The characteristics of aerosol, in particular particle size and chemical composition, can have an impact on human health. Particle size distribution and chemical composition is a necessary parameter in occupational exposure assessment conducted in order to understand possible health effects. The aim of this study was to characterize workplace airborne particulate matter in a metallurgical setting by synergistically using two different approaches; Methodology: Analysis of inhalable fraction concentrations through traditional sampling equipment and ultrafine particles (UFP) concentrations and size distribution was conducted by an Electric Low-Pressure Impactor (ELPI+â¢). The determination of metallic elements (ME) in particles was carried out by inductively coupled plasma mass spectrometry; Results: Inhalable fraction and ME concentrations were below the limits set by Italian legislation and the American Conference of Governmental Industrial Hygienists (ACGIH, 2017). The median of UFP was between 4.00 à 10â´ and 2.92 à 10âµ particles/cm³. ME concentrations determined in the particles collected by ELPI show differences in size range distribution; Conclusions: The adopted synergistic approach enabled a qualitative and quantitative assessment of the particles in steelmaking factories. The results could lead to a better knowledge of occupational exposure characterization, in turn affording a better understanding of occupational health issues due to metal fumes exposure.
Composition of Metallic Elements and Size Distribution of Fine and Ultrafine Particles in a Steelmaking Factory.
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作者:Marcias Gabriele, Fostinelli Jacopo, Catalani Simona, Uras Michele, Sanna Andrea Maurizio, Avataneo Giuseppe, De Palma Giuseppe, Fabbri Daniele, Paganelli Matteo, Lecca Luigi Isaia, Buonanno Giorgio, Campagna Marcello
| 期刊: | International Journal of Environmental Research and Public Health | 影响因子: | 0.000 |
| 时间: | 2018 | 起止号: | 2018 Jun 7; 15(6):1192 |
| doi: | 10.3390/ijerph15061192 | ||
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