Standardisation of the (129)I, (151)Sm and (166m)Ho activity concentration using the CIEMAT/NIST efficiency tracing method

The (129)I, (151)Sm and (166m)Ho standardisations using the CIEMAT/NIST efficiency tracing method, that have been carried out in the frame of the European Metrology Research Program project "Metrology for Radioactive Waste Management" are described. The radionuclide beta counting efficienc...

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Published in:Applied radiation and isotopes Vol. 109; pp. 281 - 285
Main Authors: Altzitzoglou, Timotheos, Rožkov, Andrej
Format: Journal Article
Language:English
Published: England 01-03-2016
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Abstract The (129)I, (151)Sm and (166m)Ho standardisations using the CIEMAT/NIST efficiency tracing method, that have been carried out in the frame of the European Metrology Research Program project "Metrology for Radioactive Waste Management" are described. The radionuclide beta counting efficiencies were calculated using two computer codes CN2005 and MICELLE2. The sensitivity analysis of the code input parameters (ionization quenching factor, beta shape factor) on the calculated efficiencies was performed, and the results are discussed. The combined relative standard uncertainty of the standardisations of the (129)I, (151)Sm and (166m)Ho solutions were 0.4%, 0.5% and 0.4%, respectively. The stated precision obtained using the CIEMAT/NIST method is better than that previously reported in the literature obtained by the TDCR ((129)I), the 4πγ-NaI ((166m)Ho) counting or the CIEMAT/NIST method ((151)Sm).
AbstractList The (129)I, (151)Sm and (166m)Ho standardisations using the CIEMAT/NIST efficiency tracing method, that have been carried out in the frame of the European Metrology Research Program project "Metrology for Radioactive Waste Management" are described. The radionuclide beta counting efficiencies were calculated using two computer codes CN2005 and MICELLE2. The sensitivity analysis of the code input parameters (ionization quenching factor, beta shape factor) on the calculated efficiencies was performed, and the results are discussed. The combined relative standard uncertainty of the standardisations of the (129)I, (151)Sm and (166m)Ho solutions were 0.4%, 0.5% and 0.4%, respectively. The stated precision obtained using the CIEMAT/NIST method is better than that previously reported in the literature obtained by the TDCR ((129)I), the 4πγ-NaI ((166m)Ho) counting or the CIEMAT/NIST method ((151)Sm).
Author Rožkov, Andrej
Altzitzoglou, Timotheos
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  givenname: Timotheos
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  fullname: Altzitzoglou, Timotheos
  email: timotheos.altzitzoglou@ec.europa.eu
  organization: European Commission Joint Research Centre Institute for Reference Materials and Measurements, Retieseweg 111, 2440 Geel, Belgium. Electronic address: timotheos.altzitzoglou@ec.europa.eu
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  givenname: Andrej
  surname: Rožkov
  fullname: Rožkov, Andrej
  organization: European Commission Joint Research Centre Institute for Reference Materials and Measurements, Retieseweg 111, 2440 Geel, Belgium
BackLink https://www.ncbi.nlm.nih.gov/pubmed/26754968$$D View this record in MEDLINE/PubMed
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Keywords I
Sm
CIEMAT/NIST efficiency tracing method
(166m)Ho
Activity concentration
Standardization
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Title Standardisation of the (129)I, (151)Sm and (166m)Ho activity concentration using the CIEMAT/NIST efficiency tracing method
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