Stable isotope ratios measured on carbonate tests from the Kara Sea

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Auteurs principaux: Spielhagen, Robert F, Simstich, Johannes, Erlenkeuser, Helmut, Stanovoy, Vladimir V
Format: Dataset Open Access
Langue:en
Publié: PANGAEA 2005
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author Spielhagen, Robert F
Simstich, Johannes
Erlenkeuser, Helmut
Stanovoy, Vladimir V
author_facet Spielhagen, Robert F
Simstich, Johannes
Erlenkeuser, Helmut
Stanovoy, Vladimir V
collection Datos científicos de ciencias marinas y ambientales
contents River discharge of Ob and Yenisei to the Kara Sea is highly variable on seasonal and interannual time scales. River water dominates the shallow bottom water near the river mouths, making it warmer and less saline but seasonally and interannually more changeable than bottom water on the deeper shelf. This hydrographic pattern shows up in measurements and modelling, and in stable isotope records (delta18O, delta13C) along the growth axis of bivalve shells and in multiple analyses of single benthic foraminiferal shells. Average isotope ratios increase, but sample-internal variability decreases with water depth and distance from river mouths. However, isotope records of bivalves and foraminifera of a sediment core from a former submarine channel of Yenisei River reveal a different pattern. The retreat of the river mouth from this site due to early Holocene sea level rise led to increasing average isotope values up core, but not to the expected decrease of the in-sample isotope variability. Southward advection of cold saline water along the palaeo-river channel probably obscured the hydrographic variability during the early Holocene. Later, when sediment filled the channel, the hydrographic variability at the core location remained low, because the shallowing proceeded synchronously with the retreat of the river mouth.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_708249
institution PANGAEA
language en
publishDate 2005
publisher PANGAEA
record_format pangaea
spellingShingle Stable isotope ratios measured on carbonate tests from the Kara Sea
Spielhagen, Robert F
Simstich, Johannes
Erlenkeuser, Helmut
Stanovoy, Vladimir V
Akademik Boris Petrov; BP00; BP00-02/01; BP00-05/01; BP00-07/01; BP00-07/05; BP00-08/01; BP00-13/01; BP00-15/01; BP00-26/01; BP00-27/01; BP00-28/02; BP00-29; BP00-29/01; BP00-30/01; BP00-31/01; BP00-35/01; BP00-36/05; BP00-38/01; BP01; BP01-30/02; BP01-34/02; BP01-35/02; BP01-37/02; BP01-46/05; BP01-51/02; BP01-55/02; BP01-56/02; BP01-62/02; BP01-66/02; BP01-71/02; BP01-80/02; BP97; BP97-17; BP97-21GKG; BP97-30GKG; BP97-32GKG; BP97-42GKG; BP97-43GKG; BP97-47; BP97-48GKG; BP97-49GKG; BP97-50GKG; BP97-52GKG; BP99; BP99-01/01; BP99-02/01; BP99-03/01; BP99-04/01; BP99-06/01; BP99-07/01; BP99-08/02; BP99-10/01; BP99-11/01; BP99-12/01; BP99-13/01; BP99-17/01; BP99-18/01; BP99-19/01; BP99-20/01; BP99-21/01; BP99-24/01; BP99-25/01; BP99-28/01; BP99-28/08; BP99-29/01; BP99-30/01; BP99-31/01; BP99-32/01; BP99-35/01; BP99-37/01; BP99-38/01; BP99-38/07; BP99-39/01; DIVERSE; Dredge; DRG; GC; Giant box corer; GKG; Gravity corer; Kara Sea; KaraSea97; MUC; MULT; MultiCorer; Multiple investigations; Sampling gear, diverse; Siberian River Run-Off; SIRRO
River discharge of Ob and Yenisei to the Kara Sea is highly variable on seasonal and interannual time scales. River water dominates the shallow bottom water near the river mouths, making it warmer and less saline but seasonally and interannually more changeable than bottom water on the deeper shelf. This hydrographic pattern shows up in measurements and modelling, and in stable isotope records (delta18O, delta13C) along the growth axis of bivalve shells and in multiple analyses of single benthic foraminiferal shells. Average isotope ratios increase, but sample-internal variability decreases with water depth and distance from river mouths. However, isotope records of bivalves and foraminifera of a sediment core from a former submarine channel of Yenisei River reveal a different pattern. The retreat of the river mouth from this site due to early Holocene sea level rise led to increasing average isotope values up core, but not to the expected decrease of the in-sample isotope variability. Southward advection of cold saline water along the palaeo-river channel probably obscured the hydrographic variability during the early Holocene. Later, when sediment filled the channel, the hydrographic variability at the core location remained low, because the shallowing proceeded synchronously with the retreat of the river mouth.
title Stable isotope ratios measured on carbonate tests from the Kara Sea
topic Akademik Boris Petrov; BP00; BP00-02/01; BP00-05/01; BP00-07/01; BP00-07/05; BP00-08/01; BP00-13/01; BP00-15/01; BP00-26/01; BP00-27/01; BP00-28/02; BP00-29; BP00-29/01; BP00-30/01; BP00-31/01; BP00-35/01; BP00-36/05; BP00-38/01; BP01; BP01-30/02; BP01-34/02; BP01-35/02; BP01-37/02; BP01-46/05; BP01-51/02; BP01-55/02; BP01-56/02; BP01-62/02; BP01-66/02; BP01-71/02; BP01-80/02; BP97; BP97-17; BP97-21GKG; BP97-30GKG; BP97-32GKG; BP97-42GKG; BP97-43GKG; BP97-47; BP97-48GKG; BP97-49GKG; BP97-50GKG; BP97-52GKG; BP99; BP99-01/01; BP99-02/01; BP99-03/01; BP99-04/01; BP99-06/01; BP99-07/01; BP99-08/02; BP99-10/01; BP99-11/01; BP99-12/01; BP99-13/01; BP99-17/01; BP99-18/01; BP99-19/01; BP99-20/01; BP99-21/01; BP99-24/01; BP99-25/01; BP99-28/01; BP99-28/08; BP99-29/01; BP99-30/01; BP99-31/01; BP99-32/01; BP99-35/01; BP99-37/01; BP99-38/01; BP99-38/07; BP99-39/01; DIVERSE; Dredge; DRG; GC; Giant box corer; GKG; Gravity corer; Kara Sea; KaraSea97; MUC; MULT; MultiCorer; Multiple investigations; Sampling gear, diverse; Siberian River Run-Off; SIRRO
url https://doi.org/10.1594/PANGAEA.708249