This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PMF) on data presented here which were collected at urban (Institute of Atmospheric Physics – IAP) and rural (Pinggu – PG) sites in Beijing as part of the Atmospheric Pollution and Human Health in a Chinese megacity (APHH-Beijing) field campaigns. The campaigns were carried out from 9 November to 11 December 2016 and from 22 May to 24 June 2017. The PMF analysis included both organic and inorganic species, and a seven-factor output provided the most reasonable solution for the PM2:5 source apportionment. These factors are interpreted as traffic emissions, biomass burning, road dust, soil dust, coal combustion, oil combustion, and secondary inor...
Source apportionment of fine particles (PM2.5) at a background site in North China in the winter of ...
Fine particles were sampled from 9 November to 11 December 2016 and 22 May to 24 June 2017 as part o...
Secondary particles account fora considerable proportion of fine particles (PM2.5) and reasonable re...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2.5 performed by positive matrix factorization (PM...
Air pollution associated with atmospheric fine particulate matter (PM2.5, i.e., particles with an ae...
Atmospheric particulate matter (PM) is composed of various chemical components and can affect air qu...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
Source apportionment of fine particles (PM2.5) at a background site in North China in the winter of ...
Fine particles were sampled from 9 November to 11 December 2016 and 22 May to 24 June 2017 as part o...
Secondary particles account fora considerable proportion of fine particles (PM2.5) and reasonable re...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2:5 performed by positive matrix factorization (PM...
This study presents the source apportionment of PM2.5 performed by positive matrix factorization (PM...
Air pollution associated with atmospheric fine particulate matter (PM2.5, i.e., particles with an ae...
Atmospheric particulate matter (PM) is composed of various chemical components and can affect air qu...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
This study aims to critically evaluate the source apportionment of fine particles by multiple recept...
Source apportionment of fine particles (PM2.5) at a background site in North China in the winter of ...
Fine particles were sampled from 9 November to 11 December 2016 and 22 May to 24 June 2017 as part o...
Secondary particles account fora considerable proportion of fine particles (PM2.5) and reasonable re...