Publication | Open Access
Origin of inorganic and organic components of PM 2.5 in subway stations of Barcelona, Spain
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Citations
57
References
2015
Year
EngineeringAir Pollution MeasurementChemical CompositionUrban Air QualityAir QualitySubway Pm2.5 SourceExposure AssessmentOrganic ChemistryChemistryParticulate MatterEnvironmental ChemistryIndoor AerosolEnvironmental HealthAir Quality MonitoringBarcelona Subway SystemPollutant TransportHazardous PollutantsHealth SciencesPersistent Organic PollutantPm 2.5Subway StationsChemical FormChemical PollutionOrganic ComponentsEnvironmental EngineeringChemical ContaminantsIndoor Air QualityAir Pollution
The present work assesses indoor air quality in stations of the Barcelona subway system. PM2.5 concentrations on the platforms of 4 subway stations were measured during two different seasons and the chemical composition was determined. A Positive Matrix Factorization analysis was performed to identify and quantify the contributions of major PM2.5 sources in the subway stations. Mean PM2.5 concentrations varied according to the stations design and seasonal periods. PM2.5 was composed of haematite, carbonaceous aerosol, crustal matter, secondary inorganic compounds, trace elements, insoluble sulphate and halite. Organic compounds such as PAHs, nicotine, levoglucosan and aromatic musk compounds were also identified. Subway PM2.5 source comprised emissions from rails, wheels, catenaries, brake pads and pantographs. The subway source showed different chemical profiles for each station, but was always dominated by Fe. Control actions on the source are important for the achievement of better air quality in the subway environment.
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