The studies on the development of fusion-fission hybrid reactors (FFHR) have gained consensus in recent years as an intermediate step before fusion energy. This work proposes a possible approach to FFHRs based on the coupling of a Reversed Field Pinch fusion machine and a Molten Salt Subcritical fission test bed. The proposed test bed is characterized by the coexistence of a fast-neutron fission core and a dedicated thermal-neutron zone, allowing the performing of tritium breeding and actinides transmutation studies. The neutronic design solutions and the results obtained by the irradiation of FLiBe salt (inside the thermal-neutron zone) and of an actinide target (inside the core) are shown. The outcomes of the analysis reveal the potential of FFHR systems as breeding/burner systems. In particular, the results regarding tritium breeding are very encouraging as the system is demonstrated to be able to reach a very high Tritium Breeding Ratio.

Murgo, S., Bustreo, C., Ciotti, M., Lomonaco, G., Orsitto, F.P., Piovan, R., et al. (2024). RFP-MSR Hybrid Reactor Model for Tritium Breeding and Actinides Transmutation †. ENERGIES, 17(12) [10.3390/en17122934].

RFP-MSR Hybrid Reactor Model for Tritium Breeding and Actinides Transmutation †

Murgo S.;Pompeo N.;
2024-01-01

Abstract

The studies on the development of fusion-fission hybrid reactors (FFHR) have gained consensus in recent years as an intermediate step before fusion energy. This work proposes a possible approach to FFHRs based on the coupling of a Reversed Field Pinch fusion machine and a Molten Salt Subcritical fission test bed. The proposed test bed is characterized by the coexistence of a fast-neutron fission core and a dedicated thermal-neutron zone, allowing the performing of tritium breeding and actinides transmutation studies. The neutronic design solutions and the results obtained by the irradiation of FLiBe salt (inside the thermal-neutron zone) and of an actinide target (inside the core) are shown. The outcomes of the analysis reveal the potential of FFHR systems as breeding/burner systems. In particular, the results regarding tritium breeding are very encouraging as the system is demonstrated to be able to reach a very high Tritium Breeding Ratio.
2024
Murgo, S., Bustreo, C., Ciotti, M., Lomonaco, G., Orsitto, F.P., Piovan, R., et al. (2024). RFP-MSR Hybrid Reactor Model for Tritium Breeding and Actinides Transmutation †. ENERGIES, 17(12) [10.3390/en17122934].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11590/478487
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