbothermic reduction followed by magnetic separation process was investigated in detail. The effects of the experimental parameters were systematically discussed. Iron-rich products with an Fe grade of 62.3% and 88.2% of Fe recovery, and manganese-rich product with a Mn grade of 63.7% of and 70.4% of Mn recovery were obtained, respectively, at an optimal temperature of 1100 ???°C, with a roasting time of 100 min, anthracite addition of 25%, milling fineness of 90% passing 0.074 mm, and a magnetic intensity of 140 A/m. Furthermore, the morphology evolution and phase transformation laws along with reduction process were revealed by optical microscope, scanning electron microscope equipped with energy dispersive X-ray detector (SEM-EDX), X-ray diffraction (XRD), and chemical phase analysis. The results demonstrated that the ferruginous manganese ore reduction can be described as follows: plate-like Fe-Mn symbiotic phase decomposition ?¢???? granular MnO phase formation ?¢???? fine metallic iron formation ?¢???? aggregation of metallic iron ?¢???? boundary development between Fe and Mn phases.
机译:在本文中,详细研究了通过碳热还原,磁选工艺从铁锰锰矿中提纯铁和锰元素。系统地讨论了实验参数的影响。在最佳温度1100℃下,分别获得了Fe回收率为62.3%和88.2%的富铁产品和Mn回收率为Mn的63.7%和70.4%的富锰产品。焙烧时间为100分钟,无烟煤添加量为25%,碾磨细度为0.074mm时90%,磁强度为140A / m。此外,通过光学显微镜,配备能量色散X射线检测器(SEM-EDX)的扫描电子显微镜,X射线衍射(XRD)和化学相分析揭示了形态演化和相变规律以及还原过程。结果表明,铁锰矿的还原可描述如下:板状Fe-Mn共生相分解。颗粒状MnO相的形成细金属铁的形成金属铁的聚集Fe和Mn相之间的边界发展。

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