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Re-evaluation of Radiation-Energy Transfer to an Extraction Solvent in a Minor-Actinide-Separation Process Based on Consideration of Radiation Permeability
Authors:Tomohiro Toigawa  Yasuhiro Tsubata  Takeshi Kai  Takuya Furuta  Yuta Kumagai  Tatsuro Matsumura
Affiliation:1. Nuclear Science and Engineering Center, Japan Atomic Energy Agency , Ibaraki, Japan toigawa.tomohiro@jaea.go.jpORCID Iconhttps://orcid.org/0000-0002-1374-3028;3. Nuclear Science and Engineering Center, Japan Atomic Energy Agency , Ibaraki, Japan ORCID Iconhttps://orcid.org/0000-0001-7145-1130;4. Nuclear Science and Engineering Center, Japan Atomic Energy Agency , Ibaraki, Japan ORCID Iconhttps://orcid.org/0000-0002-0538-7844;5. Nuclear Science and Engineering Center, Japan Atomic Energy Agency , Ibaraki, Japan ORCID Iconhttps://orcid.org/0000-0003-2124-5472;6. Nuclear Science and Engineering Center, Japan Atomic Energy Agency , Ibaraki, Japan ORCID Iconhttps://orcid.org/0000-0002-9149-0185;7. Nuclear Science and Engineering Center, Japan Atomic Energy Agency , Ibaraki, Japan ORCID Iconhttps://orcid.org/0000-0002-2555-6553
Abstract:ABSTRACT

Absorbed-dose estimation is essential for evaluation of the radiation tolerance of minor-actinide-separation processes. We propose a dose-evaluation method based on radiation permeability, with comparisons of heterogeneous structures seen in the solvent-extraction process, such as emulsions forming in the mixture of the organic and aqueous phases. A demonstration of radiation-energy-transfer simulation is performed with a focus on the minor-actinide-recovery process from high-level liquid waste with the aid of the Monte Carlo radiation-transport code PHITS. The simulation results indicate that the dose absorbed by the extraction solvent from alpha radiation depends upon the emulsion structure, and that from beta and gamma radiation depends upon the mixer-settler-apparatus size. Non-negligible contributions of well-permeable gamma rays were indicated in terms of the plant operation of the minor-actinide-separation process.
Keywords:Absorbed-dose estimation  phits  minor actinides separation  radiolytic stability  TODGA
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