Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) – a case study

The upper 500 m of the water column and the sediment surface along an E–W transect in the Fram Strait were sampled for recent planktic foraminifera. The δ<sup>18</sup>O and δ<sup>13</sup>C values of the tests are compared to the stable isotope composition of the water samples...

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Main Authors: T. Pados, R. F. Spielhagen, D. Bauch, H. Meyer, M. Segl
Format: Article
Language:English
Published: Copernicus Publications 2015-03-01
Series:Biogeosciences
Online Access:http://www.biogeosciences.net/12/1733/2015/bg-12-1733-2015.pdf
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spelling doaj-c3f6e4cb69524d4ba9487e9d35479b542020-11-24T22:36:09ZengCopernicus PublicationsBiogeosciences1726-41701726-41892015-03-011261733175210.5194/bg-12-1733-2015Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case studyT. Pados0R. F. Spielhagen1D. Bauch2H. Meyer3M. Segl4GEOMAR Helmholtz Centre for Ocean Research Kiel, Kiel, GermanyGEOMAR Helmholtz Centre for Ocean Research Kiel, Kiel, GermanyGEOMAR Helmholtz Centre for Ocean Research Kiel, Kiel, GermanyAlfred Wegener Institute Helmholtz Centre for Polar and Marine Research, Potsdam, GermanyMARUM – Center for Marine Environmental Sciences, Bremen, GermanyThe upper 500 m of the water column and the sediment surface along an E–W transect in the Fram Strait were sampled for recent planktic foraminifera. The δ<sup>18</sup>O and δ<sup>13</sup>C values of the tests are compared to the stable isotope composition of the water samples taken from the same depths, and related to the characteristics of the water column. The polar species <i>Neogloboquadrina pachyderma</i> clearly dominates the species assemblage in the Fram Strait in the early summer, while the subpolar <i>Turborotalita quinqueloba</i> accounts only for 5–23%. In this area the average depth of calcification of <i>N. pachyderma</i> lies between 70–150 m water depth, <i>T. quinqueloba</i> shows a similar range with 50–120 m water depth. The δ<sup>18</sup>O values of <i>N. pachyderma</i> show an average vital effect of about −1.5&permil; compared to calculated equilibrium calcite values. Except for the upper &sim;75 m, the vertical profiles of δ<sup>13</sup>C of the net-sampled shells are nearly parallel to the values measured in the water column with an average offset of −1.6&permil; and −3.6&permil; for <i>N. pachyderma</i> and <i>T. quinqueloba</i>, respectively. The discrepancy found in the upper ~75 m might indicate an influence of the "carbonate ion effect" on the carbon isotope incorporation in the tests. Oxygen and carbon isotopes from the sediment surface yield higher values than those from the water column for both species. This may be because specimens from the water column reflect a modern snapshot only, while tests from surface sediments record environmental parameters from the past ~1000 years.http://www.biogeosciences.net/12/1733/2015/bg-12-1733-2015.pdf
collection DOAJ
language English
format Article
sources DOAJ
author T. Pados
R. F. Spielhagen
D. Bauch
H. Meyer
M. Segl
spellingShingle T. Pados
R. F. Spielhagen
D. Bauch
H. Meyer
M. Segl
Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case study
Biogeosciences
author_facet T. Pados
R. F. Spielhagen
D. Bauch
H. Meyer
M. Segl
author_sort T. Pados
title Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case study
title_short Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case study
title_full Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case study
title_fullStr Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case study
title_full_unstemmed Oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the Fram Strait (Arctic Ocean) &ndash; a case study
title_sort oxygen and carbon isotope composition of modern planktic foraminifera and near-surface waters in the fram strait (arctic ocean) &ndash; a case study
publisher Copernicus Publications
series Biogeosciences
issn 1726-4170
1726-4189
publishDate 2015-03-01
description The upper 500 m of the water column and the sediment surface along an E–W transect in the Fram Strait were sampled for recent planktic foraminifera. The δ<sup>18</sup>O and δ<sup>13</sup>C values of the tests are compared to the stable isotope composition of the water samples taken from the same depths, and related to the characteristics of the water column. The polar species <i>Neogloboquadrina pachyderma</i> clearly dominates the species assemblage in the Fram Strait in the early summer, while the subpolar <i>Turborotalita quinqueloba</i> accounts only for 5–23%. In this area the average depth of calcification of <i>N. pachyderma</i> lies between 70–150 m water depth, <i>T. quinqueloba</i> shows a similar range with 50–120 m water depth. The δ<sup>18</sup>O values of <i>N. pachyderma</i> show an average vital effect of about −1.5&permil; compared to calculated equilibrium calcite values. Except for the upper &sim;75 m, the vertical profiles of δ<sup>13</sup>C of the net-sampled shells are nearly parallel to the values measured in the water column with an average offset of −1.6&permil; and −3.6&permil; for <i>N. pachyderma</i> and <i>T. quinqueloba</i>, respectively. The discrepancy found in the upper ~75 m might indicate an influence of the "carbonate ion effect" on the carbon isotope incorporation in the tests. Oxygen and carbon isotopes from the sediment surface yield higher values than those from the water column for both species. This may be because specimens from the water column reflect a modern snapshot only, while tests from surface sediments record environmental parameters from the past ~1000 years.
url http://www.biogeosciences.net/12/1733/2015/bg-12-1733-2015.pdf
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