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氟化物熔盐中快速电脱氧制备金属钒及其机理
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1东北大学,1东北大学,1东北大学,1东北大学,1东北大学

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中图分类号:

TF841.3

基金项目:

中央高校基本科研业务费(N110402007,N130102002)


Preparation and Reaction Mechanism of Metallic Vanadium by Rapid Electro-deoxidization in Molten Fluorides
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1.Northeastern University,1.Northeastern University,1.Northeastern University,1.Northeastern University,1.Northeastern University

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Fundamental Research Funds for the Central Universities(N110402007,N130102002)

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    摘要:

    以偏钒酸铵为原料,采用“煤气还原+原位烧结”工艺制备高活性V2O3阴极片,在氟化物体系熔盐中实现了快速电脱氧制备金属钒,并通过测定循环伏安曲线结合恒电位电解实验,研究了电解过程的反应机理。结果表明:V2O3在氟化物熔盐中可实现快速电脱氧,电解4 h后所得金属钒的氧含量降至0.218 wt%;V2O3阴极在脱氧反应区可原位生成铝氧氟络合离子并进一步产生金属铝,从而引发V2O3阴极的铝热还原反应,导致V2O3熔盐电脱氧过程同时存在直接电还原反应和铝热还原反应,其中后者起着关键的加速作用;在熔盐中添加适量Al2O3可强化V2O3电脱氧过程,在其他条件不变的情况下电脱氧时间可缩短至3 h。

    Abstract:

    By using NH4VO3 as raw material, high-active V2O3 cathode pellets were prepared by reduction with coal gas and in-situ sintering, then were directly reduced to metallic vanadium by rapid electro-deoxidization in molten fluorides. The mechanism of V2O3 electro-deoxidization was studied by cyclic voltammetry experiments and constant potential electrolysis experiments. The results indicate that the rapid electro-deoxidization of V2O3 can be realized in molten fluorides, metallic vanadium containing 0.218 wt% oxygen can be obtained after 4 h electrolysis. The in-suit formation of aluminium-oxygen-fluorine complex ions, which further forming aluminum metal in deoxidation reaction zone, caused aluminum thermal reduction reaction of V2O3 cathode. So direct electro-deoxidation reduction and aluminum thermal reaction of V2O3 both existed in the deoxidation process of V2O3 cathode, and the latter reaction played a key role in acceleration action. Electro-deoxidization process of V2O3 cathode can be enhanced effectively by adding aluminium oxide in molten fluorides, the electrolytic time can be shortened to 3 h with other conditions unchanged.

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孔亚鹏,李斌川,陈建设,刘奎仁,韩庆.氟化物熔盐中快速电脱氧制备金属钒及其机理[J].稀有金属材料与工程,2018,47(6):1824~1829.[Kong Yapeng, Li Binchuan, Chen Jianshe, Liu Kuiren, Han Qing. Preparation and Reaction Mechanism of Metallic Vanadium by Rapid Electro-deoxidization in Molten Fluorides[J]. Rare Metal Materials and Engineering,2018,47(6):1824~1829.]
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  • 收稿日期:2016-05-06
  • 最后修改日期:2016-06-07
  • 录用日期:2016-07-15
  • 在线发布日期: 2018-09-06
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