Publication
Title
Field application of a novel active-passive sampling technique for the simultaneous measurement of a wide range of contaminants in water
Author
Abstract
A first test of the field capabilities of a novel in situ sampling technique combining active and passive sampling (APS) was conducted in the sea. The proof-of-concept device uses a pump to draw water into a diffusion cell where dissolved target substances are accumulated onto sorbents which are selective for different classes of contaminants (i.e., metal cations, polar and non-polar organic compounds), simultaneously. A controlled laminar flow established in the diffusion cell enables measurements of contaminant concentrations that are fully independent from the hydrodynamic conditions in the bulk solution. APS measurements were consistent with those obtained using conventional passive sampling techniques such as organic diffusive gradients in thin films (o-DGT) and silicone rubber (SR) samplers (generally < 40% difference), taking into account the prevailing hydrodynamic conditions. The use of performance reference compounds (PRC) for hydrophobic contaminants provided additional information. Field measurements of metal ions in seawater showed large variability due to issues related to the device configuration. An improved field set-up deployed in supplementary freshwater mesocosm experiments provided metal speciation data that was consistent with passive sampling measurements (DGT), taking into account the hydrodynamic conditions. Overall, the results indicate that the APS technique provides a promising approach for the determination of a wide range of contaminants simultaneously, and independently from the hydrodynamic conditions in the bulk solution.
Language
English
Source (journal)
Chemosphere. - Oxford, 1972, currens
Publication
Oxford : 2021
ISSN
0045-6535 [print]
1879-1298 [online]
DOI
10.1016/J.CHEMOSPHERE.2021.130598
Volume/pages
279 (2021) , p. 1-9
Article Reference
130598
ISI
000659971200106
Pubmed ID
33901895
Medium
E-only publicatie
Full text (Publisher's DOI)
Full text (open access)
Full text (publisher's version - intranet only)
UAntwerpen
Faculty/Department
Research group
Project info
Development of an active-passive sampling device for monitoring bioavailable pollutants in water.
Unravelling the non-specific mechanisms underlying non-polar narcotic toxicity: mitochondrial effects.
Publication type
Subject
Affiliation
Publications with a UAntwerp address
External links
Web of Science
Record
Identifier
Creation 20.04.2021
Last edited 21.11.2024
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