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Source apportionment by PMF on elemental concentrations obtained by PIXE analysis of PM10 samples collected at the vicinity of lignite power plants and mines in Megalopolis, Greece (CROSBI ID 216937)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Manousakas, M. ; Diapouli, E. ; Papaefthymiou, H. ; Migliori, A. ; Karydas, A.G. ; Padilla-Alvarez, R. ; Bogovac, Mladen ; Kaiser, R.B. ; Jakšić, Milko ; Bogdanović-Radović, Ivančica et al. Source apportionment by PMF on elemental concentrations obtained by PIXE analysis of PM10 samples collected at the vicinity of lignite power plants and mines in Megalopolis, Greece // Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms, 349 (2015), 114-124. doi: 10.1016/j.nimb.2015.02.037

Podaci o odgovornosti

Manousakas, M. ; Diapouli, E. ; Papaefthymiou, H. ; Migliori, A. ; Karydas, A.G. ; Padilla-Alvarez, R. ; Bogovac, Mladen ; Kaiser, R.B. ; Jakšić, Milko ; Bogdanović-Radović, Ivančica ; Eleftheriadis, K.

engleski

Source apportionment by PMF on elemental concentrations obtained by PIXE analysis of PM10 samples collected at the vicinity of lignite power plants and mines in Megalopolis, Greece

Particulate matter (PM) is an important constituent of atmospheric pollution especially in areas under the influence of industrial emissions. Megalopolis is a small city of 10, 000 inhabitants located in central Peloponnese in close proximity to three coal opencast mines and two lignite fired power plants. 50 PM10 samples were collected in Megalopolis during the years 2009–11 for elemental and multivariate analysis. For the elemental analysis PIXE was used as one of the most effective techniques in APM analytical characterization. Altogether, the concentrations of 22 elements (Z = 11–33), whereas Black Carbon was also determined for each sample using a reflectometer. Factorization software was used (EPA PMF 3.0) for source apportionment analysis. The analysis revealed that major emission sources were soil dust 33% (7.94 ± 0.27 μg/m3), biomass burning 19% (4.43 ± 0.27 μg/m3), road dust 15% (3.63 ± 0.37 μg/m3), power plant emissions 13% (3.01 ± 0.44 μg/m3), traffic 12% (2.82 ± 0.37 μg/m3), and sea spray 8% (1.99 ± 0.41 μg/m3). Wind trajectories have suggested that metals associated with emission from the power plants came mainly from west and were connected with the locations of the lignite mines located in this area. Soil resuspension, road dust and power plant emissions increased during the warm season of the year, while traffic/secondary, sea spray and biomass burning become dominant during the cold season.

PM10; PIXE; Source apportionment; PMF; Aerosols

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Podaci o izdanju

349

2015.

114-124

objavljeno

0168-583X

10.1016/j.nimb.2015.02.037

Povezanost rada

Fizika

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