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Journal of Power Sources, ISSN 0378-7753, 11/2016, Volume 332, pp. 274 - 280
A new kind of membrane free liquid metal battery was developed. The battery employs liquid sodium and zinc as electrodes both in liquid state, and NaCl-CaCl2... 
Coulombic efficiency | Liquid metal battery | Molten salts | Stationary energy storage | ELECTROCHEMISTRY | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | ENERGY-STORAGE | Electrolytes | Liquid metals | Batteries
Journal Article
Journal of the Electrochemical Society, ISSN 0013-4651, 2017, Volume 164, Issue 12, pp. A2335 - A2340
The electroreduction processes on a Mo electrode in a Na-Zn liquid metal battery cell with a molten NaCl-CaCl2-ZnCl2 electrolyte were investigated at 565... 
ELECTROCHEMISTRY | ENERGY-STORAGE | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
Key Engineering Materials, ISSN 1013-9826, 05/2010, Volume 436, pp. 93 - 101
The aim of this work was to improve the quality of the produced titanium at the cathode in electrolysis experiments using a titanium oxycarbide anode, which is... 
Liquid cathode | Titanium oxycarbide | Electrolysis | Molten fluorides | Molten chlorides | Voltammetry | Anodes | Liquid metals | Standards | Titanium base alloys | Titanium carbide | Oxycarbides | Solid solutions | Titanium | Electrolytes | Titanium dioxide | Deposition | Cathodes
Journal Article
Key Engineering Materials, ISSN 1013-9826, 05/2010, Volume 436, pp. 41 - 53
The present work deals with the investigation of an electrolytic method for titanium production that uses TiO2 enriched titania slag as raw material. The... 
Titania slag | Molten chlorides | Titanium oxycarbide | Carbothermal reduction | Electrolysis | Enrichment | Electric potential | Stability | Raw materials | Sponges | Conversion | Oxycarbides | Slags | Reduction (electrolytic) | Anodizing | Chlorides | Voltage | Titanium | Electrolytes | Anodes | Titanium dioxide | Deposition | Cathodes | Melts
Journal Article
Conference Proceeding
Minerals, Metals and Materials Series, ISSN 2367-1181, 2017, Issue 210819, pp. 1333 - 1339
Journal Article
TMS Light Metals, ISSN 0147-0809, 2016, Volume 2016-, pp. 915 - 920
Conference Proceeding
02/2014, ISBN 1118889088, Volume 9781118889084, 5
This chapter contains sections titled: Introduction Experimental Results Discussion Conclusion Acknowledgement 
gas anodes | Aluminium | anode depolarization | Gas anodes | Anode depolarization
Book Chapter
02/2016, ISBN 1119225795, 6
One of the major downsides of the current aluminium production process is the high amount of CO 2 e mission. One alternative is to replace the consumable... 
Methane | Aluminium electrolysis | Porous anodes
Book Chapter
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