Articles | Volume 14, issue 3
https://doi.org/10.5194/bg-14-497-2017
https://doi.org/10.5194/bg-14-497-2017
Research article
 | 
02 Feb 2017
Research article |  | 02 Feb 2017

Trends in element incorporation in hyaline and porcelaneous foraminifera as a function of pCO2

Inge van Dijk, Lennart J. de Nooijer, and Gert-Jan Reichart

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Cited articles

Allen, G. J. and Sanders, D.: Two Voltage-Gated, Calcium Release Channels Coreside in the Vacuolar Membrane of Broad Bean Guard Cells, Plant Cell, 6, 685–694, https://doi.org/10.1105/tpc.6.5.685, 1994.
Allison, N., Austin, H., Austin, W., and Paterson, D. M.: Effects of seawater pH and calcification rate on test Mg ∕ Ca and Sr ∕ Ca in cultured individuals of the benthic, calcitic foraminifera Elphidium williamsoni, Chem. Geol., 289, 171–178, https://doi.org/10.1016/j.chemgeo.2011.08.001, 2011.
Angell, R. W.: Test morphogenesis (chamber formation) in the foraminifer Spiroloculina hyalina Schulze, J. Foramin. Res., 10, 89–101, 1980.
Barker, S., Higgins, J. A., and Elderfield, H.: The future of the carbon cycle: review, calcification response, ballast and feedback on atmospheric CO2, Philos T. Roy. Soc. A, 361, 1977–1998; discussion 1998–1979, https://doi.org/10.1098/rsta.2003.1238, 2003.
Bentov, S. and Erez, J.: Impact of biomineralization processes on the Mg content of foraminiferal shells: A biological perspective, Geochem. Geophy., Geosy., 7, 1–11, 2006.
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Short summary
Culturing foraminifera under controlled pCO2 conditions shows that incorporation of certain elements (Zn, Ba) into foraminiferal shells is impacted by the inorganic carbonate system. Modeling the chemical speciation of these elements suggests that incorporation is determined by the availability of free ions. Furthermore, analyzing and comparing trends in element incorporation in hyaline and porcelaneous species may provide constrains on the differences between their calcification strategies.
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