Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor
Calculation and analysis of B/T (Burning and/or Transmutation) rate of MA (minor actinides) and Pu (Plutonium) has been performed in fast B/T reactor. The study was based on the assumption that the spectrum shift of neutron flux to higher side of neutron energy had a potential significance for desig...
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Center for Development of Nuclear Informatics, National Nuclear Energy Agency (BATAN)
2006-01-01
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doaj-401bc0271240466cb83a83e159e48fb42020-11-24T23:34:57ZengCenter for Development of Nuclear Informatics, National Nuclear Energy Agency (BATAN)Atom Indonesia0126-15680126-15682006-01-013214564http://dx.doi.org/10.17146/aij.2006.117Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T ReactorMarsodi0Center for Development of Nuclear Informatics National Nuclear Energy Agency (BATAN) - Puspiptek–Serpong, IndonesiaCalculation and analysis of B/T (Burning and/or Transmutation) rate of MA (minor actinides) and Pu (Plutonium) has been performed in fast B/T reactor. The study was based on the assumption that the spectrum shift of neutron flux to higher side of neutron energy had a potential significance for designing the fast B/T reactor and a remarkable effect for increasing the B/T rate of MA and/or Pu. The spectrum shifts of neutron have been performed by change MOX to metallic fuel. Blending fraction of MA and or Pu in B/T fuel and the volume ratio of fuel to coolant in the reactor core were also considered. Here, the performance of fast B/T reactor was evaluated theoretically based on the calculation results of the neutronics and burn-up analysis. In this study, the B/T rate of MA and/or Pu increased by increasing the blending fraction of MA and or Pu and by changing the F/C ratio. According to the results, the total B/T rate, i.e. [B/T rate]MA + [B/T rate]Pu, could be kept nearly constant under the critical condition, if the sum of the MA and Pu inventory in the core is nearly constant. The effect of loading structure was examined for inner or outer loading of concentric geometry and for homogeneous loading. Homogeneous loading of B/T fuel was the good structure for obtaining the higher B/T rate, rather than inner or outer loadinghttp://aij.batan.go.id/index.php/aij/article/view/117HLWWaste managementBurning/TransmutationFast reactorSpectrum shiftNeutron flux |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marsodi |
spellingShingle |
Marsodi Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor Atom Indonesia HLW Waste management Burning/Transmutation Fast reactor Spectrum shift Neutron flux |
author_facet |
Marsodi |
author_sort |
Marsodi |
title |
Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor |
title_short |
Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor |
title_full |
Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor |
title_fullStr |
Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor |
title_full_unstemmed |
Calculation and Analysis of B/T (Burning and/or Transmutation) Rate of Minor Actinides and Plutonium Performed by Fast B/T Reactor |
title_sort |
calculation and analysis of b/t (burning and/or transmutation) rate of minor actinides and plutonium performed by fast b/t reactor |
publisher |
Center for Development of Nuclear Informatics, National Nuclear Energy Agency (BATAN) |
series |
Atom Indonesia |
issn |
0126-1568 0126-1568 |
publishDate |
2006-01-01 |
description |
Calculation and analysis of B/T (Burning and/or Transmutation) rate of MA (minor actinides) and Pu (Plutonium) has been performed in fast B/T reactor. The study was based on the assumption that the spectrum shift of neutron flux to higher side of neutron energy had a potential significance for designing the fast B/T reactor and a remarkable effect for increasing the B/T rate of MA and/or Pu. The spectrum shifts of neutron have been performed by change MOX to metallic fuel. Blending fraction of MA and or Pu in B/T fuel and the volume ratio of fuel to coolant in the reactor core were also considered. Here, the performance of fast B/T reactor was evaluated theoretically based on the calculation results of the neutronics and burn-up analysis. In this study, the B/T rate of MA and/or Pu increased by increasing the blending fraction of MA and or Pu and by changing the F/C ratio. According to the results, the total B/T rate, i.e. [B/T rate]MA + [B/T rate]Pu, could be kept nearly constant under the critical condition, if the sum of the MA and Pu inventory in the core is nearly constant. The effect of loading structure was examined for inner or outer loading of concentric geometry and for homogeneous loading. Homogeneous loading of B/T fuel was the good structure for obtaining the higher B/T rate, rather than inner or outer loading |
topic |
HLW Waste management Burning/Transmutation Fast reactor Spectrum shift Neutron flux |
url |
http://aij.batan.go.id/index.php/aij/article/view/117 |
work_keys_str_mv |
AT marsodi calculationandanalysisofbtburningandortransmutationrateofminoractinidesandplutoniumperformedbyfastbtreactor |
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1725526954153607168 |