Published 2013 | Version v1
Book

Design of a neutron interrogation cell based on an electron accelerator and performance assessment on 220 liter nuclear waste mock-up drums

  • 1. CEA, DRT, LIST, F-91191, Gif-sur-Yvette, (France)
  • 2. CEA, DEN, F-13108 Saint-Paul-Lez-Durance, (France)

Description

Radiological characterization of nuclear waste drums is an important task for the nuclear industry. The amount of actinides, such as 235U or 239Pu, contained in a package can be determined using non-destructive active methods based on the fission process. One of these techniques, known as neutron interrogation, uses a neutron beam to induce fission reactions on the actinides. Optimization of the neutron flux is an important step towards improving this technique. Electron accelerators enable to achieve higher neutron flux intensities than the ones delivered by deuterium-tritium generators traditionally used on neutron interrogation industrial facilities. In this paper, we design a neutron interrogation cell based on an electron accelerator by MCNPX simulation. We carry out photoneutron interrogation measurements on uranium samples placed at the center of 220 liter nuclear waste drums containing different types of matrices. We quantify impact of the matrix on the prompt neutron signal, on the ratio between the prompt and delayed neutron signals, and on the interrogative neutron half-life time. We also show that characteristics of the conversion target of the electron accelerator enable to improve significantly measurement performances. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1109/ANIMMA.2013.6727924

Additional details

Identifiers

Publishing Information

Publisher
IEEE
Imprint Place
Piscataway, NJ (United States)
ISBN
978-1-4799-1045-8
Imprint Pagination
6 p.

Conference

Title
3. International Conference on Advancements in Nuclear Instrumentation, Measurement Methods and their Applications (ANIMMA 2013)
Dates
23-27 Jun 2013
Place
Marseille (France)

Optional Information

Notes
15 refs.