Sedimentation processes in the Mar del Plata Canyon (Southwest Atlantic) reconstructed from three sediment cores (GeoB13832-2, GeoB13833-2, GeoB13862-1)


Autoria(s): Voigt, Ines; Henrich, Rüdiger; Preu, Benedikt; Piola, Alberto R; Hanebuth, Till J J; Schwenk, Tilmann; Chiessi, Cristiano Mazur
Cobertura

MEDIAN LATITUDE: -37.971382 * MEDIAN LONGITUDE: -53.874668 * SOUTH-BOUND LATITUDE: -38.018500 * WEST-BOUND LONGITUDE: -54.141200 * NORTH-BOUND LATITUDE: -37.902300 * EAST-BOUND LONGITUDE: -53.745000 * DATE/TIME START: 2009-06-07T20:54:00 * DATE/TIME END: 2009-06-29T04:44:00

Data(s)

03/09/2013

Resumo

The Mar del Plata Canyon is located at the continental margin off northern Argentina in a key intermediate and deep-water oceanographic setting. In this region, strong contour currents shape the continental margin by eroding, transporting and depositing sediments. These currents generate various depositional and erosive features which together are described as a Contourite Depositional System (CDS). The Mar del Plata Canyon intersects the CDS, and does not have any obvious connection to the shelf or to an onshore sediment source. Here we present the sedimentary processes that act in the canyon and show that continuous Holocene sedimentation is related to intermediate-water current activity. The Holocene deposits in the canyon are strongly bioturbated and consist mainly of the terrigenous "sortable silt" fraction (10-63 µm) without primary structures, similarly to drift deposits. We propose that the Mar del Plata Canyon interacts with an intermediate-depth nepheloid layer generated by the northward-flowing Antarctic Intermediate Water (AAIW). This interaction results in rapid and continuous deposition of coarse silt sediments inside the canyon with an average sedimentation rate of 160 cm/kyr during the Holocene. We conclude that the presence of the Mar del Plata Canyon decreases the transport capacity of AAIW, in particular of its deepest portion that is associated with the nepheloid layer, which in turn generates a change in the contourite deposition pattern around the canyon. Since sedimentation processes in the Mar del Plata Canyon indicate a response to changes of AAIW contour-current strength related to Late Glacial/Holocene variability, the sediments deposited within the canyon are a great climate archive for paleoceanographic reconstructions. Moreover, an additional involvement of (hemi) pelagic sediments indicates episodic productivity events in response to changes in upper ocean circulation possibly associated with Holocene changes in intensity of El Niño/Southern Oscillation.

Formato

application/zip, 9 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.819014

doi:10.1594/PANGAEA.819014

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Voigt, Ines; Henrich, Rüdiger; Preu, Benedikt; Piola, Alberto R; Hanebuth, Till J J; Schwenk, Tilmann; Chiessi, Cristiano Mazur (2013): A submarine canyon as a climate archive - Interaction of the Antarctic Intermediate Water with the Mar del Plata Canyon (Southwest Atlantic). Marine Geology, 341, 46-57, doi:10.1016/j.margeo.2013.05.002

Palavras-Chave #<2 µm, >9 phi; >63 µm; 1 Sigma error, ka B.P.; 2 Sigma, cal ka B.P.; 63-2 µm; Age; AGE; Age, 14C AMS; Age, calibrated; Age, dated; Age, dated material; Age, dated standard deviation; Age, maximum/old; Age, minimum/young; Age dated; Age max; Age min; Age std dev; Beckman Coulter Laser diffraction particle size analyzer LS 200; bSiO2; Ca/Fe; CaCO3; Calcium/Iron ratio; Calcium carbonate; Calculated, CaCO3=(TC-TOC)*8.333; Carbon, organic, total; Carbon, total; Center for Marine Environmental Sciences; Dated material; Depth; DEPTH, sediment/rock; Element analyser CS, LECO CS-300; Event; interpolated from 2 Sigma range, cal ka B.P.; Label; MARUM; Opal, auto analysis (Müller & Schneider, 1993); Opal, biogenic silica; Poznan Radiocarbon Laboratory, Poland; Sample code/label; Si/Al; Silicon/Aluminium ratio; Size fraction < 0.002 mm, > 9 phi, clay; Size fraction > 0.063 mm, sand; Size fraction 0.063-0.002 mm, silt; TC; TOC
Tipo

Dataset