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  • 1
    Publication Date: 2020-08-07
    Description: NW African climate shows orbital and millennial-scale variations, which are tightly connected to changes in marine productivity. We present an organic-walled dinoflagellate cyst (dinocyst) record from a sediment core off Cape Yubi at about 27°N in the Canary Basin covering the time period from 47 to 3 ka before present (BP). The dinocyst record reflects differences in upwelling intensity and seasonality as well as the influence of fluvial input. Sea-level changes play an important role for the upwelling pattern and productivity signals at the core site. Within the studied time interval, four main phases were distinguished. (1) From 45 to 24 ka BP, when sea-level was mostly about 75 m lower than today, high relative abundances of cysts of heterotrophic taxa point to enhanced upwelling activity, especially during Heinrich Events, while relatively low dinocyst accumulation rates indicate that filament activity at the core location was strongly reduced. (2) At sea-level lowstand during the LGM to H1, dinocyst accumulation rates suggest that local filament formation was even more inhibited. (3) From the early Holocene to about 8 ka BP, extraordinary high accumulation rates of most dinocyst species, especially of Lingulodinium machaerophorum, suggest that nutrient supply via fluvial input increased and rising sea-level promoted filament formation. At the same time, the upwelling season prolongated. (4) A relative increase in cysts of photoautotrophic taxa from about 8 ka BP onwards indicates more stratified conditions while fluvial input decreased. Our study shows that productivity records can be very sensitive to regional features. From the dinocyst data we infer that marine surface productivity off Cape Yubi during glacial times was within the scale of modern times but extremely enhanced during deglaciation.
    Type: Article , PeerReviewed
    Format: text
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  • 2
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    Unknown
    PANGAEA
    In:  Supplement to: Hessler, Ines; Young, Martin; Holzwarth, Ulrike; Mohtadi, Mahyar; Lückge, Andreas; Behling, Hermann (2013): Imprint of eastern Indian Ocean surface oceanography on modern organic-walled dinoflagellate cyst assemblages. Marine Micropaleontology, 101, 89-105, https://doi.org/10.1016/j.marmicro.2013.02.005
    Publication Date: 2023-03-03
    Description: Assemblages of organic-walled dinoflagellate cysts (dinocysts) from 116 marine surface samples have been analysed to assess the relationship between the spatial distribution of dinocysts and modern local environmental conditions [e.g. sea surface temperature (SST), sea surface salinity (SSS), productivity] in the eastern Indian Ocean. Results from the percentage analysis and statistical methods such as multivariate ordination analysis and end-member modelling, indicate the existence of three distinct environmental and oceanographic regions in the study area. Region 1 is located in western and eastern Indonesia and controlled by high SSTs and a low nutrient content of the surface waters. The Indonesian Throughflow (ITF) region (Region 2) is dominated by heterotrophic dinocyst species reflecting the region's high productivity. Region 3 is encompassing the area offshore north-west and west Australia which is characterised by the water masses of the Leeuwin Current, a saline and nutrient depleted southward current featuring energetic eddies.
    Keywords: Center for Marine Environmental Sciences; MARUM
    Type: Dataset
    Format: application/zip, 5 datasets
    Location Call Number Limitation Availability
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  • 3
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    Unknown
    PANGAEA
    In:  Supplement to: Holzwarth, Ulrike; Esper, Oliver; Zonneveld, Karin A F (2007): Distribution of organic-walled dinoflagellate cysts in shelf surface sediments of the Benguela upwelling system in relationship to environmental conditions. Marine Micropaleontology, 64(1-2), 91-119, https://doi.org/10.1016/j.marmicro.2007.04.001
    Publication Date: 2023-05-12
    Description: To obtain insight in the relationship between the spatial distribution of organic-walled dinoflagellate cysts (dinocysts) and local environmental conditions, fifty-eight surface sediment samples from the coastal shelf off SW Africa were investigated on their dinocyst content with special focus on the two main river systems and the active upwelling that characterise this region. To avoid possible overprint by species-selective preservation, samples have been selected mainly from shelf sites where high sedimentation rates and/or low bottom water oxygen concentrations prevail. Multivariate ordination analyses have been carried out to investigate the relationship between the distribution patterns of individual species to environmental parameters of the upper water column and sediment transport processes. The main oceanographical variables at the surface (temperature, salinity, nutrients chlorophyll-a) in the region show onshore-offshore gradients. This pattern is reflected in the dinocyst associations with high relative abundances of heterotrophic dinocyst species in neritic regions characterised by high chlorophyll-aand low salinity conditions in surface waters. Phototrophic dinocyst species, notably Operculodinium centrocarpum, dominate in the more oceanic area. Differences in the distribution of phototrophic dinocyst species can be related to sea surface salinity and sea surface temperature gradients and to a lesser extent to chlorophyll-a concentrations. Apart from longitudinal gradients the dinocyst distribution clearly reflects regional environmental features. Six groups of species can be distinguished, characteristic for (1) coastal regions (cysts of Polykrikos kofoidii and Selenopemphix quanta), (2) the vicinity of active upwelling (Brigantedinium spp., Echinidinium aculeatum, Echinidinium spp. and Echinidinium transparantum), (3) river mouths (Lejeunecysta oliva, cysts of Protoperidinium americanum, Selenopemphix nephroides and Votadinium calvum), (4) slope and open ocean sediments (Dalella chathamense, Impagidinium patulum and Operculodinium centrocarpum, (5) the southern Benguela region (south of 24°S) (Spiniferites ramosus) and (6) the northern Benguela region (north of 24°S) (Nematosphaeropsis labyrinthus and Pyxidinopsis reticulata). No indication of overprint of the palaeo-ecological signal by lateral transport of allochthonous species could be observed.
    Keywords: 2278; 2282; 2340; 2341; 2682; 2684; 2687; 2727; 2736; 2753; 2861; 2865; 3091; 3175; 3177; 3179; 3183; 3187; 3255; 3265; 3292; 3318; 3347; 3457; 3513; 3540; 3634; 3639; 3642; 3651; 3664; 3666; 3674; 3700; 3807; 3816; 3820; 3821; 3844; 3883; 3884; 3885; 3886; 3889; 3901; 3902; 3908; 3917; 3918; 3933; 4649; 4668; 4687; 4724; 4741; 4804; 6314; 6320; Benguela Upwelling; Center for Marine Environmental Sciences; GC; Gravity corer; MARUM; TBD236; TBD236_2278; TBD236_2282; TBD239; TBD239_2340; TBD239_2341; TBD257; TBD257_2682; TBD257_2684; TBD257_2687; TBD257_2727; TBD257_2736; TBD257_2753; TBD261; TBD261_2861; TBD261_2865; TBD268; TBD268_3091; TBD268_3175; TBD268_3177; TBD268_3179; TBD268_3183; TBD268_3187; TBD268_3255; TBD268_3265; TBD268_3292; TBD268_3318; TBD273; TBD273_3347; TBD273_3457; TBD273_3513; TBD273_3540; TBD279; TBD279_3634; TBD279_3639; TBD279_3642; TBD279_3651; TBD279_3664; TBD279_3666; TBD279_3674; TBD279_3700; TBD283; TBD283_3807; TBD283_3816; TBD283_3820; TBD283_3821; TBD283_3844; TBD283_3883; TBD283_3884; TBD283_3885; TBD283_3886; TBD283_3889; TBD283_3901; TBD283_3902; TBD283_3908; TBD283_3917; TBD283_3918; TBD283_3933; TBD300; TBD300_4649; TBD300_4668; TBD300_4687; TBD300_4724; TBD300_4741; TBD300_4804; TBD398; TBD398_6314; TBD398_6320; Thomas B. Davie
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Limitation Availability
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  • 4
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    Unknown
    PANGAEA
    In:  Supplement to: Holzwarth, Ulrike; Meggers, Helge; Esper, Oliver; Kuhlmann, Holger; Freudenthal, Tim; Hensen, Christian; Zonneveld, Karin A F (2010): NW African climate variations during the last 47,000 years: Evidence from organic-walled dinoflagellate cysts. Palaeogeography, Palaeoclimatology, Palaeoecology, 291(3-4), 443-455, https://doi.org/10.1016/j.palaeo.2010.03.013
    Publication Date: 2023-06-27
    Description: NW African climate shows orbital and millenial-scale variations, which are tightly connected to changes in marine productivity. We present an organic-walled dinoflagellate cyst (dinocyst) record from a sediment core off Cape Yubi at about 27°N in the Canary Basin covering the time period from 47 to 3ka before present (BP). The dinocyst record reflects differences in upwelling intensity and seasonality as well as the influence of fluvial input. Sea-level changes play an important role for the upwelling pattern and productivity signals at the core site. Within the studied time interval, four main phases were distinguished. (1) From 45 to 24ka BP, when sea-level was mostly about 75m lower than today, high relative abundances of cysts of heterotrophic taxa point to enhanced upwelling activity, especially during Heinrich Events, while relatively low dinocyst accumulation rates indicate that filament activity at the core location was strongly reduced. (2) At sea-level lowstand during the LGM to H1, dinocyst accumulation rates suggest that local filament formation was even more inhibited. (3) From the early Holocene to about 8ka BP, extraordinary high accumulation rates of most dinocyst species, especially of Lingulodinium machaerophorum, suggest that nutrient supply via fluvial input increased and rising sea-level promoted filament formation. At the same time, the upwelling season prolongated. (4) A relative increase in cysts of photoautotrophic taxa from about 8ka BP on indicates more stratified conditions while fluvial input decreased. Our study shows that productivity records can be very sensitive to regional features. From the dinocyst data we infer that marine surface productivity off Cape Yubi during glacial times was within the scale of modern times but extremely enhanced during deglaciation.
    Keywords: Center for Marine Environmental Sciences; GeoB5546-2; KL; M42/4b; MARUM; Meteor (1986); Piston corer (BGR type)
    Type: Dataset
    Format: application/zip, 4 datasets
    Location Call Number Limitation Availability
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  • 5
    Publication Date: 2023-06-27
    Keywords: Accumulation rate, total organic carbon; AGE; Aluminium; Calculated from weight/volume; Center for Marine Environmental Sciences; Density, dry bulk; DEPTH, sediment/rock; GeoB5546-2; KL; M42/4b; MARUM; Meteor (1986); Piston corer (BGR type); Potassium, chi-square; Titanium; X-ray fluorescence core scanner (XRF) II, Bremen, (AVAATECH)
    Type: Dataset
    Format: text/tab-separated-values, 2143 data points
    Location Call Number Limitation Availability
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  • 6
    Publication Date: 2023-06-27
    Keywords: Age, 14C AMS; Age, 14C calibrated, CALIB (Stuiver & Reimer, 1993); Age, dated; Age, dated material; Age, dated standard deviation; Age, maximum/old; Age, minimum/young; Center for Marine Environmental Sciences; Counting 〉150 µm fraction; DEPTH, sediment/rock; GeoB5546-2; KL; M42/4b; MARUM; Meteor (1986); Piston corer (BGR type); Reference/source; Sample code/label
    Type: Dataset
    Format: text/tab-separated-values, 42 data points
    Location Call Number Limitation Availability
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  • 7
    Publication Date: 2023-06-27
    Keywords: Center for Marine Environmental Sciences; DEPTH, sediment/rock; GeoB5546-2; Globigerina bulloides, δ18O; Isotope ratio mass spectrometry; KL; M42/4b; MARUM; Meteor (1986); Piston corer (BGR type)
    Type: Dataset
    Format: text/tab-separated-values, 166 data points
    Location Call Number Limitation Availability
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  • 8
    Publication Date: 2023-06-27
    Keywords: B-9403; B-9411; B-9412; B-9415; B-9422; B-9426; B-9427; B-9429; B-9430; B-9432; B-9433; B-9434; B-9438; B-9439; B-9440; B-9441; B-9450; B-9451; B-9452; BARAT-1994; Baruna Jaya I; Center for Marine Environmental Sciences; DEPTH, sediment/rock; Elevation of event; End member; Event label; FR10/95; FR10/95-1; FR10/95-11; FR10/95-12; FR10/95-13; FR10/95-14; FR10/95-17; FR10/95-18; FR10/95-2; FR10/95-20; FR10/95-21; FR10/95-22; FR10/95-23; FR10/95-24; FR10/95-25; FR10/95-26; FR10/95-27; FR10/95-28; FR10/95-29; FR10/95-4; FR10/95-5; FR10/95-6; FR10/95-7; FR10/95-8; FR10/95-9; FR10/95 GC-1; FR10/95 GC-2; FR10/95 GC-27; FR10/95 GC-28; FR10/95 GC-29; FR10/95 GC-4; FR10/95 GC-5; FR10/95 GC-6; FR10/95 GC-7; FR10/95 GC-8; FR2/96; FR2/96-1; FR2/96-2; FR2/96-27; FR2/96-28; FR2/96-29; FR2/96-3; FR2/96-4; FR2/96-5; FR2/96-6; FR2/96-7; FR2/96 GC-1; Franklin; GC; GeoB10015-1; GeoB10022-6; GeoB10025-3; GeoB10027-3; GeoB10028-4; GeoB10029-3; GeoB10031-3; GeoB10036-3; GeoB10041-3; GeoB10058-1; Gravity corer; Indian Ocean; Latitude, northbound; Latitude of event; Longitude, eastbound; Longitude of event; MARUM; MUC; MultiCorer; PABESIA; Sample ID; SHI-9011; SHI-9013; SHI-9016; SHI-9017; SHI-9018; SHI-9019; SHI-9020; SHI-9022; SHI-9025; SHI-9028; SHI-9035; SHI-9037; SHI-9038; SHI-9039; SHI-9040; SHI-9041; SHI-9043; SHI-9045; SHI-9047; SHI-9048; SHIVA-1990; SO184/1; SO184/2; SO189/2; SO189/2_002; SO189/2_009; SO189/2_011; SO189/2_017; SO189/2_018; SO189/2_027; SO189/2_028; SO189/2_031; SO189/2_032; SO189/2_034; SO189/2_035; SO189/2_038; SO189/2_048; SO189/2_052; SO189/2_053; SO189/2_059; SO189/2_060; SO189/2_064; SO189/2_072; SO189/2_076; SO189/2_080; SO189/2_084; SO189/2_087; SO189/2_089; SO189/2_101; SO189/2_104; SO189/2_112; SO189/2_114; SO189/2_118; SO189/2_121; SO189/2_139; SO189/2_146; SO189/2_147; Sonne; SUMATRA
    Type: Dataset
    Format: text/tab-separated-values, 696 data points
    Location Call Number Limitation Availability
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  • 9
    Publication Date: 2023-06-27
    Keywords: B-9403; B-9411; B-9412; B-9415; B-9422; B-9426; B-9427; B-9429; B-9430; B-9432; B-9433; B-9434; B-9438; B-9439; B-9440; B-9441; B-9450; B-9451; B-9452; BARAT-1994; Baruna Jaya I; Calculated; Center for Marine Environmental Sciences; Depth, relative; DEPTH, sediment/rock; Dinoflagellate cyst, concentration; Elevation of event; Event label; FR10/95; FR10/95-1; FR10/95-11; FR10/95-12; FR10/95-13; FR10/95-14; FR10/95-17; FR10/95-18; FR10/95-2; FR10/95-20; FR10/95-21; FR10/95-22; FR10/95-23; FR10/95-24; FR10/95-25; FR10/95-26; FR10/95-27; FR10/95-28; FR10/95-29; FR10/95-4; FR10/95-5; FR10/95-6; FR10/95-7; FR10/95-8; FR10/95-9; FR10/95 GC-1; FR10/95 GC-2; FR10/95 GC-27; FR10/95 GC-28; FR10/95 GC-29; FR10/95 GC-4; FR10/95 GC-5; FR10/95 GC-6; FR10/95 GC-7; FR10/95 GC-8; FR2/96; FR2/96-1; FR2/96-2; FR2/96-27; FR2/96-28; FR2/96-29; FR2/96-3; FR2/96-4; FR2/96-5; FR2/96-6; FR2/96-7; FR2/96 GC-1; Franklin; GC; GeoB10015-1; GeoB10022-6; GeoB10025-3; GeoB10027-3; GeoB10028-4; GeoB10029-3; GeoB10031-3; GeoB10036-3; GeoB10041-3; GeoB10058-1; Gravity corer; Indian Ocean; Latitude of event; Longitude of event; MARUM; MUC; MultiCorer; PABESIA; Ratio; SHI-9011; SHI-9013; SHI-9016; SHI-9017; SHI-9018; SHI-9019; SHI-9020; SHI-9022; SHI-9025; SHI-9028; SHI-9035; SHI-9037; SHI-9038; SHI-9039; SHI-9040; SHI-9041; SHI-9043; SHI-9045; SHI-9047; SHI-9048; SHIVA-1990; SO184/1; SO184/2; SO189/2; SO189/2_002; SO189/2_009; SO189/2_011; SO189/2_017; SO189/2_018; SO189/2_027; SO189/2_028; SO189/2_031; SO189/2_032; SO189/2_034; SO189/2_035; SO189/2_038; SO189/2_048; SO189/2_052; SO189/2_053; SO189/2_059; SO189/2_060; SO189/2_064; SO189/2_072; SO189/2_076; SO189/2_080; SO189/2_084; SO189/2_087; SO189/2_089; SO189/2_101; SO189/2_104; SO189/2_112; SO189/2_114; SO189/2_118; SO189/2_121; SO189/2_139; SO189/2_146; SO189/2_147; Sonne; SUMATRA
    Type: Dataset
    Format: text/tab-separated-values, 348 data points
    Location Call Number Limitation Availability
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  • 10
    Publication Date: 2023-06-27
    Keywords: B-9403; B-9411; B-9412; B-9415; B-9422; B-9426; B-9427; B-9429; B-9430; B-9432; B-9433; B-9434; B-9438; B-9439; B-9440; B-9441; B-9450; B-9451; B-9452; BARAT-1994; Baruna Jaya I; Center for Marine Environmental Sciences; DEPTH, sediment/rock; Elevation of event; End member; Event label; FR10/95; FR10/95-1; FR10/95-11; FR10/95-12; FR10/95-13; FR10/95-14; FR10/95-17; FR10/95-18; FR10/95-2; FR10/95-20; FR10/95-21; FR10/95-22; FR10/95-23; FR10/95-24; FR10/95-25; FR10/95-26; FR10/95-27; FR10/95-28; FR10/95-29; FR10/95-4; FR10/95-5; FR10/95-6; FR10/95-7; FR10/95-8; FR10/95-9; FR10/95 GC-1; FR10/95 GC-2; FR10/95 GC-27; FR10/95 GC-28; FR10/95 GC-29; FR10/95 GC-4; FR10/95 GC-5; FR10/95 GC-6; FR10/95 GC-7; FR10/95 GC-8; FR2/96; FR2/96-1; FR2/96-2; FR2/96-27; FR2/96-28; FR2/96-29; FR2/96-3; FR2/96-4; FR2/96-5; FR2/96-6; FR2/96-7; FR2/96 GC-1; Franklin; GC; GeoB10015-1; GeoB10022-6; GeoB10025-3; GeoB10027-3; GeoB10028-4; GeoB10029-3; GeoB10031-3; GeoB10036-3; GeoB10041-3; GeoB10058-1; Gravity corer; Indian Ocean; Latitude, northbound; Latitude of event; Longitude, eastbound; Longitude of event; MARUM; MUC; MultiCorer; PABESIA; SHI-9011; SHI-9013; SHI-9016; SHI-9017; SHI-9018; SHI-9019; SHI-9020; SHI-9022; SHI-9025; SHI-9028; SHI-9035; SHI-9037; SHI-9038; SHI-9039; SHI-9040; SHI-9041; SHI-9043; SHI-9045; SHI-9047; SHI-9048; SHIVA-1990; SO184/1; SO184/2; SO189/2; SO189/2_002; SO189/2_009; SO189/2_011; SO189/2_017; SO189/2_018; SO189/2_027; SO189/2_028; SO189/2_031; SO189/2_032; SO189/2_034; SO189/2_035; SO189/2_038; SO189/2_048; SO189/2_052; SO189/2_053; SO189/2_059; SO189/2_060; SO189/2_064; SO189/2_072; SO189/2_076; SO189/2_080; SO189/2_084; SO189/2_087; SO189/2_089; SO189/2_101; SO189/2_104; SO189/2_112; SO189/2_114; SO189/2_118; SO189/2_121; SO189/2_139; SO189/2_146; SO189/2_147; Sonne; SUMATRA
    Type: Dataset
    Format: text/tab-separated-values, 580 data points
    Location Call Number Limitation Availability
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