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Production of (Mn,Fe)-Carbide Containing Low Phosphorus by Carbothermic Reduction of Mn Oxide and Fe Oxide

机译:碳锰还原和氧化锰热还原法生产低磷的(Mn,Fe)-碳化物

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The dephosphorization process for high phosphorus iron ores have recently been studied employing several methods. However, few researches of phosphorus removal from high phosphorus manganese ores have been carried out compared with those about the high phosphorus iron ores. As a potential approach for the removal of phosphorus contained in the composite, the formation of (Mn,Fe)-carbide by the carbothermic reduction of the oxides of manganese and iron was investigated at 1200°C in H_(2) atmosphere employing thermogravimetric analysis (TGA). It was confirmed that the phosphorus did not dissolve into the manganese iron carbide, (Mn,Fe)_(7)C_(3) even though it has the high reactivity with Fe and Mn. Instead, the phosphorus generated by the decomposition of Ca_(3)(PO_(4))_(2) reacted with Fe and Mn to form (Fe,Mn)_(3)P. According to EPMA line mapping, (Mn,Fe)-carbide and (Fe,Mn)-phosphide coexist in the reduced particle. The current results could be applied for a promising treatment of dephosphorization of high phosphorous ores due to the low solubility of phosphorus in carbide.
机译:最近已经采用几种方法研究了高磷铁矿石的脱磷工艺。但是,与高磷铁矿石有关的除磷研究很少。作为去除复合物中所含磷的一种潜在方法,通过热重分析研究了在H_(2)气氛中于1200°C下通过碳热还原锰和铁的氧化物形成(Mn,Fe)-碳化物的方法。 (TGA)。可以确认,即使磷与Fe和Mn具有高反应性,磷也不会溶解在锰铁碳化物(Mn,Fe)_(7)C_(3)中。相反,由Ca_(3)(PO_(4))_(2)分解产生的磷与Fe和Mn反应形成(Fe,Mn)_(3)P。根据EPMA线图,(Mn,Fe)-碳化物和(Fe,Mn)-磷化物共存于还原颗粒中。由于磷在碳化物中的溶解度低,目前的结果可用于高磷矿石脱磷的有前途的处理。

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