Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water

© 2014 Jesper Knutsson et al. Diffusion-based passive samplers are increasingly used for water quality monitoring. While the overall method robustness and reproducibility for passive samplers in water are widely reported, there has been a lack of a detailed description of uncertainty sources. In thi...

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Main Authors: Knutsson, J., Rauch, S., Morrison, Gregory
Format: Journal Article
Published: 2014
Online Access:http://hdl.handle.net/20.500.11937/32336
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author Knutsson, J.
Rauch, S.
Morrison, Gregory
author_facet Knutsson, J.
Rauch, S.
Morrison, Gregory
author_sort Knutsson, J.
building Curtin Institutional Repository
collection Online Access
description © 2014 Jesper Knutsson et al. Diffusion-based passive samplers are increasingly used for water quality monitoring. While the overall method robustness and reproducibility for passive samplers in water are widely reported, there has been a lack of a detailed description of uncertainty sources. In this paper an uncertainty budget for the determination of fully labile Cu in water using a DGT passive sampler is presented. Uncertainty from the estimation of effective cross-sectional diffusion area and the instrumental determination of accumulated mass of analyte are the most significant sources of uncertainty, while uncertainties from contamination and the estimation of diffusion coefficient are negligible. The results presented highlight issues with passive samplers which are important to address if overall method uncertainty is to be reduced and effective strategies to reduce overall method uncertainty are presented.
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spelling curtin-20.500.11937-323362017-09-13T15:22:41Z Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water Knutsson, J. Rauch, S. Morrison, Gregory © 2014 Jesper Knutsson et al. Diffusion-based passive samplers are increasingly used for water quality monitoring. While the overall method robustness and reproducibility for passive samplers in water are widely reported, there has been a lack of a detailed description of uncertainty sources. In this paper an uncertainty budget for the determination of fully labile Cu in water using a DGT passive sampler is presented. Uncertainty from the estimation of effective cross-sectional diffusion area and the instrumental determination of accumulated mass of analyte are the most significant sources of uncertainty, while uncertainties from contamination and the estimation of diffusion coefficient are negligible. The results presented highlight issues with passive samplers which are important to address if overall method uncertainty is to be reduced and effective strategies to reduce overall method uncertainty are presented. 2014 Journal Article http://hdl.handle.net/20.500.11937/32336 10.1155/2014/389125 unknown
spellingShingle Knutsson, J.
Rauch, S.
Morrison, Gregory
Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water
title Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water
title_full Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water
title_fullStr Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water
title_full_unstemmed Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water
title_short Estimation of measurement uncertainties for the DGT passive sampler used for determination of copper in water
title_sort estimation of measurement uncertainties for the dgt passive sampler used for determination of copper in water
url http://hdl.handle.net/20.500.11937/32336