To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols is required due to the complexity in multiple emissions and atmospheric processes. Here we combined the analysis of radiocarbon and the stable isotope 13C to investigate the sources and formation of carbonaceous aerosols collected in two Chinese megacities (Beijing and Xi'an) during severe haze events of a "red alarm"level from December 2016 to January 2017. The haze periods with daily PM2:5 concentrations as high as ∼400 μgm-3 were compared to subsequent clean periods (i.e., PM2:5 less than median concentrations during the winter 2016/2017) with PM2:5 concentrations below 100 μgm-3 in Xi'an and below 20 μgm-3 in Beijing. In Xi'an, liquid fos...
To investigate the sources and formation mechanisms of carbonaceous aerosols, a major contributor to...
We measured the radiocarbon isotope signals in various fractions of carbonaceous aerosols sampled ac...
During winter 2013, extremely high concentrations (i.e., 4–20 times higher than the World Health Org...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To investigate the characteristics and changes in the sources of carbonaceous aerosols in northern C...
Sources of organic carbon (OC) and elemental carbon (EC) in Xi'an, China, are investigated based on ...
Sources of organic carbon (OC) and elemental carbon (EC) in Xi'an, China, are investigated based on ...
Sources of organic carbon (OC) and elemental carbon (EC) in Xi'an, China, are investigated based on ...
During winter 2013, extremely high concentrations (i.e., 4-20 times higher than the World Health Org...
To investigate the sources and formation mechanisms of carbonaceous aerosols, a major contributor to...
We measured the radiocarbon isotope signals in various fractions of carbonaceous aerosols sampled ac...
During winter 2013, extremely high concentrations (i.e., 4–20 times higher than the World Health Org...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To mitigate haze pollution in China, a better understanding of the sources of carbonaceous aerosols ...
To investigate the characteristics and changes in the sources of carbonaceous aerosols in northern C...
Sources of organic carbon (OC) and elemental carbon (EC) in Xi'an, China, are investigated based on ...
Sources of organic carbon (OC) and elemental carbon (EC) in Xi'an, China, are investigated based on ...
Sources of organic carbon (OC) and elemental carbon (EC) in Xi'an, China, are investigated based on ...
During winter 2013, extremely high concentrations (i.e., 4-20 times higher than the World Health Org...
To investigate the sources and formation mechanisms of carbonaceous aerosols, a major contributor to...
We measured the radiocarbon isotope signals in various fractions of carbonaceous aerosols sampled ac...
During winter 2013, extremely high concentrations (i.e., 4–20 times higher than the World Health Org...