Adaptation of diffusive gradients in thin films technique to sample organic pollutants in the environment: An overview of o-DGT passive samplers

The adaptation of the diffusive gradients in thin films technique (DGT) to sample organic pollutants in the environment, called o-DGT has been performed since 2011 for various types of organic compounds (e.g. pesticides, pharmaceuticals, hormones, endocrine disrupting chemicals, household and person...

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Veröffentlicht in:The Science of the total environment 2019-11, Vol.693, p.133537-133537, Article 133537
Hauptverfasser: Guibal, Robin, Buzier, Rémy, Lissalde, Sophie, Guibaud, Gilles
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Sprache:eng
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Zusammenfassung:The adaptation of the diffusive gradients in thin films technique (DGT) to sample organic pollutants in the environment, called o-DGT has been performed since 2011 for various types of organic compounds (e.g. pesticides, pharmaceuticals, hormones, endocrine disrupting chemicals, household and personal care products). To sample these different compounds, configuration of the samplers (mainly receiving phase and diffusive gel) has to be adapted. Up-to-date, sampling of 142 organic compounds by this passive sampler have been tested. This review provides the state-of-art of o-DGT passive sampler development, describing theory and modelling, calibration, configuration of the devices, and field applications. The most used configurations were agarose-XAD-18 and agarose-HLB configuration. o-DGT can be used to sample soils and most of natural waters (range of pH 4–9 and ionic strength 0.001–0.1 M). This review discusses current limitation of o-DGT in light of the feedback of DGT use to sample inorganic contaminants. It mainly concern the low sampling rates currently obtained by o-DGT compared to other passive samplers. This weakness could be compensated in the future with new sampler's design allowing an increase in exposure area. [Display omitted] •Extensive review of 35 o-DGT research article is presented.•o-DGT configurations are discussed (binding and diffusive layers, membranes).•Robustness over environmental conditions is addressed.•Future developments needed are proposed.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2019.07.343