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On the feasibility of Breed-and-Burn fuel cycles in Molten Salt Reactors
Hombourger, B., Krepel, J., Mikityuk, K., & Pautz, A. (2018). On the feasibility of Breed-and-Burn fuel cycles in Molten Salt Reactors. In Proceedings series (International Atomic Energy Agency): Vol. CN245. Fast reactors and related fuel cycles: next generation nuclear systems for sustainable development (FR17). Proceedings of an international conference organized by the International Atomic Energy Agency, hosted by the government of the Russian Federation through the state atomic energy corporation "Rosatom" and held in Yekaterinburg, Russian Federation, 26–29 June 2017 (p. 388 (11 pp.). International Atomic Energy Agency.
Paul Scherrer Institute's studies on advanced molten salt reactor fuel cycle options
Krepel, J., Hombourger, B., Bykov, V., Fiorina, C., Mikityuk, K., & Pautz, A. (2016). Paul Scherrer Institute's studies on advanced molten salt reactor fuel cycle options. In J. P. Revol, M. Bourquin, Y. Kadi, E. Lillestol, J. C. de Mestral, & K. Samec (Eds.), Thorium energy for the world. Proceedings of the ThEC13 conference, CERN, globe of science and innovation, Geneva, Switzerland, October 27-31, 2013 (pp. 185-192). https://doi.org/10.1007/978-3-319-26542-1_29
Fuel cycle analysis of a Molten Salt Reactor for Breed-and-Burn mode
Hombourger, B., Pautz, A., Krepel, J., & Mikityuk, K. (2015). Fuel cycle analysis of a Molten Salt Reactor for Breed-and-Burn mode. In Proceedings of 2015 international congress on advances in nuclear power plants (ICAPP 2015) (pp. 910-916). SFEN.
Parametric lattice study of a graphite-moderated molten salt reactor
Hombourger, B. A., Křepel, J., Mikityuk, K., & Pautz, A. (2015). Parametric lattice study of a graphite-moderated molten salt reactor. Journal of Nuclear Engineering and Radiation Science, 1(1), 011009 (8 pp.). https://doi.org/10.1115/1.4026401
Parametric lattice study of a graphite-moderated molten salt reactor
Hombourger, B. A., Křepel, J., Mikityuk, K., & Pautz, A. (2014). Parametric lattice study of a graphite-moderated molten salt reactor. In Proceedings of the 2014 22nd international conference on nuclear engineering (ICONE22) (p. V005T17A063 (7 pp.). https://doi.org/10.1115/ICONE22-31050
Fuel cycle advantages and dynamics features of liquid fueled MSR
Křepel, J., Hombourger, B., Fiorina, C., Mikityuk, K., Rohde, U., Kliem, S., & Pautz, A. (2014). Fuel cycle advantages and dynamics features of liquid fueled MSR. Annals of Nuclear Energy, 64, 380-397. https://doi.org/10.1016/j.anucene.2013.08.007
Hybrid spectrum Molten Salt Reactor
Křepel, J., Mikityuk, K., Hombourger, B., Pautz, A., Zanetti, M., Aufiero, M., & Luzzi, L. (2014). Hybrid spectrum Molten Salt Reactor (p. 1102672 (11 pp.). Presented at the International conference on physics of reactors (PHYSOR 2014). .
Dependence of the thorium closed fuel cycle parameters on the moderation level of the molten salt reactor
Krepel, J., Hombourger, B., & Mikityuk, K. (2013). Dependence of the thorium closed fuel cycle parameters on the moderation level of the molten salt reactor. In Proceedings of ICAPP 2013 (pp. 483-492). Korean Nuclear Society.