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[1] Lelieveld J.., Klingmülle rK., Pozze rA., Pöschl U., Fnais M., Daiber A., Münzel T., Cardiovascular disease burden from ambient air pollution in Europe reassessed using novel hazard ratio functions, European Heart Journal,40 (20), 1590–1596, (2019), doi.org/10.1093/eurheartj/ehz135. Search in Google Scholar

[2] Braniște M.V., Ștefan I., Ana M., Unga F., Cazacu M. M. Particle air pollution (PM10) monitoring and public opinion on air quality. A case study in Northeastern Romania, Bulletin of the Polytechnic Institute from Iaşi: Chemistry and Chemical Engineering Section, 66(70)(4), 55–67, (2020). Search in Google Scholar

[3] Abril G.A., Diez S.C., Pignata M.L., Britch J., Particulate matter concentration originating from industrial and urban sources: Validation of atmospheric dispersion modelling results, Atmospheric Pollution Research, 7, 180-189, (2016). Search in Google Scholar

[4] EPA - Environment Protection Authority Victoria, Air quality,https://www.epa.vic.gov.au/for-community/environmental-information/air-quality, accessed on 15.04.2022. Search in Google Scholar

[5] Banica A., Bobric E.D., Cazacu M.M., Timofte A., Gurlui S., Breaban I.G., Integrated assessment of exposure to traffic-related air pollution in Iasi city, Romania, Environmental Engineering and Management Journal, 16(9), 2147–2163, (2017).10.30638/eemj.2017.222 Search in Google Scholar

[6] US EPA, Particulate Matter (PM) Pollution, (2019). Search in Google Scholar

[7] KloogI., Ridgway B., KoutrakisP., CoullB.A., Schwartz J.D., Long- and short-term exposure to PM2.5 and mortality: using novel exposure models. Epidemiology, 24(4), 555–561, (2013). Search in Google Scholar

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