SACSESS – the EURATOM FP7 project on actinide separation from spent nuclear fuels

SACSESS — проект EURATOM FP7 по разделению актинидов из отработавшего ядерного топлива
Andreas Geist, Stéphane Bourg, J. Narbutt
2015-12-01

actinide separationfuel reprocessinghydrometallurgical processespyrometallurgical processesspent nuclear fuel
Abstract Recycling of actinides by their separation from spent nuclear fuel, followed by transmutation in fast neutron reactors of Generation IV, is considered the most promising strategy for nuclear waste management. Closing the fuel cycle and burning long-lived actinides allows optimizing the use of natural resources and minimizing the long-term hazard of high-level nuclear waste. Moreover, improving the safety and sustainability of nuclear power worldwide. This paper presents the activities striving to meet these challenges, carried out under the Euratom FP7 collaborative project SACSESS (Safety of Actinide Separation Processes). Emphasis is put on the safety issues of fuel reprocessing and waste storage. Two types of actinide separation processes, hydrometallurgical and pyrometallurgical, are considered, as well as related aspects of material studies, process modeling and the radiolytic stability of solvent extraction systems. Education and training of young researchers in nuclear chemistry is of particular importance for further development of this field.
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Both hydrometallurgical and pyrometallurgical actinide separation processes were studied within the project.
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SACSESS emphasized education and training of young researchers as important for advancing nuclear chemistry and fuel-cycle technologies.
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SACSESS investigated actinide recycling through separation from spent nuclear fuel and subsequent transmutation in Generation IV fast reactors.
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Supporting research covered materials, process modeling, and the radiolytic stability of solvent-extraction systems.
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The project addressed safety issues associated with fuel reprocessing and long-term radioactive waste storage.

actinide separation processes for spent nuclear fuel reprocessing and waste management

safety issues and radiolytic stability of hydrometallurgical and pyrometallurgical actinide separation processes, including process modeling and material-related aspects

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2015-12-01
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Authors
Andreas Geist
Stéphane Bourg
J. Narbutt
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