Zirconium behaviour during electrorefining of actinide-zirconium alloy in molten LiCl-KCl on aluminium cathodes
Roland Meier, P. Souček, Rikard Malmbeck, Michael Krachler, A. Rodrigues, Benoît Claux, J.‐P. Glatz, Th. Fanghänel
Heidelberg University Joint Research Centre
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摘要与影响
A pyrochemical electrorefining process for the recovery of actinides from metallic nuclear fuel based on actinide-zirconium alloys (An–Zr) in a molten salt is being investigated. In this process actinides are group-selectively recovered on solid aluminium cathodes as An–Al alloys using a LiCl–KCl eutectic melt at a temperature of 450 °C. In the present study the electrochemical behaviour of zirconium during electrorefining was investigated. The maximum amount of actinides that can be oxidised without anodic co-dissolution of zirconium was determined at a selected constant cathodic current density. The experiment consisted of three steps to assess the different stages of the electrorefining process, each of which employing a fresh aluminium cathode. The results indicate that almost a complete dissolution of the actinides without co-dissolution of zirconium is possible under the applied experimental conditions.
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材料 / 化学Molten salt chemistry and electrochemical processes
Nuclear Materials and Properties · Thermodynamic and Structural Properties of Metals and Alloys
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