Anthropogenic volatile organic compounds (AV-OCs) often dominate the urban atmosphere and consist to a large degree of aromatic hydrocarbons (ArHCs), such as benzene, toluene, xylenes, and trimethylbenzenes, e.g., from the handling and combustion of fuels. These compounds are important precursors for the formation of secondary organic aerosol. Here we show that the oxidation of aromatics with OH leads to a subsequent autoxidation chain reaction forming highly oxygenated molecules (HOMs) with an O:C ratio of up to 1.09. This is exemplified for five single-ring ArHCs (benzene, toluene, o-/m-/p-xylene, mesitylene (1,3,5-trimethylbenzene) and ethylbenzene), as well as two conjugated polycyclic ArHCs (naphthalene and biphenyl). We report the ele...
Oxidation of aromatic volatile organic compounds (VOCs) leads to the formation of tropospheric ozone...
Gas-phase hydrocarbon autoxidation is a rapid pathway for the production of in situ aerosol precurso...
Gas-phase hydrocarbon autoxidation is a rapid pathway for the production of in situ aerosol precurso...
Anthropogenic volatile organic compounds (AV-OCs) often dominate the urban atmosphere and consist to...
Anthropogenic volatile organic compounds (AVOCs) often dominate the urban atmosphere and consist to ...
Anthropogenic volatile organic compounds (AVOCs) often dominate the urban atmosphere and consist to...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Aromatic hydrocarbons contribute significantly to tropospheric ozone and secondary organic aerosols ...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Aromatic hydrocarbons contribute significantly to tropospheric ozone and secondary organic aerosols ...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Aromatic hydrocarbons make up a large fraction of anthropogenic volatile organic compounds and contr...
Aromatic hydrocarbons constitute an important fraction (~20%) of total volatile organic compounds (V...
Oxidation of aromatic volatile organic compounds (VOCs) leads to the formation of tropospheric ozone...
Gas-phase hydrocarbon autoxidation is a rapid pathway for the production of in situ aerosol precurso...
Gas-phase hydrocarbon autoxidation is a rapid pathway for the production of in situ aerosol precurso...
Anthropogenic volatile organic compounds (AV-OCs) often dominate the urban atmosphere and consist to...
Anthropogenic volatile organic compounds (AVOCs) often dominate the urban atmosphere and consist to ...
Anthropogenic volatile organic compounds (AVOCs) often dominate the urban atmosphere and consist to...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Aromatic hydrocarbons contribute significantly to tropospheric ozone and secondary organic aerosols ...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Aromatic hydrocarbons contribute significantly to tropospheric ozone and secondary organic aerosols ...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Recent studies have recognised highly oxygenated organic molecules (HOMs) in the atmosphere as impor...
Aromatic hydrocarbons make up a large fraction of anthropogenic volatile organic compounds and contr...
Aromatic hydrocarbons constitute an important fraction (~20%) of total volatile organic compounds (V...
Oxidation of aromatic volatile organic compounds (VOCs) leads to the formation of tropospheric ozone...
Gas-phase hydrocarbon autoxidation is a rapid pathway for the production of in situ aerosol precurso...
Gas-phase hydrocarbon autoxidation is a rapid pathway for the production of in situ aerosol precurso...