Xiangtan, South China, is characterized by year-round high relative humidity and very low wind speeds. To assess levels of PM2.5, daily samples were collected from 2016 to 2017 at two urban sites. The mass concentrations of PM2.5 were in the range of 30⁻217 µg/m3, with the highest concentrations in winter and the lowest in spring. Major water-soluble ions (WSIIs) and total carbon (TC) accounted for 58⁻59% and 21⁻24% of the PM2.5 mass, respectively. Secondary inorganic ions (SO42−, NO3−, and NH4+) dominated the WSIIs and accounted for 73% and 74% at the two sites. The concentrations of K, Fe, Al, Sb, Ca, Zn, Mg, Pb, Ba, As, and Mn in the PM2.5 at the two sites were higher than 40 ng/m3, and decreased in the...
A year-long study was performed to comprehensively investigate the mass concentration, water-soluble...
PM2.5 in 14 of China's large cities achieves high concentrations in both winter and summer with ...
Water soluble inorganic ions (WSIIs) are important components in PM2.5 and could strongly affect the...
Xiangtan, South China, is characterized by year-round high relative humidity and very low wind speed...
PM2:5 aerosols were sampled in urban Chengdu from April 2009 to January 2010, and their chemical com...
PM2.5 aerosols were sampled in urban Chengdu from April 2009 to January 2010, and their chemical com...
AbstractDiurnal PM2.5 samples were collected during summer and winter at an industrial complex site ...
Daily PM2.5 (aerosol particles with an aerodynamic diameter of less than 2.5 mu m) samples were coll...
In order to study the temporal and spatial variations of PM2.5 and its chemical compositions in the ...
Daily PM2.5 samples were collected at Shangdianzi (SDZ) regional site in Beijing–Tianjin–Hebei (BTH)...
Weekly PM2.5 samples were collected in Shanghai, China at two sites, Tongji University and Hainan Ro...
PM2.5 mass and selected chemical species are measured in 24-h integrated PM2.5 samples collected sim...
Weekly PM2.5 samples were simultaneously collected at a residential (Tsinghua University) and a down...
A year-long study was performed to comprehensively investigate the mass concentration, water-soluble...
The Xixian New District (XXND), established in 2014, is the seventh national-level new district in C...
A year-long study was performed to comprehensively investigate the mass concentration, water-soluble...
PM2.5 in 14 of China's large cities achieves high concentrations in both winter and summer with ...
Water soluble inorganic ions (WSIIs) are important components in PM2.5 and could strongly affect the...
Xiangtan, South China, is characterized by year-round high relative humidity and very low wind speed...
PM2:5 aerosols were sampled in urban Chengdu from April 2009 to January 2010, and their chemical com...
PM2.5 aerosols were sampled in urban Chengdu from April 2009 to January 2010, and their chemical com...
AbstractDiurnal PM2.5 samples were collected during summer and winter at an industrial complex site ...
Daily PM2.5 (aerosol particles with an aerodynamic diameter of less than 2.5 mu m) samples were coll...
In order to study the temporal and spatial variations of PM2.5 and its chemical compositions in the ...
Daily PM2.5 samples were collected at Shangdianzi (SDZ) regional site in Beijing–Tianjin–Hebei (BTH)...
Weekly PM2.5 samples were collected in Shanghai, China at two sites, Tongji University and Hainan Ro...
PM2.5 mass and selected chemical species are measured in 24-h integrated PM2.5 samples collected sim...
Weekly PM2.5 samples were simultaneously collected at a residential (Tsinghua University) and a down...
A year-long study was performed to comprehensively investigate the mass concentration, water-soluble...
The Xixian New District (XXND), established in 2014, is the seventh national-level new district in C...
A year-long study was performed to comprehensively investigate the mass concentration, water-soluble...
PM2.5 in 14 of China's large cities achieves high concentrations in both winter and summer with ...
Water soluble inorganic ions (WSIIs) are important components in PM2.5 and could strongly affect the...