Multi-oxygenated volatile organic compounds are important markers of air pollution and precursors of ozone and secondary aerosols in both polluted and remote environments. Herein, their accurate determination was enhanced. The approach was based on an automated system for active sampling and on-fibre derivatization coupled with the gas chromatography–mass spectrometry (GC–MS) technique. The method capability was determined for different compound families, such as aldehydes, ketones, α-dicarbonyls, hydroxy-aldehydes, hydroxy-ketones, and carboxylic acids. A good accuracy (<7 %) was demonstrated from the results compared to Fourier-transform infrared spectroscopy (FTIR). Limits of detection (LODs) of 6–100 pptV were achieved with a tim...
International audienceThe characterization of the molecular composition of organic carbon in both ga...
International audienceRationale: Secondary organic aerosols (SOAs) represent a significant portion o...
Gas-phase organic compounds across a range of volatilities, including volatile organic compounds (VO...
Multi-oxygenated volatile organic compounds are important markers of air pollution and precursors of...
Volatile organic compounds (VOCs) are important for global air quality and oxidation processes in th...
In the atmosphere, biogenic and anthropogenic emissions are oxidized to form secondary organic aeros...
Partially oxidised organic compounds associated with PM2.5 aerosol collected in London, England, hav...
Field measurements of volatile organic compounds (VOCs) are important in a range of disciplines incl...
International audiencePartially oxidised organic compounds associated with PM2.5 aerosol collected i...
As the harmful effects of low-level exposure to hazardous organic air pollutants become more evident...
A new method for derivatizing carbonyl compounds is presented. The conversion of a series of dicarbo...
Oxygenated volatile organic compounds (OVOCs) are formed during the oxidation of gas-phase hydrocarb...
© 2015 Elsevier B.V. Two, 3-step methods for derivatizing mono- and multi-functional species with ca...
The use of comprehensive two-dimensional gas chromatography (GC x GC) for the analysis of volatile o...
International audienceThe characterization of the molecular composition of organic carbon in both ga...
International audienceRationale: Secondary organic aerosols (SOAs) represent a significant portion o...
Gas-phase organic compounds across a range of volatilities, including volatile organic compounds (VO...
Multi-oxygenated volatile organic compounds are important markers of air pollution and precursors of...
Volatile organic compounds (VOCs) are important for global air quality and oxidation processes in th...
In the atmosphere, biogenic and anthropogenic emissions are oxidized to form secondary organic aeros...
Partially oxidised organic compounds associated with PM2.5 aerosol collected in London, England, hav...
Field measurements of volatile organic compounds (VOCs) are important in a range of disciplines incl...
International audiencePartially oxidised organic compounds associated with PM2.5 aerosol collected i...
As the harmful effects of low-level exposure to hazardous organic air pollutants become more evident...
A new method for derivatizing carbonyl compounds is presented. The conversion of a series of dicarbo...
Oxygenated volatile organic compounds (OVOCs) are formed during the oxidation of gas-phase hydrocarb...
© 2015 Elsevier B.V. Two, 3-step methods for derivatizing mono- and multi-functional species with ca...
The use of comprehensive two-dimensional gas chromatography (GC x GC) for the analysis of volatile o...
International audienceThe characterization of the molecular composition of organic carbon in both ga...
International audienceRationale: Secondary organic aerosols (SOAs) represent a significant portion o...
Gas-phase organic compounds across a range of volatilities, including volatile organic compounds (VO...