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dc.contributor.authorAzimzada, Agil
dc.contributor.authorJreije, Ibrahim
dc.contributor.authorHadioui, Madjid
dc.contributor.authorShaw, Phil
dc.contributor.authorFarner, Jeffrey M.
dc.contributor.authorWilkinson, Kevin James
dc.date.accessioned2022-11-07T13:20:18Z
dc.date.availableMONTHS_WITHHELD:12fr
dc.date.available2022-11-07T13:20:18Z
dc.date.issued2021-06-28
dc.identifier.urihttp://hdl.handle.net/1866/27064
dc.publisherAmerican Chemical Societyfr
dc.subjectTitaniafr
dc.subjectCeriafr
dc.subjectSilverfr
dc.subjectEngineered nanoparticlesfr
dc.subjectRainfr
dc.subjectSurface watersfr
dc.subjectEnvironmental impactfr
dc.titleQuantification and characterization of Ti-, Ce- and Ag5 nanoparticles in global surface waters and precipitationfr
dc.typeArticlefr
dc.contributor.affiliationUniversité de Montréal. Faculté des arts et des sciences. Département de chimiefr
dc.identifier.doi10.1021/acs.est.1c00488
dcterms.abstractNanoparticle (NP) emissions to the environment are increasing as a result of anthropogenic activities, prompting concerns for ecosystems and human health. In order to evaluate the risk of NPs, it is necessary to know their concentrations in various environmental compartments on regional and global scales; however, these data have remained largely elusive due to the analytical difficulties of measuring NPs in complex natural matrices. Here, we measure NP concentrations and sizes for Ti-, Ce-, and Ag-containing NPs in numerous global surface waters and precipitation samples, and we provide insights into their compositions and origins (natural or anthropogenic). The results link NP occurrences and distributions to particle type, origin, and sampling location. Based on measurements from 46 sites across 13 countries, total Ti- and Ce-NP concentrations (regardless of origin) were often found to be within 104 to 107 NP mL–1, whereas Ag NPs exhibited sporadic occurrences with low concentrations generally up to 105 NP mL–1. This generally corresponded to mass concentrations of <1 ng L–1 for Ag-NPs, <100 ng L–1 for Ce-NPs, and <10 μg L–1 for Ti-NPs, given that measured sizes were often below 15 nm for Ce- and Ag-NPs and above 30 nm for Ti-NPs. In view of current toxicological data, the observed NP levels do not yet appear to exceed toxicity thresholds for the environment or human health; however, NPs of likely anthropogenic origins appear to be already substantial in certain areas, such as urban centers. This work lays the foundation for broader experimental NP surveys, which will be critical for reliable NP risk assessments and the regulation of nano-enabled products.fr
dcterms.isPartOfurn:ISSN:0013-936Xfr
dcterms.isPartOfurn:ISSN:1520-5851fr
dcterms.languageengfr
UdeM.ReferenceFournieParDeposantEnviron. Sci. Technol. 2021, 55:14, 9836–9844 doi: 10.1021/acs.est.1c00488fr
UdeM.VersionRioxxVersion acceptée / Accepted Manuscriptfr
oaire.citationTitleEnvironmental science and technologyfr
oaire.citationVolume55fr
oaire.citationIssue14fr
oaire.citationStartPage9836fr
oaire.citationEndPage9844fr


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