The exposure of the Great Barrier Reef to ocean acidification

As the oceans become acidic, corals reefs are threatened, generating a need to understand the driving forces controlling the chemical state of the Great Barrier Reef. Here, the authors show a greater spatial variability than previously reported, created by the interaction of reef processes and ocean...

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Autores principales: Mathieu Mongin, Mark E. Baird, Bronte Tilbrook, Richard J. Matear, Andrew Lenton, Mike Herzfeld, Karen Wild-Allen, Jenny Skerratt, Nugzar Margvelashvili, Barbara J. Robson, Carlos M. Duarte, Malin S. M. Gustafsson, Peter J. Ralph, Andrew D. L. Steven
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/d12cd922fef74b0a8991f6234da9d368
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spelling oai:doaj.org-article:d12cd922fef74b0a8991f6234da9d3682021-12-02T14:39:30ZThe exposure of the Great Barrier Reef to ocean acidification10.1038/ncomms107322041-1723https://doaj.org/article/d12cd922fef74b0a8991f6234da9d3682016-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms10732https://doaj.org/toc/2041-1723As the oceans become acidic, corals reefs are threatened, generating a need to understand the driving forces controlling the chemical state of the Great Barrier Reef. Here, the authors show a greater spatial variability than previously reported, created by the interaction of reef processes and ocean circulation.Mathieu MonginMark E. BairdBronte TilbrookRichard J. MatearAndrew LentonMike HerzfeldKaren Wild-AllenJenny SkerrattNugzar MargvelashviliBarbara J. RobsonCarlos M. DuarteMalin S. M. GustafssonPeter J. RalphAndrew D. L. StevenNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mathieu Mongin
Mark E. Baird
Bronte Tilbrook
Richard J. Matear
Andrew Lenton
Mike Herzfeld
Karen Wild-Allen
Jenny Skerratt
Nugzar Margvelashvili
Barbara J. Robson
Carlos M. Duarte
Malin S. M. Gustafsson
Peter J. Ralph
Andrew D. L. Steven
The exposure of the Great Barrier Reef to ocean acidification
description As the oceans become acidic, corals reefs are threatened, generating a need to understand the driving forces controlling the chemical state of the Great Barrier Reef. Here, the authors show a greater spatial variability than previously reported, created by the interaction of reef processes and ocean circulation.
format article
author Mathieu Mongin
Mark E. Baird
Bronte Tilbrook
Richard J. Matear
Andrew Lenton
Mike Herzfeld
Karen Wild-Allen
Jenny Skerratt
Nugzar Margvelashvili
Barbara J. Robson
Carlos M. Duarte
Malin S. M. Gustafsson
Peter J. Ralph
Andrew D. L. Steven
author_facet Mathieu Mongin
Mark E. Baird
Bronte Tilbrook
Richard J. Matear
Andrew Lenton
Mike Herzfeld
Karen Wild-Allen
Jenny Skerratt
Nugzar Margvelashvili
Barbara J. Robson
Carlos M. Duarte
Malin S. M. Gustafsson
Peter J. Ralph
Andrew D. L. Steven
author_sort Mathieu Mongin
title The exposure of the Great Barrier Reef to ocean acidification
title_short The exposure of the Great Barrier Reef to ocean acidification
title_full The exposure of the Great Barrier Reef to ocean acidification
title_fullStr The exposure of the Great Barrier Reef to ocean acidification
title_full_unstemmed The exposure of the Great Barrier Reef to ocean acidification
title_sort exposure of the great barrier reef to ocean acidification
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/d12cd922fef74b0a8991f6234da9d368
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