High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms.
As consequences of global warming sea-ice shrinking, permafrost thawing and changes in fresh water and terrestrial material export have already been reported in the Arctic environment. These processes impact light penetration and primary production. To reach a better understanding of the current sta...
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ftdoajarticles:oai:doaj.org/article:ddc62f54d6304f6db36e6062839428f1 2023-05-15T14:35:12+02:00 High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. Rafael Gonçalves-Araujo Benjamin Rabe Ilka Peeken Astrid Bracher 2018-01-01T00:00:00Z https://doi.org/10.1371/journal.pone.0190838 https://doaj.org/article/ddc62f54d6304f6db36e6062839428f1 EN eng Public Library of Science (PLoS) http://europepmc.org/articles/PMC5755909?pdf=render https://doaj.org/toc/1932-6203 1932-6203 doi:10.1371/journal.pone.0190838 https://doaj.org/article/ddc62f54d6304f6db36e6062839428f1 PLoS ONE, Vol 13, Iss 1, p e0190838 (2018) Medicine R Science Q article 2018 ftdoajarticles https://doi.org/10.1371/journal.pone.0190838 2022-12-31T01:30:54Z As consequences of global warming sea-ice shrinking, permafrost thawing and changes in fresh water and terrestrial material export have already been reported in the Arctic environment. These processes impact light penetration and primary production. To reach a better understanding of the current status and to provide accurate forecasts Arctic biogeochemical and physical parameters need to be extensively monitored. In this sense, bio-optical properties are useful to be measured due to the applicability of optical instrumentation to autonomous platforms, including satellites. This study characterizes the non-water absorbers and their coupling to hydrographic conditions in the poorly sampled surface waters of the central and eastern Arctic Ocean. Over the entire sampled area colored dissolved organic matter (CDOM) dominates the light absorption in surface waters. The distribution of CDOM, phytoplankton and non-algal particles absorption reproduces the hydrographic variability in this region of the Arctic Ocean which suggests a subdivision into five major bio-optical provinces: Laptev Sea Shelf, Laptev Sea, Central Arctic/Transpolar Drift, Beaufort Gyre and Eurasian/Nansen Basin. Evaluating ocean color algorithms commonly applied in the Arctic Ocean shows that global and regionally tuned empirical algorithms provide poor chlorophyll-a (Chl-a) estimates. The semi-analytical algorithms Generalized Inherent Optical Property model (GIOP) and Garver-Siegel-Maritorena (GSM), on the other hand, provide robust estimates of Chl-a and absorption of colored matter. Applying GSM with modifications proposed for the western Arctic Ocean produced reliable information on the absorption by colored matter, and specifically by CDOM. These findings highlight that only semi-analytical ocean color algorithms are able to identify with low uncertainty the distribution of the different optical water constituents in these high CDOM absorbing waters. In addition, a clustering of the Arctic Ocean into bio-optical provinces will help to develop ... Article in Journal/Newspaper Arctic Arctic Ocean Global warming Ice laptev Laptev Sea Nansen Basin permafrost Phytoplankton Sea ice Directory of Open Access Journals: DOAJ Articles Arctic Arctic Ocean Laptev Sea PLOS ONE 13 1 e0190838 |
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Directory of Open Access Journals: DOAJ Articles |
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language |
English |
topic |
Medicine R Science Q |
spellingShingle |
Medicine R Science Q Rafael Gonçalves-Araujo Benjamin Rabe Ilka Peeken Astrid Bracher High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. |
topic_facet |
Medicine R Science Q |
description |
As consequences of global warming sea-ice shrinking, permafrost thawing and changes in fresh water and terrestrial material export have already been reported in the Arctic environment. These processes impact light penetration and primary production. To reach a better understanding of the current status and to provide accurate forecasts Arctic biogeochemical and physical parameters need to be extensively monitored. In this sense, bio-optical properties are useful to be measured due to the applicability of optical instrumentation to autonomous platforms, including satellites. This study characterizes the non-water absorbers and their coupling to hydrographic conditions in the poorly sampled surface waters of the central and eastern Arctic Ocean. Over the entire sampled area colored dissolved organic matter (CDOM) dominates the light absorption in surface waters. The distribution of CDOM, phytoplankton and non-algal particles absorption reproduces the hydrographic variability in this region of the Arctic Ocean which suggests a subdivision into five major bio-optical provinces: Laptev Sea Shelf, Laptev Sea, Central Arctic/Transpolar Drift, Beaufort Gyre and Eurasian/Nansen Basin. Evaluating ocean color algorithms commonly applied in the Arctic Ocean shows that global and regionally tuned empirical algorithms provide poor chlorophyll-a (Chl-a) estimates. The semi-analytical algorithms Generalized Inherent Optical Property model (GIOP) and Garver-Siegel-Maritorena (GSM), on the other hand, provide robust estimates of Chl-a and absorption of colored matter. Applying GSM with modifications proposed for the western Arctic Ocean produced reliable information on the absorption by colored matter, and specifically by CDOM. These findings highlight that only semi-analytical ocean color algorithms are able to identify with low uncertainty the distribution of the different optical water constituents in these high CDOM absorbing waters. In addition, a clustering of the Arctic Ocean into bio-optical provinces will help to develop ... |
format |
Article in Journal/Newspaper |
author |
Rafael Gonçalves-Araujo Benjamin Rabe Ilka Peeken Astrid Bracher |
author_facet |
Rafael Gonçalves-Araujo Benjamin Rabe Ilka Peeken Astrid Bracher |
author_sort |
Rafael Gonçalves-Araujo |
title |
High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. |
title_short |
High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. |
title_full |
High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. |
title_fullStr |
High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. |
title_full_unstemmed |
High colored dissolved organic matter (CDOM) absorption in surface waters of the central-eastern Arctic Ocean: Implications for biogeochemistry and ocean color algorithms. |
title_sort |
high colored dissolved organic matter (cdom) absorption in surface waters of the central-eastern arctic ocean: implications for biogeochemistry and ocean color algorithms. |
publisher |
Public Library of Science (PLoS) |
publishDate |
2018 |
url |
https://doi.org/10.1371/journal.pone.0190838 https://doaj.org/article/ddc62f54d6304f6db36e6062839428f1 |
geographic |
Arctic Arctic Ocean Laptev Sea |
geographic_facet |
Arctic Arctic Ocean Laptev Sea |
genre |
Arctic Arctic Ocean Global warming Ice laptev Laptev Sea Nansen Basin permafrost Phytoplankton Sea ice |
genre_facet |
Arctic Arctic Ocean Global warming Ice laptev Laptev Sea Nansen Basin permafrost Phytoplankton Sea ice |
op_source |
PLoS ONE, Vol 13, Iss 1, p e0190838 (2018) |
op_relation |
http://europepmc.org/articles/PMC5755909?pdf=render https://doaj.org/toc/1932-6203 1932-6203 doi:10.1371/journal.pone.0190838 https://doaj.org/article/ddc62f54d6304f6db36e6062839428f1 |
op_doi |
https://doi.org/10.1371/journal.pone.0190838 |
container_title |
PLOS ONE |
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13 |
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1 |
container_start_page |
e0190838 |
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