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Semi-continuous Production of Niobium Powder by Magnesiothermic Reduction of Nb_2O_5

机译:镁热还原Nb_2O_5半连续生产铌粉的研究

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摘要

An electronically mediated reaction (EMR) has been explored to produce a niobium powder semi-continuously by the magnesiothermic reduction of niobium oxide. Nb_2O_5 feedstock and reductant magnesium alloy were isolated electronically in a molten CaCl_2 bath at 1173 K. The feed was freshly recharged twice, but the bath was reused without replenishment during three repeated tests, providing an external path for electron flow. The current flow through the external path between the feed (cathode) and the reductant (anode) was monitored. A small current between 0.05 and 0.1 A was measured in the external circuit. A niobium powder was readily obtained, but its purity decreased from 93 to 82 percent Nb as the reduction number increased. This, however; demonstrated the possibility of semi-continuous production of niobium powders by the EMR without the direct physical contact between the reactants. The mechanism of the magnesiothermic reduction of Nb_2O_5 in the molten salt was discussed, using an isothermal chemical potential diagram.
机译:已经探索了一种电子介导的反应(EMR),通过氧化镁的氧化镁热还原半连续地生产铌粉。将Nb_2O_5原料和还原性镁合金在1173 K的熔融CaCl_2熔池中进行电子分离。将进料重新充入两次,但在3次重复测试过程中,该熔池无需补充即可重新使用,为电子流提供了一条外部路径。监控流经进料(阴极)和还原剂(阳极)之间的外部路径的电流。在外部电路中测得的电流介于0.05至0.1 A之间。铌粉很容易获得,但是随着还原量的增加,其纯度从93%降至82%。但是,这;证明了通过EMR半连续生产铌粉而没有反应物之间直接物理接触的可能性。利用等温化学势图探讨了镁盐在熔融盐中镁热还原的机理。

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