MARINE AND TERRIGENOUS ORIGIN OF ORGANIC-MATTER IN MODERN SEDIMENTS OF THE EQUATORIAL EAST ATLANTIC - THE DELTA-C-13 AND MOLECULAR RECORD

被引:102
作者
WESTERHAUSEN, L
POYNTER, J
EGLINTON, G
ERLENKEUSER, H
SARNTHEIN, M
机构
[1] UNIV BRISTOL,SCH CHEM,ORGAN GEOCHEM UNIT,BRISTOL BS8 1TS,AVON,ENGLAND
[2] CHRISTIAN ALBRECHTS UNIV KIEL,INST REINE & ANGEW KERNPHYS,W-2300 KIEL 1,GERMANY
关键词
D O I
10.1016/0967-0637(93)90091-G
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The contributions of marine and terrigenous organic carbon in modem organic sediments from the equatorial East Atlantic was quantified, based on the stable carbon isotope composition standardized for sea surface temperature and water depth. In our binary deltaC-13 mixing model, the marine end member (-21.5 parts per thousand) is redefined at 23-degrees-C and 0 m water depth and the terrigenous end member, independent of SST and water depth, at -26 parts per thousand. Terrigenous carbon fractions account for more than 60% of total organic carbon (TOC) on the shelf off East Liberia and the Ivory Coast and off Gabon. On the upper slope the land-derived fraction decreases in general to less than 20% of the high TOC concentrations, which can reach 3.5 wt%. The distribution of plant wax n-alkanes (C27, C29, C31) and C:N ratios do not parallel those of land-derived organic carbon, but may be controlled largely by carbon degradation and aeolian/aquatic sorting. The ratio of n-alkanols vs n-alkanes (HPA index) varies with water depth in a non-linear mode. Since both groups of compounds stem from the same source, plant waxes, it is proposed that the HPA index is controlled mainly by degradation and to a lesser extent by sorting prior to degradation. Enhanced n-alkane concentrations (up to 580 mug/gTOC) in the Gambia Basin and in the central Guinea Basin clearly reflect the influx of aeolian organic matter from northeasterly trades near and below the Inter Tropical Convergence Zone (ITCZ). The particle flux from marine plankton is traced by high concentrations of both dinosterol, long-chain unsaturated methyl and ethyl ketones (C37-C39), and alkandiols in marine organic matter. Whereas alkenones, synthesized by prymnesiophyte algae generally, reflect upwelling-related productivity off-shore, dinosterol, synthesized by dinoflagellates, is enriched in near-shore areas of high marine productivity linked to fluvial fertilization. All marine biomarker groups show a surprisingly low concentration below the equatorial high productivity belt.
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页码:1087 / 1121
页数:35
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