Fireworks burning releases massive fine particles and gaseous pollutants, significantly deteriorating air quality during Chinese Lunar New Year (LNY) period. To investigate the impact of the fireworks burning on the atmospheric aerosol chemistry, 1-hr time resolution of PM2.5 samples in Xi'an during the winter of 2016 including the LNY were collected and detected for inorganic ions, acidity and liquid water content (LWC) of the fine aerosols. PM2.5 during the LNY was 167 ± 87 μg/m3, two times higher than the China National Ambient Air Quality Standard (75 μg/m3). K+ (28 wt.% of the total ion mass) was the most abundant ion in the LNY period, followed by SO42 − (25 wt.%) and Cl− (18 wt.%). In contrast, NO3− (34 wt.%) was the most abundant s...
Continuous measurements of airborne particles and their chemical compositions were conducted in May,...
Measurements for particles 10 nm to 10 gm were taken using a Wide-range Particle Spectrometer during...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
Fireworks burning releases massive fine particles and gaseous pollutants, significantly deterioratin...
Aerosol particles were characterized by an Aerodyne aerosol chemical speciation monitor along with v...
To investigate the effect of fireworks on the quality of the atmospheric environment and changes in ...
The elevation and dissipation of pollutants after the ignition of fireworks in different functional ...
<div><p>Background</p><p>The elevation and dissipation of pollutants after the ignition of fireworks...
To understand the impact of firework-burning (FW) particles on air quality and human health during t...
Daily fine particulate (PM2.5) samples were collected in Chengdu from April 2009 to February 2010 to...
International audienceTo explore the spatial and chemical characteristics of PM2.5 pollution and the...
To investigate chemical profiles and formation mechanisms of aerosol particles in winter haze events...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Intensive firecracker/firework displays during Chinese New Year (CNY) release fine particles and gas...
The chemical composition of Beijing aerosol was measured during summer and winter. Two distinct epis...
Continuous measurements of airborne particles and their chemical compositions were conducted in May,...
Measurements for particles 10 nm to 10 gm were taken using a Wide-range Particle Spectrometer during...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...
Fireworks burning releases massive fine particles and gaseous pollutants, significantly deterioratin...
Aerosol particles were characterized by an Aerodyne aerosol chemical speciation monitor along with v...
To investigate the effect of fireworks on the quality of the atmospheric environment and changes in ...
The elevation and dissipation of pollutants after the ignition of fireworks in different functional ...
<div><p>Background</p><p>The elevation and dissipation of pollutants after the ignition of fireworks...
To understand the impact of firework-burning (FW) particles on air quality and human health during t...
Daily fine particulate (PM2.5) samples were collected in Chengdu from April 2009 to February 2010 to...
International audienceTo explore the spatial and chemical characteristics of PM2.5 pollution and the...
To investigate chemical profiles and formation mechanisms of aerosol particles in winter haze events...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Intensive firecracker/firework displays during Chinese New Year (CNY) release fine particles and gas...
The chemical composition of Beijing aerosol was measured during summer and winter. Two distinct epis...
Continuous measurements of airborne particles and their chemical compositions were conducted in May,...
Measurements for particles 10 nm to 10 gm were taken using a Wide-range Particle Spectrometer during...
Airborne particles in urban Beijing during haze days and normal days were collected and analyzed in ...