Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica

This study demonstrates for the first time that faecalcoliform bacteria can survive airborne transfer in Antarctica, but are unlikely to survive for prolonged periods following deposition due to environmental stresses. The dispersal and survival of airborne faecalcoliform bacteria from the sewage ou...

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Published in:Atmospheric Environment
Main Author: Hughes, Kevin A.
Format: Article in Journal/Newspaper
Language:unknown
Published: Elsevier 2003
Subjects:
Online Access:https://nora.nerc.ac.uk/id/eprint/17661/
http://www.sciencedirect.com/science/article/pii/S1352231003002073
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author Hughes, Kevin A.
author_facet Hughes, Kevin A.
author_sort Hughes, Kevin A.
collection Unknown
container_issue 22
container_start_page 3147
container_title Atmospheric Environment
container_volume 37
description This study demonstrates for the first time that faecalcoliform bacteria can survive airborne transfer in Antarctica, but are unlikely to survive for prolonged periods following deposition due to environmental stresses. The dispersal and survival of airborne faecalcoliform bacteria from the sewage outfall at Rothera Research Station (Adelaide Island, Antarctic Peninsula) was examined. Northerly winds created the potential for sewage aerosols to be blown the 150 m from the outfall to the research station. During moderate wind velocities (∼15 m s−1), faecalcoliform bacteria were detected up to 175 m downwind of the outfall amongst the station buildings. However, moderate doses of solar UV radiation (∼20 W m−2) were capable of reduced the number of viable wind-deposited bacteria by up to 99.9%, compared with periods of low solar UV radiation (∼1 W m−2). Further experiments showed that, within 1 h of deposition, desiccation stress and solar radiation independently reduced coliform viability by up to 99.8% and 99.98%, respectively. These results imply that airborne faecalcoliforms are unlikely to survive for prolonged periods following deposition or cause infection of local wildlife or human populations, though this may not be the case for more stress-resistant microorganisms.
format Article in Journal/Newspaper
genre Adelaide Island
Antarc*
Antarctic
Antarctic Peninsula
Antarctica
genre_facet Adelaide Island
Antarc*
Antarctic
Antarctic Peninsula
Antarctica
geographic Adelaide Island
Antarctic
Antarctic Peninsula
Rothera
Rothera Research Station
geographic_facet Adelaide Island
Antarctic
Antarctic Peninsula
Rothera
Rothera Research Station
id ftnerc:oai:nora.nerc.ac.uk:17661
institution Open Polar
language unknown
long_lat ENVELOPE(-68.914,-68.914,-67.762,-67.762)
ENVELOPE(-68.130,-68.130,-67.568,-67.568)
ENVELOPE(-68.129,-68.129,-67.566,-67.566)
op_collection_id ftnerc
op_container_end_page 3155
op_doi https://doi.org/10.1016/S1352-2310(03)00207-3
op_relation Hughes, Kevin A. orcid:0000-0003-2701-726X . 2003 Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica. Atmospheric Environment, 37 (22). 3147-3155. 10.1016/S1352-2310(03)00207-3 <https://doi.org/10.1016/S1352-2310%2803%2900207-3>
publishDate 2003
publisher Elsevier
record_format openpolar
spelling ftnerc:oai:nora.nerc.ac.uk:17661 2026-03-15T15:52:16+00:00 Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica Hughes, Kevin A. 2003 https://nora.nerc.ac.uk/id/eprint/17661/ http://www.sciencedirect.com/science/article/pii/S1352231003002073 unknown Elsevier Hughes, Kevin A. orcid:0000-0003-2701-726X . 2003 Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica. Atmospheric Environment, 37 (22). 3147-3155. 10.1016/S1352-2310(03)00207-3 <https://doi.org/10.1016/S1352-2310%2803%2900207-3> Publication - Article PeerReviewed 2003 ftnerc https://doi.org/10.1016/S1352-2310(03)00207-3 2026-02-16T06:07:27Z This study demonstrates for the first time that faecalcoliform bacteria can survive airborne transfer in Antarctica, but are unlikely to survive for prolonged periods following deposition due to environmental stresses. The dispersal and survival of airborne faecalcoliform bacteria from the sewage outfall at Rothera Research Station (Adelaide Island, Antarctic Peninsula) was examined. Northerly winds created the potential for sewage aerosols to be blown the 150 m from the outfall to the research station. During moderate wind velocities (∼15 m s−1), faecalcoliform bacteria were detected up to 175 m downwind of the outfall amongst the station buildings. However, moderate doses of solar UV radiation (∼20 W m−2) were capable of reduced the number of viable wind-deposited bacteria by up to 99.9%, compared with periods of low solar UV radiation (∼1 W m−2). Further experiments showed that, within 1 h of deposition, desiccation stress and solar radiation independently reduced coliform viability by up to 99.8% and 99.98%, respectively. These results imply that airborne faecalcoliforms are unlikely to survive for prolonged periods following deposition or cause infection of local wildlife or human populations, though this may not be the case for more stress-resistant microorganisms. Article in Journal/Newspaper Adelaide Island Antarc* Antarctic Antarctic Peninsula Antarctica Unknown Adelaide Island ENVELOPE(-68.914,-68.914,-67.762,-67.762) Antarctic Antarctic Peninsula Rothera ENVELOPE(-68.130,-68.130,-67.568,-67.568) Rothera Research Station ENVELOPE(-68.129,-68.129,-67.566,-67.566) Atmospheric Environment 37 22 3147 3155
spellingShingle Hughes, Kevin A.
Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica
title Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica
title_full Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica
title_fullStr Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica
title_full_unstemmed Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica
title_short Aerial dispersal and survival of sewage-derived faecal coliforms in Antarctica
title_sort aerial dispersal and survival of sewage-derived faecal coliforms in antarctica
url https://nora.nerc.ac.uk/id/eprint/17661/
http://www.sciencedirect.com/science/article/pii/S1352231003002073