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3篇 您的检索式:作者名="Frederic Ledoux"
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1PM_(2.5) source apportionment in a French urban coastal site under steelworks emission influences using constrained non-negative matrix factorization receptor model显示文摘The constrained weighted-non-negative matrix factorization(CW-NMF) hybrid receptor model was applied to study the influence of steelmaking activities on PM_(2.5)(particulate matter with equivalent aerodynamic diameter less than 2.5 μm) composition in Dunkerque,Northern France. Semi-diurnal PM_(2.5)samples were collected using a high volume sampler in winter 2010 and spring 2011 and were analyzed for trace metals, water-soluble ions, and total carbon using inductively coupled plasma – atomic emission spectrometry(ICP-AES),ICP- mass spectrometry(ICP-MS), ionic chromatography and micro elemental carbon analyzer. The elemental composition shows that NO_3^-, SO_4^(2-), NH_4^+and total carbon are the main PM_(2.5)constituents. Trace metals data were interpreted using concentration roses and both influences of integrated steelworks and electric steel plant were evidenced. The distinction between the two sources is made possible by the use Zn/Fe and Zn/Mn diagnostic ratios. Moreover Rb/Cr, Pb/Cr and Cu/Cd combination ratio are proposed to distinguish the ISW-sintering stack from the ISW-fugitive emissions. The a priori knowledge on the influencing source was introduced in the CW-NMF to guide the calculation. Eleven source profiles with various contributions were identified: 8 are characteristics of coastal urban background site profiles and 3 are related to the steelmaking activities. Between them,secondary nitrates, secondary sulfates and combustion profiles give the highest contributions and account for 93% of the PM_(2.5)concentration. The steelwork facilities contribute in about 2%of the total PM_(2.5)concentration and appear to be the main source of Cr, Cu, Fe, Mn, Zn.Adib Kfoury Frederic Ledoux Cloe Roche Gilles Delmaire Gilles Roussel Dominique Courcot 2016Journal of Environmental Sciences2016,28,2:3
2Influence of ship emissions on NOx, SO2, O3 and PM concentrations in a North-Sea harbor in France显示文摘The influence of in-port ship emissions on gases and PM_(10) concentrations has been estimated in the port city of Calais, northern France, one of the busiest harbor in Europe,with numerous rotations of ferries or roll-on/roll-off cargo in average per day. NO_x, SO_2, O_3 and PM_(10) concentrations were continuously measured over a three-month period, as well as real-time particle size distribution. A rural site located at Cape Gris-Nez, 20km from Calais, was considered to deduce intrinsic contribution of ship emissions at the harbor city.The average concentrations of the studied species as well as the pattern of the conditional bivariate probability function at the two sites evidenced that in-port shipping, especially during the maneuvering operations, has an important influence on the NO_xand SO_2 concentrations. The impact of shipping in the harbor of Calais on average concentrations was estimated to 51% for SO_2, 35% for NO, 15% for NO_2 and 2% for PM_(10) in the studied period.Concentration peaks of SO_2 and NO_x associated with an O_3 depletion appeared synchronized with departures and arrivals of ferries. For winds blowing from the harbor,when compared to the background level, the number of particles appeared 10 times higher,with the highest differences in the 30–67nm and the 109–167 nm size ranges. The average impact of in-port ships on PM310 concentrations was estimated to + 28.9 μg/mand concerned mainly the PM1 size fraction(40%). Punctually, PM_(10) can potentially reach a concentration value close to 100 μg/m^3.Frederic Ledoux Cloe Rochet Fabrice Cazier Charles Beaugard Dominique Courcot 2018Journal of Environmental Sciences2018,30,9:2
3Chemical characterization of fine and ultrafine PM, direct and indirect genotoxicity of PM and their organic extracts on pulmonary cells显示文摘Particulate matter in ambient air constitutes a complex mixture of fine and ultrafine particles composed of various chemical compounds including metals, ions, and organics. A multidisciplinary approach was developed by studying physico-chemical characteristics and mechanisms involved in the toxicity of particulate atmospheric pollution. PM_(0.3–2.5) and PM_(2.5) including ultrafine particles were sampled in Dunkerque, a French industrialized seaside city. PM samples were characterized from a chemical and toxicological point of view. Physicochemical characterization evidenced that PM_(2.5) comes from several sources: natural ones, such as soil resuspension and marine sea-salt emissions, as well as anthropogenic ones, such as shipping traffic, road traffic, and industrial activities. Human BEAS-2 B lung cells were exposed to PM_(0.3–2.5), or to the Extractable Organic Matter(EOM) of PM_(0.3–2.5) and PM_(2.5). These exposures induced several mechanisms of action implied in the genotoxicity, such as oxidative DNA adducts and DNA Damage Response. The toxicity of PM-EOM was higher for the sample including the ultrafine fraction(PM_(2.5)) containing also higher concentrations of polycyclic aromatic hydrocarbons. These results evidenced the major role of organic compounds in the toxicity of PM.Sylvain Billet Yann Landkocz Perrine J. Martin Anthony Verdin Frederic Ledoux Capucine Lepers Veronique Andre Fabrice Cazier Francois Sichel Pirouz Shirali Pierre Gosset Dominique Courcot 2018Journal of Environmental Sciences2018,30,9:1
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