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Volatile organic compounds in the atmosphere of Mexico City
dc.creator | Garzón, J.P. | |
dc.creator | Huertas, J.I. | |
dc.creator | Magaña, M. | |
dc.creator | Huertas, M.E. | |
dc.creator | Cárdenas, B. | |
dc.creator | Watanabe, T. | |
dc.creator | Maeda, T. | |
dc.creator | Wakamatsu, S. | |
dc.creator | Blanco, S. | |
dc.date.accessioned | 2019-11-06T19:05:18Z | |
dc.date.available | 2019-11-06T19:05:18Z | |
dc.date.issued | 2015 | |
dc.identifier.citation | Atmospheric Environment; Vol. 119, pp. 415-429 | |
dc.identifier.issn | 1352-2310 | |
dc.identifier.uri | https://hdl.handle.net/20.500.12585/8752 | |
dc.description.abstract | The Mexico City Metropolitan Area (MCMA) is one of the most polluted megacities in North America. Therefore, it is an excellent benchmark city to understand atmospheric chemistry and to implement pilot countermeasures. Air quality in the MCMA is not within acceptable levels, mainly due to high ground levels of ozone (O3). Tropospheric O3 is a secondary pollutant formed from the oxidation of volatile organic compounds (VOCs) in the presence of nitrogen oxides and sunlight. To gain a better understanding of O3 formation in megacities, evaluate the effectiveness of already-implemented countermeasures, and identify new cost-effective alternatives to reduce tropospheric O3 concentrations, researchers and environmental authorities require updated concentrations for a broader range of VOCs. Moreover, in an effort to protect human health and the environment, it is important to understand which VOCs exceed reference safe values or most contribute to O3 formation, as well as to identify the most probable emission sources of those VOCs. In this work, 64 VOCs, including 36 toxic VOCs, were measured at four sites in the MCMA during 2011-2012. VOCs related to liquefied petroleum gas leakages exhibited the highest concentrations. Toxic VOCs with the highest average concentrations were acetone and ethanol. The toxic VOC benzene represented the highest risk to Mexican citizens, and toluene contributed the most to O3 formation. Correlation analysis indicated that the measured VOCs come from vehicular emissions and solvent-related industrial sources. VOC measurements revealed that compounds related to liquefied petroleum gas leakages are the most abundant, the toxic VOC benzene represents the highest risk to citizens, and toluene is the greatest VOC contributor to O3 formation in Mexico City. © 2015 Elsevier Ltd. | eng |
dc.description.sponsorship | Japan Science and Technology Agency, Science and Technology Research Partnership for Sustainable Development, Japan International Cooperation Agency | |
dc.format.medium | Recurso electrónico | |
dc.format.mimetype | application/pdf | |
dc.language.iso | eng | |
dc.publisher | Elsevier Ltd | |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/4.0/ | |
dc.source | https://www2.scopus.com/inward/record.uri?eid=2-s2.0-84940477852&doi=10.1016%2fj.atmosenv.2015.08.014&partnerID=40&md5=e3e3e3503765915e28cc7d85c2539f3a | |
dc.source | Scopus 55382377200 | |
dc.source | Scopus 7103267573 | |
dc.source | Scopus 9639625300 | |
dc.source | Scopus 54402814900 | |
dc.source | Scopus 55993708900 | |
dc.source | Scopus 12809336300 | |
dc.source | Scopus 7404539667 | |
dc.source | Scopus 7006407675 | |
dc.source | Scopus 22957247600 | |
dc.title | Volatile organic compounds in the atmosphere of Mexico City | |
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datacite.rights | http://purl.org/coar/access_right/c_abf2 | |
oaire.resourceType | http://purl.org/coar/resource_type/c_6501 | |
oaire.version | http://purl.org/coar/version/c_970fb48d4fbd8a85 | |
dc.type.driver | info:eu-repo/semantics/article | |
dc.type.hasversion | info:eu-repo/semantics/publishedVersion | |
dc.identifier.doi | 10.1016/j.atmosenv.2015.08.014 | |
dc.subject.keywords | Ozone | |
dc.subject.keywords | Ozone formation potential | |
dc.subject.keywords | Toxic volatile organic compound | |
dc.subject.keywords | Volatile organic compound | |
dc.subject.keywords | Acetone | |
dc.subject.keywords | Air quality | |
dc.subject.keywords | Atmospheric chemistry | |
dc.subject.keywords | Benzene | |
dc.subject.keywords | Cost effectiveness | |
dc.subject.keywords | Gas chromatography | |
dc.subject.keywords | Industrial emissions | |
dc.subject.keywords | Ionization of gases | |
dc.subject.keywords | Liquefied petroleum gas | |
dc.subject.keywords | Nitrogen oxides | |
dc.subject.keywords | Organic compounds | |
dc.subject.keywords | Ozone | |
dc.subject.keywords | Toluene | |
dc.subject.keywords | Troposphere | |
dc.subject.keywords | Average concentration | |
dc.subject.keywords | Correlation analysis | |
dc.subject.keywords | Emission sources | |
dc.subject.keywords | Environmental Authority | |
dc.subject.keywords | Industrial sources | |
dc.subject.keywords | Mexico City metropolitan areas | |
dc.subject.keywords | Ozone formation potentials | |
dc.subject.keywords | Vehicular emission | |
dc.subject.keywords | Volatile organic compounds | |
dc.subject.keywords | 1,3 butadiene | |
dc.subject.keywords | 1,4 dichlorobenzene | |
dc.subject.keywords | Acetone | |
dc.subject.keywords | Alcohol | |
dc.subject.keywords | Benzene | |
dc.subject.keywords | Ethylbenzene | |
dc.subject.keywords | Gasoline | |
dc.subject.keywords | Methyl chloride | |
dc.subject.keywords | Ozone | |
dc.subject.keywords | Petroleum derivative | |
dc.subject.keywords | Propane | |
dc.subject.keywords | Styrene | |
dc.subject.keywords | Toluene | |
dc.subject.keywords | Volatile organic compound | |
dc.subject.keywords | Xylene | |
dc.subject.keywords | Air quality | |
dc.subject.keywords | Atmospheric chemistry | |
dc.subject.keywords | Benchmarking | |
dc.subject.keywords | Benzene | |
dc.subject.keywords | Concentration (composition) | |
dc.subject.keywords | Correlation | |
dc.subject.keywords | Cost-benefit analysis | |
dc.subject.keywords | Health risk | |
dc.subject.keywords | Liquefied petroleum gas | |
dc.subject.keywords | Metropolitan area | |
dc.subject.keywords | Nitrogen oxides | |
dc.subject.keywords | Ozone | |
dc.subject.keywords | Public health | |
dc.subject.keywords | Toluene | |
dc.subject.keywords | Toxic substance | |
dc.subject.keywords | Troposphere | |
dc.subject.keywords | Volatile organic compound | |
dc.subject.keywords | Article | |
dc.subject.keywords | Atmosphere | |
dc.subject.keywords | City | |
dc.subject.keywords | Controlled study | |
dc.subject.keywords | Correlation analysis | |
dc.subject.keywords | Human | |
dc.subject.keywords | Mexican | |
dc.subject.keywords | Mexico | |
dc.subject.keywords | Motor vehicle | |
dc.subject.keywords | Priority journal | |
dc.subject.keywords | Federal District [Mexico] | |
dc.subject.keywords | Mexico City | |
dc.subject.keywords | Mexico [North America] | |
dc.rights.accessrights | info:eu-repo/semantics/openAccess | |
dc.rights.cc | Atribución-NoComercial 4.0 Internacional | |
dc.identifier.instname | Universidad Tecnológica de Bolívar | |
dc.identifier.reponame | Repositorio UTB | |
dc.description.notes | 1,3 butadiene, 106-99-0, 25339-57-5; 1,4 dichlorobenzene, 106-46-7; acetone, 67-64-1; alcohol, 64-17-5; benzene, 71-43-2; ethylbenzene, 100-41-4; gasoline, 86290-81-5; methyl chloride, 74-87-3; ozone, 10028-15-6; propane, 74-98-6; styrene, 100-42-5; toluene, 108-88-3; xylene, 1330-20-7 | |
dc.type.spa | Artículo |
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Universidad Tecnológica de Bolívar - 2017 Institución de Educación Superior sujeta a inspección y vigilancia por el Ministerio de Educación Nacional. Resolución No 961 del 26 de octubre de 1970 a través de la cual la Gobernación de Bolívar otorga la Personería Jurídica a la Universidad Tecnológica de Bolívar.