Latitudinal differences in the amplitude of the OAE-2 carbon isotopic excursion: <i>p</i>CO<sub>2</sub> and paleo productivity
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Published:2012-02-09
Issue:2
Volume:9
Page:717-731
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ISSN:1726-4189
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Container-title:Biogeosciences
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language:en
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Short-container-title:Biogeosciences
Author:
van Bentum E. C.,Reichart G.-J.,Forster A.,Sinninghe Damsté J. S.
Abstract
Abstract. A complete, well-preserved record of the Cenomanian/Turonian (C/T) Oceanic Anoxic Event 2 (OAE-2) was recovered from Demerara Rise in the southern North Atlantic Ocean (ODP site 1260). Across this interval, we determined changes in the stable carbon isotopic composition of sulfur-bound phytane (δ13Cphytane), a biomarker for photosynthetic algae. The δ13Cphytane record shows a positive excursion at the onset of the OAE-2 interval, with an unusually large amplitude (~7‰) compared to existing C/T proto-North Atlantic δ13Cphytane records (3–6‰). Overall, the amplitude of the excursion of δ13Cphytane decreases with latitude. Using reconstructed sea surface temperature (SST) gradients for the proto-North Atlantic, we investigated environmental factors influencing the latitudinal δ13Cphytane gradient. The observed gradient is best explained by high productivity at DSDP Site 367 and Tarfaya basin before OAE-2, which changed in overall high productivity throughout the proto-North Atlantic during OAE-2. During OAE-2, productivity at site 1260 and 603B was thus more comparable to the mid-latitude sites. Using these constraints as well as the SST and δ13Cphytane-records from Site 1260, we subsequently reconstructed pCO2 levels across the OAE-2 interval. Accordingly, pCO2 decreased from ca. 1750 to 900 ppm during OAE-2, consistent with enhanced organic matter burial resulting in lowering pCO2. Whereas the onset of OAE-2 coincided with increased pCO2, in line with a volcanic trigger for this event, the observed cooling within OAE-2 probably resulted from CO2 sequestration in black shales outcompeting CO2 input into the atmosphere. Together these results show that the ice-free Cretaceous world was sensitive to changes in pCO2 related to perturbations of the global carbon cycle.
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference93 articles.
1. Andersen, N., Müller, P. J., Kirst, G., and Schneider, R. R.: Alkenone δ13C as a proxy for past CO2 in surface waters: Results from the Late Quaternary Angola Current, in: Use of Proxies in Paleoceanography: Examples From the South Atlantic, edited by: Fischer, G. and Wefer, G., Springer New York, 469–488, 1999. 2. Arthur, M., Glancy, T., Hodell, D., Schlanger, S. O., Szak, C., Zachos, J., and Anonymous: The Cenomanian/ Turonian (Mid-Cretaceous) "oceanic anoxic event" as observed in northwestern Europe, The Geological Society of America, 1984 annual meeting, 1984. 3. Arthur, M. A. and Premoli-Silva, I.: Development of widespread organic carbon-rich strata in the Mediterranean Tethys., in: Nature and Origin of Cretaceous Carbon-Rich Facies Academic Press, edited by: Schlanger, S. O. and Cita, M. B., New York, pp. 7-54. 1982. 4. Arthur, M. A., Dean, W. A., and Claypool, G. E.: Anomalous 13C enrichment in modern marine organic carbon, Nature, 315, 216–218, 1985a. 5. Arthur, M. A., Dean, W. E., and Schlanger, S. O.: Variations in the global carbon cycle during the Cretaceous related to climate, volcanism, and changes in atmospheric CO2, in: The Carbon Cycle and Atmospheric CO2: Natural Variations Archean to Present edited by: Sundquist, E. T. and Broecker, W. S., Geophys. Monogr. Ser, AGU, Washington, D. C., 504–529, 1985b.
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