Solid phase analysis of sediment core GeoB9309-1 from the Zambezi (or Mozambique) deep-sea fan


Autoria(s): März, Christian; Hoffmann, Jan; Bleil, Ulrich; de Lange, Gert Jan; Kasten, Sabine
Cobertura

LATITUDE: -18.930000 * LONGITUDE: 37.511667 * DATE/TIME START: 2005-02-14T01:13:00 * DATE/TIME END: 2005-02-14T01:13:00

Data(s)

07/01/2010

Resumo

The Zambezi deep-sea fan, the largest of its kind along the east African continental margin, is poorly studied to date, despite its potential to record marine and terrestrial climate signals in the southwest Indian Ocean. Therefore, gravity core GeoB 9309-1, retrieved from 1219 m water depth, was investigated for various geophysical (magnetic susceptibility, porosity, colour reflectance) and geochemical (pore water and sediment geochemistry, Fe and P speciation) properties. Onboard and onshore data documented a sulphate/methane transition (SMT) zone at ~ 450-530 cm sediment depth, where the simultaneous consumption of pore water sulphate and methane liberates hydrogen sulphide and bi-carbonate into the pore space. This leads to characteristic changes in the sediment and pore water chemistry, as the reduction of primary Fe (oxyhydr)oxides, the precipitation of Fe sulphides, and the mobilization of Fe (oxyhydr)oxide-bound P. These chemical processes also lead to a marked decrease in magnetic susceptibility. Below the SMT, we find a reduction of porosity, possibly due to pore space cementation by authigenic minerals. Formation of the observed geochemical, magnetic and mineralogical patterns requires a fixation of the SMT at this distinct sediment depth for a considerable time-which we calculated to be ~ 10 000 years assuming steady-state conditions-following a period of rapid upward migration towards this interval. We postulate that the worldwide sea-level rise at the last glacial/interglacial transition (~ 10 000 years B.P.) most probably caused the fixation of the SMT at its present position, through drastically reduced sediment delivery to the deep-sea fan. In addition, we report an internal redistribution of P occurring around the SMT, closely linked to the (de)coupling of sedimentary Fe and P, and leaving a characteristic pattern in the solid P record. By phosphate re-adsorption onto Fe (oxyhydr)oxides above, and formation of authigenic P minerals (e.g. vivianite) below the SMT, deep-sea fan deposits may potentially act as long-term sinks for P.

Formato

application/zip, 2 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.730344

doi:10.1594/PANGAEA.730344

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: März, Christian; Hoffmann, Jan; Bleil, Ulrich; de Lange, Gert Jan; Kasten, Sabine (2008): Diagenetic changes of magnetic and geochemical signals by anaerobic methane oxidation in sediments of the Zambesi deep-sea fan (SW Indian Ocean). Marine Geology, 255(3-4), 118-130, doi:10.1016/j.margeo.2008.05.013

Palavras-Chave #14; AFRIDEEP; Al; Al/Ti; Al2O3; Aluminium; Aluminium/Titanium ratio; Aluminium oxide; B; Ba; Ba/Al; Ba/Ti; Ba/Zr; Ba (excess), based on (Ba/Al)crust of 0.0035; Ba (excess), based on (Ba/Ti) crust of 0.035; Ba (excess), based on (Ba/Zr) crust of 1.6; Barium; Barium/Aluminium ratio; Barium/Titanium ratio; Barium/Zirconium ratio; Boron; Ca; Ca/Al; CaCO3; Calcium; Calcium/Aluminium; Calcium carbonate; Calcium oxide; Calculated; CaO; Carbon, organic, total; Carbon, organic total/Phosphorus ratio; Carbon, total; Center for Marine Environmental Sciences; Depth; DEPTH, sediment/rock; Element analyser CS, LECO CS-200; Excess; Fe; Fe/Al; Fe2O3; GeoB9309-1; Gravity corer (Kiel type); ICP-OES, Inductively coupled plasma - optical emission spectrometry; Iron; Iron/Aluminium ratio; Iron oxide, Fe2O3; K; K/Al; K2O; M63/1; Magnesium; Magnesium/Aluminium ratio; Magnesium oxide; Manganese; Manganese/Aluminium ratio; MARUM; Meteor (1986); Mg; Mg/Al; MgO; Mn; Mn/Al; Na; Na2O; P; Phosphorus; Potassium; Potassium/Aluminium ratio; Potassium oxide; Rem; Remains; S; S/Al; Sambesi Fan; SL; SO3**2-; Sodium; Sodium oxide; Sr; Sr/Al; Sr/Ca; Strontium; Strontium/Aluminium ratio; Strontium/Calcium ratio; Sulfite; Sulfur, total; Sulfur/Aluminium ratio; TC; Ti; Ti/Al; TiO2; Titanium; Titanium/Aluminium ratio; Titanium oxide; TOC; TOC/P; V; V/Al; Vanadium; Vanadium/Aluminium ratio; Zinc; Zinc/Aluminium ratio; Zirconium; Zirconium/Aluminium ratio; Zn; Zn/Al; Zr; Zr/Al
Tipo

Dataset