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  • Data  (108)
  • 2015-2019  (106)
  • 2010-2014  (2)
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Year
  • 1
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Jackson, Rebecca; Carlson, Anders Eskil; Hillaire-Marcel, Claude; Wacker, Lukas; Vogt, Christoph; Kucera, Michal (2017): Asynchronous instability of the North American-Arctic and Greenland ice sheets during the last deglaciation. Quaternary Science Reviews, 164, 140-153, https://doi.org/10.1016/j.quascirev.2017.03.020
    Publication Date: 2023-03-03
    Description: The chronology of deglacial meltwater pulses from the Laurentide Ice Sheet is well documented. However, the deglacial history of the North American-Arctic (north-eastern Laurentide and Innuitian) and western Greenland ice sheets draining into the Labrador Sea via Baffin Bay is less well constrained. Here we present new high-resolution, radiocarbon-dated records from the central Baffin Bay spanning ~17 to 10 kyr BP and documenting the full deglacial history of Baffin Bay. Sedimentological and geochemical data confirm the presence of two periods of enhanced detrital carbonate delivery, termed Baffin Bay Detrital Carbonate Events (BBDCs). These events are dated to ~14.2-13.7 kyr BP and ~12.7-11 kyr BP. They are synchronous across Baffin Bay and their mineralogical signature indicates a common source of detrital carbonate from northern Baffin Bay. The first event, BBDC 1, postdates Heinrich Event 1 and the second event, BBDC 0, predates the recently revised timing of Heinrich Event 0. The onset of the BBDC events appears not to be systematically linked to Greenland temperature change as they occur during both interstadial and stadial periods. This indicates that deglaciation of North American-Arctic and western Greenland ice sheets with the associated iceberg and meltwater discharge were decoupled from the dominant North Atlantic climate mode, where iceberg discharge events from the Laurentide Ice Sheet occurred during stadial periods.
    Keywords: Center for Marine Environmental Sciences; MARUM
    Type: Dataset
    Format: application/zip, 7 datasets
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  • 2
    Publication Date: 2023-06-27
    Keywords: 178-1096A; 178-1096B; Calculated; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Event label; Joides Resolution; Lanthanum/Lutetium ratio; Lead-206/Lead-204 ratio; Lead-206/Lead-204 ratio, error; Lead-207/Lead-204 ratio; Lead-207/Lead-204 ratio, error; Lead-208/Lead-204 ratio; Lead-208/Lead-204 ratio, error; Leg178; Neodymium-143/Neodymium-144 ratio; Neodymium-143/Neodymium-144 ratio, error; Samarium/Zirconium ratio; South Pacific Ocean; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; ε-Neodymium
    Type: Dataset
    Format: text/tab-separated-values, 377 data points
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  • 3
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    Unknown
    PANGAEA
    Publication Date: 2023-06-27
    Keywords: 178-1096A; 178-1096B; DEPTH, sediment/rock; DRILL; Drilling/drill rig; Event label; Joides Resolution; Leg178; Sand; South Pacific Ocean
    Type: Dataset
    Format: text/tab-separated-values, 104 data points
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  • 4
    Publication Date: 2024-02-02
    Keywords: Aluminium, area, total counts; Calcium, area, total counts; Center for Marine Environmental Sciences; Color, L*, lightness; Davis Strait; DEPTH, sediment/rock; GC; GeoTü SL 174; Gravity corer; Iron, area, total counts; Maria S. Merian; MARUM; MSM09/2; MSM09/2_467-3; Size fraction 〉 0.063 mm, sand; Strontium, area, total counts; Titanium, area, total counts; X-ray fluorescence core scanner (XRF) II, Bremen, (AVAATECH)
    Type: Dataset
    Format: text/tab-separated-values, 1895 data points
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  • 5
    Publication Date: 2024-02-17
    Keywords: BATS_100382; BATS_100383; BATS_100384; BATS_100385; BATS_100386; BATS_100387; BATS_100388; BATS_100389; BATS_100390; BATS_100391; BATS_100392; BATS_100393; BATS_100394; BATS_100395; BATS_100396; BATS_100397; BATS_100398; BATS_100399; BATS_100400; BATS_100401; BATS_100402; BATS_100403; BATS_100404; BATS_100405; BATS_100406; BATS_100407; BATS_100408; BATS_100409; BATS_100410; BATS_100411; BATS_100412; BATS_100413; BATS_100414; BATS_100415; BATS_100416; BATS_100417; BATS_100418; BATS_100419; BATS_100420; BATS_100421; BATS_100422; BATS_100423; BATS_100424; BATS_100425; BATS_100426; BATS_100427; BATS_100428; BATS_100429; BATS_100430; BATS_100431; BATS_100432; BATS_100433; BATS_100434; BATS_100435; BATS_100436; BATS_100437; BATS_100438; BATS_100439; BATS_100440; BATS_100441; BATS_100442; BATS_100443; BATS_100444; BATS_100445; BATS_100446; BATS_100447; BATS_100448; BATS_100449; BATS_100450; BATS_100451; BATS_100452; BATS_100453; BATS_100454; BATS_100455; BATS_100456; BATS_100457; BATS_100458; BATS_100459; BATS_100460; BATS_100461; BATS_100462; BATS_100463; BATS_100464; BATS_100465; BATS_100466; BATS_100467; BATS_100468; BATS_100469; BATS_100470; BATS_100471; BATS_100472; BATS_100473; BATS_100474; BATS_100475; BATS_100476; BATS_100477; BATS_100478; BATS_100479; BATS_100480; BATS_100481; BATS_100482; BATS_100483; BATS_100484; BATS_100485; BATS_100486; BATS_100487; BATS_100488; BATS_100489; BATS_100490; BATS_100491; BATS_100492; BATS_100493; BATS_100494; BATS_100495; BATS_100496; BATS_100497; BATS_100498; BATS_100499; BATS_100500; BATS_100501; BATS_100502; BATS_100503; BATS_100504; BATS_100505; BATS_100506; BATS_100507; BATS_100508; BATS_100509; BATS_100510; BATS_100511; BATS_100512; BATS_100513; BATS_100514; BATS_100515; BATS_100516; BATS_100517; BATS_100518; BATS_100519; BATS_100520; BATS_100521; BATS_100522; BATS_100523; BATS_100524; BATS_100525; BATS_100526; BATS_100527; BATS_100528; BATS_100529; BATS_100530; BATS_100531; BATS_100532; BATS_100533; BATS_100534; BATS_100535; BATS_100536; BATS_100537; BATS_100538; BATS_100539; BATS_100540; BATS_100541; BATS_100542; BATS_100543; BATS_100544; BATS_100545; BATS_100546; BATS_100547; BATS_100548; BATS_100549; BATS_100550; BATS_100551; BATS_100552; BATS_100553; BATS_100554; BATS_100555; BATS_100556; BATS_100557; BATS_100558; BATS_100559; BATS_100560; BATS_100561; BATS_100562; BATS_100563; BATS_100564; BATS_100565; BATS_100566; BATS_100567; BATS_100568; BATS_100569; BATS_100570; BATS_100571; BATS_100572; BATS_100573; BATS_100574; BATS_100575; BATS_100576; BATS_100577; BATS_100578; BATS_100579; BATS_100580; BATS_100581; BATS_100582; BATS_100583; BATS_100584; BATS_100585; BATS_100586; BATS_100587; BATS_100588; BATS_100589; BATS_100590; BATS_100591; BATS_100592; BATS_100593; BATS_100594; BATS_100595; BATS_100596; BATS_100597; BATS_100598; BATS_100599; BATS_100600; BATS_100601; BATS_100602; BATS_100603; BATS_100604; BATS_100605; BATS_100606; BATS_100607; BATS_100608; BATS_100609; BATS_100610; BATS_100611; BATS_100612; BATS_100613; BATS_100614; BATS_100615; BATS_100616; BATS_100617; BATS_100618; BATS_100619; BATS_100620; BATS_100621; BATS_100622; BATS_100623; BATS_100624; BATS_100625; BATS_100626; BATS_100627; BATS_100628; BATS_100629; BATS_100630; BATS_100631; BATS_100632; BATS_100633; BATS_100634; BATS_100635; BATS_100636; BATS_100637; BATS_100638; BATS_100639; BATS_100640; BATS_100641; BATS_100642; BATS_100643; BATS_100644; BATS_100645; BATS_100646; BATS_100647; BATS_100648; BATS_100649; BATS_100650; BATS_100651; BATS_100652; BATS_100653; BATS_100654; BATS_100655; BATS_100656; BATS_100657; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Event label; Flow cytometry; Latitude of event; Longitude of event; Prokaryotes; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 2330 data points
    Location Call Number Expected Availability
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  • 6
    Publication Date: 2024-02-27
    Keywords: Calculated after Luo et al. (2012); Chlorophyll a; Comment; CTD, Sea-Bird SBE 911plus; Date/Time of event; DEPTH, water; Determination of phosphate (Murphy & Riley, 1962); Diazotrophs, total biomass as carbon; Event label; Fluorescence-based quantitative real-time PCR (qPCR); Heterocyst, biomass; Latitude of event; Longitude of event; MAREDAT_Diazotrophs_Collection; Nitrate; Phosphate; Richelia, abundance expressed in number of nifH gene copies; Richelia, associated species; Richelia, biological trait, ratio expressed in mass of carbon per amount of nifH gene copies; Salinity; Seawater analysis (Strickland & Parsons, 1968); South Pacific Ocean; SPO2003-03-15; SPO2003-03-16; SPO2003-03-17; SPO2003-03-18; SPO2003-03-19; SPO2003-03-20; SPO2003-03-21; SPO2003-03-22-1; SPO2003-03-22-2; SPO2003-03-24; SPO2003-03-25; SPO2003-03-28; SPO2003-03-29; SPO2003-03-30; SPO2003-03-31; SPO2003-04-02; SPO2003-04-03; SPO2003-04-05; SPO2003-04-06; SPO2003-04-07; SPO2003-04-08; SPO2003-04-09; SPO2003-04-10; SPO2003-04-12; SPO2003-04-13; Temperature, water; Trichodesmium, abundance expressed in number of nifH gene copies; Trichodesmium, biomass as carbon; Trichodesmium abundance, total; Unicellular cyanobacteria, biomass; Unicellular cyanobacteria-A, abundance expressed in number of nifH gene copies; Unicellular cyanobacteria-A, biological trait, ratio expressed in mass of carbon per amount of nifH gene copies; Unicellular cyanobacteria-B, abundance expressed in number of nifH gene copies; Unicellular cyanobacteria-B, biological trait, ratio expressed in mass of carbon per amount of nifH gene copies; Water sample; WS
    Type: Dataset
    Format: text/tab-separated-values, 2993 data points
    Location Call Number Expected Availability
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  • 7
    Publication Date: 2024-02-02
    Keywords: AGE; Age, 14C calibrated, CALIB 7.0 with MARINE13 calibration curve (Reimer et al. 2013); Age, maximum/old; Age, minimum/young; Calculated; Center for Marine Environmental Sciences; Davis Strait; DEPTH, sediment/rock; GC; GeoTü SL 170; Gravity corer; Maria S. Merian; MARUM; MSM09/2; MSM09/2_455-13; Sedimentation rate
    Type: Dataset
    Format: text/tab-separated-values, 1836 data points
    Location Call Number Expected Availability
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  • 8
    Publication Date: 2024-02-02
    Keywords: Aluminium, area, total counts; Calcium, area, total counts; Center for Marine Environmental Sciences; Color, L*, lightness; Davis Strait; DEPTH, sediment/rock; GC; GeoTü SL 170; Gravity corer; Iron, area, total counts; Maria S. Merian; MARUM; MSM09/2; MSM09/2_455-13; Size fraction 〉 0.063 mm, sand; Strontium, area, total counts; Titanium, area, total counts; X-ray fluorescence core scanner (XRF) II, Bremen, (AVAATECH)
    Type: Dataset
    Format: text/tab-separated-values, 4203 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2024-02-02
    Keywords: Age, dated; Age, dated material; Age, dated standard deviation; Calendar age; Calendar age, maximum/old; Calendar age, minimum/young; Center for Marine Environmental Sciences; Davis Strait; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GC; GeoTü SL 174; Gravity corer; Laboratory code/label; Maria S. Merian; MARUM; Mass; MSM09/2; MSM09/2_467-3
    Type: Dataset
    Format: text/tab-separated-values, 115 data points
    Location Call Number Expected Availability
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  • 10
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Taucher, Jan; Jones, Jacob; James, A; Brzezinski, Mark A; Carlson, C A; Riebesell, Ulf; Passow, Uta (2015): Combined effects of CO2 and temperature on carbon uptake and partitioning by the marine diatoms Thalassiosira weissflogii and Dactyliosolen fragilissimus. Limnology and Oceanography, 60(3), 901-919, https://doi.org/10.1002/lno.10063
    Publication Date: 2024-03-15
    Description: Carbon uptake and partitioning of two globally abundant diatom species, Thalassiosira weissflogii and Dactyliosolen fragilissimus, was investigated in batch culture experiments under four conditions: ambient (15°C, 400 µatm), high CO2 (15°C, 1000 µatm), high temperature (20°C, 400 µatm), and combined (20°C, 1000 µatm). The experiments were run from exponential growth into the stationary phase (six days after nitrogen depletion), allowing us to track biogeochemical dynamics analogous to bloom situations in the ocean. Elevated CO2 had a fertilizing effect and enhanced uptake of dissolved inorganic carbon (DIC) by about 8% for T. weissflogii and by up to 39% for D. fragilissimus. This was also reflected in higher cell numbers, build-up of particulate and dissolved organic matter, and transparent exopolymer particles. The CO2 effects were most prominent in the stationary phase when nitrogen was depleted and CO2(aq) concentrations were low. This indicates that diatoms in the high CO2 treatments could take up more DIC until CO2 concentrations in seawater became so low that carbon limitation occurs. These results suggest that, contrary to common assumptions, diatoms could be highly sensitive to ongoing changes in oceanic carbonate chemistry, particularly under nutrient limitation. Warming from 15 to 20 °C had a stimulating effect on one species but acted as a stressor on the other species, highlighting the importance of species-specific physiological optima and temperature ranges in the response to ocean warming. Overall, these sensitivities to CO2 and temperature could have profound impacts on diatoms blooms and the biological pump.
    Keywords: Alkalinity, total; Aragonite saturation state; Bacterial production; Bicarbonate ion; Biomass/Abundance/Elemental composition; Bottles or small containers/Aquaria (〈20 L); Calcite saturation state; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbon, organic, dissolved; Carbon, organic, particulate; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Chromista; Dactyliosolen fragilissimus; Duration, number of days; Fluorescence; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Laboratory experiment; Laboratory strains; Nitrate; Nitrogen, organic, dissolved; Nitrogen, organic, particulate; Not applicable; OA-ICC; Ocean Acidification International Coordination Centre; Ochrophyta; Other metabolic rates; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; pH; Phosphate; Phytoplankton; Replicate; Salinity; Silicate; Single species; Species; Spectrophotometric; Temperature; Temperature, water; Thalassiosira weissflogii; Transparent exopolymer particles as Gum Xanthan equivalents per volume
    Type: Dataset
    Format: text/tab-separated-values, 4976 data points
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