Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental data are not available for the oxidation reactions of many of the thousands of volatile organic compounds (VOCs) observed in the troposphere. Here, a new experimental method is reported for the simultaneous study of reactions between multiple different VOCs and OH, the most important daytime atmospheric radical oxidant. This technique is based upon established relative rate concepts but has the advantage of a much higher throughput of target VOCs. By evaluating multiple VOCs in each experiment, and through measurement of the depletion in each VOC after reaction with OH, the OH + VOC reaction rate coefficients can be derived. Results from exp...
Reaction with ozone (O3) is an important removal process for unsaturated volatile organic compounds ...
International audienceThe hydroxyl radical (OH) plays a key role in the atmosphere, as it initiates ...
Hydroxyl (OH) radical reactivity (kOH) has been measured for 18 years with different measurement tec...
Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental...
Knowledge of the reactions between VOCs and atmospheric radicals and oxidants is fundamental to unde...
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...
International audienceHydroxyl (OH) radicals play a vital role in maintaining the oxidizing capacity...
International audienceHydroxyl (OH) radicals play a vital role in maintaining the oxidizing capacity...
Over the past fifty years, considerable efforts have been devoted to measuring the concentration and...
OH and HO2 radicals are closely coupled in the atmospheric oxidation and combustion of volatile orga...
International audienceThe available database concerning rate constants for gas-phase reactions of th...
State-of-the-art techniques allow for rapid measurements of total OH reactivity. Unknown sinks of OH...
OH and HO2 radicals are closely coupled in the atmospheric oxidation and combustion of volatile orga...
The hydroxyl (OH) radical is an important oxidant in the troposphere, which controls the lifetime of...
Reaction with ozone (O3) is an important removal process for unsaturated volatile organic compounds ...
International audienceThe hydroxyl radical (OH) plays a key role in the atmosphere, as it initiates ...
Hydroxyl (OH) radical reactivity (kOH) has been measured for 18 years with different measurement tec...
Gas-phase rate coefficients are fundamental to understanding atmospheric chemistry, yet experimental...
Knowledge of the reactions between VOCs and atmospheric radicals and oxidants is fundamental to unde...
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...
International audienceHydroxyl (OH) radicals play a vital role in maintaining the oxidizing capacity...
International audienceHydroxyl (OH) radicals play a vital role in maintaining the oxidizing capacity...
Over the past fifty years, considerable efforts have been devoted to measuring the concentration and...
OH and HO2 radicals are closely coupled in the atmospheric oxidation and combustion of volatile orga...
International audienceThe available database concerning rate constants for gas-phase reactions of th...
State-of-the-art techniques allow for rapid measurements of total OH reactivity. Unknown sinks of OH...
OH and HO2 radicals are closely coupled in the atmospheric oxidation and combustion of volatile orga...
The hydroxyl (OH) radical is an important oxidant in the troposphere, which controls the lifetime of...
Reaction with ozone (O3) is an important removal process for unsaturated volatile organic compounds ...
International audienceThe hydroxyl radical (OH) plays a key role in the atmosphere, as it initiates ...
Hydroxyl (OH) radical reactivity (kOH) has been measured for 18 years with different measurement tec...