Calcareous dionoflagellate cysts from surface sediments

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Hauptverfasser: Wendler, Ines, Zonneveld, Karin A F, Willems, Helmut
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Sprache:en
Veröffentlicht: PANGAEA 2002
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author Wendler, Ines
Zonneveld, Karin A F
Willems, Helmut
author_facet Wendler, Ines
Zonneveld, Karin A F
Willems, Helmut
collection Datos científicos de ciencias marinas y ambientales
contents In oceanic regions with high primary production, such as the Arabian Sea, the primary signals of proxies are often altered by diagenetic processes. The present study aims at assessing the effects of early diagenesis on calcareous dinoflagellate cysts, which represent a relatively new tool for reconstructing the paleoenvironmental conditions within the photic zone. For this purpose, surface sediment samples from within and below the oxygen minimum zone (OMZ) of the northeastern and southwestern Arabian Sea have been analysed quantitatively for their calcareous dinoflagellate cyst content. The calculated cyst accumulation rates (ARs), the relative abundances and cyst fragmentation values were compared to bottom water oxygen (BWO) content and ARs of organic carbon at the sample positions. Different patterns were found in the northeastern and southwestern part of the Arabian Sea. In the SW, no relationship between cyst ARs and BWO is distinguishable, and the distribution of cyst ARs is thought to largely reflect primary cyst production. In the NE, much higher ARs of all species are found in samples from within the OMZ in comparison to samples from below it. This is interpreted to result from better calcite preservation within the OMZ, presumably due to reduced oxic degradation of organic matter. The differential drop of cyst ARs of the individual species at the lower boundary of the OMZ in the NE Arabian Sea, as well as the species-specific change in relative abundance and fragmentation, indicate different sensitivity to calcite dissolution of the different species. These results show that early diagenetic calcite dissolution can change both relative and absolute abundances of calcareous dinoflagellate cysts, which has to be considered if using them for paleoenvironmental reconstructions. Furthermore, it is shown that considerable calcite dissolution can occur above the carbonate saturation horizon in high productive areas. However, calcite preservation can be substantially increased, as soon as oxygen concentrations are too low for oxic degradation of OM. Under low oxic conditions (within and near the OMZ), the main factor controlling organic matter (OM) preservation appears to be BWO concentrations. Under higher oxygen levels (below not, vert, similar1500 m depth in the NE Arabian Sea) there seems to be an increasing influence of bioturbation and sedimentation rate on the preservation of OM by controlling its oxygen exposure time. This study presents an example of a highly productive basin in which differences in early diagenetic processes can lead to the preservation of a signal that is either dominated by primary production (off Somalia) or by secondary alteration (off Pakistan), although in both areas, an oxygen depleted zone is present. For estimating the effects of early diagenetic calcite dissolution in a sediment by metabolic CO2 (and probably by H2S oxidation), not only the content of organic carbon but also other geochemical proxies for paleoredox-conditions have to be included for paleoenvironmental reconstructions.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_68679
institution PANGAEA
language en
publishDate 2002
publisher PANGAEA
record_format pangaea
spellingShingle Calcareous dionoflagellate cysts from surface sediments
Wendler, Ines
Zonneveld, Karin A F
Willems, Helmut
304; 906; BC; Box corer; Calciodinellum albatrosianum, per unit sediment mass; Calciodinellum operosum, per unit sediment mass; Calciodinellum sp., per unit sediment mass; Counting, dinoflagellate cysts; Cysts, spiny, per unit sediment mass; DEPTH, sediment/rock; Elevation of event; Event label; GeoB; Geosciences, University of Bremen; Latitude of event; Leonella granifera, per unit sediment mass; Longitude of event; Netherlands Indian Ocean Programme; NIOP; NIOP-C1; NIOP-C1_301; NIOP-C1_302; NIOP-C1_303; NIOP-C1_304; NIOP-C1_305; NIOP-C1_306; NIOP-C1_307; NIOP-C1_308; NIOP-C1_309; NIOP-C1_310; NIOP-C1_311; NIOP-C1_313; NIOP-C1_325; NIOP-C2; NIOP-C2_497; NIOP-C2_902; NIOP-C2_903; NIOP-C2_904; NIOP-C2_905; NIOP-C2_906; NIOP-C2_907; NIOP-C2_908; NIOP-C2_915; NIOP-C2_917; NIOP-C2_918; NIOP-C2_919; NIOP-C2_929_BC; NIOP-D2; NIOP-D2_451; NIOP-D2_452; NIOP-D2_453; NIOP-D2_454; NIOP-D2_455; NIOP-D2_457; NIOP-D2_458; NIOP-D2_460; NIOP-D2_461; NIOP-D2_463; NIOP-D2_464; NIOP-D2_466; NIOP-D2_468; NIOP-D2_469; NIOP-D2_470; NIOP-D2_471; NIOP-D2_472; NIOP-D2_473; NIOP-D2_475; NIOP-D2_476; NIOP-D2_477; NIOP-D2_478; NIOP-D3; NIOP-D3_483; NIOP-D3_484; NIOP-D3_486; NIOP-D3_487; NIOP-D3_491; NIOP-D3_492; NIOP-D3_496; Thoracosphaera heimii, per unit sediment mass; Tyro
In oceanic regions with high primary production, such as the Arabian Sea, the primary signals of proxies are often altered by diagenetic processes. The present study aims at assessing the effects of early diagenesis on calcareous dinoflagellate cysts, which represent a relatively new tool for reconstructing the paleoenvironmental conditions within the photic zone. For this purpose, surface sediment samples from within and below the oxygen minimum zone (OMZ) of the northeastern and southwestern Arabian Sea have been analysed quantitatively for their calcareous dinoflagellate cyst content. The calculated cyst accumulation rates (ARs), the relative abundances and cyst fragmentation values were compared to bottom water oxygen (BWO) content and ARs of organic carbon at the sample positions. Different patterns were found in the northeastern and southwestern part of the Arabian Sea. In the SW, no relationship between cyst ARs and BWO is distinguishable, and the distribution of cyst ARs is thought to largely reflect primary cyst production. In the NE, much higher ARs of all species are found in samples from within the OMZ in comparison to samples from below it. This is interpreted to result from better calcite preservation within the OMZ, presumably due to reduced oxic degradation of organic matter. The differential drop of cyst ARs of the individual species at the lower boundary of the OMZ in the NE Arabian Sea, as well as the species-specific change in relative abundance and fragmentation, indicate different sensitivity to calcite dissolution of the different species. These results show that early diagenetic calcite dissolution can change both relative and absolute abundances of calcareous dinoflagellate cysts, which has to be considered if using them for paleoenvironmental reconstructions. Furthermore, it is shown that considerable calcite dissolution can occur above the carbonate saturation horizon in high productive areas. However, calcite preservation can be substantially increased, as soon as oxygen concentrations are too low for oxic degradation of OM. Under low oxic conditions (within and near the OMZ), the main factor controlling organic matter (OM) preservation appears to be BWO concentrations. Under higher oxygen levels (below not, vert, similar1500 m depth in the NE Arabian Sea) there seems to be an increasing influence of bioturbation and sedimentation rate on the preservation of OM by controlling its oxygen exposure time. This study presents an example of a highly productive basin in which differences in early diagenetic processes can lead to the preservation of a signal that is either dominated by primary production (off Somalia) or by secondary alteration (off Pakistan), although in both areas, an oxygen depleted zone is present. For estimating the effects of early diagenetic calcite dissolution in a sediment by metabolic CO2 (and probably by H2S oxidation), not only the content of organic carbon but also other geochemical proxies for paleoredox-conditions have to be included for paleoenvironmental reconstructions.
title Calcareous dionoflagellate cysts from surface sediments
topic 304; 906; BC; Box corer; Calciodinellum albatrosianum, per unit sediment mass; Calciodinellum operosum, per unit sediment mass; Calciodinellum sp., per unit sediment mass; Counting, dinoflagellate cysts; Cysts, spiny, per unit sediment mass; DEPTH, sediment/rock; Elevation of event; Event label; GeoB; Geosciences, University of Bremen; Latitude of event; Leonella granifera, per unit sediment mass; Longitude of event; Netherlands Indian Ocean Programme; NIOP; NIOP-C1; NIOP-C1_301; NIOP-C1_302; NIOP-C1_303; NIOP-C1_304; NIOP-C1_305; NIOP-C1_306; NIOP-C1_307; NIOP-C1_308; NIOP-C1_309; NIOP-C1_310; NIOP-C1_311; NIOP-C1_313; NIOP-C1_325; NIOP-C2; NIOP-C2_497; NIOP-C2_902; NIOP-C2_903; NIOP-C2_904; NIOP-C2_905; NIOP-C2_906; NIOP-C2_907; NIOP-C2_908; NIOP-C2_915; NIOP-C2_917; NIOP-C2_918; NIOP-C2_919; NIOP-C2_929_BC; NIOP-D2; NIOP-D2_451; NIOP-D2_452; NIOP-D2_453; NIOP-D2_454; NIOP-D2_455; NIOP-D2_457; NIOP-D2_458; NIOP-D2_460; NIOP-D2_461; NIOP-D2_463; NIOP-D2_464; NIOP-D2_466; NIOP-D2_468; NIOP-D2_469; NIOP-D2_470; NIOP-D2_471; NIOP-D2_472; NIOP-D2_473; NIOP-D2_475; NIOP-D2_476; NIOP-D2_477; NIOP-D2_478; NIOP-D3; NIOP-D3_483; NIOP-D3_484; NIOP-D3_486; NIOP-D3_487; NIOP-D3_491; NIOP-D3_492; NIOP-D3_496; Thoracosphaera heimii, per unit sediment mass; Tyro
url https://doi.org/10.1594/PANGAEA.68679