Recovery of protactinium from irradiated thorium nitrate by solvent extraction

Мұқаба

Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Рұқсат ақылы немесе тек жазылушылар үшін

Аннотация

Recovery of protactinium from irradiated thorium nitrate by solvent extraction is studied in relation to the blanket conditions of a fusion neutron source (FNS) using n-octanol and diisobutylcarbinol (DIBC) as extractants. The degree of extraction of 233Pa from a solution of irradiated thorium nitrate (600 g/dm3) in 3 M nitric acid in one contact exceeded 80%, and the separation coefficients from uranium and thorium were obtained to be more than 600 and 130 000, respectively. To minimize the content of 232U in 233U (to less than 5 ppm), a procedure is proposed that includes short-term irradiation of thorium nitrate and continuous extraction of protactinium.

Толық мәтін

Рұқсат жабық

Авторлар туралы

M. Khokhlov

Khlopin Radium Institute

Email: fys54@mail.ru
Ресей, 2-i Murinskii pr. 28, St. Petersburg, 194021

A. Yakushin

Khlopin Radium Institute

Email: fys54@mail.ru
Ресей, 2-i Murinskii pr. 28, St. Petersburg, 194021

Yu. Fedorov

St. Petersburg State Institute of Technology (Technical University)

Хат алмасуға жауапты Автор.
Email: fys54@mail.ru
Ресей, Moskovskii pr. 24-26/49 lit. A, St. Petersburg, 190013

V. Samonin

St. Petersburg State Institute of Technology (Technical University)

Email: fys54@mail.ru
Ресей, Moskovskii pr. 24-26/49 lit. A, St. Petersburg, 190013

V. Davidenko

National Research Center Kurchatov Institute

Email: fys54@mail.ru
Ресей, pl. Akademika Kurchatova 1, Moscow, 123182

A. Kovalishin

National Research Center Kurchatov Institute

Email: fys54@mail.ru
Ресей, pl. Akademika Kurchatova 1, Moscow, 123182

K. Pavlov

National Research Center Kurchatov Institute

Email: fys54@mail.ru
Ресей, pl. Akademika Kurchatova 1, Moscow, 123182

Yu. Titarenko

National Research Center Kurchatov Institute

Email: fys54@mail.ru
Ресей, pl. Akademika Kurchatova 1, Moscow, 123182

A. Kirsanov

National Research Center Kurchatov Institute; Moscow Polytechnic University

Email: fys54@mail.ru
Ресей, pl. Akademika Kurchatova 1, Moscow, 123182; ul. Bol’shaya Semenovskaya 38, Moscow, 107023

A. Arkhipov

Moscow Polytechnic University

Email: fys54@mail.ru
Ресей, ul. Bol’shaya Semenovskaya 38, Moscow, 107023

M. Kotel’nyi

Moscow Polytechnic University

Email: fys54@mail.ru
Ресей, ul. Bol’shaya Semenovskaya 38, Moscow, 107023

Әдебиет тізімі

  1. Molten Salt Reactors and Thorium Energy / Eds. T.J. Dolan, I. Pázsit, A. Rykhlevskii, R. Yoshioka. Woodhead Publishing Ser. in Energy, 2024. 2nd Ed.
  2. Велихов Е.П., Ковальчук М.В., Ильгисонис В.И., Игнатьев В.В., Цибульский В.Ф., Андрианова Е.А. // Энергетическая политика. 2017. № 3. С. 12.
  3. Velikhov E.P., Kovalchuk M.V., Azitov E.A., Ignatiev V.V., Subbotin S.A., Tsibulskiy V.F. // At. Energy. 2013. Vol. 114. № 3. P. 193.
  4. https://doi.org/10.1007/s10512-013-9695-x
  5. Titarenko Yu.E., Pavlov K.V., Titarenko A.Yu., Legostaev V.O., Zhigulina M.A., Khalikov R.S. et al. // Fusion Sci. Technol. 2022. Vol. 78. N 7. P. 549–572. https://doi.org/10.1080/15361055.2022.2076999
  6. Titarenko Y.E., Ananev S.S., Batyaev V.F., Belousov V.I., Blandinskiy V.Y., Chernov K.G. et al. // Fusion Sci. Technol. 2023. Vol. 79. N 2. P. 117–134. https://doi.org/10.1080/15361055.2022.2121525
  7. Марин С.В., Шаталов Г.Е. // Атом. энергия. 1984. T. 56. № 5. C. 289–291.
  8. Kang J., Hippel F.N. // Sci. Global Secur. 2001. Vol. 9. P. 1–32.
  9. Vasiliev A.N., Ermolaev S.V., Lapshina E.V., Bravo M.G., Skasyrskaya A.K. // Solvent Extr. Ion Exch. 2022. Vol. 40. N 7. P. 735–755. https://doi.org/10.1080/07366299.2022.2088059
  10. Knight A.W., Eitrheim E.S., Nelson A.W., Peterson M., McAlister D., Forbes T.Z., Schultz M.K. // Solvent Extr. Ion Exch. 2016. Vol. 34. N 6. P. 509–521. https://doi.org/10.1080/07366299.2016.1207460
  11. Николотова З.И. Экстракция нейтральными органическими соединениями: cправочник. М.: Энергоатомиздат, 1999. 544 с.
  12. Химия актинидов / Под ред. Дж. Каца, Г. Сиборга, Л. Морсса. М.: Мир, 1991. T. 1. 525 с.
  13. Kumari N., Pathak P.N., Prabhu D.R., Manchanda V.K. // Desalinat. Water Treat. 2012. Vol. 38. N 1–3. P. 46–51. https://doi.org/10.1080/19443994.2012.664263
  14. Anan’ev V., Seliverstov M. // Ceramics–Silikaty. 2005. Vol. 49. N 1. P. 68–72.
  15. Федоров Ю.С., Самонин В.В., Зотов А.С., Хрылова Е.Д., Спиридонова Е.А., Мирославов А.Е., Акатов А.А. // Радиохимия. 2022. T. 64. № 3. C. 241–247.

Қосымша файлдар

Қосымша файлдар
Әрекет
1. JATS XML
2. Fig. 1. Chains of nuclide transformations in a thorium blanket.

Жүктеу (125KB)
3. Fig. 2. Extraction of 231Pa depending on the concentration of octanol. Concentration of thorium nitrate 0.4 mol/dm3. Concentration of nitric acid, mol/l: 1 – 3.0, 2 – 4.0.

Жүктеу (73KB)
4. Fig. 3. Extraction of 231Pa depending on the concentration of DIBC. Concentration of thorium nitrate 0.4 mol/dm3. Concentration of nitric acid, mol/l: 1 – 3.0, 2 – 4.0.

Жүктеу (70KB)
5. Fig. 4. A variant of the scheme for continuous extraction of protactinium with the aim of producing 233U with a minimum (<5 ppm) content of 232U.

Жүктеу (171KB)

© Russian Academy of Sciences, 2025