%0 Journal Article %9 ACL : Articles dans des revues avec comité de lecture répertoriées par l'AERES %A Dappe, V. %A Uzu, Gaëlle %A Schreck, E. %A Wu, L. %A Li, X. %A Dumat, C. %A Moreau, M. %A Hanoune, B. %A Ro, C. U. %A Sobanska, S. %T Single-particle analysis of industrial emissions brings new insights for health risk assessment of PM %D 2018 %L fdi:010073638 %G ENG %J Atmospheric Pollution Research %@ 1309-1042 %K Particulate matter ; Lead ; Speciation ; Single particle analysis ; Human risk assessment %K FRANCE ; TOULOUSE %M ISI:000437044600011 %N 4 %P 697-704 %R 10.1016/j.apr.2018.01.016 %U https://www.documentation.ird.fr/hor/fdi:010073638 %> https://www.documentation.ird.fr/intranet/publi/2018/07/010073638.pdf %V 9 %W Horizon (IRD) %X Particulate matter (PM) emitted by human activities presents a significant risk for human health, especially through inhalation. In this work, coarse and ultrafine particles (PM10 and PM1) were collected near a lead battery recycling facility, recognized as an emission source of hazardous particles. These particles were previously found to have adverse health effects. Our multiple imaging analyses by SEM-EDX and Raman microspectrometry showed that Pb-rich particles constituted the major portion of the fine size fractions (PM1). The surface analysis of particles performed by ToF-SIMS evidenced soluble Pb-Cl rich species on the particle surface. The particle composition and chemical mixing state differed from PM at source emission. Although the annual mean lead concentration near the plant meets E.U. air quality standards, the size of the Pb-rich particles and the presence of soluble metal compounds on the particle surface may also induce harmful outcomes. The current risk assessment models only consider the total concentration of the element without dealing with speciation, morphology or surface composition of the particles. Single particle analysis could become useful in providing a more accurate assessment of human health risk and in developing more comprehensive regulations on air quality. %$ 020 ; 021 ; 050