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Development of the technological process for the IGR reactor's highly-enriched irradiated uranium-graphite fuel immobilization

  • Kuanysh K. Samarkhanov
  • , Yuliya Yu Baklanova
  • , Olga S. Bukina
  • , Viktor V. Baklanov
  • , Yerbolat T. Koyanbayev
  • , Ivan M. Kukushkin
  • , Igor M. Bolshinsky
  • , Kenneth J. Bateman

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

The immobilization of irradiated highly enriched uranium (HEU) fuel is a critical component of nuclear waste management and non-proliferation efforts. In Kazakhstan, at National Nuclear Center of the Republic of Kazakhstan special attention is given to managing legacy HEU fuel from research reactors. One such case involves the IGR research reactor, whose first core containing irradiated HEU uranium-graphite fuel was operated from 1961 to 1966 and removed following reactor modernization. This fuel now requires a reliable and secure immobilization strategy. This paper presents the development of a technological process for immobilizing this fuel to reduce its enrichment to below 20 % in terms of 235U content. The proposed method involves down-blending irradiated HEU fuel with depleted uranium, followed by encapsulation in a Portland cement matrix. Full-scale experiments were conducted to assess the uniformity of uranium distribution within the matrix. The results confirm the effectiveness of this approach, ensuring reliable immobilization of fuel in accordance with international requirements, including IAEA standards and Kazakhstan's regulatory framework. These findings contribute to the broader effort of adapting immobilization strategies for the safe management of spent fuel from research reactors.

Original languageEnglish
Article number155801
JournalJournal of Nuclear Materials
Volume610
Early online dateApr 1 2025
DOIs
StatePublished - May 2025

Keywords

  • Conversion
  • Down blending
  • Highly-enriched uranium-graphite fuel
  • IGR reactor
  • Immobilization

INL Publication Number

  • INL/JOU-25-83115
  • 195901

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