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  • 2010-2014  (437,134)
  • 1980-1984  (12)
  • 2010  (437,134)
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  • 1
    Publication Date: 2024-05-23
    Keywords: Bottle number; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; EGEE3; EGEE3_10; EGEE3_11; EGEE3_12; EGEE3_13; EGEE3_14; EGEE3_15; EGEE3_16; EGEE3_17; EGEE3_18; EGEE3_19; EGEE3_20; EGEE3_21; EGEE3_24; EGEE3_25; EGEE3_26; EGEE3_27; EGEE3_4; EGEE3_5; EGEE3_6; EGEE3_7; Event label; Helium; L Atalante; Latitude of event; Longitude of event; Mass spectrometer, noble gas, MAP215-50; Neon; Pressure, water; South Atlantic Ocean; δ Helium-3
    Type: Dataset
    Format: text/tab-separated-values, 601 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2024-05-23
    Keywords: Bottle number; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; EGEE2; EGEE2_10; EGEE2_11; EGEE2_12; EGEE2_13; EGEE2_14; EGEE2_15; EGEE2_16; EGEE2_17; EGEE2_18; EGEE2_19; EGEE2_20; EGEE2_21; EGEE2_22; EGEE2_23; EGEE2_24; EGEE2_25; EGEE2_30; EGEE2_31; EGEE2_32; EGEE2_33; EGEE2_34; EGEE2_35; EGEE2_36; EGEE2_37; EGEE2_38; EGEE2_39; EGEE2_40; EGEE2_41; EGEE2_42; EGEE2_43; EGEE2_44; EGEE2_55; EGEE2_56; EGEE2_57; EGEE2_58; EGEE2_59; EGEE2_6; EGEE2_60; EGEE2_61; EGEE2_7; EGEE2_8; EGEE2_9; Event label; Gulf of Guinea; Helium; Latitude of event; Le Suroît; Longitude of event; Mass spectrometer, noble gas, MAP215-50; Neon; Pressure, water; South Atlantic Ocean; δ Helium-3
    Type: Dataset
    Format: text/tab-separated-values, 944 data points
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  • 3
    Publication Date: 2024-05-23
    Keywords: Bottle number; CTD/Rosette; CTD 16; CTD 18; CTD 19; CTD 31; CTD 38; CTD 39; CTD 43; CTD 44; CTD 46; CTD 47; CTD 48; CTD 49; CTD 50; CTD 51; CTD 52; CTD 53; CTD 54; CTD 55; CTD 56; CTD 57; CTD 58; CTD 59; CTD 60; CTD 61; CTD 62; CTD 63; CTD 64; CTD 65; CTD 66; CTD 67; CTD 68; CTD 69; CTD 70; CTD 71; CTD 72; CTD 73; CTD 74; CTD 75; CTD 76; CTD 77; CTD 78; CTD 79; CTD 80; CTD 81; CTD 82; CTD 83; CTD 84; CTD 85; CTD 86; CTD 87; CTD 88; CTD 89; CTD 90; CTD 92; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Helium; Latitude of event; Longitude of event; M68/2; M68/2_145; M68/2_148; M68/2_149; M68/2_163; M68/2_175; M68/2_176; M68/2_181; M68/2_182; M68/2_185; M68/2_186; M68/2_187; M68/2_189; M68/2_190; M68/2_192; M68/2_193; M68/2_194; M68/2_195; M68/2_196; M68/2_197; M68/2_198; M68/2_199; M68/2_200; M68/2_201; M68/2_202; M68/2_203; M68/2_204; M68/2_205; M68/2_206; M68/2_207; M68/2_208; M68/2_209; M68/2_210; M68/2_211; M68/2_212; M68/2_213; M68/2_214; M68/2_215; M68/2_216; M68/2_217; M68/2_218; M68/2_219; M68/2_220; M68/2_221; M68/2_222; M68/2_223; M68/2_224; M68/2_225; M68/2_226; M68/2_227; M68/2_228; M68/2_229; M68/2_230; M68/2_231; M68/2_233; Mass spectrometer, noble gas, MAP215-50; Meteor (1986); Neon; Pressure, water; δ Helium-3
    Type: Dataset
    Format: text/tab-separated-values, 1047 data points
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  • 4
    Publication Date: 2024-05-22
    Description: Zooxanthellate colonies of the scleractinian coral Astrangia poculata were grown under combinations of ambient and elevated nutrients (5 µM NO, 0.3 µM PO4, and 2nM Fe) and CO2 (780 ppmv) treatments for a period of 6 months. Coral calcification rates, estimated from buoyant weights, were not significantly affected by moderately elevated nutrients at ambient CO2 and were negatively affected by elevated CO2 at ambient nutrient levels. However, calcification by corals reared under elevated nutrients combined with elevated CO2 was not significantly different from that of corals reared under ambient conditions, suggesting that CO2 enrichment can lead to nutrient limitation in zooxanthellate corals. A conceptual model is proposed to explain how nutrients and CO2 interact to control zooxanthellate coral calcification. Nutrient limited corals are unable to utilize an increase in dissolved inorganic carbon (DIC) as nutrients are already limiting growth, thus the effect of elevated CO2 on saturation state drives the calcification response. Under nutrient replete conditions, corals may have the ability to utilize more DIC, thus the calcification response to CO2 becomes the product of a negative effect on saturation state and a positive effect on gross carbon fixation, depending upon which dominates, the calcification response can be either positive or negative. This may help explain how the range of coral responses found in different studies of ocean acidification can be obtained.
    Keywords: Alkalinity, Gran titration (Gran, 1950); Alkalinity, total; Alkalinity, total, standard deviation; Animalia; Aragonite saturation state; Astrangia poculata; Benthic animals; Benthos; Bicarbonate ion; Bottles or small containers/Aquaria (〈20 L); Buoyant weighing technique according to Davies (1989); Calcification/Dissolution; Calcification rate; Calcification rate, standard deviation; Calcite saturation state; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, partial pressure, standard deviation; Cnidaria; Coast and continental shelf; Continuous flow injection system, FIAlab 2600; EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; Experimental treatment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Hach conductivity probe; Infrared pCO2 analyzer (Qubit S151); Laboratory experiment; Macro-nutrients; Nitrate and Nitrite; Nitrate and Nitrite, standard deviation; Onset logger; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); pH; Phosphate; Phosphate, standard deviation; Salinity; Salinity, standard deviation; Silicate; Silicon, standard deviation; Single species; Temperate; Temperature, standard deviation; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 104 data points
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  • 5
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    PANGAEA
    In:  Supplement to: Munro, David R; Dunbar, Robert B; Mucciarone, David A; Arrigo, Kevin R; Long, Matthew C (2010): Stable isotope composition of dissolved inorganic carbon and particulate organic carbon in sea ice from the Ross Sea, Antarctica. Journal of Geophysical Research, 115(C9), C09005, https://doi.org/10.1029/2009JC005661
    Publication Date: 2024-05-22
    Description: We examined controls on the carbon isotopic composition of sea ice brines and organic matter during cruises to the Ross Sea, Antarctica in November/December 1998 and November/December 2006. Brine samples were analyzed for salinity, nutrients, total dissolved inorganic carbon (sum CO2), and the 13C/12C ratio of Sum CO2 (d13C(sum CO2)). Particulate organic matter from sea ice cores was analyzed for percent particulate organic carbon (POC), percent total particulate nitrogen (TPN), and stable carbon isotopic composition (d13C(POC)). Sum CO2 in sea ice brines ranged from 1368 to 7149 µmol/kg, equivalent to 1483 to 2519 µmol/kg when normalized to 34.5 psu salinity (s sum CO2), the average salinity of Ross Sea surface waters. Sea ice primary producers removed up to 34% of the available sum CO2, an amount much higher than the maximum removal observed in sea ice free water. Carbonate precipitation and CO2 degassing may reduce s sum CO2 by a similar amount (e.g., 30%) in the most hypersaline sea ice environments, although brine volumes are low in very cold ice that supports these brines. Brine d13C(sum CO2) ranged from -2.6 to +8.0 per mil while d13C(POC) ranged from -30.5 to -9.2 per mil. Isotopic enrichment of the sum CO2 pool via net community production accounts for some but not all carbon isotopic enrichment of sea ice POC. Comparisons of s sum CO2, d13C(sum CO2), and d13C(POC) within sea ice suggest that epsilon p (the net photosynthetic fractionation factor) for sea ice algae is ~8 per mil smaller than the epsilon p observed for phytoplankton in open water regions of the Ross Sea. These results have implications for modeling of carbon uptake and transformation in the ice-covered ocean and for reconstruction of past sea ice extent based on stable isotopic composition of organic matter in sediment cores.
    Keywords: Ammonium; Ammonium, standard deviation; Auto-analyzer II, Technicon; Carbon, organic, particulate; Carbon, organic, particulate, integrated; Carbon, organic, particulate, standard deviation; Carbon dioxide; Carbon dioxide, standard deviation; CORSACS II; DATE/TIME; Date/time end; Event label; International Polar Year (2007-2008); IPY; Mass spectrometer Finnigan MAT 252; Nathaniel B. Palmer; NBP0608; NBP0608_all; NBP9807; NBP9807_all; NBP9807_early; NBP9807_late; Nitrate; Nitrate, standard deviation; Nitrite; Nitrite, standard deviation; Nitrogen, inorganic; Nitrogen, inorganic, standard deviation; Nitrogen, particulate; Nitrogen, particulate, standard deviation; Phosphate; Phosphate, standard deviation; ROAVERRS; Ross Sea; Salinity, brine; Salinity, standard deviation; Sample amount, subset; Sample type; Silicate; Silicate, standard deviation; SNOW; Snow/ice sample; δ13C, carbon dioxide, atmospheric; δ13C, carbon dioxide, standard deviation; δ13C, particulate organic carbon; δ13C, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 404 data points
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  • 6
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    PANGAEA
    In:  Institute of Atmospheric Sciences and Climate of the Italian National Research Council, Bologna
    Publication Date: 2024-05-22
    Keywords: Antarctica; Baseline Surface Radiation Network; BSRN; Concordia Station, Dome C; DATE/TIME; Diffuse radiation; Diffuse radiation, maximum; Diffuse radiation, minimum; Diffuse radiation, standard deviation; Direct radiation; Direct radiation, maximum; Direct radiation, minimum; Direct radiation, standard deviation; DOM; HEIGHT above ground; Long-wave downward radiation; Long-wave downward radiation, maximum; Long-wave downward radiation, minimum; Long-wave downward radiation, standard deviation; Monitoring station; MONS; Pyranometer, Kipp & Zonen, CM22, SN 050109, WRMC No. 74006; Pyranometer, Kipp & Zonen, CM22, SN 050111, WRMC No. 74007; Pyrgeometer, Kipp & Zonen, CG4, SN 050768, WRMC No. 74003; Pyrheliometer, Kipp & Zonen, CH1, SN 050392, WRMC No. 74004; Short-wave downward (GLOBAL) radiation; Short-wave downward (GLOBAL) radiation, maximum; Short-wave downward (GLOBAL) radiation, minimum; Short-wave downward (GLOBAL) radiation, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 622616 data points
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  • 7
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    PANGAEA
    In:  Institute of Atmospheric Sciences and Climate of the Italian National Research Council, Bologna
    Publication Date: 2024-05-22
    Keywords: Antarctica; Baseline Surface Radiation Network; BSRN; Concordia Station, Dome C; DATE/TIME; Diffuse radiation; Diffuse radiation, maximum; Diffuse radiation, minimum; Diffuse radiation, standard deviation; Direct radiation; Direct radiation, maximum; Direct radiation, minimum; Direct radiation, standard deviation; DOM; HEIGHT above ground; Long-wave downward radiation; Long-wave downward radiation, maximum; Long-wave downward radiation, minimum; Long-wave downward radiation, standard deviation; Monitoring station; MONS; Pyranometer, Kipp & Zonen, CM22, SN 050109, WRMC No. 74006; Pyranometer, Kipp & Zonen, CM22, SN 050111, WRMC No. 74007; Pyrgeometer, Kipp & Zonen, CG4, SN 050768, WRMC No. 74003; Pyrheliometer, Kipp & Zonen, CH1, SN 050392, WRMC No. 74004; Short-wave downward (GLOBAL) radiation; Short-wave downward (GLOBAL) radiation, maximum; Short-wave downward (GLOBAL) radiation, minimum; Short-wave downward (GLOBAL) radiation, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 632396 data points
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  • 8
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    PANGAEA
    In:  Institute of Atmospheric Sciences and Climate of the Italian National Research Council, Bologna
    Publication Date: 2024-05-22
    Keywords: Antarctica; Baseline Surface Radiation Network; BSRN; Concordia Station, Dome C; DATE/TIME; Diffuse radiation; Diffuse radiation, maximum; Diffuse radiation, minimum; Diffuse radiation, standard deviation; Direct radiation; Direct radiation, maximum; Direct radiation, minimum; Direct radiation, standard deviation; DOM; HEIGHT above ground; Long-wave downward radiation; Long-wave downward radiation, maximum; Long-wave downward radiation, minimum; Long-wave downward radiation, standard deviation; Monitoring station; MONS; Pyranometer, Kipp & Zonen, CM22, SN 050109, WRMC No. 74006; Pyranometer, Kipp & Zonen, CM22, SN 050111, WRMC No. 74007; Pyrgeometer, Kipp & Zonen, CG4, SN 050768, WRMC No. 74003; Pyrheliometer, Kipp & Zonen, CH1, SN 050392, WRMC No. 74004; Short-wave downward (GLOBAL) radiation; Short-wave downward (GLOBAL) radiation, maximum; Short-wave downward (GLOBAL) radiation, minimum; Short-wave downward (GLOBAL) radiation, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 684280 data points
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  • 9
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    PANGAEA
    In:  Institute of Atmospheric Sciences and Climate of the Italian National Research Council, Bologna
    Publication Date: 2024-05-22
    Keywords: Antarctica; Baseline Surface Radiation Network; BSRN; Concordia Station, Dome C; DATE/TIME; DOM; HEIGHT above ground; Long-wave downward radiation; Long-wave downward radiation, maximum; Long-wave downward radiation, minimum; Long-wave downward radiation, standard deviation; Monitoring station; MONS; Pyranometer, Kipp & Zonen, CM22, SN 050109, WRMC No. 74006; Pyrgeometer, Kipp & Zonen, CG4, SN 050768, WRMC No. 74003; Short-wave downward (GLOBAL) radiation; Short-wave downward (GLOBAL) radiation, maximum; Short-wave downward (GLOBAL) radiation, minimum; Short-wave downward (GLOBAL) radiation, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 343304 data points
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  • 10
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    PANGAEA
    In:  Institute of Atmospheric Sciences and Climate of the Italian National Research Council, Bologna
    Publication Date: 2024-05-22
    Keywords: Antarctica; Baseline Surface Radiation Network; BSRN; Concordia Station, Dome C; DATE/TIME; Diffuse radiation; Diffuse radiation, maximum; Diffuse radiation, minimum; Diffuse radiation, standard deviation; Direct radiation; Direct radiation, maximum; Direct radiation, minimum; Direct radiation, standard deviation; DOM; HEIGHT above ground; Long-wave downward radiation; Long-wave downward radiation, maximum; Long-wave downward radiation, minimum; Long-wave downward radiation, standard deviation; Monitoring station; MONS; Pyranometer, Kipp & Zonen, CM22, SN 050109, WRMC No. 74006; Pyranometer, Kipp & Zonen, CM22, SN 050111, WRMC No. 74007; Pyrgeometer, Kipp & Zonen, CG4, SN 050768, WRMC No. 74003; Pyrheliometer, Kipp & Zonen, CH1, SN 050392, WRMC No. 74004; Short-wave downward (GLOBAL) radiation; Short-wave downward (GLOBAL) radiation, maximum; Short-wave downward (GLOBAL) radiation, minimum; Short-wave downward (GLOBAL) radiation, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 655904 data points
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