Direct electrochemical reduction of titanium dioxide to titanium in molten calcium chloride
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- 1 September 2000
- journal article
- Published by Springer Nature in Nature
- Vol. 407 (6802) , 361-364
- https://doi.org/10.1038/35030069
Abstract
Many reactive metals are difficult to prepare in pure form without complicated and expensive procedures. Although titanium has many desirable properties (it is light, strong and corrosion-resistant), its use has been restricted because of its high processing cost. In the current pyrometallurgical process--the Kroll process--the titanium minerals rutile and ilmenite are carbochlorinated to remove oxygen, iron and other impurities, producing a TiCl4 vapour. This is then reduced to titanium metal by magnesium metal; the by-product MgCl2 is removed by vacuum distillation. The prediction that this process would be replaced by an electrochemical route has not been fulfilled; attempts involving the electro-deposition of titanium from ionic solutions have been hampered by difficulties in eliminating the redox cycling of multivalent titanium ions and in handling very reactive dendritic products. Here we report an electrochemical method for the direct reduction of solid TiO2, in which the oxygen is ionized, dissolved in a molten salt and discharged at the anode, leaving pure titanium at the cathode. The simplicity and rapidity of this process compared to conventional routes should result in reduced production costs and the approach should be applicable to a wide range of metal oxides.Keywords
This publication has 16 references indexed in Scilit:
- A cold-gas spray coating process for enhancing titaniumJOM, 1998
- Ti and TiAl powders by the flash reduction of chloride vaporsJOM, 1998
- The continuous production of titanium powder using circulating molten saltJOM, 1998
- The solid-state spray forming of low-oxide titanium componentsJOM, 1998
- The production of low-cost titanium powdersJOM, 1998
- The present status of dental titanium castingJOM, 1998
- The high-quality precision casting of titanium alloysJOM, 1998
- Producing lower-cost titanium for automotive applicationsJOM, 1998
- Titanium and other light metals: Let’s do something about costJOM, 1998
- The Production of Ductile TitaniumTransactions of The Electrochemical Society, 1940