_version_ 1867169500163473408
author Bonn, Wolfgang J
author_facet Bonn, Wolfgang J
collection Datos científicos de ciencias marinas y ambientales
contents Sedimentological, geochemical (in particular biogenic content) and physical properties from the Weddell, Lazarev and Cosmonaut seas along the Antarctic continental margin were analysed in order to reconstruct the late Quaternary productivity and sedimentary processes of this region. Seven undisturbed sediment cores were chosen. The sediments represent a depositional period from 400,000 years to the recent time. The late Quaternary climatic changes influence changes in the paleoenvironmental and the geological conditions, directly forced by the behaviour of the Antarctic ice sheet. All investigated cores are positioned within the oscillating ice sheet area and reflect the influence of the ice sheet in response to the climatic cycles. The organic carbon, carbonate, biogenic opal, and barium contents were measured, andlor calculated, together with the determination by XRD of the terrigenous components such as quartz and plagioclase (expressed as relative to corundum standard). The contents of organic carbon and carbonate in general are very low. The results provide an indication that organic carbon content is a preservation signal and not a productivity signal. Carbonate is not correlated with biogenic opal and biogenic barium. Profiles of biogenic opal and barium were measured within the sediment cores providing a qualitative and quantitative tool to estimate changes in paleoproductivity over the investigated time. Generally, good correlations between the barium and opal records of the sediment cores indicate that dissolution of opal in the water column and the sediment does not obscure the surface productivity signal. Therefore, opal can be used in combination with other proxies for paleoproductivity discussions in this area. Maximum paleoproductivity rates (PPmax) during peak warm stages reach values between 82-345 gC/m2/a and maximum export productivity rates (Pnew, max) between 14-177 gC/m2/a, that are representative of high-productivity areas. They are drastically reduced during glacial times (PPmax = 14-107 gC/m2/a, Pnew, max = 1-25 gC/m2/a). The results allow the development of a model for paleoproductivity processes for the last 400,000 years at the Antarctic continental margin of the Atlantic sector. Following the estimated productivity rates it can be concluded that during the last 400,000 years, North Atlantic Deep Water (NADW) heat flux into the southernmost South Atlantic Ocean was restricted to interglacial periods with stronger input of NADW driven deep water circulation during interglacial stages 1, 5 (5.5) and 7.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_729792
institution PANGAEA
language en
publishDate 2009
publisher PANGAEA
record_format pangaea
spellingShingle Sedimentology on Quaternary depoits from the Weddell Sea continental slope
Bonn, Wolfgang J
ANT-IX/3; ANT-VI/3; ANT-VIII/6; Atka Bay; AWI_Paleo; Fram Strait; Gravity corer (Kiel type); Lazarev Sea; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS12; PS12/248; PS12/536; PS1575-1; PS16; PS16/534; PS16/541; PS1648-1; PS18; PS18/184; PS18/185; PS18/186; PS18/187; PS18/191; PS18/192; PS18/193; PS18/194; PS18/196; PS18/198; PS18/203; PS18/204; PS1821-6; PS1824-1; PS2037-3; PS2038-2; PS2039-1; PS2040-2; PS2044-1; PS2045-3; PS2046-1; PS2047-3; PS2049-4; PS2050-1; PS2055-2; PS2056-1; Silicon Cycling in the World Ocean; SINOPS; SL; South Orkney
Sedimentological, geochemical (in particular biogenic content) and physical properties from the Weddell, Lazarev and Cosmonaut seas along the Antarctic continental margin were analysed in order to reconstruct the late Quaternary productivity and sedimentary processes of this region. Seven undisturbed sediment cores were chosen. The sediments represent a depositional period from 400,000 years to the recent time. The late Quaternary climatic changes influence changes in the paleoenvironmental and the geological conditions, directly forced by the behaviour of the Antarctic ice sheet. All investigated cores are positioned within the oscillating ice sheet area and reflect the influence of the ice sheet in response to the climatic cycles. The organic carbon, carbonate, biogenic opal, and barium contents were measured, andlor calculated, together with the determination by XRD of the terrigenous components such as quartz and plagioclase (expressed as relative to corundum standard). The contents of organic carbon and carbonate in general are very low. The results provide an indication that organic carbon content is a preservation signal and not a productivity signal. Carbonate is not correlated with biogenic opal and biogenic barium. Profiles of biogenic opal and barium were measured within the sediment cores providing a qualitative and quantitative tool to estimate changes in paleoproductivity over the investigated time. Generally, good correlations between the barium and opal records of the sediment cores indicate that dissolution of opal in the water column and the sediment does not obscure the surface productivity signal. Therefore, opal can be used in combination with other proxies for paleoproductivity discussions in this area. Maximum paleoproductivity rates (PPmax) during peak warm stages reach values between 82-345 gC/m2/a and maximum export productivity rates (Pnew, max) between 14-177 gC/m2/a, that are representative of high-productivity areas. They are drastically reduced during glacial times (PPmax = 14-107 gC/m2/a, Pnew, max = 1-25 gC/m2/a). The results allow the development of a model for paleoproductivity processes for the last 400,000 years at the Antarctic continental margin of the Atlantic sector. Following the estimated productivity rates it can be concluded that during the last 400,000 years, North Atlantic Deep Water (NADW) heat flux into the southernmost South Atlantic Ocean was restricted to interglacial periods with stronger input of NADW driven deep water circulation during interglacial stages 1, 5 (5.5) and 7.
title Sedimentology on Quaternary depoits from the Weddell Sea continental slope
topic ANT-IX/3; ANT-VI/3; ANT-VIII/6; Atka Bay; AWI_Paleo; Fram Strait; Gravity corer (Kiel type); Lazarev Sea; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Polarstern; PS12; PS12/248; PS12/536; PS1575-1; PS16; PS16/534; PS16/541; PS1648-1; PS18; PS18/184; PS18/185; PS18/186; PS18/187; PS18/191; PS18/192; PS18/193; PS18/194; PS18/196; PS18/198; PS18/203; PS18/204; PS1821-6; PS1824-1; PS2037-3; PS2038-2; PS2039-1; PS2040-2; PS2044-1; PS2045-3; PS2046-1; PS2047-3; PS2049-4; PS2050-1; PS2055-2; PS2056-1; Silicon Cycling in the World Ocean; SINOPS; SL; South Orkney
url https://doi.org/10.1594/PANGAEA.729792