The gas-phase reactions of ozone with alkenes can be significant sources of free radicals (OH, HO 2 and RO2) in the Earth's atmosphere. In this study the total radical production and degradation products from ethene ozonolysis have been measured, under conditions relevant to the troposphere, during a series of detailed simulation chamber experiments. Experiments were carried out in the European photoreactor EUPHORE (Valencia, Spain), utilising various instrumentation including a chemical-ionisation-reaction time-of-flight mass-spectrometer (CIR-TOF-MS) measuring volatile organic compounds/oxygenated volatile organic compounds (VOCs/OVOCs), a laser induced fluorescence (LIF) system for measuring HO2 radical products and a peroxy radical chem...
Hydroperoxyl (HO2) and organic peroxy (RO2, where R stands for any organic group) radicals are highl...
Reactions of the hydroxyl (OH) and peroxy (HO2 and RO2) radicals play a central role in the chemistr...
The Tropospheric ORganic CHemistry experiment (TORCH) took place during the heatwave of summer 2003 ...
The gas-phase reactions of ozone with alkenes can be significant sources of free radicals (OH, HO(2)...
The gas-phase reaction of ozone with unsaturated volatile organic compounds (VOCs), alkenes, is an i...
The gas-phase reactions of ozone with alkenes can be significant sources of free radicals (OH, HO2 a...
The gas-phase reaction of alkenes with ozone has been the subject of considerable research interest ...
The ozonolysis, that is, the oxidation with O$_{3}$, is one of the most important removal pathways f...
The ozone-ethene reaction has been investigated at low pressure in a flow-tube interfaced to a u.v. ...
As our understanding of the different physical and chemical aspects of tropospheric processes increa...
The reactions of ozone with alkenes are an important source of hydroxyl (OH) radicals; however, quan...
The abundance of the higly reactive hydroxyl radical (OH radical) in the troposphere (lower 10 kilom...
Three main catalytic chain processes are believed to contribute to the loss of ozone in ...
Hydroxyl radicals (OH) are the main daytime oxidant, which determine the tropospheric oxidation capa...
International audiencePeroxy radicals (HO 2 and RO 2 ) are key species in atmospheric chemistry, whi...
Hydroperoxyl (HO2) and organic peroxy (RO2, where R stands for any organic group) radicals are highl...
Reactions of the hydroxyl (OH) and peroxy (HO2 and RO2) radicals play a central role in the chemistr...
The Tropospheric ORganic CHemistry experiment (TORCH) took place during the heatwave of summer 2003 ...
The gas-phase reactions of ozone with alkenes can be significant sources of free radicals (OH, HO(2)...
The gas-phase reaction of ozone with unsaturated volatile organic compounds (VOCs), alkenes, is an i...
The gas-phase reactions of ozone with alkenes can be significant sources of free radicals (OH, HO2 a...
The gas-phase reaction of alkenes with ozone has been the subject of considerable research interest ...
The ozonolysis, that is, the oxidation with O$_{3}$, is one of the most important removal pathways f...
The ozone-ethene reaction has been investigated at low pressure in a flow-tube interfaced to a u.v. ...
As our understanding of the different physical and chemical aspects of tropospheric processes increa...
The reactions of ozone with alkenes are an important source of hydroxyl (OH) radicals; however, quan...
The abundance of the higly reactive hydroxyl radical (OH radical) in the troposphere (lower 10 kilom...
Three main catalytic chain processes are believed to contribute to the loss of ozone in ...
Hydroxyl radicals (OH) are the main daytime oxidant, which determine the tropospheric oxidation capa...
International audiencePeroxy radicals (HO 2 and RO 2 ) are key species in atmospheric chemistry, whi...
Hydroperoxyl (HO2) and organic peroxy (RO2, where R stands for any organic group) radicals are highl...
Reactions of the hydroxyl (OH) and peroxy (HO2 and RO2) radicals play a central role in the chemistr...
The Tropospheric ORganic CHemistry experiment (TORCH) took place during the heatwave of summer 2003 ...