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  • 1
    Publikationsdatum: 2012-02-23
    Materialart: Conference or Workshop Item , NonPeerReviewed
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 2
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    Unbekannt
    International Association of Sedimentologists
    In:  Sedimentology, 54 (6). pp. 1307-1322.
    Publikationsdatum: 2018-07-17
    Beschreibung: Middle Pleistocene to Holocene sediment variations observed in a 26 metre long core taken during a cruise of the RV Marion Dufresne are presented. Core MD992202 was retrieved from the northern slope of Little Bahama Bank and provides an excellent example for sedimentation processes in a mid-slope depositional environment. The sediment composition indicates sea-level related deposition processes for the past 375 000 years (marine isotope stages 1 to 11). The sediments consist of: (i) periplatform ooze (fine-grained particles of shallow-water and pelagic origin) with moderate variations in carbonate content, carbonate mineralogy and grain-size; and (ii) coarser intervals with cemented debris consisting of massive, poorly sorted, mud-supported or clast-supported deposits with an increased high-magnesium calcite content. During interglacial stages (marine isotope stages 1, 5, 7, 9 and 11) periplatform oozes (i) are characterized by higher aragonite contents, finer grain-size and higher organic contents, whereas during glacial stages (marine isotope stages 2 to 4, 6, 8 and 10), increased low-magnesium and high-magnesium calcite values, coarser grain-size and lower organic contents are recorded. These glacial to interglacial differences in mineralogy, grain-size distribution and organic content clearly show the impact of climatically controlled sea-level fluctuations on the sedimentation patterns of the northern slope of Little Bahama Bank. The coarser deposits (ii) occur mainly at the transitions from glacial to interglacial and interglacial to glacial stages, and are interpreted as redeposition events, indicating a direct link between sediment properties (changes in mineralogy, grain-size distribution, variations in organic contents) and sea-level fluctuations. Changes in hydrostatic pressure and the wave base position during sea-level changes are proposed to have triggered these large-scale sediment redepositions.
    Materialart: Article , PeerReviewed
    Format: text
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 3
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    Unbekannt
    PANGAEA
    In:  Supplement to: Schwab, Christian; Kinkel, Hanno; Weinelt, M; Repschläger, Janne (2012): Coccolithophore paleoproductivity and ecology response to deglacial and Holocene changes in the Azores Current System. Paleoceanography, 27(3), PA3210, https://doi.org/10.1029/2012PA002281
    Publikationsdatum: 2023-06-27
    Beschreibung: In order to test the sensitivity of marine primary productivity in the midlatitude open ocean North Atlantic to changes in the Atlantic Meridional Overturning Circulation (AMOC), we investigated two spliced sediment cores from a site south of the Azores Islands at the northern rim of the North Atlantic subtropical gyre. For this purpose we analyzed coccolithophore assemblages, diatom abundances, alkenones and conducted X-ray fluorescence (XRF) core scanning. During times of reduced AMOC, especially during Heinrich event 1 (H1) and the Younger Dryas, we observe a strong increase in productivity as evidenced by high coccolith accumulation rates, high alkenone concentrations/accumulation rates, high Ba/Ti-ratios, high abundances of diatoms and low abundances ofF. profunda. The increased productivity is partly caused by a more southern position of the Azores Front (AzF), and hence by a less northward extension of the subtropical gyre, as deduced from high abundances of the temperate coccolithophore species G. muellerae and low abundances of subtropical species (Oolithotus spp., Umbellosphaera spp., Umbilicosphaeraspp.). However, to explain the full range of the observed productivity increase, other factors like increased westerly winds and advection of nutrient-rich surface waters have also to be considered. Because this pattern can also be observed in other sediment cores from the midlatitude North Atlantic, we propose that during times of reduced AMOC there has been a band of strongly increased productivity across the North Atlantic at the northern rim of the contracted subtropical gyre, which partly counteracts the decreased organic carbon pump in the high northern latitudes.
    Schlagwort(e): Age, 14C AMS; Age, 14C calibrated, CALIB 6.0 and Marine09 (Reimer et al., 2009); Age, dated; Age, dated standard deviation; Age model; AMOCINT, IMAGES XVII; Azores; CALYPSO; Calypso Corer; DEPTH, sediment/rock; Event label; GEOFAR; KF16; Le Noroit; Marion Dufresne (1995); MD08-3180; MD168; PC; Piston corer; Reservoir effect/correction
    Materialart: Dataset
    Format: text/tab-separated-values, 66 data points
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  • 4
    Publikationsdatum: 2023-07-10
    Schlagwort(e): A-21; A-24; A-30; A-32; A-38; A-39; A-9; BC; Box corer; Calciodinellum albatrosianum; Calciodinellum elongatum; Calciodinellum levantinum; Calciodinellum sp.; Caracomia arctica; Counting, dinoflagellate cysts; Dinoflagellate cyst, calcareous; Event label; GeoB; Geosciences, University of Bremen; JOPSI-3; Latitude of event; Leonella granifera; Longitude of event; Melodomuncula berlinensis; Pernambugia tuberosa; Rhabdothorax spp.; Sample mass; Sample volume; Scrippsiella regalis; Scrippsiella trochoidea; see reference(s); Slide volume; Thoracosphaera heimii; van Veen Grab; VGRAB; Victor Hensen
    Materialart: Dataset
    Format: text/tab-separated-values, 217 data points
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  • 5
    Publikationsdatum: 2023-07-10
    Schlagwort(e): B-32; B-39; B-47; B-5; BC; Box corer; Calciodinellum albatrosianum; Calciodinellum elongatum; Calciodinellum levantinum; Calciodinellum sp.; Caracomia arctica; Counting, dinoflagellate cysts; Dinoflagellate cyst, calcareous; Event label; GeoB; Geosciences, University of Bremen; JOPSI-8; Latitude of event; Leonella granifera; Longitude of event; Melodomuncula berlinensis; Pernambugia tuberosa; Rhabdothorax spp.; Sample mass; Sample volume; Scrippsiella regalis; Scrippsiella trochoidea; see reference(s); Slide volume; Thoracosphaera heimii; van Veen Grab; VGRAB; Victor Hensen
    Materialart: Dataset
    Format: text/tab-separated-values, 124 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 6
    Publikationsdatum: 2023-07-10
    Schlagwort(e): ANT-X/4; ANT-X/6; AWI_Paleo; Brigantedinium; Counting, palynology; Dalella chathamensis; Echinidinium spp.; Event label; GeoB; Geosciences, University of Bremen; Impagidinium sp.; Impagidinium variaseptum; Latitude of event; Lingulodinium machaerophorum; Longitude of event; MIC; MiniCorer; MUC; MultiCorer; Nematosphaeropsis labyrinthus; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Pixidinopsis reticulata; Polarstern; Protoceratium reticulatum long; Protoperidiniaceae; PS21 06AQANTX_4; PS22; PS22/902; PS22/973; PS2230-1; PS2367-1; PS2376-2; Sample mass; Sample volume; see reference(s); Slide volume; South Atlantic; South Atlantic Ocean; Spiniferites
    Materialart: Dataset
    Format: text/tab-separated-values, 42 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 7
    Publikationsdatum: 2023-11-25
    Beschreibung: Coccolithophores are globally important marine calcifying phytoplankton. They contribute to the organic carbon pump through the primary production and the ballast of organic matter, and to the carbonate pump through the production of calcium carbonate. Here we compiled all available scanning electron microscopy (SEM) coccolithophore abundance observations. Taxa were standardized following NannoTax3 to a species level where possible. Subspecies (e.a. C. leptoporus subsp. leptoporus and C. leptoporus subsp. quadriperforatus) were grouped as single species. The database contains 2556 abundance observations from 35 different publications. The data span the period of 1993-2017, with observations from all ocean basins and all seasons, and at depths ranging from the surface to 5000 m. We limited our compilation to SEM observations (or observations which further identified samples with SEM) because SEM provides greater detail of coccolithophore diversity than more commonly used polarized light microscopy. Although this limits the number of observations, this allows for a more in-depth analysis of coccolithophore ecology, such as the ecological significance of the coccolithophore life cycle.
    Schlagwort(e): Acanthoica acanthifera; Acanthoica acanthos; Acanthoica biscayensis; Acanthoica maxima; Acanthoica quattrospina; Acanthoica spp.; Algirosphaera cucullata; Algirosphaera robusta; Algirosphaera spp.; Alisphaera capulata; Alisphaera extenta; Alisphaera gaudii; Alisphaera ordinata; Alisphaera pinnigera; Alisphaera quadrilatera; Alisphaera spp.; Alisphaera unicornis; Anthosphaera lafourcadii; Anthosphaera periperforata; Anthosphaera spp.; Balaniger virgulosa; Braarudosphaera bigelowii; Calcidiscus leptoporus; Calcidiscus spp.; Calciopappus caudatus; Calciopappus spp.; Calciosolenia brasiliensis; Calciosoleniaceae spp.; Calciosolenia murrayi; Calciosolenia spp.; Calicasphaera blokii; Calicasphaera concava; Calicasphaera diconstricta; Calyptrolithina multipora; Calyptrosphaera cialdii; Calyptrosphaera dentata; Calyptrosphaera heimdalae; Calyptrosphaera sphaeroidea; Canistrolithus spp.; Canistrolithus valliformis; Ceratolithus cristatus; Ceratolithus spp.; Chrysotila carterae; Chrysotila roscoffensis; Coccoliths, other; Coccolithus pelagicus; Corisphaera gracilis; Corisphaera spp.; Corisphaera tyrrheniensis; Coronosphaera maxima; Coronosphaera mediterranea; Coronosphaera spp.; Cyrtosphaera aculeata; Cyrtosphaera cidaris; Cyrtosphaera spp.; DATE/TIME; DEPTH, water; Discosphaera tubifera; Emiliania huxleyi; Ericiolus sp.; Florisphaera profunda; Flosculosphaera calceolariopsis; Formonsella pyramidosa; Gephyrocapsa ericsonii; Gephyrocapsa muellerae; Gephyrocapsa oceanica; Gephyrocapsa ornata; Gephyrocapsa spp.; Gladiolithus flabellatus; Gliscolithus amitakareniae; Hayaster perplexus; Helicosphaera carteri; Helicosphaera cornifera; Helicosphaera hyalina; Helicosphaera pavimentum; Helicosphaera spp.; Helicosphaera wallichii; Helladosphaera cornifera; Helladosphaera pienaarii; Helladosphaera vavilovii; Heterococcolithophores; Holococcolithophora kastriensis; Holococcolithophore spp.; Homozygosphaera spinosa; Homozygosphaera spp.; Homozygosphaera triarcha; Homozygosphaera vercelli; Hughesius youngii; Hymenomonas lacuna; Hymenomonas roseola; Hymenomonas spp.; Jomonlithus spp.; LATITUDE; LONGITUDE; Michaelsarsia adriaticus; Michaelsarsia elegans; Michaelsarsia spp.; Ochrosphaera neapolitana; Oolithotus antillarum; Oolithotus fragilis; Oolithotus spp.; Ophiaster formosus; Ophiaster hydroideus; Ophiaster minimus; Ophiaster reductus; Ophiaster spp.; Palusphaera sp.; Palusphaera spp.; Palusphaera vandelii; Pappomonas borealis; Pappomonas flabellifera; Pappomonas sp.; Pappomonas spp.; Papposphaera arctica; Papposphaera lepida; Papposphaera sagittifera; Papposphaera sp.; Papposphaera spp.; Papposphaera thomsenii; Picarola margalefii; Placorhombus ziveriae; Polycrater sp.; Polycrater spp.; Pontosphaera discopora; Pontosphaera japonica; Pontosphaera multipora; Pontosphaera spp.; Pontosphaera syracusana; Poricalyptra aurisinae; Poricalyptra isselii; Poricalyptra magnaghii; Poritectolithus maximus; Poritectolithus poritectum; Pseudowigwamma scenozonion; Reference/source; Reticulofenestra parvula; Reticulofenestra sessilis; Reticulofenestra spp.; Rhabdosphaera clavigera; Rhabdosphaera spp.; Rhabdosphaera xiphos; Sample method; Scyphosphaera apsteinii; Scyphosphaera spp.; see sample method; Solisphaera helianthiformis; Solisphaera spp.; Sphaerocalyptra adenensis; Sphaerocalyptra dermitzakii; Sphaerocalyptra quadridentata; Sphaerocalyptra sp.; Sphaerocalyptra spp.; Syracolithus bicorium; Syracolithus quadriperforatus; Syracolithus schilleri; Syracolithus sp.; Syracolithus spp.; Syracosphaera amoena; Syracosphaera ampliora; Syracosphaera anthos; Syracosphaera arethusae; Syracosphaera bannockii; Syracosphaera borealis; Syracosphaera castellata; Syracosphaera corolla; Syracosphaera delicata; Syracosphaera dilatata; Syracosphaera epigrosa; Syracosphaera exigua; Syracosphaera florida; Syracosphaera gaarderae; Syracosphaera halldalii; Syracosphaera hastata; Syracosphaera histrica; Syracosphaera lamina; Syracosphaera leptolepis; Syracosphaera marginiporata; Syracosphaera molischii; Syracosphaera nana; Syracosphaera nodosa; Syracosphaera noroitica; Syracosphaera orbiculus; Syracosphaera ossa; Syracosphaera prolongata; Syracosphaera protrudens; Syracosphaera pulchra; Syracosphaera reniformis; Syracosphaera rotula; Syracosphaera sp.; Syracosphaera spp.; Syracosphaera squamosa; Syracosphaera strigilis; Syracosphaera tumularis; Tergestiella adriatica; Tetralithoides quadrilaminata; Turrilithus latericioides; Turrisphaera spp.; Umbellosphaera irregularis; Umbellosphaera spp.; Umbellosphaera tenuis; Umbilicosphaera anulus; Umbilicosphaera foliosa; Umbilicosphaera hulburtiana; Umbilicosphaera sibogae; Umbilicosphaera spp.; Wigwamma antarctica; Wigwamma spp.; Wigwamma triradiata; Zygosphaera amoena; Zygosphaera marsilii
    Materialart: Dataset
    Format: text/tab-separated-values, 685008 data points
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  • 8
    Publikationsdatum: 2024-02-02
    Schlagwort(e): Calciodinellum albatrosianum; Calciodinellum levantinum; Calciodinellum sp.; Caracomia arctica; Counting, dinoflagellate cysts; Dinoflagellate cyst, calcareous; Event label; GeoB; GEOMAR; Geosciences, University of Bremen; Gravity corer (Kiel type); Helmholtz Centre for Ocean Research Kiel; Latitude of event; Leonella granifera; Longitude of event; M35/1; M35003-4; M35004-3; M35005-4; M35006-7; M35008-3; M35010-3; Meteor (1986); MUC; MultiCorer; Pernambugia tuberosa; Rhabdothorax spp.; Sample mass; Sample volume; Scrippsiella regalis; Scrippsiella trochoidea; see reference(s); SL; Slide volume; Thoracosphaera heimii
    Materialart: Dataset
    Format: text/tab-separated-values, 162 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 9
    Publikationsdatum: 2024-02-02
    Schlagwort(e): 06MT15_2; 06MT41_3; Amazon Fan; Amazon Shelf/Fan; Angola Basin; Ascencion Island; Atlantic Caribbean Margin; Brazil Basin; Calciodinellum albatrosianum; Calciodinellum elongatum; Calciodinellum levantinum; Calciodinellum sp.; Cape Basin; Caracomia arctica; Ceara Rise; Central Brazil Basin; Central South Atlantic; Continental slope off Brazil; Counting, dinoflagellate cysts; Dinoflagellate cyst, calcareous; Eastern Niger fan; Eastern Rio Grande Rise; Equatorial Atlantic; Event label; GeoB; GeoB1103-3; GeoB1104-5; GeoB1106-5; GeoB1115-4; GeoB1116-1; GeoB1117-3; GeoB1118-2; GeoB1119-2; GeoB1207-2; GeoB1211-1; GeoB1311-2; GeoB1710-2; GeoB1711-5; GeoB1712-2; GeoB1715-1; GeoB1716-2; GeoB1720-4; GeoB1721-4; GeoB1722-3; GeoB1724-4; GeoB1728-3; GeoB1729-1; GeoB2001-1; GeoB2007-1; GeoB2008-1; GeoB2009-1; GeoB2011-1; GeoB2111-2; GeoB2130-1; GeoB2207-2; GeoB3601-1; GeoB3602-2; GeoB3603-1; GeoB3604-4; GeoB3605-1; GeoB3606-2; GeoB3608-1; GeoB3715-1; GeoB3717-1; GeoB3718-8; GeoB3719-2; GeoB3720-3; GeoB3721-4; GeoB3723-2; GeoB3724-1; GeoB3801-5; GeoB3802-2; GeoB3803-1; GeoB3804-2; GeoB3806-2; GeoB3807-2; GeoB3808-7; GeoB3809-1; GeoB3810-2; GeoB3812-2; GeoB3822-1; GeoB3825-1; GeoB3826-2; GeoB3827-1; GeoB3906-9; GeoB3908-11; GeoB3909-1; GeoB3910-3; GeoB3911-1; GeoB3912-2; GeoB3913-2; GeoB3914-3; GeoB3916-1; GeoB3918-1; GeoB3925-2; GeoB3935-1; GeoB3936-2; GeoB3937-1; GeoB3938-2; GeoB3939-1; GeoB4303-6; GeoB4304-1; GeoB4306-1; GeoB4307-1; GeoB4308-2; GeoB4311-1; GeoB4315-1; GeoB4319-11; GeoB4401-3; GeoB4402-3; GeoB4403-2; GeoB4404-2; GeoB4407-2; GeoB4408-3; GeoB4410-3; GeoB4412-3; GeoB4413-1; GeoB4414-2; GeoB4415-2; GeoB4417-5; GeoB4418-2; GeoB4419-5; GeoB4420-3; GeoB4421-2; GeoB4422-1; GeoB4424-2; GeoB4901-5; GeoB4902-4; GeoB4903-2; GeoB4904-6; GeoB4905-2; GeoB4906-5; GeoB4907-2; GeoB4908-3; GeoB4909-3; GeoB4910-4; GeoB4911-1; GeoB4912-3; GeoB4913-3; GeoB4914-4; GeoB4915-2; GeoB4916-3; GeoB4917-4; GeoB4918-3; GeoB5002-1; GeoB5004-2; GeoB5006-1; GeoB5007-1; GeoB5008-3; GeoB5110-5; GeoB5115-2; GeoB5117-2; GeoB5121-2; GeoB5132-2; GeoB5136-2; GeoB5201-8; GeoB6201-4; GeoB6209-2; GeoB6212-2; GeoB6224-1; GeoB6231-1; GeoB6301-1; GeoB6308-1; GeoB6311-2; GeoB6313-2; GeoB6317-2; GeoB6330-1; GeoB6403-4; GeoB6407-2; GeoB6411-4; GeoB6421-1; GeoB6423-1; GeoB6427-1; GeoB6429-1; Geosciences, University of Bremen; Giant box corer; GKG; Gravity corer (Kiel type); Guayana continental slope; Latitude of event; Leonella granifera; Longitude of event; M12/1; M15/2; M20/2; M23/1; M23/2; M23/3; M34/1; M34/2; M34/3; M34/4; M38/1; M38/2; M41/1; M41/2; M41/3; M41/4; M46/2; M46/3; M46/4; M9/4; Melodomuncula berlinensis; Meteor (1986); Midatlantic Ridge; Mid Atlantic Ridge; Mid-Atlantic Ridge; MUC; MultiCorer; Namibia Continental Margin; NE off San Thome; Northeast Brasilian Margin; Northern Brasil Basin; Northern Cape Basin; northern Congo fan; Northwestern Vema Channel; off Angola; off Cameroon; off Gabun; off northern Gabun; off south Gabun; Pernambugia tuberosa; Rhabdothorax spp.; Sample mass; Sample volume; Scrippsiella regalis; Scrippsiella trochoidea; see reference(s); SL; Slide volume; South African margin; Southern Cape Basin; southern Congo fan; South of Cape Verde; Thoracosphaera heimii; Vema Channel
    Materialart: Dataset
    Format: text/tab-separated-values, 3782 data points
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  • 10
    Publikationsdatum: 2024-02-02
    Schlagwort(e): 06MT15_2; 06MT41_3; Amazon Fan; Angola Basin; Atlantic Caribbean Margin; B_LANDER; Bottom lander; Brazil Basin; Calcidiscus leptoporus; Cape Basin; Ceara Rise; Central South Atlantic; Continental slope off Brazil; East Brazil Basin; Eastern Niger fan; Eastern Rio Grande Rise; Emiliania huxleyi; Equatorial Atlantic; Event label; Florisphaera profunda; GeoB; GeoB1101-4; GeoB1102-3; GeoB1103-3; GeoB1104-5; GeoB1105-3; GeoB1106-5; GeoB1108-6; GeoB1111-5; GeoB1113-7; GeoB1114-3; GeoB1115-4; GeoB1116-1; GeoB1117-3; GeoB1118-2; GeoB1119-2; GeoB1203-2; GeoB1204-3; GeoB1207-2; GeoB1208-1; GeoB1211-2; GeoB1212-2; GeoB1213-2; GeoB1216-2; GeoB1217-1; GeoB1220-2; GeoB1311-2; GeoB1403-2; GeoB1413-2; GeoB1414-2; GeoB1415-1; GeoB1417-2; GeoB1418-1; GeoB1419-1; GeoB1420-1; GeoB1421-1; GeoB1503-2; GeoB1505-4; GeoB1506-1; GeoB1508-1; GeoB1515-2; GeoB1516-1; GeoB1517-2; GeoB1520-1; GeoB1521-2; GeoB1522-1; GeoB1523-2; GeoB1704-1; GeoB1707-2; GeoB1709-3; GeoB1710-2; GeoB1711-5; GeoB1712-2; GeoB1713-6; GeoB1714-1; GeoB1715-1; GeoB1716-2; GeoB1718-1; GeoB1721-4; GeoB1722-3; GeoB1724-3; GeoB1726-1; GeoB1728-3; GeoB1901-1; GeoB1902-3; GeoB1903-1; GeoB1904-1; GeoB1905-1; GeoB1907-1; GeoB1908-1; GeoB2008-1; GeoB2109-3; GeoB2111-2; GeoB2118-1; GeoB2130-1; GeoB2207-2; GeoB2704-1; GeoB2714-5; GeoB2905-1; GeoB2906-3; GeoB2907-1; GeoB2908-8; GeoB2909-1; GeoB2910-2; GeoB3602-2; GeoB3603-1; GeoB3604-4; GeoB3605-1; GeoB3606-2; GeoB3607-1; GeoB3608-1; GeoB3701-1; GeoB3702-1; GeoB3703-1; GeoB3705-1; GeoB3706-1; GeoB3707-1; GeoB3709-1; GeoB3710-1; GeoB3711-1; GeoB3715-1; GeoB3717-1; GeoB3718-4; GeoB3719-2; GeoB3720-1; GeoB3722-1; GeoB3723-1; GeoB3724-1; GeoB3725-1; GeoB3802-2; GeoB3807-2; GeoB3812-2; GeoB3826-2; GeoB3906-9; GeoB3910-3; GeoB3912-2; GeoB3936-2; GeoB4304-1; GeoB4407-2; GeoB4411-1; GeoB4412-3; GeoB4418-2; GeoB4420-3; GeoB4422-1; GeoB4901-5; GeoB4909-3; GeoB4914-4; GeoB5110-5; GeoB5112-5; GeoB5115-2; GeoB5121-2; GeoB5130-1; GeoB5132-2; GeoB5134-1; GeoB5136-2; GeoB5140-3; GeoB6201-3; GeoB6206-1; GeoB6210-1; GeoB6226-2; GeoB6402-6; GeoB6406-1; GeoB6410-1; GeoB6414-1; GeoB6416-2; GeoB6419-1; GeoB6426-2; Geosciences, University of Bremen; Gephyrocapsa ericsonii; Gephyrocapsa muellerae; Giant box corer; GIK17836-1; GIK17843-1; GIK17851-1; GIK17862-1; GIK17884-1; GIK17912-1; GKG; Gravity corer (Kiel type); Guayana continental slope; Guinea Basin; Latitude of event; Longitude of event; M12/1; M15/2; M16/1; M16/2; M20/2; M23/1; M23/2; M23/3; M29/1; M29/3; M34/1; M34/2; M34/3; M34/4; M38/1; M38/2; M41/1; M41/3; M46/2; M46/4; M9/4; Meteor (1986); Midatlantic Ridge; Mid Atlantic Ridge; MUC; MultiCorer; Namibia Continental Margin; Namibia continental slope; Northeast Brasilian Margin; Northern Cape Basin; Northwestern Vema Channel; off Gabun; Scanning electron microscope (SEM); Sierra Leone Rise; SL; Slope off Argentina; SO84; Sonne; Southern Cape Basin; southern Congo fan; ST. HELENA HOTSPOT; Syracosphaera nodosa; Total counts; Walvis Ridge; West Angola Basin; Western Equatorial Atlantic
    Materialart: Dataset
    Format: text/tab-separated-values, 1022 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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