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Título

Ambient air particulate total lung deposited surface area (LDSA) levels in urban Europe

AutorLiu, Xiansheng CSIC ORCID; Hadiatullah, Hadiatullah; Zhang, Xun; Trechera, Pedro CSIC ORCID; Savadkoohi, Marjan CSIC ORCID; García-Marlès, Meritxell CSIC ORCID; Reche, Cristina CSIC ORCID; Pérez, Noemí CSIC ORCID; Beddows, David C. S.; Salma, Imre; Thén, Wanda; Kalkavouras, Panayiotis; Mihalopoulos, Nikos; Hueglin, Christoph; Green, David C.; Tremper, Anja H.; Chazeau, Benjamin; Gille, Grégory; Marchand, Nicolas; Niemi, Jarkko V.; Manninen, Hanna E.; Portin, Harri; Zikova, Nadezda; Ondracek, Jakub; Norman, Michael; Gerwig, Holger; Bastian, Susanne; Merkel, Maik; Weinhold, Kay; Casans, Andrea; Casquero-Vera, Juan Andrés CSIC ORCID; Gómez-Moreno, Francisco J.; Artíñano, Begoña CSIC ORCID; Gini, Maria; Diapouli, Evangelia; Crumeyrolle, Suzanne; Riffault, Véronique; Petit, Jean-Eudes; Favez, Olivier; Putaud, Jean-Philippe; Santos, Sebastiao Martins Dos; Timonen, Hilkka; Aalto, Pasi P.; Hussein, Tareq; Lampilahti, Janne; Hopke, Philip K.; Wiedensohler, Alfred; Harrison, Roy M.; Petäjä, Tuukka; Pandolfi, Marco CSIC ORCID; Alastuey, Andrés CSIC ORCID; Querol, Xavier CSIC ORCID
Palabras claveUrban environment
Particle number size distributio
Spatial variability
Total lung deposited surface area
Traffic emissions
Fecha de publicación13-jul-2023
EditorElsevier
CitaciónScience of The Total Environment 898: 165466 (2023)
ResumenThis study aims to picture the phenomenology of urban ambient total lung deposited surface area (LDSA) (including head/throat (HA), tracheobronchial (TB), and alveolar (ALV) regions) based on multiple path particle dosimetry (MPPD) model during 2017-2019 period collected from urban background (UB, n = 15), traffic (TR, n = 6), suburban background (SUB, n = 4), and regional background (RB, n = 1) monitoring sites in Europe (25) and USA (1). Briefly, the spatial-temporal distribution characteristics of the deposition of LDSA, including diel, weekly, and seasonal patterns, were analyzed. Then, the relationship between LDSA and other air quality metrics at each monitoring site was investigated. The result showed that the peak concentrations of LDSA at UB and TR sites are commonly observed in the morning (06:00-8:00 UTC) and late evening (19:00-22:00 UTC), coinciding with traffic rush hours, biomass burning, and atmospheric stagnation periods. The only LDSA night-time peaks are observed on weekends. Due to the variability of emission sources and meteorology, the seasonal variability of the LDSA concentration revealed significant differences (p = 0.01) between the four seasons at all monitoring sites. Meanwhile, the correlations of LDSA with other pollutant metrics suggested that Aitken and accumulation mode particles play a significant role in the total LDSA concentration. The results also indicated that the main proportion of total LDSA is attributed to the ALV fraction (50 %), followed by the TB (34 %) and HA (16 %). Overall, this study provides valuable information of LDSA as a predictor in epidemiological studies and for the first time presenting total LDSA in a variety of European urban environments.
Versión del editorhttps://doi.org/10.1016/j.scitotenv.2023.165466
URIhttp://hdl.handle.net/10261/332246
DOI10.1016/j.scitotenv.2023.165466
ISSN00489697
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