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Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona

Airborne particulate matter with an aerodynamic diameter smaller than 2.5 µg, PM(2.5) was regularly sampled in classrooms (indoor) and playgrounds (outdoor) of primary schools from Barcelona. Three of these schools were located downtown and three in the periphery, representing areas with high and lo...

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Autores principales: van Drooge, Barend L., Rivas, Ioar, Querol, Xavier, Sunyer, Jordi, Grimalt, Joan O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7277704/
https://www.ncbi.nlm.nih.gov/pubmed/32456201
http://dx.doi.org/10.3390/ijerph17103685
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author van Drooge, Barend L.
Rivas, Ioar
Querol, Xavier
Sunyer, Jordi
Grimalt, Joan O.
author_facet van Drooge, Barend L.
Rivas, Ioar
Querol, Xavier
Sunyer, Jordi
Grimalt, Joan O.
author_sort van Drooge, Barend L.
collection PubMed
description Airborne particulate matter with an aerodynamic diameter smaller than 2.5 µg, PM(2.5) was regularly sampled in classrooms (indoor) and playgrounds (outdoor) of primary schools from Barcelona. Three of these schools were located downtown and three in the periphery, representing areas with high and low traffic intensities. These aerosols were analyzed for organic molecular tracers and polycyclic aromatic hydrocarbons (PAHs) to identify the main sources of these airborne particles and evaluate the air quality in the urban location of the schools. Traffic emissions were the main contributors of PAHs to the atmospheres in all schools, with higher average concentrations in those located downtown (1800–2700 pg/m(3)) than in the periphery (760–1000 pg/m(3)). The similarity of the indoor and outdoor concentrations of the PAH is consistent with a transfer of outdoor traffic emissions to the indoor classrooms. This observation was supported by the hopane and elemental carbon concentrations in PM(2.5), markers of motorized vehicles, that were correlated with PAHs. The concentrations of food-related markers, such as glucoses, sucrose, malic, azelaic and fatty acids, were correlated and were higher in the indoor atmospheres. These compounds were also correlated with plastic additives, such as phthalic acid and diisobutyl, dibutyl and dicyclohexyl phthalates. Clothing constituents, e.g., adipic acid, and fragrances, galaxolide and methyl dihydrojasmonate were also correlated with these indoor air compounds. All these organic tracers were correlated with the organic carbon of PM(2.5), which was present in higher concentrations in the indoor than in the outdoor atmospheres.
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spelling pubmed-72777042020-06-12 Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona van Drooge, Barend L. Rivas, Ioar Querol, Xavier Sunyer, Jordi Grimalt, Joan O. Int J Environ Res Public Health Article Airborne particulate matter with an aerodynamic diameter smaller than 2.5 µg, PM(2.5) was regularly sampled in classrooms (indoor) and playgrounds (outdoor) of primary schools from Barcelona. Three of these schools were located downtown and three in the periphery, representing areas with high and low traffic intensities. These aerosols were analyzed for organic molecular tracers and polycyclic aromatic hydrocarbons (PAHs) to identify the main sources of these airborne particles and evaluate the air quality in the urban location of the schools. Traffic emissions were the main contributors of PAHs to the atmospheres in all schools, with higher average concentrations in those located downtown (1800–2700 pg/m(3)) than in the periphery (760–1000 pg/m(3)). The similarity of the indoor and outdoor concentrations of the PAH is consistent with a transfer of outdoor traffic emissions to the indoor classrooms. This observation was supported by the hopane and elemental carbon concentrations in PM(2.5), markers of motorized vehicles, that were correlated with PAHs. The concentrations of food-related markers, such as glucoses, sucrose, malic, azelaic and fatty acids, were correlated and were higher in the indoor atmospheres. These compounds were also correlated with plastic additives, such as phthalic acid and diisobutyl, dibutyl and dicyclohexyl phthalates. Clothing constituents, e.g., adipic acid, and fragrances, galaxolide and methyl dihydrojasmonate were also correlated with these indoor air compounds. All these organic tracers were correlated with the organic carbon of PM(2.5), which was present in higher concentrations in the indoor than in the outdoor atmospheres. MDPI 2020-05-23 2020-05 /pmc/articles/PMC7277704/ /pubmed/32456201 http://dx.doi.org/10.3390/ijerph17103685 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
van Drooge, Barend L.
Rivas, Ioar
Querol, Xavier
Sunyer, Jordi
Grimalt, Joan O.
Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona
title Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona
title_full Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona
title_fullStr Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona
title_full_unstemmed Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona
title_short Organic Air Quality Markers of Indoor and Outdoor PM(2.5) Aerosols in Primary Schools from Barcelona
title_sort organic air quality markers of indoor and outdoor pm(2.5) aerosols in primary schools from barcelona
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7277704/
https://www.ncbi.nlm.nih.gov/pubmed/32456201
http://dx.doi.org/10.3390/ijerph17103685
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