This study proposes a method of separating uranium (U) and minor actinides from rare earth (RE) elements in the LiCl-KCl salt system. Several RE metals were used to reduce UCl<sub>3</sub> and MgCl<sub>2</sub> from the eutectic ...
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https://www.riss.kr/link?id=A107109561
2020
English
KCI등재,SCOPUS,ESCI
학술저널
373-382(10쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
This study proposes a method of separating uranium (U) and minor actinides from rare earth (RE) elements in the LiCl-KCl salt system. Several RE metals were used to reduce UCl<sub>3</sub> and MgCl<sub>2</sub> from the eutectic ...
This study proposes a method of separating uranium (U) and minor actinides from rare earth (RE) elements in the LiCl-KCl salt system. Several RE metals were used to reduce UCl<sub>3</sub> and MgCl<sub>2</sub> from the eutectic LiCl-KCl salt systems. Five experiments were performed on drawdown U and plutonium (Pu) surrogate elements from RECl<sub>3</sub>-enriched LiCl-KCl salt systems at 773 K. Via the introduction of RE metals into the salt system, it was observed that the UCl<sub>3</sub> concentration can be lowered below 100 ppm. In addition, UCl<sub>3</sub> was reduced into a powdery form that easily settled at the bottom and was successfully collected by a salt distillation operation. When the RE metals come into contact with a metallic structure, a galvanic interaction occurs dominantly, seemingly accelerating the U recovery reaction. These results elucidate the development of an effective and simple process that selectively removes actinides from electrorefining salt, thus contributing to the minimization of the influx of actinides into the nuclear fuel waste stream.
Radionuclide-Specific Exposure Pathway Analysis of Kori Unit 1 Containment Building Surface
Corrosion Behavior of Inconel X-750 for Carbon Anode Oxide Reduction Application
Interaction of Rare Earth Chloride Salts to Alumina and Mullite in LiCl-KCl at 773 K