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Characterization on the Behaviors of Ca and Si Constituents During the Consolidation of Ferruginous Manganese Ores

机译:巩固锰矿矿石中Ca和Si成分行为的特征

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Consolidation of the ferruginous manganese ore fines is of vital importance for manganese extraction in the smelting process. The main impurities in the Fe-Mn ores are Ca and Si constituents and they have a significant effect on the consolidation of iron and manganese oxides. In this study, characterization on the behaviors of Ca and Si constituents during the roasting process of Fe-Mn ores were investigated by thermodynamic, fusion temperatures, and phase identification analyses. The results showed that the Ca and Si constituents can decrease the fusion temperature of the MnO_2-Fe_2O_3 binary system dramatically due to the formation of low-melting complicate silicates from the CaO, SiO_2, and partial manganese and iron oxides. The high-melting solid manganese ferrites phase generated from the remaining manganese and iron oxides were bonded and solidified by the liquid phase. This provided favorable mineralization conditions for the consolidation of Fe-Mn ore.
机译:铁甘蓝锰矿石粉末的固结对于冶炼过程中的锰提取至关重要。 Fe-Mn Ores中的主要杂质是Ca和Si成分,对铁和锰氧化物的固结产生显着影响。在该研究中,通过热力学,融合温度和相位鉴定分析研究了在Fe-Mn矿石烘焙过程中Ca和Si成分的表征。结果表明,Ca和Si成分可以显着降低MnO_2-Fe_2O_3二元系统的熔化温度由于含有低熔点的硅酸盐与部分锰和氧化铁的形成复杂硅酸盐而显着。由剩余的锰和氧化铁产生的高熔点固体锰铁氧体相通过液相键合并固化。这为Fe-Mn Ore的固结提供了有利的矿化条件。

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