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Main Authors: Tangunan, Deborah N, Baumann, Karl-Heinz, Pätzold, Jürgen, Henrich, Rüdiger, Kucera, Michal, De Pol-Holz, Ricardo, Groeneveld, Jeroen
Format: Dataset Open Access
Language:en
Published: PANGAEA 2017
Subjects:
Online Access:https://doi.org/10.1594/PANGAEA.875239
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author Tangunan, Deborah N
Baumann, Karl-Heinz
Pätzold, Jürgen
Henrich, Rüdiger
Kucera, Michal
De Pol-Holz, Ricardo
Groeneveld, Jeroen
author_facet Tangunan, Deborah N
Baumann, Karl-Heinz
Pätzold, Jürgen
Henrich, Rüdiger
Kucera, Michal
De Pol-Holz, Ricardo
Groeneveld, Jeroen
collection Datos científicos de ciencias marinas y ambientales
contents We present a new coccolithophore productivity reconstruction spanning the last 300 ka in core GeoB12613-1 retrieved from the western tropical Indian Ocean (IO), an area that mainly derives its warm and oligotrophic surface waters from the eastern IO. Application of a calibrated assemblage-based productivity index indicates a reduction in estimated primary productivity (EPP) from 300 ka to the present, with reconstructed EPP values ranging from 91 to 246 g C/m2/yr. Coccolithophore assemblages and coccolith fraction Sr/Ca indicate three main phases of productivity change, with major changes at 160 and 46 ka. The productivity and water-column stratification records show both dominant precession and obliquity periodicities, which appear to control the paleoproductivity in the study area over the last two glacial-interglacial cycles. Shallowing of the thermocline due to strengthening of the trade winds in response to insolation maxima resulted to peaks in EPP. Comparison with the eastern IO productivity and stratification coccolithophore data reveals good correspondence with our records, indicating a strong tropical Pacific influence in our study area. Both of these records show high productivity from 300 ka to 160 ka, interpreted to be due to stronger Walker Circulation while the declining productivity from 160 ka to the present day is a consequence of its weakening intensity.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_875239
institution PANGAEA
language en
publishDate 2017
publisher PANGAEA
record_format pangaea
spellingShingle Coccolithophore productivity of sediment core GeoB12613-1 from the western Indian Ocean (off Tanzania)
Tangunan, Deborah N
Baumann, Karl-Heinz
Pätzold, Jürgen
Henrich, Rüdiger
Kucera, Michal
De Pol-Holz, Ricardo
Groeneveld, Jeroen
Center for Marine Environmental Sciences; MARUM
We present a new coccolithophore productivity reconstruction spanning the last 300 ka in core GeoB12613-1 retrieved from the western tropical Indian Ocean (IO), an area that mainly derives its warm and oligotrophic surface waters from the eastern IO. Application of a calibrated assemblage-based productivity index indicates a reduction in estimated primary productivity (EPP) from 300 ka to the present, with reconstructed EPP values ranging from 91 to 246 g C/m2/yr. Coccolithophore assemblages and coccolith fraction Sr/Ca indicate three main phases of productivity change, with major changes at 160 and 46 ka. The productivity and water-column stratification records show both dominant precession and obliquity periodicities, which appear to control the paleoproductivity in the study area over the last two glacial-interglacial cycles. Shallowing of the thermocline due to strengthening of the trade winds in response to insolation maxima resulted to peaks in EPP. Comparison with the eastern IO productivity and stratification coccolithophore data reveals good correspondence with our records, indicating a strong tropical Pacific influence in our study area. Both of these records show high productivity from 300 ka to 160 ka, interpreted to be due to stronger Walker Circulation while the declining productivity from 160 ka to the present day is a consequence of its weakening intensity.
title Coccolithophore productivity of sediment core GeoB12613-1 from the western Indian Ocean (off Tanzania)
topic Center for Marine Environmental Sciences; MARUM
url https://doi.org/10.1594/PANGAEA.875239