AN EXPLANATION OF THE EFFECT OF SEAWATER CARBONATE CONCENTRATION ON FORAMINIFERAL OXYGEN ISOTOPES - GROWTH AND COMPOSITION OF EXTANT CALCAREOUS SPECIES

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dc.contributor.author Zeebe R.E.
dc.date.accessioned 2021-01-09T04:56:48Z
dc.date.available 2021-01-09T04:56:48Z
dc.date.issued 1999
dc.identifier https://elibrary.ru/item.asp?id=149015
dc.identifier.citation Geochimica et Cosmochimica Acta, 1999, , 13, 2001-2007
dc.identifier.issn 0016-7037
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/22440
dc.description.abstract Stable oxygen isotope ratios of foraminiferal calcite are widely used in paleoceanography to provide a chronology of temperature changes during ocean history. It was recently demonstrated that the stable oxygen isotope ratios in planktonic foraminifera are affected by changes of the seawater chemistry carbonate system: the δ18O of the foraminiferal calcite decreases with increasing CO32- concentration or pH. This paper provides a simple explanation for seawater chemistry dependent stable oxygen isotope variations in the planktonic foraminifera Orbulina universa which is derived from oxygen isotope partitioning during inorganic precipitation. The oxygen isotope fractionation between water and the dissolved carbonate species S = [H2CO3] + [HCO3-] + [CO32-] decreases with increasing pH. Provided that calcium carbonate is formed from a mixture of the carbonate species in proportion to their relative contribution to S, the oxygen isotopic composition of CaCO3 also decreases with increasing pH. The slope of shell δ18O vs. [CO32-] of Orbulina universa observed in culture experiments is -0.0022%% (μmol kg-1)-1 (Spero et al., 1997), whereas the slope derived from inorganic precipitation is -0.0024%% (μmol kg-1)-. The theory also provides an explanation of the nonequilibrium fractionation effects in synthetic carbonates described by Kim and O'Neil (1997) which can be understood in terms of equilibrium fractionation at different pH. The results presented here emphasize that the oxygen isotope fractionation between calcium carbonate and water does not only depend on the temperature but also on the pH of the solution from which it is formed.
dc.title AN EXPLANATION OF THE EFFECT OF SEAWATER CARBONATE CONCENTRATION ON FORAMINIFERAL OXYGEN ISOTOPES - GROWTH AND COMPOSITION OF EXTANT CALCAREOUS SPECIES
dc.type Статья


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