Use of the Monte Carlo method for the estimation of measurement uncertainty in chemical analysis systems with intensive mathematical treatment

被引:0
作者
A. Fuentes-García
J. Jiménez-Chacón
M. Alvarez-Prieto
机构
[1] University of Havana,Faculty of Chemistry
[2] University of Havana,Institute of Science and Technology of Materials
来源
Accreditation and Quality Assurance | 2024年 / 29卷
关键词
Monte Carlo method; Spectral interference; Measurement uncertainty; GUM; Babbitt metal;
D O I
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中图分类号
学科分类号
摘要
In recent years, the scientific community has made great efforts to establish procedures for the estimation of uncertainty in various measurement processes in laboratories. In this regard, the Guide to the Expression of Uncertainty in Measurement has been one of the most widely used documents for the estimation of uncertainty values in measurement processes. In spite of its success, the linear propagation method of uncertainties proposed in this guide presents serious deficiencies when trying to estimate uncertainty in measurement or calibration processes where an intensive mathematical treatment is used, particularly when these introduce important sources of variability. An example of this is the quantification of Sn, Sb and Cu in Babbitt metal by energy-dispersive X-ray fluorescence. In this material, Sn and Sb present a strong spectral interference between their different lines, which forces the use of mathematical methods of deconvolution and correction of inter-element effects that introduce sources of variability usually neglected. This work proposes an alternative to the uncertainty quantification based on the Monte Carlo method where the sources of variability resulting from the spectral treatment and matrix effects are included. Methodologies for the establishment of the main practical aspects of the Monte Carlo method and its adaptation to calibration methodologies are also proposed. The influence of disregarding the variability introduced by the spectrum treatment algorithms on the uncertainty estimation is shown.
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页码:87 / 102
页数:15
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  • [1] Separovic L(2023)Measurement uncertainty and conformity assessment applied to drug and medicine analyses: a review Crit Rev Anal Chem 53 123-138
  • [2] Simabukuro RS(1995)Uncertainty of measurement: implications of its use in analytical science Analyst 120 2303-2308
  • [3] Couto AR(1999)Estimating uncertainties of analytical results using information from the validation process Anal Chim Acta 391 173-185
  • [4] Maroto A(2012)revision of the ‘guide to the expression of uncertainty in measurement’ Metrologia 49 702-705
  • [5] Riu J(2004)Evaluation of measurement uncertainty in analytical assays by means of Monte-Carlo simulation Talanta 64 415-422
  • [6] Boqué R(2011)Comparison of ISO-GUM and Monte Carlo methods for the evaluation of measurement uncertainty: application to direct cadmium measurement in water by GFAAS Talanta 83 1568-1574
  • [7] Bich W(2013)Five examples of assessment and expression of measurement uncertainty Appl Stoch Model Bus Ind 29 1-18
  • [8] Cox MG(2011)Bayesian uncertainty analysis for a regression model versus application of GUM supplement 1 to the least-squares estimate Metrologia 48 233-689
  • [9] Dybkaer R(2001)Quantifying the measurement uncertainty of results from environmental analytical methods Fresenius J Anal Chem 370 679-163
  • [10] Angeles Herrador M(2017)Quantifying uncertainty in analytical measurements J Bangladesh Acad Sci 41 145-416