Author:
Andersson A. J.,Kuffner I. B.,Mackenzie F. T.,Jokiel P. L.,Rodgers K. S.,Tan A.
Abstract
Abstract. Acidification of seawater owing to oceanic uptake of atmospheric CO2 originating from human activities such as burning of fossil fuels and land-use changes has raised serious concerns regarding its adverse effects on corals and calcifying communities. Here we demonstrate a net loss of calcium carbonate (CaCO3) material as a result of decreased calcification and increased carbonate dissolution from replicated subtropical coral reef communities (n=3) incubated in continuous-flow mesocosms subject to future seawater conditions. The calcifying community was dominated by the coral Montipora capitata. Daily average community calcification or Net Ecosystem Calcification (NEC=CaCO3 production – dissolution) was positive at 3.3 mmol CaCO3 m−2 h−1 under ambient seawater pCO2 conditions as opposed to negative at −0.04 mmol CaCO3 m−2 h−1 under seawater conditions of double the ambient pCO2. These experimental results provide support for the conclusion that some net calcifying communities could become subject to net dissolution in response to anthropogenic ocean acidification within this century. Nevertheless, individual corals remained healthy, actively calcified (albeit slower than at present rates), and deposited significant amounts of CaCO3 under the prevailing experimental seawater conditions of elevated pCO2.
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference60 articles.
1. Agegian, C. R.: The biogeochemical ecology of Porolithon gardineri (foslie), Ph.D. dissertation, Univ. of Hawaii, Honolulu, 1985.
2. Alexandersson, E. T.: Etch patterns on calcareous sediment grains: petrographic evidence of marine dissolution of carbonate minerals, Science, 189, 47–48, 1975a.
3. Alexandersson, E. T.: Marks of unknown carbonate-decomposing organelles in cyanophyte borings, Nature, 254, 212–238, 1975b.
4. Andersson, A. J., Bates, N. R., and Mackenzie, F. T.: Dissolution of carbonate sediments under rising pCO2 and ocean acidification: observations from Devil's Hole, Bermuda, Aquat. Geochem., 13, 237–264, 2007.
5. Andersson, A. J., Mackenzie, F. T., and Ver, L. M.: Solution of shallow-water carbonates: an insignificant buffer against rising atmospheric CO2, Geology, 31, 513–516, 2003.
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