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Effect of electrolysis voltage on electrochemical reduction of titanium oxide to titanium in molten calcium chloride

机译:电解电压对熔融氯化钙中氧化钛电化学还原成钛的影响

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摘要

The electrochemical reduction of solid TiO_2 directly to solid metal is a promising alternative to the current Kroll process. The present work is aimed at studying the effect of electrolysis voltage on the rate of electrochemical reduction. The products of electrochemical reduction of TiO_2 and Ti_2O were examined using the scanning electron microscopy (SEM) and X-ray diffraction (XRD) techniques. The results show that Ti_2O was reduced to low valent titanium oxide at 1.5 -1.7 V, which was the result of ionization of oxygen. TiO_2 and Ti_2O were reduced to titanium metal at 2.1-3.1 V, which was the co-action of ionization of oxygen and calciothermic reduction. The oxygen content decreased rapidly with voltage increasing from 2.1 to 2.6 V, while it changed little from 2.6 to 3.1 V. The optimized cell voltage was 2.6-3.1 V.
机译:将固体TiO_2直接电化学还原为固体金属是当前Kroll工艺的有希望的替代方法。当前的工作旨在研究电解电压对电化学还原速率的影响。使用扫描电子显微镜(SEM)和X射线衍射(XRD)技术检查了TiO_2和Ti_2O的电化学还原产物。结果表明,Ti_2O在1.5 -1.7 V下被还原为低价氧化钛,这是氧离子化的结果。 TiO_2和Ti_2O在2.1-3.1 V时被还原为钛金属,这是氧离子化和钙热还原的共同作用。随着电压从2.1 V增加到2.6 V,氧含量迅速降低,而从2.6 V降至3.1 V几乎没有变化。最佳电池电压为2.6-3.1V。

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