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Research on Effect Factors of Current Efficiency in the Process of Sponge Titanium Production by Electrolytic Method

机译:电解方法对海绵钛生产过程中电流效率影响因素研究

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This paper systematically analyzes the various factors that affect the current efficiency in the process of sponge titanium production by vacuum molten salt electrolysis method. The research result shows that firstly, when electrolysis is undertaken in CaC12 molten salt system under the condition that the pressure is under 101Pa, temperature is at 850°C, space between electrodes is 5 cm, cathodic current density is 1.05 A - cm-2 and anodic current density is 0.8A - cm-2 , the reoxidation of sponge titanium can be effectively avoided, the loss of electric current can be reduced and current efficiency can be greatly improved. Secondly, current efficiency can be greatly improved when mix molten salt system CaCl2+A is adopted, which can greatly reduce the electrolysis temperature and the resistance of molten salt. Thirdly, current efficiency can be greatly improved through selecting appropriate vacuum degree, appropriate molten salt system, appropriate space between electrodes, appropriate current density; in addition, keeping tidy reduction cell inside and adopting high-purity molten salt and raw material TiO_2 are another ways for current efficiency improvement.
机译:本文系统地分析了通过真空熔融盐电解方法影响海绵钛生产过程中的各种因素。研究结果表明,首先,在CaC12熔盐系统中在压力下的条件下进行电解时,温度为850℃,电极之间的空间为5cm,阴极电流密度为1.05 a-cm-2并且阳极电流密度为0.8A - CM-2,可以有效地避免海绵钛的再氧化,可以降低电流的损耗,并且可以大大提高电流效率。其次,当采用混合熔盐系统CaCl2 + A时,可以大大提高电流效率,这可以大大降低电解温度和熔盐的电阻。第三,通过选择适当的真空度,适当的熔盐系统,电极之间适当的空间,可以大大提高电流效率,电极之间适当的电流密度;此外,保持整洁的降低细胞内部和采用高纯度熔盐和原料TiO_2是当前效率改善的另一种方式。

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