Temporal evolution of organic carbon and lipid content and derived SST of sediment core GIK23258-2, Norwegian Sea


Autoria(s): Martrat, Belen; Grimalt, Joan O; Villanueva, Joan; van Kreveld, Shirley A; Sarnthein, Michael
Cobertura

LATITUDE: 74.998083 * LONGITUDE: 13.968533 * DATE/TIME START: 1988-07-16T00:00:00 * DATE/TIME END: 1988-07-16T00:00:00

Data(s)

04/05/2003

Resumo

Lipids are used for the evaluation of the different organic matter contributions in the north eastern Norwegian sea (M23258 site; 75ºN, 14ºE) over the last 15,000 years. Development of a mass balance model based on the down core quantification of the C37 alkenones, the odd carbon numbered n-alkanes (Aodd) and the unresolved complex mixture of hydrocarbons (UCM) has allowed three main organic matter inputs involving marine, continental and ancient reworked organic matter to be recognized. The model shows a good agreement between measured and reconstructed TOC values. Similarly, a strong parallelism is observed between predicted components such as marine TOC and carbonate content (CaCO3), which was determined independently. Representation of the model results within a time-scale based on 15 AMS-14C measurements shows that the main changes in organic matter constituents are coincident with the major climatic events of the last 15,000 a. Thus, the predominance of reworked organic matter is characteristic of Termination Ia (up to 70%), continental organic matter was dominant during the Bølling-Allerød (B-A) and Younger Dryas (YD) periods (about 85%) and a strong increase of marine organic matter occurred in the Holocene (between 50 and 75%). This agreement reflects the main hydrographic changes that determined the deposition of sedimentary materials during the period studied: ice-rafted detritus from the Barents continental platform, ice-melting waters from the Arctic fluvial system discharging into the Barents sea and dominance of north Atlantic currents, respectively. In this respect, the high-resolution down core record resulting from the mass balance and lipid measurements allows the identification of millennial-scale events such as the increase of reworked organic matter at the final retreat of the Barents ice sheet at the end of the deglaciation period (Termination Ib).

Formato

application/zip, 2 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.780467

doi:10.1594/PANGAEA.780467

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Martrat, Belen; Grimalt, Joan O; Villanueva, Joan; van Kreveld, Shirley A; Sarnthein, Michael (2003): Climatic dependence of organic matter contributions in the north eastern Norwegian Sea over the last 15,000 years. Organic Geochemistry, 34(8), 1057-1070, doi:10.1016/S0146-6380(03)00084-6

Palavras-Chave #Age; AGE; Alkenone, C37:2Me+C37:3Me+C37:4Me; Alkenone, C37:4Me; Alkenone, unsaturation index UK37; A odd (23-33); Aodd = [C23+C25+C27+C29+C31+C33] - [C22+C24+C26+C28+C30+C32] - [(C22+C32)/2]; Arctic Ocean; C22-C28; C23-C33; C37:2+3+4m; C37:4m; Calculated from UK37 (Rosell-Melé et al., 1995); Carbon, organic, total; Carbon, organic total/Nitrogen, total; Element analyser CNS, Carlo Erba NA1500; Gas chromatograph, Varian 3400; GIK23258-2; KAL; Kasten corer; M7/2; Meteor (1986); n-Alkane, reworked; n-Alkane-1-ol; n-Alkane rew; n-Alkane sum; n-alkanes without an even/odd carbon number preference; = [C23+C25+C27+C29+C31+C33] - Aodd; n-OH; Sea surface temperature, annual mean; SST (1-12); Sum odd numbered n-alkanes C23-C33; TOC; TOC/TN; UCM; UK37; Unresolved complex mixture
Tipo

Dataset