A non-destructive method to determine the depth of radionuclides in materials in-situ
Description
A non-destructive method based on in-situ gamma spectroscopy is developed to determine the depth of radiological contamination in media. An innovative algorithm, Gamma Penetration Depth Unfolding Algorithm (GPDUA), uses point kernel techniques to predict the depth of contamination based on the results of the uncollided peak information from the in-situ gamma spectroscopy. The GPDUA is designed and verified through extensive Monte Carlo simulations and validated through laboratory experiments. This innovative tool promises to be better, faster, safer, and cheaper than the current practice in decontamination and decommissioning. The method requires the a priori knowledge of the contaminant source distribution. The applicable radiological contaminants of interest are any isotopes that emit two or more gamma rays per disintegration or isotopes that emit a single gamma ray but have gamma-emitting progeny in secular equilibrium with its parent. The predicted depths from the GPDUA algorithm using Monte Carlo N-Particle Transport Code simulations and laboratory experiments using 60Co have consistently produced predicted depths within 20% of the actual or known depth
Additional details
Publishing Information
- Journal Title
- Health Physics
- Journal Volume
- 77
- Journal Issue
- 1
- Journal Page Range
- p. 76-88
- ISSN
- 0017-9078
- CODEN
- HLTPAO
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 30057144
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- COBALT 60; DEPTH; G CODES; GAMMA SPECTROSCOPY; MONTE CARLO METHOD; RADIONUCLIDE MIGRATION; REMEDIAL ACTION; SITE CHARACTERIZATION
- Descriptors DEC
- BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; CALCULATION METHODS; COBALT ISOTOPES; COMPUTER CODES; DIMENSIONS; ENVIRONMENTAL TRANSPORT; INTERMEDIATE MASS NUCLEI; INTERNAL CONVERSION RADIOISOTOPES; ISOMERIC TRANSITION ISOTOPES; ISOTOPES; MASS TRANSFER; MINUTES LIVING RADIOISOTOPES; NUCLEI; ODD-ODD NUCLEI; RADIOISOTOPES; SPECTROSCOPY; YEARS LIVING RADIOISOTOPES