The evolution of physical, chemical and optical properties of urban aerosol particles was characterized during an extreme haze episode in Beijing, PRC, from 24 through 31 January 2013 based on in situ measurements. The average mass concentrations of PM<sub>1</sub>, PM<sub>2.5</sub> and PM<sub>10</sub> were 99 ± 67 μg m<sup>−3</sup> (average ± SD), 188 ± 128 μg m<sup>−3</sup> and 265 ± 157 μg m<sup>−3</sup>, respectively. A significant increase in PM<sub>1-2.5</sub> fraction was observed during the most heavily polluted period. The average scattering coefficient at 550 nm was 877 ± 624 Mm<sup>−1</sup>. An increasing relative amount of coarse particles can be deduced from the variatio...
The causes of haze formation in Beijing, China were analyzed based on a comprehensive measurement, i...
Extreme haze episodes repeatedly shrouded Beijing during the winter of 2012–2013, causing major envi...
An intensive measurement campaign was conducted in Xi'an, China from December 2012-January 2013 to i...
Beijing experiences air pollution such that the sky overhead is gray much of the time even on cloudl...
Chemical composition, morphology, size and mixture of fine particles were measured in a heavy haze a...
An extreme haze event occurred in the Beijing area from 17 to 23 December 2015. Ground-based measure...
An extreme haze event occurred in the Beijing area from 17 to 23 December 2015. Ground-based measure...
Field campaigns monitoring the aerosol optical properties and chemical components of PM10 were carri...
Extreme haze episodes repeatedly shrouded Beijing during the winter of 2012-2013, causing major envi...
Beijing experiences air pollution such that the sky overhead is gray much of the time even on cloudl...
Beijing experiences air pollution such that the sky overhead is gray much of the time even on cloudl...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
A comprehensive measurement was carried out to analyze the heavy haze events during 2012-2013 winter...
In order to investigate the optical properties of atmospheric aerosol in the urban area of Beijing, ...
The optical properties and chemical composition of PM<sub>1.0</sub> particles in a suburban environ...
The causes of haze formation in Beijing, China were analyzed based on a comprehensive measurement, i...
Extreme haze episodes repeatedly shrouded Beijing during the winter of 2012–2013, causing major envi...
An intensive measurement campaign was conducted in Xi'an, China from December 2012-January 2013 to i...
Beijing experiences air pollution such that the sky overhead is gray much of the time even on cloudl...
Chemical composition, morphology, size and mixture of fine particles were measured in a heavy haze a...
An extreme haze event occurred in the Beijing area from 17 to 23 December 2015. Ground-based measure...
An extreme haze event occurred in the Beijing area from 17 to 23 December 2015. Ground-based measure...
Field campaigns monitoring the aerosol optical properties and chemical components of PM10 were carri...
Extreme haze episodes repeatedly shrouded Beijing during the winter of 2012-2013, causing major envi...
Beijing experiences air pollution such that the sky overhead is gray much of the time even on cloudl...
Beijing experiences air pollution such that the sky overhead is gray much of the time even on cloudl...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
A comprehensive measurement was carried out to analyze the heavy haze events during 2012-2013 winter...
In order to investigate the optical properties of atmospheric aerosol in the urban area of Beijing, ...
The optical properties and chemical composition of PM<sub>1.0</sub> particles in a suburban environ...
The causes of haze formation in Beijing, China were analyzed based on a comprehensive measurement, i...
Extreme haze episodes repeatedly shrouded Beijing during the winter of 2012–2013, causing major envi...
An intensive measurement campaign was conducted in Xi'an, China from December 2012-January 2013 to i...