To study the concentrations of fine particulate matters and ultrafine particles and influenced factors during winter in an area of Beijing.Real-time monitoring of particles' mass and number concentrations were conducted in an area of Beijing from February 7(th) to 27(th), 2013. At the same time, the meteorological data were also collected from the Beijing meteorological website. Differences of the particles' mass and number concentrations during different periods were analyzed using Mann-Whitney U test. Meanwhile, the influenced factors were also analyzed.The mean concentrations of fine particulate matters and ultrafine particles were (157.2 ± 142.8) μg/m3 and (25 018 ± 9 309) particles/cm3, respectively. The particles' numbe...
A comprehensive measurement was carried out to analyze the heavy haze events during 2012-2013 winter...
Two-year measurements of particle number size distribution (3 nm-10 mu m) were conducted in Beijing,...
From December, 2012to April, 2013, measurements of personal exposure levels to atmospheric fine part...
Ultrafine particles with a diameter below 1 μm are strongly linked to traffic and industrial emissio...
Ground-based observation of fine particulate matter (PM2.5) in Beijing was carried out continuously ...
Ground-based observation of fine particulate matter (PM2.5) in Beijing was carried out continuously ...
The recent year's monitor results of Beijing indicated that the pollution level of fine particl...
Daily, size-segregated particulate matter (PM) samples were collected at Peking University from Marc...
High concentrations of fine particles (PM<sub>2.5</sub>) are frequently observed during all seasons ...
Atmospheric fine particles (diameter < 1 μm) attract a growing global health concern and have inc...
On-line measurements of particle number size distribution were conducted during 2004-07-13-2004-08-2...
Haze pollution by anthropogenic emitted particles is a frequent challenge for Beijing air quality in...
Chemical composition, morphology, size and mixture of fine particles were measured in a heavy haze a...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
This study investigates the influence of the Chinese New Year (CNY) celebrations on local air qualit...
A comprehensive measurement was carried out to analyze the heavy haze events during 2012-2013 winter...
Two-year measurements of particle number size distribution (3 nm-10 mu m) were conducted in Beijing,...
From December, 2012to April, 2013, measurements of personal exposure levels to atmospheric fine part...
Ultrafine particles with a diameter below 1 μm are strongly linked to traffic and industrial emissio...
Ground-based observation of fine particulate matter (PM2.5) in Beijing was carried out continuously ...
Ground-based observation of fine particulate matter (PM2.5) in Beijing was carried out continuously ...
The recent year's monitor results of Beijing indicated that the pollution level of fine particl...
Daily, size-segregated particulate matter (PM) samples were collected at Peking University from Marc...
High concentrations of fine particles (PM<sub>2.5</sub>) are frequently observed during all seasons ...
Atmospheric fine particles (diameter < 1 μm) attract a growing global health concern and have inc...
On-line measurements of particle number size distribution were conducted during 2004-07-13-2004-08-2...
Haze pollution by anthropogenic emitted particles is a frequent challenge for Beijing air quality in...
Chemical composition, morphology, size and mixture of fine particles were measured in a heavy haze a...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
This study investigates the influence of the Chinese New Year (CNY) celebrations on local air qualit...
A comprehensive measurement was carried out to analyze the heavy haze events during 2012-2013 winter...
Two-year measurements of particle number size distribution (3 nm-10 mu m) were conducted in Beijing,...
From December, 2012to April, 2013, measurements of personal exposure levels to atmospheric fine part...