Accurate identification and quantitative source apportionment of fine particulate matter (PM2.5) provide an important prerequisite for design and implementation of emission control strategies to reduce PM pollution. Therefore, a source-oriented version of the WRF-Chem model is developed in the study to conduct source apportionment of PM2.5 in the North China Plain (NCP). A persistent and heavy haze event that occurred in the NCP from 5 December 2015 to 4 January 2016 is simulated using the model as a case study to quantify PM2.5 contributions of local emissions and regional transport. Results show that local and nonlocal emissions contribute 36.3 % and 63.7 % of the PM2.5 mass in Beijing during the haze event on average. When Beijing's air ...
The rapid urbanization and industrialization of northern China in recent decades has resulted in poo...
Beijing has suffered from heavy local emissions as well as regional transport of air pollutants, res...
China has been troubled by high concentrations of fine particulate matter (PM2.5) for many years. Up...
Accurate identification and quantitative source apportionment of fine particulate matter (PM2.5) pro...
During the Asian summer monsoon season, prevailing southeasterly-southwesterly winds are subject to ...
During the Asian summer monsoon season, prevailing southeasterly-southwesterly winds are subject to ...
Particulate matter (PM) pollution is a severe environmental problem in the Beijing-Tianjin-Hebei (BT...
In the present study, the WRF-CHEM model is used to evaluate the contributions of trans-boundary tra...
In the present study, the WRF-CHEM model is used to evaluate the contributions of trans-boundary tra...
The simultaneous observation and analysis of atmospheric fine particles (PM2.5) on a regional scale...
We quantify the source contributions to surface PM2.5 (fine particulate matter) pollution over North...
The causes and variability of a heavy haze episode in the Beijing region was analyzed. During the ep...
A source apportionment tool, ISAM (Integrated Source Apportionment Method), coupled with a regional ...
The Beijing-Tianjin-Hebei (BTH) region is one of the most heavily polluted regions in China, with bo...
China has been troubled by high concentrations of fine particulate matter (PM2.5) for many years. Up...
The rapid urbanization and industrialization of northern China in recent decades has resulted in poo...
Beijing has suffered from heavy local emissions as well as regional transport of air pollutants, res...
China has been troubled by high concentrations of fine particulate matter (PM2.5) for many years. Up...
Accurate identification and quantitative source apportionment of fine particulate matter (PM2.5) pro...
During the Asian summer monsoon season, prevailing southeasterly-southwesterly winds are subject to ...
During the Asian summer monsoon season, prevailing southeasterly-southwesterly winds are subject to ...
Particulate matter (PM) pollution is a severe environmental problem in the Beijing-Tianjin-Hebei (BT...
In the present study, the WRF-CHEM model is used to evaluate the contributions of trans-boundary tra...
In the present study, the WRF-CHEM model is used to evaluate the contributions of trans-boundary tra...
The simultaneous observation and analysis of atmospheric fine particles (PM2.5) on a regional scale...
We quantify the source contributions to surface PM2.5 (fine particulate matter) pollution over North...
The causes and variability of a heavy haze episode in the Beijing region was analyzed. During the ep...
A source apportionment tool, ISAM (Integrated Source Apportionment Method), coupled with a regional ...
The Beijing-Tianjin-Hebei (BTH) region is one of the most heavily polluted regions in China, with bo...
China has been troubled by high concentrations of fine particulate matter (PM2.5) for many years. Up...
The rapid urbanization and industrialization of northern China in recent decades has resulted in poo...
Beijing has suffered from heavy local emissions as well as regional transport of air pollutants, res...
China has been troubled by high concentrations of fine particulate matter (PM2.5) for many years. Up...