Oxygenated organic molecules (OOMs) are crucial for atmospheric new particle formation and secondary organic aerosol (SOA) growth. Therefore, understanding their chemical composition, temporal behavior, and sources is of great importance. Previous studies on OOMs mainly focus on environments where biogenic sources are predominant, yet studies on sites with dominant anthropogenic emissions, such as megacities, have been lacking. Here, we conducted long-term measurements of OOMs, covering four seasons of the year 2019, in urban Beijing. The OOM concentration was found to be the highest in summer (1.6 x 10(8) cm(-3)), followed by autumn (7.9 x 10(7) cm(-3)), spring (5.7 x 10(7) cm(-3)) and winter (2.3 x 10(7) cm(-3)), suggesting that enhanced ...
The molecular composition of atmospheric particulate matter(PM) in the urban environment is complex,...
To improve air quality, the Beijing government has employed several air pollution control measures ...
Particle nucleation is one of the main sources of atmospheric particulate matter by number, with new...
Oxygenated organic molecules (OOMs) are crucial for atmospheric new particle formation and secondary...
Gas-phase oxygenated organic molecules (OOMs) can contribute substantially to the growth of newly fo...
The understanding at a molecular level of ambient secondary organic aerosol (SOA) formation is hampe...
Isoprene-derived secondary organic aerosol (iSOA) is a significant contributor to organic carbon (OC...
Organic aerosol (OA) represents a large fraction of submicron aerosols in the megacity of Beijing, ...
A severe regional haze problem in the megacity Beijing and surrounding areas, caused by fast formati...
To investigate the seasonal characteristics of submicron aerosol (PM1) in Beijing urban areas, a hig...
To investigate the sources and evolution of haze pollution in different seasons, long-term (from 15 ...
To investigate the seasonal characteristics of submicron aerosol (PM1) in Beijing urban areas, a hig...
The molecular composition of atmospheric particulate matter (PM) in the urban environment is complex...
Organic aerosols, a major constituent of fine particulate mass in megacities, can be directly emitte...
The molecular composition of atmospheric particulate matter(PM) in the urban environment is complex,...
To improve air quality, the Beijing government has employed several air pollution control measures ...
Particle nucleation is one of the main sources of atmospheric particulate matter by number, with new...
Oxygenated organic molecules (OOMs) are crucial for atmospheric new particle formation and secondary...
Gas-phase oxygenated organic molecules (OOMs) can contribute substantially to the growth of newly fo...
The understanding at a molecular level of ambient secondary organic aerosol (SOA) formation is hampe...
Isoprene-derived secondary organic aerosol (iSOA) is a significant contributor to organic carbon (OC...
Organic aerosol (OA) represents a large fraction of submicron aerosols in the megacity of Beijing, ...
A severe regional haze problem in the megacity Beijing and surrounding areas, caused by fast formati...
To investigate the seasonal characteristics of submicron aerosol (PM1) in Beijing urban areas, a hig...
To investigate the sources and evolution of haze pollution in different seasons, long-term (from 15 ...
To investigate the seasonal characteristics of submicron aerosol (PM1) in Beijing urban areas, a hig...
The molecular composition of atmospheric particulate matter (PM) in the urban environment is complex...
Organic aerosols, a major constituent of fine particulate mass in megacities, can be directly emitte...
The molecular composition of atmospheric particulate matter(PM) in the urban environment is complex,...
To improve air quality, the Beijing government has employed several air pollution control measures ...
Particle nucleation is one of the main sources of atmospheric particulate matter by number, with new...