Published 2018 | Version v1
Miscellaneous

Advanced Waste Management Concepts for Uranium and Plutonium Multi-Recycling - 18533

  • 1. CEA, Nuclear Energy Division, Research Department on Enrichment, Decommissioning and Waste Technologies, CEA Marcoule, Bat 208, BP17171, F-30207 Bagnols sur Ceze (France)
  • 2. CEA, Nuclear Energy Division, Research Department on Mining and Fuel Recycling Processes, CEA Marcoule, Bat 208, BP17171, F-30207 Bagnols sur Ceze (France)

Description

The multiple recycling of plutonium and uranium will play a major role in gradually achieving a fully closed nuclear fuel cycle in the future, once the first Generation IV fast reactors (FR) are deployed in the NPP fleet. To reach this objective, optimizations of current processes and technologies and, in some cases, the development of innovative concepts are required to meet the scientific, technical and economic challenges imposed by the treatment of spent fuels with an increasingly higher Pu content. Based on the significant past experience acquired by France in LWR and FR MOX fuel treatment, the CEA is running R and D studies to develop new efficient processes for Pu recycling and for FR MOX fuel fabrication. More compact and economically competitive processes, ensuring the safety/security of the facilities (particularly as regards criticality and proliferation resistance) have to be developed taking into account that the amounts of plutonium involved will be one order of magnitude higher than in UOX fuels. New concepts of head-end treatment, dissolution, and separation have been proposed. Consequently, effluent and waste management must be adapted to these processes and to the characteristics of fast reactor MOX fuels. New waste treatment processes are suggested: 1) Cladding waste and undissolved metallic particles could be treated simultaneously in a melting process. The molten metal could be decontaminated by a specific slag and the oxides recovered, in particular PuO2, would be recycled at the frond-end of the process, 2) Fission Products and Actinides (FPA) containment glass will also be optimized to accommodate significant amounts of iron, nickel and chromium coming from hull corrosion, and / or decontamination slag coming from the metal melting process. 3) New peraluminous-type glass formulations are under development to accept increased amounts of FPA, as well as iron, nickel, and chromium. The first trials to evaluate the melting process have indicated that metallic compounds from the dissolution residues could be easily incorporated into a molten metal at levels of 1, 2 and 3 w%. (authors)

Availability note (English)

Available from: WM Symposia, Inc., PO Box 27646, 85285-7646 Tempe, AZ (United States)

Additional details

Publishing Information

Imprint Pagination
9 p.
Report number
INIS-US--20-WM-18533

Conference

Title
44. Annual Waste Management Conference
Acronym
WM2018
Dates
18-22 Mar 2018
Place
Phoenix, AZ (United States)

Optional Information

Notes
13 refs.; Available online at: https://www.xcdsystem.com/wmsym/2018/index.html