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Uncertainty evaluation of the diffusive gradients in thin films technique

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Published
  • Andreas Kreuzeder
  • Jakob Santner
  • Hao Zhang
  • Thomas Prohaska
  • Walter W. Wenzel
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<mark>Journal publication date</mark>3/02/2015
<mark>Journal</mark>Environmental Science and Technology
Issue number3
Volume49
Number of pages9
Pages (from-to)1594-1602
Publication StatusPublished
Early online date12/01/15
<mark>Original language</mark>English

Abstract

Although the analytical performance of the diffusive gradients in thin films (DGT) technique is well investigated, there is no systematic analysis of the DGT measurement uncertainty and its sources. In this study we determine the uncertainties of bulk DGT measurements (not considering labile complexes) and of DGT-based chemical imaging using laser ablation - inductively coupled plasma mass spectrometry. We show that under well-controlled experimental conditions the relative combined uncertainties of bulk DGT measurements are ∼10% at a confidence interval of 95%. While several factors considerably contribute to the uncertainty of bulk DGT, the uncertainty of DGT LA-ICP-MS mainly depends on the signal variability of the ablation analysis. The combined uncertainties determined in this study support the use of DGT as a monitoring instrument. It is expected that the analytical requirements of legal frameworks, for example, the EU Drinking Water Directive, are met by DGT sampling.