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Field deployment of thin film passive samplers (POGs) for persistent organic pollutants (POPs): a study in the urban atmospheric boundary layer.

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Field deployment of thin film passive samplers (POGs) for persistent organic pollutants (POPs): a study in the urban atmospheric boundary layer. / Farrar, N. J.; Harner, T.; Shoeib, M. et al.
In: Environmental Science and Technology, Vol. 39, No. 1, 01.2005, p. 42-48.

Research output: Contribution to Journal/MagazineJournal article

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Farrar NJ, Harner T, Shoeib M, Sweetman AJ, Jones KC. Field deployment of thin film passive samplers (POGs) for persistent organic pollutants (POPs): a study in the urban atmospheric boundary layer. Environmental Science and Technology. 2005 Jan;39(1):42-48. doi: 10.1021/es048907a

Author

Farrar, N. J. ; Harner, T. ; Shoeib, M. et al. / Field deployment of thin film passive samplers (POGs) for persistent organic pollutants (POPs): a study in the urban atmospheric boundary layer. In: Environmental Science and Technology. 2005 ; Vol. 39, No. 1. pp. 42-48.

Bibtex

@article{cfb0caee4aa34f9b9a99032f0415e068,
title = "Field deployment of thin film passive samplers (POGs) for persistent organic pollutants (POPs): a study in the urban atmospheric boundary layer.",
abstract = "This paper reports on the first field deployment of rapidly equilibrating thin-film passive air samplers under ambient conditions. The POlymer-coated Glass (POG) samplers have a coating of ethylene vinyl acetate (EVA) less than 1 μm thick applied to a glass surface. This can be dissolved off after exposure and prepared for the quantification of persistent organic pollutants (POPs) that have partitioned into the film during field exposure. In this study, POGs were deployed at various heights on the CN Tower in Toronto, Canada, to investigate the vertical distribution of selected compounds (PCBs, PAHs, organochlorine pesticides) in the atmospheric boundary layer of an urban area. The feasibility of the method to detect POPs from a few cubic meters of air was demonstrated, indicating the potential for rapid, low-volume sampling of air for ambient levels of POPs. PAH levels declined sharply with height, confirming ground-level emissions in urban areas as sources of these compounds; PCBs did the same, although less strongly. Different sampling events detected different vertical distributions of OC pesticides which could be related to local or distant sources, and variations in POPs on the samplers in these different events/heights demonstrate the dynamic nature of sources and atmospheric mixing of POPs.",
author = "Farrar, {N. J.} and T. Harner and M. Shoeib and Sweetman, {Andy J.} and Jones, {Kevin C.}",
year = "2005",
month = jan,
doi = "10.1021/es048907a",
language = "English",
volume = "39",
pages = "42--48",
journal = "Environmental Science and Technology",
issn = "0013-936X",
publisher = "American Chemical Society",
number = "1",

}

RIS

TY - JOUR

T1 - Field deployment of thin film passive samplers (POGs) for persistent organic pollutants (POPs): a study in the urban atmospheric boundary layer.

AU - Farrar, N. J.

AU - Harner, T.

AU - Shoeib, M.

AU - Sweetman, Andy J.

AU - Jones, Kevin C.

PY - 2005/1

Y1 - 2005/1

N2 - This paper reports on the first field deployment of rapidly equilibrating thin-film passive air samplers under ambient conditions. The POlymer-coated Glass (POG) samplers have a coating of ethylene vinyl acetate (EVA) less than 1 μm thick applied to a glass surface. This can be dissolved off after exposure and prepared for the quantification of persistent organic pollutants (POPs) that have partitioned into the film during field exposure. In this study, POGs were deployed at various heights on the CN Tower in Toronto, Canada, to investigate the vertical distribution of selected compounds (PCBs, PAHs, organochlorine pesticides) in the atmospheric boundary layer of an urban area. The feasibility of the method to detect POPs from a few cubic meters of air was demonstrated, indicating the potential for rapid, low-volume sampling of air for ambient levels of POPs. PAH levels declined sharply with height, confirming ground-level emissions in urban areas as sources of these compounds; PCBs did the same, although less strongly. Different sampling events detected different vertical distributions of OC pesticides which could be related to local or distant sources, and variations in POPs on the samplers in these different events/heights demonstrate the dynamic nature of sources and atmospheric mixing of POPs.

AB - This paper reports on the first field deployment of rapidly equilibrating thin-film passive air samplers under ambient conditions. The POlymer-coated Glass (POG) samplers have a coating of ethylene vinyl acetate (EVA) less than 1 μm thick applied to a glass surface. This can be dissolved off after exposure and prepared for the quantification of persistent organic pollutants (POPs) that have partitioned into the film during field exposure. In this study, POGs were deployed at various heights on the CN Tower in Toronto, Canada, to investigate the vertical distribution of selected compounds (PCBs, PAHs, organochlorine pesticides) in the atmospheric boundary layer of an urban area. The feasibility of the method to detect POPs from a few cubic meters of air was demonstrated, indicating the potential for rapid, low-volume sampling of air for ambient levels of POPs. PAH levels declined sharply with height, confirming ground-level emissions in urban areas as sources of these compounds; PCBs did the same, although less strongly. Different sampling events detected different vertical distributions of OC pesticides which could be related to local or distant sources, and variations in POPs on the samplers in these different events/heights demonstrate the dynamic nature of sources and atmospheric mixing of POPs.

U2 - 10.1021/es048907a

DO - 10.1021/es048907a

M3 - Journal article

VL - 39

SP - 42

EP - 48

JO - Environmental Science and Technology

JF - Environmental Science and Technology

SN - 0013-936X

IS - 1

ER -