The impact of cloud events on isoprene secondary organic aerosol (SOA) formation has been studied from an isoprene / NOx / light system in an atmospheric simulation chamber. It was shown that the presence of a liquid water cloud leads to a faster and higher SOA formation than under dry conditions. When a cloud is generated early in the photooxidation reaction, before any SOA formation has occurred, a fast SOA formation is observed with mass yields ranging from 0.002 to 0.004. These yields are 2 and 4 times higher than those observed under dry conditions. When the cloud is generated at a later photooxidation stage, after isoprene SOA is stabilized at its maximum mass concentration, a rapid increase (by a factor of 2 or higher) of the SOA mas...
Aqueous-phase oligomer formation from methylglyoxal, a major atmospheric photooxidation product, has...
Secondary organic aerosol (SOA) formation from the reaction of isoprene with nitrate radicals (NO3) ...
There is growing interest in the formation of secondary organic aerosol (SOA) through condensed aque...
International audienceThe impact of cloud events on isoprene secondary organic aerosol (SOA) formati...
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...
Interest in the potential formation of secondary organic aerosol (SOA) through reactions of organic ...
There is a growing understanding that secondary organic aerosol (SOA) can form through reactions in ...
Isoprene is the most abundant volatile organic compound in global scale. Despite its low secondary o...
Secondary organic aerosol (SOA) is a substantial contributor to atmospheric organic particulate matt...
International audienceRecent advances in secondary organic aerosol (SOA) research are reviewed and t...
Aerosol-cloud interaction contributes to the largest uncertainties in the estimation and interpretat...
Aqueous-phase oligomer formation from methylglyoxal, a major atmospheric photooxidation product, has...
Secondary organic aerosol (SOA) formation from the reaction of isoprene with nitrate radicals (NO3) ...
There is growing interest in the formation of secondary organic aerosol (SOA) through condensed aque...
International audienceThe impact of cloud events on isoprene secondary organic aerosol (SOA) formati...
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...
Interest in the potential formation of secondary organic aerosol (SOA) through reactions of organic ...
There is a growing understanding that secondary organic aerosol (SOA) can form through reactions in ...
Isoprene is the most abundant volatile organic compound in global scale. Despite its low secondary o...
Secondary organic aerosol (SOA) is a substantial contributor to atmospheric organic particulate matt...
International audienceRecent advances in secondary organic aerosol (SOA) research are reviewed and t...
Aerosol-cloud interaction contributes to the largest uncertainties in the estimation and interpretat...
Aqueous-phase oligomer formation from methylglyoxal, a major atmospheric photooxidation product, has...
Secondary organic aerosol (SOA) formation from the reaction of isoprene with nitrate radicals (NO3) ...
There is growing interest in the formation of secondary organic aerosol (SOA) through condensed aque...