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Climate of the Past An interactive open-access journal of the European Geosciences Union
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Volume 7, issue 3 | Copyright

Special issue: Advances in understanding the Quaternary carbon cycle

Clim. Past, 7, 771-800, 2011
https://doi.org/10.5194/cp-7-771-2011
© Author(s) 2011. This work is distributed under
the Creative Commons Attribution 3.0 License.

Research article 22 Jul 2011

Research article | 22 Jul 2011

Deep ocean ventilation, carbon isotopes, marine sedimentation and the deglacial CO2 rise

T. Tschumi et al.
Related subject area
Subject: Carbon Cycle | Archive: Marine Archives | Timescale: Milankovitch
Astronomical tunings of the Oligocene–Miocene transition from Pacific Ocean Site U1334 and implications for the carbon cycle
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Clim. Past, 14, 255-270, https://doi.org/10.5194/cp-14-255-2018,https://doi.org/10.5194/cp-14-255-2018, 2018
Orbital control on the timing of oceanic anoxia in the Late Cretaceous
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Clim. Past, 12, 1995-2009, https://doi.org/10.5194/cp-12-1995-2016,https://doi.org/10.5194/cp-12-1995-2016, 2016
A synthesis of marine sediment core δ13C data over the last 150 000 years
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Cited articles
Adkins, J., McIntyre, K., and Schrag, D.: The salinity, temperature and δ18{O} content of the glacial deep ocean, Science, 298, 1769–1773, 2002.
Anderson, L. and Sarmiento, J.: Redfield ratios of remineralization determined by nutrient data analysis, Global Biogeochem. Cy., 8, 65–80, 1994.
Anderson, R., Ali, S., Bradtmiller, L., Nielsen, S., Fleisher, M., Anderson, B., and Burckle, L.: Wind-Driven Upwelling in the Glacial Southern Ocean and the Deglacial Rise in Atmospheric CO2, Science, 323, 1443–1448, 2009.
Archer, D. and Maier-Reimer, E.: Effect of deep-sea sedimentary calcite preservation on atmospheric CO2 concentration, Nature, 367, 292–294, 1994.
Archer, D., Lyle, M., Rodgers, K., and Froelich, P.: What Controls Opal Preservation in Tropical Deep Sea Sediments?, Paleoceanography, 8, 7–21, 1993.
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