Spent Nuclear Fuel—Waste or Resource? The Potential of Strategic Materials Recovery during Recycle for Sustainability and Advanced Waste Management

Отработавшее ядерное топливо — отход или ресурс? Потенциал извлечения стратегических материалов при переработке для обеспечения устойчивости и совершенствования обращения с отходами
Alistair F. Holdsworth, H. Eccles, Clint A. Sharrad, Kathryn George
2023-01-15

actinidesnuclear fuel reprocessingrare earth elementsspent nuclear fuelstrategic materials recovery
Nuclear fuel is both the densest form of energy in its virgin state and, once used, one of the most hazardous materials known to humankind. Though commonly viewed as a waste—with over 300,000 tons stored worldwide and an additional 7–11,000 tons accumulating annually—spent nuclear fuel (SNF) represents a significant potential source of scarce, valuable strategic materials. Beyond the major (U and Pu) and minor (Np, Am, and Cm) actinides, which can be used to generate further energy, resources including the rare earth elements (Y, La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, and Tb), platinum group metals, (Ru, Rh, Pd, and Ag), noble gases (He, Kr, and Xe), and a range of isotopes useful for medical and energy generation purposes are also produced during fission. One reason for the accumulation of so much SNF is the low uptake of SNF recycle (or reprocessing), primarily due to the high capital and operational costs alongside concerns regarding proliferation and wastes generated. This study will highlight the predominantly overlooked potential for the recovery of strategic materials from SNF, which may offset costs and facilitate advanced waste management techniques for minimised waste volumes, thus increasing the sustainability of the nuclear fuel cycle on the path towards Net Zero. Potential challenges in the implementation of this concept will also be identified.
1
Implementation faces significant challenges, particularly high capital and operating costs, proliferation concerns, and the generation of additional wastes.
2
Minor actinides in spent nuclear fuel, including neptunium, americium, and curium, could support additional energy generation if recovered and managed appropriately.
3
Recovering strategic materials during spent-fuel recycling could help offset reprocessing costs and improve the economic viability of recycle systems.
4
Spent nuclear fuel, despite being treated as waste, contains recoverable strategic materials beyond uranium and plutonium, including rare earth elements, platinum-group metals, noble gases, and useful isotopes.
5
Strategic-material recovery could enable advanced waste management by reducing final waste volumes and supporting a more sustainable nuclear fuel cycle.

spent nuclear fuel (SNF) and its recycle/reprocessing stream

the potential, challenges, and sustainability benefits of recovering strategic materials and useful isotopes during SNF recycle, including waste-volume minimization and cost offsetting

Publication Details
Publication Date
2023-01-15
Journal
Publisher
ISSN
Cited by
48
Access Type
Author Information
Authors
Alistair F. Holdsworth
H. Eccles
Clint A. Sharrad
Kathryn George
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%