Uranium Isotope Enrichment by Chemical Method
Maomi Seko, Tetsuya Miyake, Kohji Inada, Kunihiko Takeda
Abstract
Maomi Seko, Tetsuya Miyake, Kohji Inada, Kunihiko Takeda
Abstract
Through basic research on the separation of uranium isotopes by the isotopic equilibrium reaction of uranus and uranyl ions, we discovered that a novel redox chromatography in adsorption columns is most efficient for the enrichment of 235U. Further studies of kinetics and multicomplexes led to the formation of two very important equations that satisfactorily predict the degree of separation of uranium isotopes. Some results from extensive single-and multicolumn experiments and a model plant currently under design for recovery of 3% enriched uranium are also described.
OpenAlex reports 39 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Through basic research on the separation of uranium isotopes by the isotopic equilibrium reaction of uranus and uranyl ions, we discovered that a novel redox chromatography in adsorption columns is most efficient for the enrichment of 235U. Further studies of kinetics and multicomplexes led to the formation of two very important equations that satisfactorily predict the degree of separation of uranium isotopes. Some results from extensive single-and multicolumn experiments and a model plant currently under design for recovery of 3% enriched uranium are also described.
Key concepts: Uranium, Isotopes of uranium, Uranyl, Chemistry, Isotope separation, Enriched uranium, Isotope, Radiochemistry