Knowledge of the reactions between VOCs and atmospheric radicals and oxidants is fundamental to understanding atmospheric chemistry and the formation of air pollution in urban environments. This work describes the development of a new experimental technique for the simultaneous measurement of gas-phase rate coefficients for reactions between multiple VOCs and different atmospheric radicals. The technique is based on the traditional relative rate approach and succeeds in markedly increasing the rate of throughput of target reactions; an improvement necessary when considering the vast number of organic compounds observed in the atmosphere for which experimental oxidation data are not available. New rate coefficients are derived using a suite ...
Rate constants (in units of 10-11 cm3 molecule-1s-1) were measured for the following reactions at 29...
Reaction with ozone (O3) is an important removal process for unsaturated volatile organic compounds ...
International audienceWe present a digital, freely available, searchable, and evaluated compilation ...
Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental...
Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental...
The multivariate relative rate method was applied to a range of volatile organic compound (VOC) reac...
Reaction with the hydroxyl (OH) radical is the dominant removal process for volatile organic compoun...
The focus of this contract was to investigate selected aspects of the atmospheric chemistry of volat...
The relative rate method has been used to measure the room-temperature rate constants for the gaspha...
International audienceThe available database concerning rate constants for gas-phase reactions of th...
Rate constants (in units of 10-11 cm3 molecule-1s-1) were measured for the following reactions at 29...
Reaction with ozone (O3) is an important removal process for unsaturated volatile organic compounds ...
International audienceWe present a digital, freely available, searchable, and evaluated compilation ...
Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental...
Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental...
The multivariate relative rate method was applied to a range of volatile organic compound (VOC) reac...
Reaction with the hydroxyl (OH) radical is the dominant removal process for volatile organic compoun...
The focus of this contract was to investigate selected aspects of the atmospheric chemistry of volat...
The relative rate method has been used to measure the room-temperature rate constants for the gaspha...
International audienceThe available database concerning rate constants for gas-phase reactions of th...
Rate constants (in units of 10-11 cm3 molecule-1s-1) were measured for the following reactions at 29...
Reaction with ozone (O3) is an important removal process for unsaturated volatile organic compounds ...
International audienceWe present a digital, freely available, searchable, and evaluated compilation ...