Pyrometallurgical Partitioning of Uranium and Transuranic Elements from Rare Earth Elements by Electrorefining and Reductive Extraction
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概要
- 論文の詳細を見る
High-level liquid waste generated from PUREX reprocessing contains a small amount of transuranic elements, such as Np, Pu, Am, and Cm, with long-lived radioactivities. A pyrometallurgical partitioning process is being developed to recover transuranic elements from such waste. Small amounts of U contained in the high-level liquid waste are also recovered in the process. A key issue for developing the process is effective separation of U and the transuranic elements from the rare-earth elements, because the two elemental groups are chemically analogous. A series of process tests were carried out in the present study to demonstrate that a combination of electrorefining and reductive extraction is useful for separating U and transuranic elements from the rare-earth elements. The results indicate that 99% of U and each transuranic element is recovered by the combination process as a product, and that the quantity of rare-earth elements contained in the product is smaller than the transuranic elements by weight. The overall mass balance of U and transuranic elements in the system ranged within the experimental errors assigned to sampling and analysis.
- 社団法人 日本原子力学会の論文
- 2001-01-25
著者
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INOUE Tadashi
Central Research Institute of Electric Power Industry
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Inoue T
Central Research Institute Of Electric Power Industry
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UOZUMI Koichi
Komae Research Laboratory, Central Research Institute of Electric Power Industry
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KINOSHITA Kensuke
Komae Research Laboratory, Central Research Institute of Electric Power Industry
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INOUE Tadashi
Komae Research Laboratory, Central Research Institute of Electric Power Industry
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FUSSELMAN S.
Rocketdyne Propulsion and Power, The Boeing Company
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GRIMMETT D.
Rocketdyne Propulsion and Power, The Boeing Company
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ROY J.
Rocketdyne Propulsion and Power, The Boeing Company
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STORVICK T.
Missouri University Research Reactor, University of Missouri-Columbia
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KRUEGER C.
Missouri University Research Reactor, University of Missouri-Columbia
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NABELEK C.
Missouri University Research Reactor, University of Missouri-Columbia
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Krueger C.
The University Of Missouri-columbia
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Storvick T.
The University Of Missouri-columbia
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Grimmett D.
The Boeing Company
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Fusselman S.
The Boeing Company
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Uozumi Koichi
Komae Research Laboratory Central Research Institute Of Electric Power Industry
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Nabelek C.
Missouri University Research Reactor University Of Missouri-columbia
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Roy J.
Rocketdyne Propulsion And Power The Boeing Company
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Inoue Tadashi
Komae Research Laboratory Central Research Institute Of Electric Power Industry
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Krueger C.
Missouri University Research Reactor University Of Missouri-columbia
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Fusselman S.
Rocketdyne Propulsion And Power The Boeing Company
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Kinoshita K
Central Res. Inst. Electric Power Ind. Tokyo
関連論文
- Recovery of Transuranium Elements from Real High-Level Liquid Waste by Pyropartitioning Process
- Electrodeposition of Uranium and Transuranic Elements onto Solid Cathode in LiCl-KCl/Cd System for Pyrometallurgical Partitioning
- Pyrometallurgical Partitioning of Uranium and Transuranic Elements from Rare Earth Elements by Electrorefining and Reductive Extraction
- Conversion of Simulated High-level Liquid Waste to Chloride for the Pretreatment of Pyrometallurgical Partitioning Process
- Separation of Uranium and Transuranic Elements from Rare Earth Elements by Means of Multistage Extraction in LiCl-KCl/Bi System
- Separation Of Actinides from Rare Earth Elements by Electrorefining in LiCl-KCl Eutectic Salt
- Transfer Kinetics of Metals from Molten Fission Product Chloride to Liquid Lead Cathode during Electrolysis in Pyrometallurgical Treatment of Highly Radioactive Waste
- Integrated Experiments of Electrometallurgical Pyroprocessing Using Plutonium Oxide
- The Transuranic Mass Balance during the Introduction of Metal Fuel FBR Cycle
- Recovery of Transuranium Elements from Real High-Level Liquid Waste by Pyropartitioning Process
- Electrochemical Reduction of (U,Pu)O_2 in Molten LiCl and CaCl_2 Electrolytes
- Estimation of Material Balance in Pyrometallurgical Partitioning Process of Transuranic Elements from High-level Liquid Waste
- Electrodeposition of Uranium and Transuranic Elements onto Solid Cathode in LiCl-KCl/Cd System for Pyrometallurgical Partitioning