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Mapping the distribution of contaminants identified by non-targeted screening of passively sampled urban air

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Liu, Lan; Gillet, Antoine P; Akiki, Caren; Tian, Lei; Ma, Yue; Zhang, Xianming; Bowman, David T; Wania, Frank; Delbès, Géraldine ORCID logoORCID: https://orcid.org/0000-0002-9169-1075; Apparicio, Philippe et Bayen, Stéphane (2025). Mapping the distribution of contaminants identified by non-targeted screening of passively sampled urban air Chemosphere , vol. 389 , nº 144702. pp. 1-13. DOI: 10.1016/j.chemosphere.2025.144702.

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Résumé


Air pollution is closely associated with increased lung cancer incidence and mortality. Because many semi-volatile industrial chemicals, pesticides and combustion by-products are endocrine-disrupting or genotoxic, their mixtures in outdoor urban air, even at trace levels, could have cumulative effects. However, evidence for the impact of outdoor air pollution on human health remains limited, partly because its composition is poorly characterized. Non-targeted analysis (NTA) based on the combination of liquid (LC) and gas (GC) chromatographic separation with high resolution mass spectrometry (MS), allows for the comprehensive analysis of contaminants in environmental samples. Here, we present the first application of an NTA approach using both LC- and GC-MS to characterize the chemical mixture in outdoor urban air by analyzing forty passive samplers deployed for 82 days during summer 2021 across the Island of Montreal, Canada. The confirmed 25 molecular features included nitrophenols, pesticides/repellents, plasticizers, organophosphorus compounds, organohalogen compounds, other industrial chemicals, and natural products. Triethylene glycol monomethyl ether, triethylene glycol monobutyl ether, n-octyl-pyrrolidone, quinoline n-oxide, 4-hydroxy-acetophenone, citric acid, 2-phenyl acetamide, and hexachloroethane were detected for the very first time in the atmosphere. Previously reported in atmospheric particles, 4-nitrophenol, 2,4-dinitrophenol, tri- and tetraethylene glycol, nonanoic acid, diethylene glycol dibenzoate, caprolactam, phenylacrylic acid, pinonic acid and triphenylphosphine oxide were also detected in the outdoor atmospheric gas phase. The spatial grouping of data between residential and public areas emphasizes the impact of anthropogenic activities on atmospheric vapor composition. This study facilitates the assessment of airborne exposure to chemical mixtures and its effects on human health.

Type de document: Article
Mots-clés libres: Contaminants of emerging concern; GC-Q-TOF-MS; HPLC-Q-TOF-MS; Non-targeted approach; Passive air sampler
Centre: Centre INRS-Institut Armand Frappier
Date de dépôt: 16 juin 2026 14:55
Dernière modification: 16 juin 2026 14:55
URI: https://espace.inrs.ca/id/eprint/16687

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