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Aluminothermic Reduction of Manganese Oxide from Selected MnO-Containing Slags

机译:由选定的含汞渣的氧化锰的渗透还原

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摘要

The aluminothermic reduction process of manganese oxide from different slags by aluminum was investigated using pure Al and two types of industrial Al dross. Two types of MnO-containing slags were used: a synthetic highly pure CaO-MnO slag and an industrial high carbon ferromanganese slag. Mixtures of Al and slag with more Al than the stoichiometry were heated and interacted in an induction furnace up to 1873 K, yielding molten metal and slag products. The characterization of the produced metal and slag phases indicated that the complete reduction of MnO occurs via the aluminothermic process. Moreover, as the Al content in the charge was high, it also completely reduced SiO2 in the industrial ferromanganese slag. A small mass transport of Ca and Mg into the metal phase was also observed, which was shown to be affected by the slag chemistry. The obtained results indicated that the valorization of both Al dross and FeMn slag in a single process for the production of Mn, Mn-Al, and Mn-Al-Si alloys is possible. Moreover, the energy balance for the process indicated that the energy consumption of the process to produce Mn-Al alloys via the proposed process is insignificant due to the highly exothermic reactions at high temperatures.
机译:使用纯Al和两种类型的工业Al Dross研究了来自铝的不同炉渣的氧化锰的铝热还原过程。使用了两种含汞渣:合成高纯的CaO-MnO渣和工业高碳铁锰渣。将Al和炉渣的混合物加热并在高达1873k的感应炉中加热并相互作用,得到熔融金属和渣产物。所生产的金属和炉渣相的表征表明,通过铝制过程完全减少MNO。此外,由于电荷中的Al含量很高,它在工业铁锰渣中也完全降低了SiO2。还观察到Ca和Mg的小质量传递到金属相中,其显示为受渣化学的影响。所得结果表明,在单一方法中,可以在制备Mn,Mn-Al和Mn-al-Si合金中的vAl型熔化。此外,该方法的能量平衡表明,由于高温下的高温反应,通过所提出的方法生产Mn-Al合金的方法的能量消耗是微不足道的。

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