Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia

Recent studies demonstrate that Black Carbon (BC) pollution in economically developing megacities remain higher than the values, which the World Health Organization considers to be safe. Despite the scientific evidence of the degrees of BC exposure, there is still a lack of understanding on how the...

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Main Authors: Kecorius, Simonas, Madueño, Leizel, Löndahl, Jakob, Vallar, Edgar A., Galvez, Maria Cecilia, Idolor, Luisito F., Cayetano, Mylene Gonzaga, Müller, Thomas, Birmili, Wolfram, Wiedensohler, Alfred
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Published: Animo Repository 2019
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/3872
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-48592022-11-18T03:46:50Z Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia Kecorius, Simonas Madueño, Leizel Löndahl, Jakob Vallar, Edgar A. Galvez, Maria Cecilia Idolor, Luisito F. Cayetano, Mylene Gonzaga Müller, Thomas Birmili, Wolfram Wiedensohler, Alfred Recent studies demonstrate that Black Carbon (BC) pollution in economically developing megacities remain higher than the values, which the World Health Organization considers to be safe. Despite the scientific evidence of the degrees of BC exposure, there is still a lack of understanding on how the severe levels of BC pollution affect human health in these regions. We consider information on the respiratory tract deposition dose (DD) of BC to be essential in understanding the link between personal exposure to air pollutants and corresponding health effects. In this work, we combine data on fine and ultrafine refractory particle number concentrations (BC proxy), and activity patterns to derive the respiratory tract deposited amounts of BC particles for the population of the highly polluted metropolitan area of Manila, Philippines. We calculated the total DD of refractory particles based on three metrics: refractory particle number, surface area, and mass concentrations. The calculated DD of total refractory particle number in Metro Manila was found to be 1.6 to 17 times higher than average values reported from Europe and the U.S. In the case of Manila, ultrafine particles smaller than 100 nm accounted for more than 90% of the total deposited refractory particle dose in terms of particle number. This work is a first attempt to quantitatively evaluate the DD of refractory particles and raise awareness in assessing pollution-related health effects in developing megacities. We demonstrate that the majority of the population may be highly affected by BC pollution, which is known to have negative health outcomes if no actions are taken to mitigate its emission. For the governments of such metropolitan areas, we suggest to revise currently existing environmental legislation, raise public awareness, and to establish supplementary monitoring of black carbon in parallel to already existing PM 10 and PM 2.5 measures. © 2019 2019-05-01T07:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/3872 Faculty Research Work Animo Repository Air—Pollution Soot Atmospheric deposition Environmental Sciences
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Air—Pollution
Soot
Atmospheric deposition
Environmental Sciences
spellingShingle Air—Pollution
Soot
Atmospheric deposition
Environmental Sciences
Kecorius, Simonas
Madueño, Leizel
Löndahl, Jakob
Vallar, Edgar A.
Galvez, Maria Cecilia
Idolor, Luisito F.
Cayetano, Mylene Gonzaga
Müller, Thomas
Birmili, Wolfram
Wiedensohler, Alfred
Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia
description Recent studies demonstrate that Black Carbon (BC) pollution in economically developing megacities remain higher than the values, which the World Health Organization considers to be safe. Despite the scientific evidence of the degrees of BC exposure, there is still a lack of understanding on how the severe levels of BC pollution affect human health in these regions. We consider information on the respiratory tract deposition dose (DD) of BC to be essential in understanding the link between personal exposure to air pollutants and corresponding health effects. In this work, we combine data on fine and ultrafine refractory particle number concentrations (BC proxy), and activity patterns to derive the respiratory tract deposited amounts of BC particles for the population of the highly polluted metropolitan area of Manila, Philippines. We calculated the total DD of refractory particles based on three metrics: refractory particle number, surface area, and mass concentrations. The calculated DD of total refractory particle number in Metro Manila was found to be 1.6 to 17 times higher than average values reported from Europe and the U.S. In the case of Manila, ultrafine particles smaller than 100 nm accounted for more than 90% of the total deposited refractory particle dose in terms of particle number. This work is a first attempt to quantitatively evaluate the DD of refractory particles and raise awareness in assessing pollution-related health effects in developing megacities. We demonstrate that the majority of the population may be highly affected by BC pollution, which is known to have negative health outcomes if no actions are taken to mitigate its emission. For the governments of such metropolitan areas, we suggest to revise currently existing environmental legislation, raise public awareness, and to establish supplementary monitoring of black carbon in parallel to already existing PM 10 and PM 2.5 measures. © 2019
format text
author Kecorius, Simonas
Madueño, Leizel
Löndahl, Jakob
Vallar, Edgar A.
Galvez, Maria Cecilia
Idolor, Luisito F.
Cayetano, Mylene Gonzaga
Müller, Thomas
Birmili, Wolfram
Wiedensohler, Alfred
author_facet Kecorius, Simonas
Madueño, Leizel
Löndahl, Jakob
Vallar, Edgar A.
Galvez, Maria Cecilia
Idolor, Luisito F.
Cayetano, Mylene Gonzaga
Müller, Thomas
Birmili, Wolfram
Wiedensohler, Alfred
author_sort Kecorius, Simonas
title Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia
title_short Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia
title_full Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia
title_fullStr Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia
title_full_unstemmed Respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of South-East Asia
title_sort respiratory tract deposition of inhaled roadside ultrafine refractory particles in a polluted megacity of south-east asia
publisher Animo Repository
publishDate 2019
url https://animorepository.dlsu.edu.ph/faculty_research/3872
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