Title of article :
Possibility of fusion power reactor to transmute minor actinides of spent nuclear fuel
Author/Authors :
Serikov، نويسنده , , A and Shatalov، نويسنده , , G and Sheludjakov، نويسنده , , S and Shpansky، نويسنده , , Yu. and Vasiliev، نويسنده , , N، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
7
From page :
93
To page :
99
Abstract :
A possibility to use fusion power reactor (FPR) is considered for burning long-life elements of spent nuclear fuel in parallel with energy production. In this study a principal design of FPR blanket was examined for transmutation of long-life minor actinides (Np, Am, Cm). A production of minor actinide isotopes is equal to 20–30 kg/1 GW(e) year for now operating fission reactors, and their amounts will rise with the expected growth of fission reactor power. These isotopes have long-life time and can be dangerous in big amounts in future. Plutonium isotopes are not included in an assumption that they will be used in fission reactors. The major goals of the study were to determine FPR blanket composition corresponding to fast transmutation rate of actinides and tritium self-supply simultaneously. Tritium breeding ratio (TBR) was obtained at level 1.11 for water cooling and reached up 1.56 in variant with helium-cooled assemblies with Np nitride. It was concluded that rows with actinides from processed waste fuel should be arranged near the plasma first wall. Advantages of helium above water cooling are observed in the twice-increased loading of waste fissionable materials and essential increase of achievable TBR. Burnout of Np, Am, Cm would remain at a level ∼40–50% after 4 full power years.
Keywords :
Spent Nuclear Fuel , Fusion power reactor , Minor actinides (Np , AM , Cm) , MCNP , FISPACT , Tritium breeding ratio , ANSYS
Journal title :
Fusion Engineering and Design
Serial Year :
2002
Journal title :
Fusion Engineering and Design
Record number :
2368099
Link To Document :
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