Isoprene is the most abundant volatile organic compound in global scale. Despite its low secondary organic aerosol (SOA) yields, it has been recently shown that isoprene can significantly contribute to total particulate organic mass due to its large emissions. SOA are known to have various impacts on the environment, especially on climate. However, lacks in the comprehension of the SOA formation pathways, particularly via cloud droplets, are still important. The aim of the present work is to study SOA formation from isoprene (or methacrolein, one of isoprene major oxidation products) photooxidation, in dry condition, as well as in the presence of cloud. The chemistry occurring in the gaseous, particulate and aqueous phases, and the exchange...
The oxidation of isoprene (2-methyl-1,3-butadiene) is known to play a central role in the photochemi...
This study presents a characterization of the hygroscopic growth behaviour and effects of different ...
L’aérosol organique secondaire (AOS), fraction majoritaire de l’aérosol submicronique, joue un rôle ...
Isoprene is the most abundant volatile organic compound in global scale. Despite its low secondary o...
L'isoprène est le composé organique volatil biogénique le plus émis à l'échelle de la planète. Il a ...
The impact of cloud events on isoprene secondary organic aerosol (SOA) formation has been studied fr...
International audienceThe impact of cloud events on isoprene secondary organic aerosol (SOA) formati...
The impact of cloud events on isoprene secondary organic aerosol (SOA) formation has been studied f...
Secondary Organic Aerosol (SOA), the major fraction of the submicron aerosol, plays a key role on he...
Aerosol-cloud interaction contributes to the largest uncertainties in the estimation and interpretat...
The secondary organic aerosol (SOA) produced by the photooxidation of isoprene with and without ino...
Isoprene has the largest global non-methane hydrocarbon emission, and the oxidation of isoprene play...
First-and higher order-generation products formed from the oxidation of isoprene and methacrolein wi...
The oxidation of isoprene (2-methyl-1,3-butadiene) is known to play a central role in the photochemi...
This study presents a characterization of the hygroscopic growth behaviour and effects of different ...
L’aérosol organique secondaire (AOS), fraction majoritaire de l’aérosol submicronique, joue un rôle ...
Isoprene is the most abundant volatile organic compound in global scale. Despite its low secondary o...
L'isoprène est le composé organique volatil biogénique le plus émis à l'échelle de la planète. Il a ...
The impact of cloud events on isoprene secondary organic aerosol (SOA) formation has been studied fr...
International audienceThe impact of cloud events on isoprene secondary organic aerosol (SOA) formati...
The impact of cloud events on isoprene secondary organic aerosol (SOA) formation has been studied f...
Secondary Organic Aerosol (SOA), the major fraction of the submicron aerosol, plays a key role on he...
Aerosol-cloud interaction contributes to the largest uncertainties in the estimation and interpretat...
The secondary organic aerosol (SOA) produced by the photooxidation of isoprene with and without ino...
Isoprene has the largest global non-methane hydrocarbon emission, and the oxidation of isoprene play...
First-and higher order-generation products formed from the oxidation of isoprene and methacrolein wi...
The oxidation of isoprene (2-methyl-1,3-butadiene) is known to play a central role in the photochemi...
This study presents a characterization of the hygroscopic growth behaviour and effects of different ...
L’aérosol organique secondaire (AOS), fraction majoritaire de l’aérosol submicronique, joue un rôle ...