Skip to main navigation Skip to search Skip to main content

Preliminary Analysis of Advanced Reactors Storage, Transportation, and Disposal

  • Gordon M Petersen
  • , Ursula Carvajal Nunez
  • , Andrew Minto Clarke Newman
  • , Brady Hanson
  • , Ricardo Torres
  • , Riley Cumberlabd
  • , Mike Billone
  • , Ed Matteo
  • , Laura Price
  • , Dave Sassani

Research output: Contribution to conferencePaperpeer-review

Abstract

Based on the higher interest in Advanced Reactor (AR) deployment (e.g., ARDP[1]) for potential new fuel cycles, the Spent Fuel & Waste Science and Technology (SFWST) Program has begun to evaluate the possible implications of long-term management and final disposition of potential Advance Reactor spent nuclear fuels (SNF) that would be generated in potential advanced reactors. Safely managing and dispositioning the potential future AR SNF, and any other associated radioactive wastes, is the primary focus of this initial preliminary assessment of those. This paper summarizes the efforts by the Spent Fuel & Waste Science and Technology (SFWST) in evaluating characteristics and packaging options for advanced reactor spent nuclear fuel forms. The fuel forms were categorized into three types: (1) tristructural isotropic (TRISO), (2) metallic, and (3) fuel salt. This work emphasized TRISO and metallic SNF and waste streams because of the near-term anticipated operation of the Xe-100 and the Natrium reactors as advanced-reactor demonstrations. Preliminary information for the spent-fuel salts discharged from molten-salt reactors (MSRs) is also examined to provide a baseline for future efforts. All calculations and assumptions used publicly available information. The following characteristics are calculated or estimated for use in the preliminary assessments: SNF volume and mass, radiation/activity levels through time, thermal conditions through time, potential radionuclide source terms, chemical interactions and evolutions, disposal inventories, and waste-form lifetime. Using those characteristics, calculations to determine the applicability of existing canister designs were performed. These evaluations included geometric (e.g., dimension, volume) and mass/weight considerations, known operational approaches and loading procedures, physical and chemical considerations/conditions for storage environments, as-loaded radiation, thermal, and criticality analyses to identify constraints for storage, transportation, and disposal. The paper also includes a literature review and analysis on the storage, transportation, and disposal evaluations and experiences from reactors with similar fuel forms. Advanced-reactor vendors cite past experiences with Fort St. Vrain for TRISO and the Experimental Breeder Reactor II (EBR-II) for metallics that have major influences on fuel design. Finally, the paper includes preliminary concepts of operation for advanced-reactor SNF. This encompasses storage, transportation, potential treatment, and disposal activities from both a per-canister and systems-integration perspective.
Original languageEnglish
StatePublished - 2024
EventWaste Management Symposia 2024: Waste Management Symposia 2024, Phoenix, AZ, 03/10/2024 - 03/14/2024 - Phoenix, United States
Duration: Mar 10 2024Mar 14 2024

Conference

ConferenceWaste Management Symposia 2024
Country/TerritoryUnited States
CityPhoenix
Period03/10/2403/14/24

Keywords

  • 11 - NUCLEAR FUEL CYCLE AND FUEL MATERIALS
  • 12 - MGMT OF RADIOACTIVE AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES
  • Spent Nuclear Fuel
  • Advanced Reactors

INL Publication Number

  • INL/CON-23-75963
  • 166385

Fingerprint

Dive into the research topics of 'Preliminary Analysis of Advanced Reactors Storage, Transportation, and Disposal'. Together they form a unique fingerprint.

Cite this