Stable oxygen isotope ratios and grain size analyses of sediment cores from the Propeller Mound, Northeast Atlantic


Autoria(s): Dorschel, Boris; Hebbeln, Dierk; Rüggeberg, Andres; Dullo, Wolf Christian
Cobertura

MEDIAN LATITUDE: 52.153167 * MEDIAN LONGITUDE: -12.762710 * SOUTH-BOUND LATITUDE: 52.147683 * WEST-BOUND LONGITUDE: -12.773000 * NORTH-BOUND LATITUDE: 52.156317 * EAST-BOUND LONGITUDE: -12.752633 * DATE/TIME START: 2000-09-18T10:57:00 * DATE/TIME END: 2000-09-24T17:34:00

Data(s)

28/01/2005

Resumo

The first detailed stratigraphic record from a deep-water carbonate mound in the Northeast Atlantic based on absolute datings (U/Th and AMS 14C) and stable oxygen isotope records reveals that its top sediment sequences are condensed by numerous hiatuses. According to stable isotope data, mainly sediments with an intermediate signal are preserved on the mound, while almost all fully glacial and interglacial sediments have either not been deposited or have been eroded later. The resulting hiatuses reduce the Late Pleistocene sediment accumulation at Propeller Mound to amounts smaller than the background sedimentation. The hiatuses most likely result due to the sweeping of the mound in turn with the re-establishment of vigour interglacial circulation patterns after sluggish current regimes during glacials. Thus, within the discussion if internal, fluid-driven or external environmentally driven processes control the evolution of such carbonate mounds, our findings for Propeller Mound clearly point to environmental forcing as the dominant mechanism shaping deep-water carbonate mounds in the NE Atlantic during the Late Pleistocene and Holocene.

Formato

application/zip, 7 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.711985

doi:10.1594/PANGAEA.711985

Idioma(s)

en

Publicador

PANGAEA

Relação

Dorschel, Boris (2003): Late Quaternary Development of a deep-water Carbonate Mound in the northeast Atlantic. PhD Thesis, Elektronische Dissertationen an der Staats- und Universitätsbibliothek Bremen, Germany, urn:nbn:de:gbv:46-diss000006917

Dorschel, Boris; Hebbeln, Dierk; Rüggeberg, Andres; Dullo, Wolf Christian (2007): Carbonate budget of a cold-water coral carbonate mound: Propeller Mound, Porcupine Seabight. International Journal of Earth Sciences, 96(1), 73-83, doi:10.1007/s00531-005-0493-0

Rüggeberg, Andres; Dorschel, Boris; Dullo, Wolf Christian; Hebbeln, Dierk (2005): Sedimentary patterns in the vicinity of a carbonate mound in the Hovland Mound Province, northern Porcupine Seabight. In: Freiwald, A & Roberts, JM (eds.), 2005, Cold-water Corals and Ecosystems, Springer-Verlag, Berlin, Heidelberg, 87-112, doi:10.1007/3-540-27673-4_5

Rüggeberg, Andres; Dullo, Wolf Christian; Dorschel, Boris; Hebbeln, Dierk (2007): Environmental changes and growth history of a cold-water carbonate mound (Propeller Mound, Porcupine Seabight). International Journal of Earth Sciences, 96(1), 57-72, doi:10.1007/s00531-005-0504-1

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Dorschel, Boris; Hebbeln, Dierk; Rüggeberg, Andres; Dullo, Wolf Christian; Freiwald, André (2005): Growth and Erosion of a Cold-Water Coral Covered Carbonate Mound in the Northeast Atlantic during the Late Pleistocene and Holocene. Earth and Planetary Science Letters, 233(1-2), 33-44, doi:10.1016/j.epsl.2005.01.035

Palavras-Chave #>250 µm; 0.412-0.375 µm; 0.452-0.412 µm; 0.496-0.452 µm; 0.545-0.496 µm; 0.598-0.545 µm; 0.656-0.598 µm; 0.721-0.656 µm; 0.791-0.721 µm; 0.868-0.791 µm; 0.953-0.868 µm; 1.047-0.953 µm; 1.149-1.047 µm; 1.261-1.149 µm; 1.384 -1.261 µm; 1.520-1.384 µm; 1.668-1.520 µm; 1.832-1.668 µm; 10.78-9.818 µm; 101.1-92.09 µm; 11.83-10.78 µm; 111.0-101.1 µm; 12.99-11.83 µm; 121.8-111.0 µm; 133.7-121.8 µm; 14.26-12.99 µm; 146.8-133.7 µm; 15.65-14.26 µm; 161.2-146.8 µm; 17.18-15.65 µm; 18.86-17.18 µm; 2.010-1.832 µm; 2.207-2.010 µm; 2.423-2.207 µm; 2.660-2.423 µm; 2.920-2.660 µm; 20.70-18.86 µm; 22.73-20.70 µm; 24.95-22.73 µm; 250-63 µm; 27.38-24.95 µm; 3.205-2.920 µm; 3.519-3.205 µm; 3.862-3.519 µm; 30.07-27.38 µm; 33.01-30.07 µm; 36.24-33.01 µm; 39.77-36.24 µm; 4.240-3.863 µm; 4.655-4.240 µm; 43.67-39.78 µm; 47.94-43.67 µm; 478-2; 488-1; 489-1; 490-1; 5.110-4.655 µm; 5.610-5.110 µm; 52.62-47.94 µm; 57.77-52.62 µm; 6.158-5.611 µm; 6.761-6.158 µm; 63.41-57.77 µm; 69.62-63.41 µm; 7.421-6.760 µm; 76.42-69.61 µm; 8.147-7.421 µm; 8.943-8.147 µm; 83.89-76.42 µm; 9.818-8.943 µm; 92.09-83.90 µm; Beckman Coulter Laser diffraction particle size analyzer LS 200; C. kullenbergi d13C; C. kullenbergi d18O; C. wuellerstorfi d13C; C. wuellerstorfi d18O; carbonate free; Center for Marine Environmental Sciences; Cibicidoides kullenbergi, d13C; Cibicidoides kullenbergi, d18O; Cibicidoides wuellerstorfi, d13C; Cibicidoides wuellerstorfi, d18O; Comment; Depth; DEPTH, sediment/rock; ECOMOUND; Environmental controls on mound formation along the european margin; GeoB6718-2; GeoB6728-1; GeoB6729-1; GeoB6730-1; Grain size, sieving; Gravity corer (Kiel type); MARUM; Mass spectrometer Finnigan MAT 251; Porcupine Seabight; POS265; Poseidon; Sand; Size fraction > 0.250 mm; Size fraction 0.250-0.063 mm; Size fraction 0.412-0.375 µm; Size fraction 0.452-0.412 µm; Size fraction 0.496-0.452 µm; Size fraction 0.545-0.496 µm; Size fraction 0.598-0.545 µm; Size fraction 0.656-0.598 µm; Size fraction 0.721-0.656 µm; Size fraction 0.791-0.721 µm; Size fraction 0.868-0.791 µm; Size fraction 0.953-0.868 µm; Size fraction 1.047-0.953 µm; Size fraction 1.149-1.047 µm; Size fraction 1.261-1.149 µm; Size fraction 1.384 -1.261 µm; Size fraction 1.520-1.384 µm; Size fraction 1.668-1.520 µm; Size fraction 1.832-1.668 µm; Size fraction 10.78-9.818 µm; Size fraction 101.1-92.09 µm; Size fraction 11.83-10.78 µm; Size fraction 111.0-101.1 µm; Size fraction 12.99-11.83 µm; Size fraction 121.8-111.0 µm; Size fraction 133.7-121.8 µm; Size fraction 14.26-12.99 µm; Size fraction 146.8-133.7 µm; Size fraction 15.65-14.26 µm; Size fraction 161.2-146.8 µm; Size fraction 17.18-15.65 µm; Size fraction 18.86-17.18 µm; Size fraction 2.010-1.832 µm; Size fraction 2.207-2.010 µm; Size fraction 2.423-2.207 µm; Size fraction 2.660-2.423 µm; Size fraction 2.920-2.660 µm; Size fraction 20.70-18.86 µm; Size fraction 22.73-20.70 µm; Size fraction 24.95-22.73 µm; Size fraction 27.38-24.95 µm; Size fraction 3.205-2.920 µm; Size fraction 3.519-3.205 µm; Size fraction 3.862-3.519 µm; Size fraction 30.07-27.38 µm; Size fraction 33.01-30.07 µm; Size fraction 36.24-33.01 µm; Size fraction 39.77-36.24 µm; Size fraction 4.240-3.863 µm; Size fraction 4.655-4.240 µm; Size fraction 43.67-39.78 µm; Size fraction 47.94-43.67 µm; Size fraction 5.110-4.655 µm; Size fraction 5.610-5.110 µm; Size fraction 52.62-47.94 µm; Size fraction 57.77-52.62 µm; Size fraction 6.158-5.611 µm; Size fraction 6.761-6.158 µm; Size fraction 63.41-57.77 µm; Size fraction 69.62-63.41 µm; Size fraction 7.421-6.760 µm; Size fraction 76.42-69.61 µm; Size fraction 8.147-7.421 µm; Size fraction 8.943-8.147 µm; Size fraction 83.89-76.42 µm; Size fraction 9.818-8.943 µm; Size fraction 92.09-83.90 µm; SL
Tipo

Dataset