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Interannual stability of organic to inorganic carbon production on a coral atoll

  • Lester Kwiatkowski
  • , Rebecca Albright
  • , Jessica Hosfelt
  • , Yana Nebuchina
  • , Aaron Ninokawa
  • , Tanya Rivlin
  • , Marine Sesboüé
  • , Kennedy Wolfe
  • , Ken Caldeira
  • Carnegie Institution of Washington
  • University of California at Davis
  • The Interuniversity Institute for Marine Sciences of Eilat
  • Hebrew University of Jerusalem
  • The University of Sydney

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

Ocean acidification has the potential to adversely affect marine calcifying organisms, with substantial ocean ecosystem impacts projected over the 21st century. Characterizing the in situ sensitivity of calcifying ecosystems to natural variability in carbonate chemistry may improve our understanding of the long-term impacts of ocean acidification. We explore the potential for intensive temporal sampling to isolate the influence of carbonate chemistry on community calcification rates of a coral reef and compare the ratio of organic to inorganic carbon production to previous studies at the same location. Even with intensive temporal sampling, community calcification displays only a weak dependence on carbonate chemistry variability. However, across three years of sampling, the ratio of organic to inorganic carbon production is highly consistent. Although further work is required to quantify the spatial variability associated with such ratios, this suggests that these measurements have the potential to indicate the response of coral reefs to ongoing disturbance, ocean acidification, and climate change.

Original languageEnglish
Pages (from-to)3880-3888
Number of pages9
JournalGeophysical Research Letters
Volume43
Issue number8
DOIs
StatePublished - Apr 28 2016

Keywords

  • calcification
  • carbon cycling
  • coral reefs
  • ocean acidification
  • saturation state

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