Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System

A lead slowing-down spectrometer (LSDS) system is under development to analyze isotopic fissile content that is applicable to spent fuel and recycled material. The source neutron mechanism for efficient and effective generation was also determined. The source neutron interacts with a lead medium and...

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Main Authors: Yongdeok Lee, Juyoung Jeon, Changje Park
Format: Article
Language:English
Published: Elsevier 2017-04-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573316302042
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spelling doaj-d289f0aa86e541d5b24ab9cae8b9f28c2020-11-24T22:58:18ZengElsevierNuclear Engineering and Technology1738-57332017-04-0149354955510.1016/j.net.2016.09.008Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer SystemYongdeok Lee0Juyoung Jeon1Changje Park2Korea Atomic Energy Research Institute, Fuel Cycle Technology Development, 1045 Daedeok-daero, Yuseong-gu, Daejeon 305–353, South KoreaKorea Atomic Energy Research Institute, Fuel Cycle Technology Development, 1045 Daedeok-daero, Yuseong-gu, Daejeon 305–353, South KoreaSejong University, Department of Nuclear Engineering, Gwang Gae To Building 1003C, 209 Neungdong-ro, Gwangjin-gu, Seoul 143–747, South KoreaA lead slowing-down spectrometer (LSDS) system is under development to analyze isotopic fissile content that is applicable to spent fuel and recycled material. The source neutron mechanism for efficient and effective generation was also determined. The source neutron interacts with a lead medium and produces continuous neutron energy, and this energy generates dominant fission at each fissile, below the unresolved resonance region. From the relationship between the induced fissile fission and the fast fission neutron detection, a mathematical assay model for an isotopic fissile material was set up. The assay model can be expanded for all fissile materials. The correction factor for self-shielding was defined in the fuel assay area. The corrected fission signature provides well-defined fission properties with an increase in the fissile content. The assay procedure was also established. The assay energy range is very important to take into account the prominent fission structure of each fissile material. Fission detection occurred according to the change of the Pu239 weight percent (wt%), but the content of U235 and Pu241 was fixed at 1 wt%. The assay result was obtained with 2∼3% uncertainty for Pu239, depending on the amount of Pu239 in the fuel. The results show that LSDS is a very powerful technique to assay the isotopic fissile content in spent fuel and recycled materials for the reuse of fissile materials. Additionally, a LSDS is applicable during the optimum design of spent fuel storage facilities and their management. The isotopic fissile content assay will increase the transparency and credibility of spent fuel storage.http://www.sciencedirect.com/science/article/pii/S1738573316302042Lead Slowing-down SpectrometerInduced Fissile FissionFast Neutron
collection DOAJ
language English
format Article
sources DOAJ
author Yongdeok Lee
Juyoung Jeon
Changje Park
spellingShingle Yongdeok Lee
Juyoung Jeon
Changje Park
Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System
Nuclear Engineering and Technology
Lead Slowing-down Spectrometer
Induced Fissile Fission
Fast Neutron
author_facet Yongdeok Lee
Juyoung Jeon
Changje Park
author_sort Yongdeok Lee
title Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System
title_short Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System
title_full Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System
title_fullStr Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System
title_full_unstemmed Isotopic Fissile Assay of Spent Fuel in a Lead Slowing-Down Spectrometer System
title_sort isotopic fissile assay of spent fuel in a lead slowing-down spectrometer system
publisher Elsevier
series Nuclear Engineering and Technology
issn 1738-5733
publishDate 2017-04-01
description A lead slowing-down spectrometer (LSDS) system is under development to analyze isotopic fissile content that is applicable to spent fuel and recycled material. The source neutron mechanism for efficient and effective generation was also determined. The source neutron interacts with a lead medium and produces continuous neutron energy, and this energy generates dominant fission at each fissile, below the unresolved resonance region. From the relationship between the induced fissile fission and the fast fission neutron detection, a mathematical assay model for an isotopic fissile material was set up. The assay model can be expanded for all fissile materials. The correction factor for self-shielding was defined in the fuel assay area. The corrected fission signature provides well-defined fission properties with an increase in the fissile content. The assay procedure was also established. The assay energy range is very important to take into account the prominent fission structure of each fissile material. Fission detection occurred according to the change of the Pu239 weight percent (wt%), but the content of U235 and Pu241 was fixed at 1 wt%. The assay result was obtained with 2∼3% uncertainty for Pu239, depending on the amount of Pu239 in the fuel. The results show that LSDS is a very powerful technique to assay the isotopic fissile content in spent fuel and recycled materials for the reuse of fissile materials. Additionally, a LSDS is applicable during the optimum design of spent fuel storage facilities and their management. The isotopic fissile content assay will increase the transparency and credibility of spent fuel storage.
topic Lead Slowing-down Spectrometer
Induced Fissile Fission
Fast Neutron
url http://www.sciencedirect.com/science/article/pii/S1738573316302042
work_keys_str_mv AT yongdeoklee isotopicfissileassayofspentfuelinaleadslowingdownspectrometersystem
AT juyoungjeon isotopicfissileassayofspentfuelinaleadslowingdownspectrometersystem
AT changjepark isotopicfissileassayofspentfuelinaleadslowingdownspectrometersystem
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