Hydroxyl radicals play a central role in the troposphere as they control the lifetime of many trace gases. Measurement of OH reactivity (OH loss rate) is important to better constrain the OH budget and also to evaluate the completeness of measured VOC budget. Total atmospheric OH reactivity was measured for the first time in an European Megacity: Paris and its surrounding areas with 12 million inhabitants, during the MEGAPOLI winter campaign 2010. The method deployed was the Comparative Reactivity Method (CRM). The measured dataset contains both measured and calculated OH reactivity from CO, NOx and VOCs measured via PTR-MS, GC-FID and GC-MS instruments. The reactivities observed in Paris covered a range from 10 s−1 to 130 s−1, indicating a...
Typically tropospheric chemical models overestimate [OH] when compared to measurements. This discrep...
The total OH reactivity is the total loss rate of the hydroxyl radical with the reactive gases in am...
The measurement of OH reactivity, the inverse of the OH lifetime, provides a powerful tool to invest...
International audienceHydroxyl radicals play a central role in the tro-posphere as they control the ...
The hydroxyl radical (OH) represents the most important oxidant of the troposphere and the sink of m...
The hydroxyl (OH) radical is an important oxidant in the troposphere, which controls the lifetime of...
The investigation of hydroxyl radical (OH) chemistry during intensive field campaigns has led to the...
International audienceHydroxyl (OH) radicals play a vital role in maintaining the oxidizing capacity...
The hydroxyl radical (OH) plays a crucial role in the chemistry of the atmosphere as it initiates th...
International audienceThe hydroxyl radical (OH) plays a key role in the atmosphere, as it initiates ...
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...
Typically tropospheric chemical models overestimate [OH] when compared to measurements. This discrep...
The total OH reactivity is the total loss rate of the hydroxyl radical with the reactive gases in am...
The measurement of OH reactivity, the inverse of the OH lifetime, provides a powerful tool to invest...
International audienceHydroxyl radicals play a central role in the tro-posphere as they control the ...
The hydroxyl radical (OH) represents the most important oxidant of the troposphere and the sink of m...
The hydroxyl (OH) radical is an important oxidant in the troposphere, which controls the lifetime of...
The investigation of hydroxyl radical (OH) chemistry during intensive field campaigns has led to the...
International audienceHydroxyl (OH) radicals play a vital role in maintaining the oxidizing capacity...
The hydroxyl radical (OH) plays a crucial role in the chemistry of the atmosphere as it initiates th...
International audienceThe hydroxyl radical (OH) plays a key role in the atmosphere, as it initiates ...
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...
Typically tropospheric chemical models overestimate [OH] when compared to measurements. This discrep...
The total OH reactivity is the total loss rate of the hydroxyl radical with the reactive gases in am...
The measurement of OH reactivity, the inverse of the OH lifetime, provides a powerful tool to invest...