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Vapor-phase concentrations of PAHs and their derivatives determined in a large city: Correlations with their atmospheric aerosol concentrations
Authors:Ana Isabel Barrado  Susana García  Marisa Luisa Sevillano  Jose Antonio Rodríguez  Enrique Barrado
Institution:1. CIEMAT/Department of Chemistry, Avda. Complutense 40, 28040 Madrid, Spain;2. CIQ/Chemical Research Center, Universidad Autónoma el Estado de Hidalgo, Carr. Pachuca-Tulancingo km 4.5, 42076 Pachuca, Hidalgo, Mexico;3. QUIANE/Department of Analytical Chemistry, E.I.I., Universidad de Valladolid, 47005 Valladolid, Spain
Abstract:Thirteen PAHs, five nitro-PAHs and two hydroxy-PAHs were determined in 55 vapor-phase samples collected in a suburban area of a large city (Madrid, Spain), from January 2008 to February 2009. The data obtained revealed correlations between the concentrations of these compounds and a series of meteorological factors (e.g., temperature, atmospheric pressure) and physical–chemical factors (e.g., nitrogen and sulfur oxides). As a consequence, seasonal trends were observed in the atmospheric pollutants. A “mean sample” for the 14-month period would contain a total PAH concentration of 13 835 ± 1625 pg m−3 and 122 ± 17 pg m−3 of nitro-PAHs. When the data were stratified by season, it emerged that a representative sample of the coldest months would contain 18 900 ± 2140 pg m−3 of PAHs and 150 ± 97 pg m−3 of nitro-PAHs, while in an average sample collected in the warmest months, these values drop to 9293 ± 1178 pg m−3 for the PAHs and to 97 ± 13 pg m−3 for the nitro-PAHs. Total vapor phase concentrations of PAHs were one order of magnitude higher than concentrations detected in atmospheric aerosol samples collected on the same dates. Total nitro-PAH concentrations were comparable to their aerosol concentrations whereas vapor phase OH-PAHs were below their limits of the detection, indicating these were trapped in airborne particles.
Keywords:PAHs  polycyclic aromatic hydrocarbons  nitro-PAHs  nitro-polycyclic aromatic hydrocarbons  OH-PAHs  hydroxy-polycyclic aromatic hydrocarbons  PUF  polyurethane foam (cartridges)  PM10 and PM2  5  particulate matter (different sizes)  DCM  dichloromethane
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