DocumentCode :
1490580
Title :
Detection of Actinides With an Electron Accelerator by Active Photoneutron Interrogation Measurements
Author :
Sari, Adrien ; Carrel, Frédérick ; Gmar, Mehdi ; Lainé, Frédéric ; Lyoussi, Abdallah ; Normand, Stéphane
Author_Institution :
CEA, LIST, Gif-sur-Yvette, France
Volume :
59
Issue :
3
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
605
Lastpage :
611
Abstract :
The solution for management of a nuclear waste package is chosen according to its radiological characteristics. One of the most important of these features is the -activity which is due to actinides ( U, U, Pu, etc.) If non-destructive passive methods are not sufficient to quantify the latter, non-destructive active methods based on the fission process represent a solution of interest. First, these methods consist in irradiating a package in order to induce fission reactions on the actinides, and then, to detect the prompt and delayed particles which are emitted following these reactions. Our aim is to conduct neutron interrogation measurements on nuclear waste packages using an electron accelerator as a photoneutron generator. One of the main interests of this approach is that the intensity of the neutron flux can be one or two orders of magnitude higher than the one delivered by a deuterium-tritium generator. With the objective of improving nuclear waste characterization, the development of this method could enable the integration of three complementary techniques on a single measurement cell (active neutron interrogation, active photon interrogation, and high-energy imaging). In this paper, simulation and experimental results are presented. A simulation study using MCNPX has been conducted in order to determine the characteristics of the photoneutron flux emitted by the electron accelerator of the SAPHIR facility owned by CEA LIST. Energy spectra, angular distribution and intensity of the photoneutron flux have been obtained. A photoneutron interrogation measurement cell based on this accelerator has been built and assessed by carrying out measurements on uranium samples. Delayed gamma-ray spectra have been acquired and enabled to confirm the experimental feasibility of our method.
Keywords :
Monte Carlo methods; electron accelerators; fission; gamma-ray spectra; neutron detection; photon-nucleus reactions; radioactive waste repositories; MCNPX; SAPHIR facility; actinide detection method; active photoneutron interrogation measurements; alpha-activity analysis; angular distribution; deuterium-tritium generator; electron accelerator; energy spectra; fission process; fission reactions; gamma-ray spectra; high-energy imaging method; neutron flux intensity; neutron interrogation measurements; nondestructive passive methods; nuclear waste characterization; nuclear waste package management; photoneutron flux emission characteristics; photoneutron generator; radiological characteristics; Electron accelerators; Generators; Isotopes; Neutrons; Photonics; Radioactive pollution; Tungsten; Delayed gamma-rays; electron accelerator; neutron interrogation; photoneutron; uranium;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2012.2189132
Filename :
6180201
Link To Document :
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