首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Individual enrichment of manganese and iron from complex refractory ferromanganese ore by suspension magnetization roasting and magnetic separation
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Individual enrichment of manganese and iron from complex refractory ferromanganese ore by suspension magnetization roasting and magnetic separation

机译:通过悬浮磁化焙烧和磁性分离,复杂耐火铁锰矿石的个体富集锰和铁

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Owing to its complex characteristics, the large-scale utilization of ferromanganese ore is limited by the traditional processes. In this study, suspension magnetization roasting and magnetic separation technology was proposed, and the thermodynamics, phase and magnetic transformation, and microstructure evolution of the main minerals were systematically investigated during roasting. Results show that iron concentrate with iron grade of 68.31% at a recovery of 96.34% can be obtained in the magnetic separation concentrate, and manganese concentrate with manganese grade of 33.70% at a recovery of 86.83% can be obtained in magnetic separation tailings under optimum conditions. Pyrolusite and braunite were reduced to weak magnetic manganosite, and weak magnetic hematite was selectively transformed into strong magnetic magnetite. Many cracks appeared in the ores owing to the multiple reduction and dehydration reactions of ferromanganese ore, which was favorable for grinding and separation of manganese and iron. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于其复杂的特征,铁蒙曼裔矿石的大规模利用受传统流程的限制。在该研究中,提出了悬浮磁化焙烧和磁性分离技术,在烘焙过程中系统地研究了热力学,相位和磁性转化,以及主要矿物的微观结构演化。结果表明,在磁性分离浓缩物中,在磁性分离浓缩物中,在磁性分离浓缩物中可以获得96.34%的铁等级的铁浓缩物,在最佳磁性分离尾矿中,锰浓缩率为33.70%的锰浓缩物。状况。将Pyrolusite和Braunite降低到弱磁锰,并且选择性地转化为强磁磁铁矿的弱磁性赤铁矿。由于氟锰矿石的多重减少和脱水反应,许多裂缝出现在矿石中,这是有利于锰和铁的研磨和分离。 (c)2020 Elsevier B.V.保留所有权利。

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