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Transmutation of high-level radioactive waste - Perspectives

In a fast neutron spectrum essentially all long-lived actinides (e.g. Plutonium) undergo fission and thus can be transmuted into generally short lived fission products. Innovative nuclear reactor concepts e.g. accelerator driven systems (ADS) are currently in development that foresee a closed fuel c...

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Autores principales: Junghans, Arnd, Beyer, Roland, Grosse, Eckart, Hannaske, Roland, Kögler, Toni, Massarczyk, Ralf, Schwengner, Ronald, Wagner, Andreas
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1975504
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author Junghans, Arnd
Beyer, Roland
Grosse, Eckart
Hannaske, Roland
Kögler, Toni
Massarczyk, Ralf
Schwengner, Ronald
Wagner, Andreas
author_facet Junghans, Arnd
Beyer, Roland
Grosse, Eckart
Hannaske, Roland
Kögler, Toni
Massarczyk, Ralf
Schwengner, Ronald
Wagner, Andreas
author_sort Junghans, Arnd
collection CERN
description In a fast neutron spectrum essentially all long-lived actinides (e.g. Plutonium) undergo fission and thus can be transmuted into generally short lived fission products. Innovative nuclear reactor concepts e.g. accelerator driven systems (ADS) are currently in development that foresee a closed fuel cycle. The majority of the fissile nuclides (uranium, plutonium) shall be used for power generation and only fission products will be put into final disposal that needs to last for a historical time scale of only 1000 years. For the transmutation of high-level radioactive waste a lot of research and development is still required. One aspect is the precise knowledge of nuclear data for reactions with fast neutrons. Nuclear reactions relevant for transmutation are being investigated in the framework of the european project ERINDA. First results from the new neutron time-of-flight facility nELBE at Helmholtz-Zentrum Dresden-Rossendorf will be presented.
id cern-1975504
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-19755042019-09-30T06:29:59Zhttp://cds.cern.ch/record/1975504engJunghans, ArndBeyer, RolandGrosse, EckartHannaske, RolandKögler, ToniMassarczyk, RalfSchwengner, RonaldWagner, AndreasTransmutation of high-level radioactive waste - PerspectivesNuclear Physics - ExperimentIn a fast neutron spectrum essentially all long-lived actinides (e.g. Plutonium) undergo fission and thus can be transmuted into generally short lived fission products. Innovative nuclear reactor concepts e.g. accelerator driven systems (ADS) are currently in development that foresee a closed fuel cycle. The majority of the fissile nuclides (uranium, plutonium) shall be used for power generation and only fission products will be put into final disposal that needs to last for a historical time scale of only 1000 years. For the transmutation of high-level radioactive waste a lot of research and development is still required. One aspect is the precise knowledge of nuclear data for reactions with fast neutrons. Nuclear reactions relevant for transmutation are being investigated in the framework of the european project ERINDA. First results from the new neutron time-of-flight facility nELBE at Helmholtz-Zentrum Dresden-Rossendorf will be presented.oai:cds.cern.ch:19755042014
spellingShingle Nuclear Physics - Experiment
Junghans, Arnd
Beyer, Roland
Grosse, Eckart
Hannaske, Roland
Kögler, Toni
Massarczyk, Ralf
Schwengner, Ronald
Wagner, Andreas
Transmutation of high-level radioactive waste - Perspectives
title Transmutation of high-level radioactive waste - Perspectives
title_full Transmutation of high-level radioactive waste - Perspectives
title_fullStr Transmutation of high-level radioactive waste - Perspectives
title_full_unstemmed Transmutation of high-level radioactive waste - Perspectives
title_short Transmutation of high-level radioactive waste - Perspectives
title_sort transmutation of high-level radioactive waste - perspectives
topic Nuclear Physics - Experiment
url http://cds.cern.ch/record/1975504
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