Exposure to ultrafine particles and PM2.5 in four Sydney transport modes


Autoria(s): Knibbs, Luke D.; deDear, Richard
Data(s)

2010

Resumo

Concentrations of ultrafine (<0.1µm) particles (UFPs) and PM2.5 (<2.5µm) were measured whilst commuting along a similar route by train, bus, ferry and automobile in Sydney, Australia. One trip on each transport mode was undertaken during both morning and evening peak hours throughout a working week, for a total of 40 trips. Analyses comprised one-way ANOVA to compare overall (i.e. all trips combined) geometric mean concentrations of both particle fractions measured across transport modes, and assessment of both the correlation between wind speed and individual trip means of UFPs and PM2.5, and the correlation between the two particle fractions. Overall geometric mean concentrations of UFPs and PM2.5 ranged from 2.8 (train) to 8.4 (bus) × 104 particles cm-3 and 22.6 (automobile) to 29.6 (bus) µg m-3, respectively, and a statistically significant difference (p <0.001) between modes was found for both particle fractions. Individual trip geometric mean concentrations were between 9.7 × 103 (train) and 2.2 × 105 (bus) particles cm-3 and 9.5 (train) to 78.7 (train) µg m-3. Estimated commuter exposures were variable, and the highest return trip mean PM2.5 exposure occurred in the ferry mode, whilst the highest UFP exposure occurred during bus trips. The correlation between fractions was generally poor, and in keeping with the duality of particle mass and number emissions in vehicle-dominated urban areas. Wind speed was negatively correlated with, and a generally poor determinant of, UFP and PM2.5 concentrations, suggesting a more significant role for other factors in determining commuter exposure.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/38681/

Publicador

Elsevier

Relação

http://eprints.qut.edu.au/38681/1/c38681.pdf

DOI:10.1016/j.atmosenv.2010.05.026

Knibbs, Luke D. & deDear, Richard (2010) Exposure to ultrafine particles and PM2.5 in four Sydney transport modes. Atmospheric Environment, 44(26), pp. 3224-3227.

Direitos

Copyright 2010 Elsevier Ltd All rights reserved.

Fonte

Faculty of Science and Technology; Institute of Health and Biomedical Innovation; Physics

Palavras-Chave #040101 Atmospheric Aerosols #040199 Atmospheric Sciences not elsewhere classified #Commuter #Exposure #Transport #Ultrafine Particles #PM2.5
Tipo

Journal Article