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Transmutation: reducing the storage time of spent fuel

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Transmutation can reduce the storage time of spent fuel. Efficient transmutation requires a high flux of neutrons and can therefore be done only in nuclear reactors. The article shows the concepts of different solutions of transmutation in nuclear reactors. Knowledge of transmutation is supplemented by information on spent fuel and its radiotoxicity.
Rocznik
Strony
27--34
Opis fizyczny
Bibliogr. 13 poz., rys., tab., wykr.
Twórcy
autor
  • Institute of Heat Engineering, Warsaw University of Technology, 21/25 Nowowiejska Street, 00-665 Warsaw, Poland
autor
  • Institute of Heat Engineering, Warsaw University of Technology, 21/25 Nowowiejska Street, 00-665 Warsaw, Poland
Bibliografia
  • [1] H. C. Claiborne, Neutron induced transmutation of high level radioactive waste, Trans. Am. Nucl. Soc. 15 (1972) p. 91.
  • [2] NEA, Actinide and fission product partitioning and transmutation, Status and assessment report, OECD/NEA (1999).
  • [3] P. C. Jackson, Age-dependent doses to the members of the public from intake of radionuclides part 5, compilation of ingestion inhalation coefficients, in: ICRP 72, 1996.
  • [4] J. Wallenius, Transmutation of Nuclear Waste. Course Compendium, KTH, 2009.
  • [5] H. Nifenecker, O. Meplan, S. David, Accelerator Driven Subcritical Reactors, Institute of Physics Publishing Bristol and Philadelphia, 2003.
  • [6] J. C. Mark, F. von Hippel, E. Lyman, Explosive properties of reactor-grade plutonium, Science and Global Security 17 (2009) 170–185.
  • [7] A. E. Waltar, A. Reynolds, D. R. Todd, P. V. Tsvetkov, Fast Spectrum Reactors, Springer, New York, 2011.
  • [8] P. Reuss, Neutron Physics, EDP Sciences, 2008.
  • [9] G. Youinou, A. Vasile, Plutonium multirecycling in standard pwrs loaded with evolutionary fuels, Nuclear Science and Engineering 151 (2005) 25–45.
  • [10] D.Westlen, Why faster is better - on minor actinide transmutation in hard neutron spectra, Ph.D. thesis, Royal Institute of Technology, Stockholm, Sweden (2007).
  • [11] A Technology Roadmap for Generation IV Nuclear Energy Systems (December).
  • [12] A. Languille, J. C. Gamier, P. Lo Pinto, B. C. Na, D. Verrier, J. Deplaix, P. Allan, T. Newton, R. E. Sunderland, E. Kiefhaber, W. Maschek, D. Struwe, Capra core studies: The oxide reference option, in: Proc. Int. Conf. Evaluation of Emerging Nuclear Fuel Cycle Systems (GLOBAL95), Versailles, France, 1995.
  • [13] J. Wallenius, Physics of americium transmutation, Nuclear Engineering and Technology 44 (2) (2012) 199–206.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b156865b-7c56-4922-93a1-2d27245cfdce
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