Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice

The relationship between the production of dimethylsulfide (DMS) in the upper ocean and atmospheric sulfate aerosols has been confirmed through local shipboard measurements, and global modeling studies alike. In order to examine whether such a connection may be recoverable in the satellite record, w...

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Main Authors: Gabric, A.J., Shephard, J.M., Knight, J.M., Jones, G., Trevena, A.J.
Format: Article in Journal/Newspaper
Language:English
Published: Wiley-Blackwell 2005
Subjects:
Online Access:https://researchrepository.murdoch.edu.au/id/eprint/38960/
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spelling ftmurdochuniv:oai:researchrepository.murdoch.edu.au:38960 2023-05-15T13:48:54+02:00 Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice Gabric, A.J. Shephard, J.M. Knight, J.M. Jones, G. Trevena, A.J. 2005 https://researchrepository.murdoch.edu.au/id/eprint/38960/ eng eng Wiley-Blackwell https://researchrepository.murdoch.edu.au/id/eprint/38960/ full_text_status:public © 2005 by the American Geophysical Union. Gabric, A.J., Shephard, J.M. <https://researchrepository.murdoch.edu.au/view/author/Shephard, Jill.html>, Knight, J.M., Jones, G. and Trevena, A.J. (2005) Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice. Global Biogeochemical Cycles, 19 (4). Journal Article 2005 ftmurdochuniv 2020-01-05T19:00:05Z The relationship between the production of dimethylsulfide (DMS) in the upper ocean and atmospheric sulfate aerosols has been confirmed through local shipboard measurements, and global modeling studies alike. In order to examine whether such a connection may be recoverable in the satellite record, we have analyzed the correlation between mean surface chlorophyll (CHL) and aerosol optical depth (AOD) in the Southern Ocean, where the marine atmosphere is relatively remote from anthropogenic and continental influences. We carried out the analysis in 5-degree zonal bands between 50°S and 70°S, for the period (1997-2004), and in smaller meridional sectors in the Eastern Antarctic, Ross and Weddell seas. Seasonality is moderate to strong in both CHL and AOD signatures throughout the study regions. Coherence in the CHL and AOD time series is strong in the band between 50°S and 60°S, however this synchrony is absent in the sea-ice zone (SIZ) south of 60°S. Marked interannual variability in CHL occurs south of 60°S, presumably related to variability in sea-ice production during the previous winter. We find a clear latitudinal difference in the cross correlation between CHL and AOD, with the AOD peak preceding the CHL bloom by up to 6 weeks in the SIZ. This suggests that substantial trace gas emissions (aerosol precursors) are being produced over the SIZ in spring (October-December) as sea ice melts. This hypothesis is supported by field data that record extremely high levels of sulfur species in sea ice, surface seawater, and the overlying atmosphere during ice melt. Article in Journal/Newspaper Antarc* Antarctic Sea ice Southern Ocean Murdoch University: Murdoch Research Repository Antarctic Southern Ocean Weddell
institution Open Polar
collection Murdoch University: Murdoch Research Repository
op_collection_id ftmurdochuniv
language English
description The relationship between the production of dimethylsulfide (DMS) in the upper ocean and atmospheric sulfate aerosols has been confirmed through local shipboard measurements, and global modeling studies alike. In order to examine whether such a connection may be recoverable in the satellite record, we have analyzed the correlation between mean surface chlorophyll (CHL) and aerosol optical depth (AOD) in the Southern Ocean, where the marine atmosphere is relatively remote from anthropogenic and continental influences. We carried out the analysis in 5-degree zonal bands between 50°S and 70°S, for the period (1997-2004), and in smaller meridional sectors in the Eastern Antarctic, Ross and Weddell seas. Seasonality is moderate to strong in both CHL and AOD signatures throughout the study regions. Coherence in the CHL and AOD time series is strong in the band between 50°S and 60°S, however this synchrony is absent in the sea-ice zone (SIZ) south of 60°S. Marked interannual variability in CHL occurs south of 60°S, presumably related to variability in sea-ice production during the previous winter. We find a clear latitudinal difference in the cross correlation between CHL and AOD, with the AOD peak preceding the CHL bloom by up to 6 weeks in the SIZ. This suggests that substantial trace gas emissions (aerosol precursors) are being produced over the SIZ in spring (October-December) as sea ice melts. This hypothesis is supported by field data that record extremely high levels of sulfur species in sea ice, surface seawater, and the overlying atmosphere during ice melt.
format Article in Journal/Newspaper
author Gabric, A.J.
Shephard, J.M.
Knight, J.M.
Jones, G.
Trevena, A.J.
spellingShingle Gabric, A.J.
Shephard, J.M.
Knight, J.M.
Jones, G.
Trevena, A.J.
Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice
author_facet Gabric, A.J.
Shephard, J.M.
Knight, J.M.
Jones, G.
Trevena, A.J.
author_sort Gabric, A.J.
title Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice
title_short Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice
title_full Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice
title_fullStr Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice
title_full_unstemmed Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice
title_sort correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the southern ocean: evidence for the influence of sea ice
publisher Wiley-Blackwell
publishDate 2005
url https://researchrepository.murdoch.edu.au/id/eprint/38960/
geographic Antarctic
Southern Ocean
Weddell
geographic_facet Antarctic
Southern Ocean
Weddell
genre Antarc*
Antarctic
Sea ice
Southern Ocean
genre_facet Antarc*
Antarctic
Sea ice
Southern Ocean
op_source Gabric, A.J., Shephard, J.M. <https://researchrepository.murdoch.edu.au/view/author/Shephard, Jill.html>, Knight, J.M., Jones, G. and Trevena, A.J. (2005) Correlations between the satellite-derived seasonal cycles of phytoplankton biomass and aerosol optical depth in the Southern Ocean: Evidence for the influence of sea ice. Global Biogeochemical Cycles, 19 (4).
op_relation https://researchrepository.murdoch.edu.au/id/eprint/38960/
full_text_status:public
op_rights © 2005 by the American Geophysical Union.
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