Measurement and analysis of gamma-rays emitted from spent nuclear fuel above 3 MeV

The gamma-ray spectrum of spent nuclear fuel in the 3-6 MeV energy range is important for active interrogation since gamma rays emitted from nuclear decay are not expected to interfere with measurements in this energy region. There is, unfortunately, a dearth of empirical measurements from spent nuc...

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Veröffentlicht in:Applied radiation and isotopes 2013-12, Vol.82, p.181-187
Hauptverfasser: Rodriguez, Douglas C, Anderson, Elaina, Anderson, Kevin K, Campbell, Luke W, Fast, James E, Jarman, Kenneth, Kulisek, Jonathan, Orton, Christopher R, Runkle, Robert C, Stave, Sean
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container_end_page 187
container_issue
container_start_page 181
container_title Applied radiation and isotopes
container_volume 82
creator Rodriguez, Douglas C
Anderson, Elaina
Anderson, Kevin K
Campbell, Luke W
Fast, James E
Jarman, Kenneth
Kulisek, Jonathan
Orton, Christopher R
Runkle, Robert C
Stave, Sean
description The gamma-ray spectrum of spent nuclear fuel in the 3-6 MeV energy range is important for active interrogation since gamma rays emitted from nuclear decay are not expected to interfere with measurements in this energy region. There is, unfortunately, a dearth of empirical measurements from spent nuclear fuel in this region. This work is an initial attempt to partially fill this gap by presenting an analysis of gamma-ray spectra collected from a set of spent nuclear fuel sources using a high-purity germanium detector array. This multi-crystal array possesses a large collection volume, providing high energy resolution up to 16 MeV. The results of these measurements establish the continuum count-rate in the energy region between 3 and 6 MeV. Also assessed is the potential for peaks from passive emissions to interfere with peak measurements resulting from active interrogation delayed emissions. As one of the first documented empirical measurements of passive emissions from spent fuel for energies above 3 MeV, this work provides a foundation for active interrogation model validation and detector development.
doi_str_mv 10.1016/j.apradiso.2013.08.006
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source Elsevier ScienceDirect Journals
subjects Delayed gamma rays
Gamma-ray spectroscopy
MANAGEMENT OF RADIOACTIVE AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES
Neutron interrogation
Spent nuclear fuel
title Measurement and analysis of gamma-rays emitted from spent nuclear fuel above 3 MeV
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