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  5. Anomalies in the carbonate system of Red Sea coastal habitats

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Article
en
2020

Anomalies in the carbonate system of Red Sea coastal habitats

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en
2020
Vol 17 (2)
Vol. 17
DOI: 10.5194/bg-17-423-2020

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Carlos M. Duarte
Carlos M. Duarte

King Abdullah University of Science and Technology

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Kimberlee Baldry
Vincent Saderne
Daniel C. McCorkle
+3 more

Abstract

Abstract. We use observations of dissolved inorganic carbon (DIC) and total alkalinity (TA) to assess the impact of ecosystem metabolic processes on coastal waters of the eastern Red Sea. A simple, single-end-member mixing model is used to account for the influence of mixing with offshore waters and evaporation–precipitation and to model ecosystem-driven perturbations on the carbonate system chemistry of coral reefs, seagrass meadows and mangrove forests. We find that (1) along-shelf changes in TA and DIC exhibit strong linear relationships that are consistent with basin-scale net calcium carbonate precipitation; (2) ecosystem-driven changes in TA and DIC are larger than offshore variations in >70 % of sampled seagrass meadows and mangrove forests, changes which are influenced by a combination of longer water residence times and community metabolic rates; and (3) the sampled mangrove forests show strong and consistent contributions from both organic respiration and other sedimentary processes (carbonate dissolution and secondary redox processes), while seagrass meadows display more variability in the relative contributions of photosynthesis and other sedimentary processes (carbonate precipitation and oxidative processes). The results of this study highlight the importance of resolving the influences of water residence times, mixing and upstream habitats on mediating the carbonate system and coastal air–sea carbon dioxide fluxes over coastal habitats in the Red Sea.

How to cite this publication

Kimberlee Baldry, Vincent Saderne, Daniel C. McCorkle, James H. Churchill, Susana Agustı́, Carlos M. Duarte (2020). Anomalies in the carbonate system of Red Sea coastal habitats. , 17(2), DOI: https://doi.org/10.5194/bg-17-423-2020.

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Publication Details

Type

Article

Year

2020

Authors

6

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.5194/bg-17-423-2020

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