Geochemical composition of surface sediments in the Trondheimsfjord, central Norway


Autoria(s): Faust, Johan C; Knies, Jochen; Slagstad, Trond; Vogt, Christoph; Milzer, Gesa; Giraudeau, Jaques
Cobertura

MEDIAN LATITUDE: 63.607000 * MEDIAN LONGITUDE: 9.486982 * SOUTH-BOUND LATITUDE: 62.386610 * WEST-BOUND LONGITUDE: 3.489440 * NORTH-BOUND LATITUDE: 64.299170 * EAST-BOUND LONGITUDE: 11.438200

Data(s)

01/03/2014

Resumo

High sedimentation rates in fjords provide excellent possibilities for high resolution sedimentary and geochemical records over the Holocene. As a baseline for an improved interpretation of geochemical data from fjord sediment cores, this study aims to investigate the inorganic/organic geochemistry of surface sediments and to identify geochemical proxies for terrestrial input and river discharge in the Trondheimsfjord, central Norway. Sixty evenly distributed surface sediment samples were analysed for their elemental composition, total organic carbon (Corg), nitrogen (Norg) and organic carbon stable isotopes (d13Corg), bulk mineral composition and grain size distribution. Our results indicate carbonate marine productivity to be the main CaCO3 source. Also, a strong decreasing gradient of marine-derived organic matter from the entrance towards the fjord inner part is consistent with modern primary production data. We show that the origin of the organic matter as well as the distribution of CaCO3 in Trondheimsfjord sediments can be used as a proxy for the variable inflow of Atlantic water and changes in river runoff. Furthermore, the comparison of grain size independent Al-based trace element ratios with geochemical analysis from terrigenous sediments and bedrocks provides evidence that the distribution of K/Al, Ni/Al and K/Ni in the fjord sediments reflect regional sources of K and Ni in the northern and southern drainage basin of the Trondheimsfjord. Applying these findings to temporally well-constrained sediment records will provide important insights into both the palaeoenvironmental changes of the hinterland and the palaeoceanographic modifications in the Norwegian Sea as response to rapid climate changes and associated feedback mechanisms.

Formato

application/zip, 5 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.808233

doi:10.1594/PANGAEA.808233

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Faust, Johan C; Knies, Jochen; Slagstad, Trond; Vogt, Christoph; Milzer, Gesa; Giraudeau, Jaques (2014): Geochemical composition of Trondheimsfjord surface sediments: Sources and spatial variability of marine and terrigenous components. Continental Shelf Research, 88, 61-71, doi:10.1016/j.csr.2014.07.008

Palavras-Chave #<2 µm, >9 phi; 125-63 µm; 2000-500 µm; 250-125 µm; 500-250 µm; 63-2 µm; Al; Aluminium; Aragonite; Arg; Bathy depth; Ca; Cal; Calcite; Calcium; Calculated; Carbon, organic, terrestrial matter; Carbon, organic, total; Carbon, total; Chromium; Cr; d13C Corg; delta 13C, organic carbon; Depth; Depth, bathymetric; DEPTH, sediment/rock; Factor 1; Factor 2; Factor scores: F1; Factor scores: F2; Fterr, calculated from the Norg/Corg ratio; Ill+mica; Illite+mica; in original version unit is ppm; K; K2O; Kalifeldspar; Kfs; Latitude; LATITUDE; Longitude; LONGITUDE; Magnesium; Mg; MT index; Ni; Nickel; N inorg; Nitrogen, inorganic; Nitrogen, total; OC ter; PC1; PC2; Phyllosilicate; Pl; Plagioclase; Potassium; Potassium oxide; Quartz; Qz; Rock; Rock type; Sample ID; Size fraction < 0.002 mm, > 9 phi, clay; Size fraction 0.063-0.002 mm, silt; Size fraction 0.125-0.063 mm, 3.0-4.0 phi, very fine sand; Size fraction 0.250-0.125 mm, 2.0-3.0 phi, fine sand; Size fraction 0.500-0.250 mm, 1.0-2.0 phi, medium sand; Size fraction 2.000-0.500 mm; TC; Terr/Mar; Terrigeneous/marine ratio; TN; TOC; trondheimsfjord; Trondheimsfjord, Norway; UTM east; UTM Easting, Universal Transverse Mercator; UTM north; UTM Northing, Universal Transverse Mercator; UTM Zone; UTM Zone, Universal Transverse Mercator; wt%
Tipo

Dataset