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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Characterization of Egyptian Manganese Ores for Production of High Carbon Ferromanganese
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Characterization of Egyptian Manganese Ores for Production of High Carbon Ferromanganese

机译:用于生产高碳锰铁的埃及锰矿石的表征

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This work aims at studying the reactivity of Egyptian manganese ores to be used in the production of ferromanganese alloys in submerged electric arc furnace. Ores with different manganese content (high-medium and low) were selected and characterized by X-Ray Fluorescence (XRF), X-Ray Diffraction (XRD) and Scanning Electron Microscope (SEM). The main mineralogical compositions in the three ores are pyrolusite (MnO2) and hematite (Fe2O3). Porosity of selected Mn ores was determined. The reactivity of the different ores was carried out through pre-reduction of the selected ores using thermobalance at 900°C and 1100°C and mixture of CO and CO2 gases. The reduction process was done until steady weight. The reduced ores were examined using XRD and SEM. The results showed that pyrolusite in high and medium ores are converted completely to MnO at 1100°C. However, the ore with low manganese content was converted to MnO and Mn3O4. Consequently, it is clear from the results that Mn ores with high and medium MnO2 content are more reactive than those with low MnO2. Therefore, high MnO2 content Mn ores are preferable to get good economic impact during the production of high carbon ferromanganese. ?
机译:这项工作的目的是研究用于在埋弧炉中生产铁锰合金的埃及锰矿石的反应性。选择具有不同锰含量(高中低)的矿石,并通过X射线荧光(XRF),X射线衍射(XRD)和扫描电子显微镜(SEM)对其进行表征。这三种矿石的主要矿物成分是软锰矿(MnO2)和赤铁矿(Fe2O3)。确定选定的锰矿石的孔隙率。不同矿石的反应性是通过使用900°C和1100°C的热天平以及CO和CO2气体的混合物对所选矿石进行预还原来进行的。进行还原过程直至重量稳定。使用XRD和SEM检查还原的矿石。结果表明,高,中矿石中的软锰矿在1100°C完全转化为MnO。但是,锰含量低的矿石被转化为MnO和Mn3O4。因此,从结果可以明显看出,MnO2含量高和中等的锰矿石比MnO2含量低的锰矿石更具反应性。因此,MnO 2含量高的Mn矿石在生产高碳锰铁过程中具有良好的经济影响是优选的。 ?

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