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Journal ArticleDOI

Uncertainty analysis of doses from ingestion of plutonium and americium.

Matthew Puncher, +1 more
- 01 Feb 2012 - 
- Vol. 148, Iss: 3, pp 284-296
TLDR
More precise data on f(1) values would have a greater effect in reducing uncertainties on doses from ingested (239)Pu and (241)Am, than reducing uncertainty on other model parameter values.
Abstract
Uncertainty analyses have been performed on the biokinetic model for americium currently used by the International Commission on Radiological Protection (ICRP), and the model for plutonium recently derived by Leggett, considering acute intakes by ingestion by adult members of the public. The analyses calculated distributions of doses per unit intake. Those parameters having the greatest impact on prospective doses were identified by sensitivity analysis; the most important were the fraction absorbed from the alimentary tract, f(1), and rates of uptake from blood to bone surfaces. Probability distributions were selected based on the observed distribution of plutonium and americium in human subjects where possible; the distributions for f(1) reflected uncertainty on the average value of this parameter for non-specified plutonium and americium compounds ingested by adult members of the public. The calculated distributions of effective doses for ingested (239)Pu and (241)Am were well described by log-normal distributions, with doses varying by around a factor of 3 above and below the central values; the distributions contain the current ICRP Publication 67 dose coefficients for ingestion of (239)Pu and (241)Am by adult members of the public. Uncertainty on f(1) values had the greatest impact on doses, particularly effective dose. It is concluded that: (1) more precise data on f(1) values would have a greater effect in reducing uncertainties on doses from ingested (239)Pu and (241)Am, than reducing uncertainty on other model parameter values and (2) the results support the dose coefficients (Sv Bq(-1) intake) derived by ICRP for ingestion of (239)Pu and (241)Am by adult members of the public.

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Citations
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The mayak worker dosimetry system (mwds-2013) for internally deposited plutonium: an overview.

TL;DR: The aim of this paper is to describe the complete MWDS-2013 system (including model parameter values and their uncertainties), and the methodology used (including all the relevant equations) and the assumptions made.
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Evaluating the Reliability of Biokinetic and Dosimetric Models and Parameters Used to Assess Individual Doses for Risk Assessment Purposes

TL;DR: The stated intention is not to provide comprehensive uncertainty figures but to present the strengths and weaknesses of the current models and hopefully to stimulate the necessary research.
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A Bayesian analysis of plutonium exposures in Sellafield workers.

TL;DR: The results show that there is excellent agreement between the point estimates of dose and posterior mean values of dose, however, it is also evident that there are significant uncertainties associated with these dose estimates.
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