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024 7 _ |a corda__h2020::755171
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035 _ _ |a G:(EU-Grant)755171
150 _ _ |a GEN IV Integrated Oxide fuels recycling strategies
|y 2017-06-01 - 2021-05-31
371 _ _ |a University of Twente
|b University of Twente
|d Netherlands
|e http://www.utwente.nl/en/
|v CORDIS
371 _ _ |a Lancaster University
|b Lancaster University
|d United Kingdom
|e http://www.lancaster.ac.uk/
|v CORDIS
371 _ _ |a CNRS - Institut des Sciences Biologiques
|b INSB
|d France
|e http://www.cnrs.fr/insb/
|v CORDIS
371 _ _ |a Polytechnic University of Milan
|b Polytechnic University of Milan
|d Italy
|e http://www.polimi.it/en/
|v CORDIS
371 _ _ |a Belgian Nuclear Research Centre
|b SCK
|d Belgium
|e https://www.sckcen.be/en
|v CORDIS
371 _ _ |a LGI CONSULTING
|b LGI
|d France
|e http://www.lgi-consulting.com
|v CORDIS
371 _ _ |a University of Manchester
|b University of Manchester
|d United Kingdom
|e http://www.manchester.ac.uk/
|v CORDIS
371 _ _ |a University of Leeds
|b University of Leeds
|d United Kingdom
|e http://www.leeds.ac.uk/
|v CORDIS
371 _ _ |a Edinburgh Napier University
|b Edinburgh Napier University
|d United Kingdom
|e http://www.napier.ac.uk/alumni/Pages/home.aspx
|v CORDIS
371 _ _ |a Institut de Radioprotection et de Sûreté Nucléaire
|b IRSN
|d France
|e http://www.irsn.fr/EN/Pages/home.aspx
|v CORDIS
371 _ _ |a University of Parma
|b UNIPR
|d Italy
|e http://en.unipr.it/
|v CORDIS
371 _ _ |a ORANO CYCLE
|b AREVA NC SA
|d France
|e http://www.velizy.cogema.fr
|v CORDIS
371 _ _ |a USTAV ANORGANICKE CHEMIE AV CR VVI
|b INSTITUTE OF INORGANIC CHEMISTRY ACADEMY OF SCIENCES OF CZECH REPUBLIC
|d Czech Republic
|e http://www.iic.cas.cz
|v CORDIS
371 _ _ |a Electricité de France (France)
|b EDF
|d France
|e https://www.edf.fr/en/home
|v CORDIS
371 _ _ |a Karlsruher Institut für Technologie
|b KIT
|d Germany
|e http://www.kit.edu
|v CORDIS
371 _ _ |a Chalmers University of Technology
|b Chalmers University of Technology
|d Sweden
|e http://www.chalmers.se/en/Pages/default.aspx
|v CORDIS
371 _ _ |a JRC -JOINT RESEARCH CENTRE- EUROPEAN COMMISSION
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|d Belgium
|e https://ec.europa.eu/jrc
|v CORDIS
371 _ _ |a Atomic Energy and Alternative Energies Commission
|b CEA
|d France
|e http://www.cea.fr/
|v CORDIS
371 _ _ |a Instytut Chemii i Techniki Jądrowej
|b Instytut Chemii i Techniki Jądrowej
|d Poland
|e http://www.ichtj.waw.pl/drupal/
|v CORDIS
371 _ _ |a CESKE VYSOKE UCENI TECHNICKE V PRAZE
|b CVUT
|d Czech Republic
|e https://www.cvut.cz/en
|v CORDIS
371 _ _ |a National Nuclear Laboratory
|b NNL
|d United Kingdom
|e http://www.nnl.co.uk/
|v CORDIS
371 _ _ |a Forschungszentrum Jülich
|b Forschungszentrum Jülich
|d Germany
|e https://www.ptj.de/
|v CORDIS
371 _ _ |a University of Reading
|b University of Reading
|d United Kingdom
|e http://www.reading.ac.uk/
|v CORDIS
371 _ _ |a CENTRO DE INVESTIGACIONES ENERGETICAS, MEDIOAMBIENTALES Y TECNOLOGICAS-CIEMAT
|b CIEMAT
|d Spain
|e http://www.ciemat.es
|v CORDIS
372 _ _ |a NFRP-2016-2017-1
|s 2017-06-01
|t 2021-05-31
450 _ _ |a GENIORS
|w d
|y 2017-06-01 - 2021-05-31
510 1 _ |0 I:(DE-588b)5098525-5
|a European Union
|2 CORDIS
680 _ _ |a The current open nuclear fuel cycle uses only a few percent of the energy contained in uranium. This efficiency can be greatly improved through the recycling of spent fuel (as done today in France for instance), including, in the longer term, multi-recycling strategies to be deployed in fast reactors. In this context, GENIORS addresses research and innovation in fuel cycle chemistry and physics for the optimisation of fuel design in line with the strategic research and innovation agenda and deployment strategy of SNETP, notably of its ESNII component. GENIORS focuses on reprocessing and fuel manufacture of MOX fuel potentially containing minor actinides, which would be reference fuel for the ASTRID and ALFREDO demonstrators. More specifically, GENIORS will carry out research and innovation for developing compatible techniques for dissolution, reprocessing and manufacturing of innovative oxide fuels, potentially containing minor actinides, in a “fuel to fuel” approach taking into account safety issues under normal and mal-operation. It also considers the impacts of these strategies on the interim storage. For delivering a full picture of a MOX fuel cycle, GENIORS will work in close collaboration with the INSPYRE project on oxide fuels performance. By implementing a three step approach (reinforcement of the scientific knowledge => process development and testing => system studies, safety and integration), GENIORS will lead to the provision of more science-based strategies for nuclear fuel management in the EU. It will allow nuclear energy to contribute significantly to EU energy independence. In the longer term, it will facilitate the management of ultimate radioactive waste by reducing its volume and radio-toxicity. At the longer term, a better understanding of a spent nuclear properties and behavior, at each step of the cycle will increase the safety of installations for interim storage during normal operation but also hypothetical accident scenarios.
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