Characteristics and sources of ambient particle elements in urban Beijing were studied by hourly ob-servations in two size fractions (PM10 and PM2.5) during November and December 2017 using an online multi-element analyzer. The reconstructed oxide concentrations of 24 elements (from Al to Pb) comprise an appreciable fraction of PM10 and PM2.5, accounting for 37% and 17%, respectively on average. We demonstrate the benefit of using high-time-resolution chemical speciation data in achieving robust source apportionment of the total elemental PM10 (PM10el) and elemental PM2.5 (PM2.5el) mass using positive matrix factorization (PMF). Biomass burning, coal combustion, secondary sulfate, industry, non -exhaust traffic and dust were identified in b...
Size-resolved aerosols were continuously collected by a Nano Sampler for 13 days at an urban site in...
Daily mass concentrations and chemical compositions (elemental carbon, organic carbon, water soluble...
The simultaneous observation and analysis of atmospheric fine particles (PM2.5) on a regional scale...
To better investigate the characteristics and sources of trace elements (TEs) in PM2.5 in urban Beij...
In this study, 121 daily PM2.5 (aerosol particle with aerodynamic diameter less than 2.5 μm) samples...
International audienceSource contributions to ambient PM10 (particles with an aerodynamic diameter o...
In this study, 121 daily PM2.5 (aerosol particle with aerodynamic diameter less than 2.5 mu m) sampl...
Daily 24-hour PM2.5 samples were collected continuously from January 1 to December 31, 2010. Element...
Beijing has suffered from heavy local emissions as well as regional transport of air pollutants, res...
Haze pollution by anthropogenic emitted particles is a frequent challenge for Beijing air quality in...
Airborne particulate matter (PM2.5 and PM10) samples were collected at the Beijing Normal University...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
This study presents the source apportionment of PM2.5 performed by positive matrix factorization (PM...
A severe regional haze problem in the megacity Beijing and surrounding areas, caused by fast formati...
Air pollution associated with atmospheric fine particulate matter (PM2.5, i.e., particles with an ae...
Size-resolved aerosols were continuously collected by a Nano Sampler for 13 days at an urban site in...
Daily mass concentrations and chemical compositions (elemental carbon, organic carbon, water soluble...
The simultaneous observation and analysis of atmospheric fine particles (PM2.5) on a regional scale...
To better investigate the characteristics and sources of trace elements (TEs) in PM2.5 in urban Beij...
In this study, 121 daily PM2.5 (aerosol particle with aerodynamic diameter less than 2.5 μm) samples...
International audienceSource contributions to ambient PM10 (particles with an aerodynamic diameter o...
In this study, 121 daily PM2.5 (aerosol particle with aerodynamic diameter less than 2.5 mu m) sampl...
Daily 24-hour PM2.5 samples were collected continuously from January 1 to December 31, 2010. Element...
Beijing has suffered from heavy local emissions as well as regional transport of air pollutants, res...
Haze pollution by anthropogenic emitted particles is a frequent challenge for Beijing air quality in...
Airborne particulate matter (PM2.5 and PM10) samples were collected at the Beijing Normal University...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
This study presents the source apportionment of PM2.5 performed by positive matrix factorization (PM...
A severe regional haze problem in the megacity Beijing and surrounding areas, caused by fast formati...
Air pollution associated with atmospheric fine particulate matter (PM2.5, i.e., particles with an ae...
Size-resolved aerosols were continuously collected by a Nano Sampler for 13 days at an urban site in...
Daily mass concentrations and chemical compositions (elemental carbon, organic carbon, water soluble...
The simultaneous observation and analysis of atmospheric fine particles (PM2.5) on a regional scale...