The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (SCIs). These biradical/zwitterionic species have the potential to act as atmospheric oxidants for trace pollutants such as SO<sub>2</sub>, enhancing the formation of sulfate aerosol with impacts on air quality and health, radiative transfer and climate. However, the importance of this chemistry is uncertain as a consequence of limited understanding of the abundance and atmospheric fate of SCIs. In this work we apply experimental, theoretical and numerical modelling methods to quantify the atmospheric impacts, abundance and fate of the structurally diverse SCIs derived from the ozonolysis of monoterpenes, the second most abundant group...
Stabilized Criegee intermediates (SCI) are reactive oxygenated species formed in the ozonolysis of h...
Aerosol affects Earth’s climate and the health of its inhabitants. A major contributor to aerosol fo...
In order to probe how anthropogenic pollutants can impact the atmospheric oxidation of biogenic emis...
The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (S...
The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (S...
The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (S...
Oxidation processes in Earth's atmosphere are tightly connected to many environmental and human heal...
Oxidation processes in Earth's atmosphere are tightly connected to many environmental and human heal...
Ozonolysis of monoterpenes is an important source of atmospheric biogenic secondary organic aerosol...
International audienceBiogenic volatile organic compounds (BVOCs), including monoterpenes, are one o...
Isoprene is the dominant global biogenic volatile organic compound (VOC) emission. Reactions of isop...
The gas-phase reaction of alkenes with ozone has been the subject of considerable research interest ...
Atmospheric oxidation is an important phenomenon which produces large quantities of low-volatility ...
Isoprene is the dominant global biogenic volatile organic compound (VOC) emission. Reactions of isop...
Stabilized Criegee intermediates (SCI) are reactive oxygenated species formed in the ozonolysis of h...
Aerosol affects Earth’s climate and the health of its inhabitants. A major contributor to aerosol fo...
In order to probe how anthropogenic pollutants can impact the atmospheric oxidation of biogenic emis...
The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (S...
The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (S...
The gas-phase reaction of alkenes with ozone is known to produce stabilised Criegee intermediates (S...
Oxidation processes in Earth's atmosphere are tightly connected to many environmental and human heal...
Oxidation processes in Earth's atmosphere are tightly connected to many environmental and human heal...
Ozonolysis of monoterpenes is an important source of atmospheric biogenic secondary organic aerosol...
International audienceBiogenic volatile organic compounds (BVOCs), including monoterpenes, are one o...
Isoprene is the dominant global biogenic volatile organic compound (VOC) emission. Reactions of isop...
The gas-phase reaction of alkenes with ozone has been the subject of considerable research interest ...
Atmospheric oxidation is an important phenomenon which produces large quantities of low-volatility ...
Isoprene is the dominant global biogenic volatile organic compound (VOC) emission. Reactions of isop...
Stabilized Criegee intermediates (SCI) are reactive oxygenated species formed in the ozonolysis of h...
Aerosol affects Earth’s climate and the health of its inhabitants. A major contributor to aerosol fo...
In order to probe how anthropogenic pollutants can impact the atmospheric oxidation of biogenic emis...