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Development of an analytical method for the determination of more than 300 pesticides and metabolites in the particulate and gaseous phase of ambient air
by
Gandrass, Juergen
, Debler, Freya
in
Acetonitrile
/ Air sampling
/ Analytical methods
/ Chromatography
/ Dichloromethane
/ Electron impact
/ Gas chromatography
/ Ionization
/ Liquid chromatography
/ Mass spectrometry
/ Mass spectroscopy
/ Metabolites
/ Pesticides
/ Polyurethane
/ Polyurethane foam
/ Recovery
/ Samplers
/ Scientific imaging
/ Spraying
2024
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Development of an analytical method for the determination of more than 300 pesticides and metabolites in the particulate and gaseous phase of ambient air
by
Gandrass, Juergen
, Debler, Freya
in
Acetonitrile
/ Air sampling
/ Analytical methods
/ Chromatography
/ Dichloromethane
/ Electron impact
/ Gas chromatography
/ Ionization
/ Liquid chromatography
/ Mass spectrometry
/ Mass spectroscopy
/ Metabolites
/ Pesticides
/ Polyurethane
/ Polyurethane foam
/ Recovery
/ Samplers
/ Scientific imaging
/ Spraying
2024
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Development of an analytical method for the determination of more than 300 pesticides and metabolites in the particulate and gaseous phase of ambient air
by
Gandrass, Juergen
, Debler, Freya
in
Acetonitrile
/ Air sampling
/ Analytical methods
/ Chromatography
/ Dichloromethane
/ Electron impact
/ Gas chromatography
/ Ionization
/ Liquid chromatography
/ Mass spectrometry
/ Mass spectroscopy
/ Metabolites
/ Pesticides
/ Polyurethane
/ Polyurethane foam
/ Recovery
/ Samplers
/ Scientific imaging
/ Spraying
2024
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Development of an analytical method for the determination of more than 300 pesticides and metabolites in the particulate and gaseous phase of ambient air
Journal Article
Development of an analytical method for the determination of more than 300 pesticides and metabolites in the particulate and gaseous phase of ambient air
2024
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Overview
Pesticides can enter the atmosphere during spraying or after application, resulting in environmental or human exposure. The study describes the optimisation and validation of analytical methods for the determination of more than 300 pesticides in the particulate and gaseous phases of the air. Pesticides were sampled with high-volume air samplers on glass-fibre filters (GFFs) and glass columns filled with polyurethane foam (PUF) and XAD-2 resin. Comparing different extraction methods, a QuEChERS extraction with acetonitrile was selected for the GFFs. For the PUF/XAD-2 columns, a cold-column extraction with dichloromethane was used. Instrumental determination was performed using liquid chromatography/electrospray ionisation-time-of-flight mass spectrometry (LC/ESI-QTOF) and gas chromatography/electron impact ionisation-tandem mass spectrometry (GC/EI-MS/MS). Recovery experiments showed recovery rates between 70 and 120% for 263 compounds on the GFFs and 75 compounds on the PUF/XAD-2 columns. Semi-quantitative determination was performed for 39 compounds on the GFFs and 110 compounds on the PUF/XAD-2 columns. Finally, 27 compounds on the GFFs and 138 compounds on the PUF/XAD-2 columns could be determined only qualitatively. For the determination of the PUF/XAD-2 samples, signal suppression (LC) or signal enhancement (GC) due to matrix effects were determined. Method quantification limits of the optimised methods ranged from 30 to 240 pg/m3 for the target compounds on the GFFs, and from 8 to 60 pg/m3 on the PUF/XAD-2 columns. The applicability of the method was demonstrated by means of environmental air samples from an agricultural area in the Netherlands.
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