Origin-Oriented Elemental Profile of Fine Ambient Particulate Matter in Central European Suburban Conditions

Int J Environ Res Public Health. 2016 Jul 15;13(7):715. doi: 10.3390/ijerph13070715.

Abstract

Twenty-four-hour samples of fine ambient particulate matter (PM2.5; particles with aerodynamic diameters ≤2.5 µm) were collected in a suburban (quasi-rural) area in Racibórz (Poland) between 1 January 2011 and 26 December 2012. The samples were analyzed for the contents of 28 elements. Sources of PM2.5 were identified and the contribution of each source to the PM2.5 concentration was assessed using an enrichment factor (EF) analysis, a principal component analysis (PCA), and multi-linear regression analysis (MLRA). In the cold season (January-March and October-December 2011-2012), the mean ambient concentration of PM2.5 in Racibórz was 48.7 ± 39.4 µg·m(-3), which was much higher than at other suburban or rural sites in Europe. Additionally the ambient concentrations of some toxic PM2.5-bound elements were also high, i.e., the mean ambient concentrations of PM2.5-bound As, Cd, and Pb were 11.3 ± 11.5, 5.2 ± 2.5, and 34.0 ± 34.2 ng·m(-3), respectively. In the warm season (April-September 2011-2012), the PM2.5 and PM2.5-bound element concentrations in Racibórz were comparable to the concentrations noted at other suburban (or rural) sites in Europe. Our findings suggest that elemental composition and concentrations of PM2.5 in Racibórz are mainly influenced by anthropogenic emissions, i.e., the energy production based on coal and biomass combustion, traffic, and industry.

Keywords: MLRA; PCA; coal combustion; hotspot area in Europe; municipal emission; respirable particulates; source apportionment; traffic emissions.

MeSH terms

  • Air Pollutants / analysis
  • Air Pollution / analysis*
  • Coal / analysis
  • Environmental Monitoring
  • Europe
  • Factor Analysis, Statistical
  • Particle Size
  • Particulate Matter / analysis
  • Particulate Matter / chemistry*
  • Poland
  • Principal Component Analysis
  • Regression Analysis
  • Seasons

Substances

  • Air Pollutants
  • Coal
  • Particulate Matter