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Size-resolved trace metal characterization of aerosols emitted by four important source types in Switzerland
Institution:1. Center for Environmental Research and Children’s Health (CERCH), School of Public Health, University of California, Berkeley, CA, USA;2. Microbiology and Environmental Toxicology, University of California, Santa Cruz, CA, USA;1. State Environmental Protection Key Lab of Environmental Risk Assessment and control on Chemical Processes, East China University of Science and Technology, Shanghai 200237, PR China;2. Shanghai Environment Monitoring Center, Shanghai 200235, PR China;1. State Environmental Protection Key Laboratory of Urban Ambient Air Particulate Matter Pollution Prevention and Control, College of Environmental Science and Engineering, Nankai University, Tianjin, 300071, China;2. Research Institute of Meteorological Science, Tianjin, 300074, China
Abstract:In central Switzerland five types of emission sources are mainly responsible for airborne trace metals: traffic, industrial plants burning heavy oil, resuspension of soil particles, residential heatings and refuse incineration plants. The particulate emissions of each of these source types except refuse incineration were sampled using Berner impactors and the mass and elemental size distributions of Cd, Cu, Mn, Pb, Zn, As and Na determined.Cd, Na and Zn are not characteristic for any of these source types. As and Cu, occurring in the fine particle fractions are characteristic for heavy oil combustion, Mn for soil dust and sometimes for heavy and fuel oil combustion and Pb for traffic aerosols. The mass size distributions of aerosols originating from erosion and abrasion processes show a maximum mass fraction in the coarse particle range larger than about 1 μm aerodynamic equivalent diameters (A.E.D.). Aerosols originating from combustion processes show a second maximum mass fraction in the fine particle range below about 0.5μm A.E.D.Scanning electron microscopy combined with an EDS analyzer was used for the morphological characterization of emission and ambient aerosols.
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