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  • PANGAEA  (29)
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  • 1
    Publication Date: 2023-03-16
    Description: Underway (U)CTD data were collected during an August-September 2018 expedition to the Arctic Ocean aboard the RV Akademik Tryoshnikov, and was a joint expedition between the German-Russian project CATS (Changing Arctic Transpolar System) and the US-Russian project NABOS (Nansen and Amundsen Basin Observing System). The UCTD was operated mostly in yoyo-mode during selected transects between the shelf and the basin across the continental slope of the Eurasian Basin while the ship was transiting with 8 - 14 knots. The UCTD probe records the start time of the measurements and stores 16 samples each second internally. The exact location of each profile was subsequently found based on the time stamp from the cruise track. The unpumped conductivity sensor has a slower response time than the temperature sensor, which makes the computation of salinity from conductivity and temperature potentially spiky, especially in the pycnocline or in frontal regions. We followed the recommendation of the manufacturer to calculate salinity with Seabird processing software. In shallower waters (〈200m), the water column was profiled all the way to the seafloor, while in deeper waters, only the upper 200-350m were sampled. Shipboard echo soundings were not available, actual water depths at the profile locations need to be extracted from bathymetric charts (for instance IBCAO ). The UCTD was calibrated against a Seabird 911 CTD during the cruise. Temperature measurements were comparable to the ship's CTD and remained uncorrected, the processed salinities include a salinity correction based on a deviation from the ship's CTD.
    Keywords: 1; 10; 100; 101; 102; 103; 104; 105; 106; 107; 108; 109; 11; 110; 111; 112; 113; 114; 115; 116; 117; 118; 119; 12; 120; 121; 122; 123; 124; 125; 126; 127; 128; 129; 13; 130; 131; 132; 133; 134; 135; 136; 137; 138; 139; 14; 140; 141; 142; 143; 144; 145; 146; 147; 148; 149; 15; 150; 151; 152; 153; 154; 155; 156; 157; 158; 159; 16; 160; 161; 162; 163; 164; 165; 166; 167; 168; 169; 17; 170; 171; 172; 173; 174; 175; 176; 177; 178; 179; 18; 180; 181; 182; 183; 184; 185; 19; 2; 20; 21; 22; 23; 24; 25; 26; 27; 28; 29; 3; 30; 31; 32; 33; 34; 35; 36; 37; 38; 39; 4; 40; 41; 42; 43; 44; 45; 46; 47; 48; 49; 5; 50; 51; 52; 53; 54; 55; 56; 57; 58; 59; 6; 60; 61; 62; 63; 64; 65; 66; 67; 68; 69; 7; 70; 71; 72; 73; 74; 75; 76; 77; 78; 79; 8; 80; 81; 82; 83; 84; 85; 86; 87; 88; 89; 9; 90; 91; 92; 93; 94; 95; 96; 97; 98; 99; Akademik Tryoshnikov; Arctic Ocean; AT18_005-1; AT18_005-10; AT18_005-11; AT18_005-12; AT18_005-13; AT18_005-16; AT18_005-17; AT18_005-18; AT18_005-19; AT18_005-2; AT18_005-20; AT18_005-25; AT18_005-26; AT18_005-3; AT18_005-4; AT18_005-5; AT18_005-6; AT18_005-7; AT18_005-8; AT18_005-9; AT18_010-1; AT18_010-10; AT18_010-11; AT18_010-12; AT18_010-13; AT18_010-14; AT18_010-15; AT18_010-16; AT18_010-17; AT18_010-18; AT18_010-19; AT18_010-2; AT18_010-20; AT18_010-21; AT18_010-22; AT18_010-23; AT18_010-24; AT18_010-25; AT18_010-26; AT18_010-27; AT18_010-28; AT18_010-29; AT18_010-3; AT18_010-30; AT18_010-31; AT18_010-32; AT18_010-33; AT18_010-34; AT18_010-35; AT18_010-36; AT18_010-37; AT18_010-38; AT18_010-39; AT18_010-4; AT18_010-40; AT18_010-41; AT18_010-42; AT18_010-43; AT18_010-44; AT18_010-45; AT18_010-46; AT18_010-47; AT18_010-48; AT18_010-49; AT18_010-5; AT18_010-51; AT18_010-52; AT18_010-54; AT18_010-55; AT18_010-6; AT18_010-7; AT18_010-8; AT18_010-9; AT18_015-1; AT18_015-10; AT18_015-11; AT18_015-12; AT18_015-13; AT18_015-14; AT18_015-15; AT18_015-16; AT18_015-17; AT18_015-18; AT18_015-19; AT18_015-2; AT18_015-20; AT18_015-21; AT18_015-22; AT18_015-3; AT18_015-4; AT18_015-5; AT18_015-6; AT18_015-7; AT18_015-8; AT18_015-9; AT18_019_4-1; AT18_019_4-10; AT18_019_4-11; AT18_019_4-12; AT18_019_4-13; AT18_019_4-14; AT18_019_4-15; AT18_019_4-2; AT18_019_4-3; AT18_019_4-4; AT18_019_4-5; AT18_019_4-6; AT18_019_4-7; AT18_019_4-8; AT18_019_4-9; AT18_027-1; AT18_027-10; AT18_027-11; AT18_027-12; AT18_027-13; AT18_027-14; AT18_027-15; AT18_027-16; AT18_027-17; AT18_027-18; AT18_027-19; AT18_027-2; AT18_027-20; AT18_027-21; AT18_027-22; AT18_027-23; AT18_027-24; AT18_027-25; AT18_027-26; AT18_027-27; AT18_027-28; AT18_027-29; AT18_027-3; AT18_027-30; AT18_027-31; AT18_027-32; AT18_027-33; AT18_027-34; AT18_027-35; AT18_027-36; AT18_027-37; AT18_027-4; AT18_027-5; AT18_027-6; AT18_027-7; AT18_027-8; AT18_027-9; AT18_101-1; AT18_101-10; AT18_101-11; AT18_101-12; AT18_101-13; AT18_101-14; AT18_101-15; AT18_101-16; AT18_101-17; AT18_101-18; AT18_101-19; AT18_101-2; AT18_101-20; AT18_101-21; AT18_101-22; AT18_101-23; AT18_101-24; AT18_101-25; AT18_101-26; AT18_101-27; AT18_101-28; AT18_101-29; AT18_101-3; AT18_101-30; AT18_101-31; AT18_101-32; AT18_101-33; AT18_101-34; AT18_101-35; AT18_101-36; AT18_101-37; AT18_101-38; AT18_101-4; AT18_101-5; AT18_101-6; AT18_101-7; AT18_101-8; AT18_101-9; AT2018, TICE, NABOS; AWI_PhyOce; Campaign of event; CATS; CATS - The Changing Arctic Transpolar System; CTD, underway; CTD-UW; Date/Time of event; DEPTH, water; East Siberian Sea; Event label; Laptev Sea; Latitude of event; Longitude of event; Optional event label; Physical Oceanography @ AWI; Pressure, water; Salinity; shelf-basin transects; Temperature, water; Transdrift-XXIV; underway CTD; UnderwayCTD (UCTD), Oceanscience
    Type: Dataset
    Format: text/tab-separated-values, 84081 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-10-28
    Description: A standard Sea-Bird Electronics SBE911+ CTD system with a temperature and conductivity sensor was used to measure temperature, conductivity, and pressure at 180 stations during the Russian-international expedition Transarktika-2019 Leg 1 in the Barents Sea in March-May 2019 aboard the research vessel Akademik Tryoshnikov. We followed the manufacturer's recommendation to calculate salinity using Seabird processing software. The salinity is reported as Practical Salinity (PSU). Data were averaged at depth ranges of 1 m. Data are provided by the Antarctic and Arctic Research Institute (AARI) and reprocessed at the Helmholtz Centre for Polar and Marine Research, Alfred Wegener Institute. The Transarktika-2019 expedition was made possible by funding from the Russian Federal Service for Hydrometeorology and Environmental Monitoring (Roshydromet). The scientific research was also supported by RFBR grants No. 18-05-60048 and 18-05-60083.
    Keywords: Akademik Tryoshnikov; Arctic Ocean; AT19001-1; AT19002-1; AT19004-1; AT19005-1; AT19006-1; AT19007-1; AT19008-1; AT19009-1; AT19010-1; AT19011-1; AT19012-1; AT19013-1; AT19014-1; AT19015-1; AT19016-1; AT19017-1; AT19018-1; AT19019-1; AT19020-1; AT19021-1; AT19022-1; AT19023-1; AT19024-1; AT19025-1; AT19026-1; AT19027-1; AT19028-1; AT19029-1; AT19030-1; AT19031-1; AT19032-1; AT19033-1; AT19034-1; AT19035-1; AT19036-1; AT19037-1; AT19038-1; AT19039-1; AT19040-1; AT19041-1; AT19042-1; AT19043-1; AT19044-1; AT19045-1; AT19046-1; AT19047-1; AT19048-1; AT19049-1; AT19050-1; AT19051-1; AT19052-1; AT19053-1; AT19054-1; AT19055-1; AT19056-1; AT19057-1; AT19058-1; AT19059-1; AT19060-1; AT19061-1; AT19062-1; AT19063-1; AT19064-1; AT19065-1; AT19066-1; AT19067-1; AT19068-1; AT19069-1; AT19070-1; AT19071-1; AT19072-1; AT19073-1; AT19074-1; AT19075-1; AT19076-1; AT19077-1; AT19078-1; AT19079-1; AT19080-1; AT19081-1; AT19082-1; AT19083-1; AT19084-1; AT19085-1; AT19086-1; AT19086-2; AT19086-3; AT19087-1; AT19088-1; AT19089-1; AT19089-2; AT19089-3; AT19090-1; AT19091-1; AT19092-1; AT19092-2; AT19092-3; AT19093-1; AT19094-1; AT19095-1; AT19095-2; AT19095-3; AT19096-1; AT19097-1; AT19098-1; AT19099-1; AT19100-1; AT19101-1; AT19102-1; AT19103-1; AT19104-1; AT19105-1; AT19106-1; AT19107-1; AT19108-1; AT19109-1; AT19110-1; AT19111-1; AT19112-1; AT19113-1; AT19114-1; AT19115-1; AT19116-1; AT19117-1; AT19118-1; AT19119-1; AT19120-1; AT19121-1; AT19122-1; AT19123-1; AT19124-1; AT19125-1; AT19126-1; AT19127-1; AT19128-1; AT19130-1; AT19131-1; AT19132-1; AT19133-1; AT19134-1; AT19135-1; AT19136-1; AT19137-1; AT19138-1; AT19139-1; AT19140-1; AT19141-1; AT19142-1; AT19148-1; AT19149-1; AT19150-1; AT19151-1; AT19152-1; AT19153-1; AT19154-1; AT19155-1; AT19156-1; AT19157-1; AT19158-1; AT19159-1; AT19160-1; AT19161-1; AT19162-1; AT19163-1; AT19164-1; AT19165-1; AT19166-1; AT19167-1; AT19168-1; AT19169-1; AT19170-1; AT19171-1; AT19172-1; AT19173-1; AT19174-1; AT19175-1; AT19176-1; AT19177-1; AT19178-1; AT19179-1; Barents Sea; Calculated; CATS; CATS - The Changing Arctic Transpolar System; Conductivity; CTD, Sea-Bird, SBE 911plus; CTD/Rosette; DATE/TIME; Density, sigma-theta (0); DEPTH, water; ELEVATION; Event label; Ice drift experiment SEVERNYI POLYUS 2019; Kara Sea; LATITUDE; LONGITUDE; Number of scans; Pressure, water; Salinity; St. Anna Trough; Temperature, water; Temperature, water, potential; Transarktika-2019_Leg1
    Type: Dataset
    Format: text/tab-separated-values, 288309 data points
    Location Call Number Expected Availability
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  • 3
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    Unknown
    PANGAEA
    In:  Supplement to: Makhotin, Mikhail; Ivanov, Vladimir (2016): Circulation of the Atlantic water in the Barents Sea based on hydrological survey data and numerical simulation. Proceedings of Hydrometcentre of Russia, 361, 169-191
    Publication Date: 2024-03-05
    Description: Boundary position of the Barents Sea between the North Atlantic and the Arctic basin causes a high degree of impact processes occurring in it and on the weather and climate in Northern Eurasia. The most important role in the formation of the hydrological regime of the sea plays warm and salty water incoming from the North Atlantic. The article examines the features of Atlantic water propagation in the Barents Sea based on a detailed hydrological survey and numerical simulation data with a high spatial resolution. Implementation of joint analysis confirmed several previously known features of water dynamics and thermohaline structure and clarified the nature of circulation and interaction of water masses in the little known north-eastern area of the Barents Sea.
    Type: Dataset
    Format: application/zip, 4 datasets
    Location Call Number Expected Availability
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  • 4
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Laukert, Georgi; Makhotin, Mikhail; Petrova, Mariia V; Frank, Martin; Hathorne, Ed C; Bauch, Dorothea; Böning, Philipp; Kassens, Heidemarie (2019): Water mass transformation in the Barents Sea inferred from radiogenic neodymium isotopes, rare earth elements and stable oxygen isotopes. Chemical Geology, 511, 416-430, https://doi.org/10.1016/j.chemgeo.2018.10.002
    Publication Date: 2024-03-05
    Description: Nearly half the inflow of warm and saline Atlantic Water (AW) to the Arctic Ocean is substantially cooled and freshened in the Barents Sea, which is therefore considered a key region for water mass transformation in the Arctic Mediterranean. Numerous studies have focused on this transformation and the increasing influence of AW on Arctic climate and biodiversity, yet geochemical investigations of these processes have been scarce. Using the first comprehensive data set of the distributions of dissolved radiogenic neodymium (Nd) isotopes (expressed as ɛNd), rare earth elements (REE) and stable oxygen isotope (δ18O) compositions from this region we are able to constrain the transport and transformation of AW in the Barents Sea and to investigate which processes change the chemical composition of the water masses beyond what is expected from circulation and mixing. Inflowing AW and Norwegian Coastal Water (NCW) both exhibit distinctly unradiogenic ɛNd signatures of -12.4 and -14.5, respectively, whereas cold and dense Polar Water (PW) has considerably more radiogenic ɛNd signatures reaching up to -8.1. Locally formed Barents Sea Atlantic Water (BSAW) and Barents Sea Arctic Atlantic Water (BSAAW) are encountered in the northeastern Barents Sea and have intermediate ɛNd values resulting from admixture of PW containing small amounts of riverine freshwater from the Ob (〈 ~1.1 %) to AW and NCW. Similar to the Laptev Sea, the dissolved Nd isotope composition in the Barents Sea seems to be mainly controlled by water mass advection and mixing despite its shallow water depth. Strikingly, the BSAW and BSAAW are marked by the lowest REE concentrations reaching 11 pmol/kg for Nd ([Nd]), which in contrast to the Nd isotopes, cannot be attributed to the admixture of REE-rich Ob freshwater to AW or NCW ([Nd] = 16.7, and 22 pmol/kg, respectively) and instead reflects REE removal from the dissolved phase with preferential removal of the light over the heavy REEs. The REE removal is, however, not explainable by estuarine REE behavior alone, suggesting that scavenging by (re)suspended (biogenic) particles occurs locally in the Barents Sea. Regardless of the exact cause of REE depletion, we show that AW transformation is accompanied by geochemical changes independent of water mass mixing.
    Keywords: Calculated; Cerium, dissolved; Classification; CTD; CTD/Rosette; CTD-RO; Date/Time of event; Density, sigma500; Density, sigma-theta (0); DEPTH, water; Dysprosium, dissolved; Elevation of event; Erbium, dissolved; Europium, dissolved; Event label; Gadolinium, dissolved; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Holmium, dissolved; Isotope dilution; Lanthanum, dissolved; Laptev Sea System; Latitude of event; Longitude of event; LSS; Lutetium, dissolved; Neodymium, dissolved; Neodymium-143/Neodymium-144 ratio; Neodymium-143/Neodymium-144 ratio, standard deviation; Oxygen; Oxygen saturation; pH; Phosphate; Praseodymium, dissolved; Pressure, water; Professor Molchanov; PU2014; PU2014/042; PU2014/049; PU2014/054; PU2014/099; PU2014/115; PU2014/119; PU2014/126; PU2014/129; Recalculated from ml/l by using (ml/l)*44.66; Salinity; Samarium, dissolved; Silicate; Temperature, water; Temperature, water, potential; Terbium, dissolved; Thulium, dissolved; Ytterbium, dissolved; Yttrium, dissolved; δ18O, water; ε-Neodymium; ε-Neodymium, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 1023 data points
    Location Call Number Expected Availability
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  • 5
    Publication Date: 2024-03-05
    Description: This is the nutrient data (silicate and phosphate) measured on water bottle samples during PU2014 to the Barents Sea following standard procedures (Grasshoff et al., 2009).
    Keywords: Bottle number; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Oxygen; Oxygen saturation; pH; Phosphate; Professor Molchanov; PU2014; PU2014/039; PU2014/040; PU2014/041; PU2014/042; PU2014/043; PU2014/044; PU2014/045; PU2014/046; PU2014/047; PU2014/048; PU2014/049; PU2014/050; PU2014/051; PU2014/052; PU2014/053; PU2014/054; PU2014/055; PU2014/056; PU2014/057; PU2014/058; PU2014/059; PU2014/060; PU2014/061; PU2014/062; PU2014/063; PU2014/064; PU2014/065; PU2014/066; PU2014/067; PU2014/068; PU2014/069; PU2014/070; PU2014/071; PU2014/072; PU2014/073; PU2014/074; PU2014/075; PU2014/077; PU2014/079; PU2014/080; PU2014/081; PU2014/082; PU2014/083; PU2014/084; PU2014/085; PU2014/086; PU2014/087; PU2014/088; PU2014/089; PU2014/090; PU2014/091; PU2014/092; PU2014/093; PU2014/094; PU2014/095; PU2014/096; PU2014/097; PU2014/098; PU2014/099; PU2014/100; PU2014/101; PU2014/102; PU2014/103; PU2014/104; PU2014/105; PU2014/106; PU2014/107; PU2014/108; PU2014/109; PU2014/110; PU2014/111; PU2014/112; PU2014/113; PU2014/114; PU2014/115; PU2014/116; PU2014/117; PU2014/118; PU2014/119; PU2014/120; PU2014/121; PU2014/122; PU2014/123; PU2014/124; PU2014/125; PU2014/126; PU2014/127; PU2014/128; PU2014/129; PU2014/130; PU2014/131; PU2014/132; PU2014/133; PU2014/134; PU2014/135; PU2014/136; PU2014/137; PU2014/138; PU2014/139; PU2014/140; PU2014/141; PU2014/142; PU2014/143; PU2014/144; PU2014/145; PU2014/146; PU2014/147; PU2014/148; PU2014/149; PU2014/150; PU2014/151; PU2014/152; PU2014/153; Salinity; Seawater analysis after Grasshoff; Silicate; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 10953 data points
    Location Call Number Expected Availability
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  • 6
    Publication Date: 2024-03-05
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Professor Molchanov; PU2012; PU2012/001; PU2012/002; PU2012/003; PU2012/004; PU2012/005; PU2012/006; PU2012/007; PU2012/008; PU2012/009; PU2012/010; PU2012/011; PU2012/012; PU2012/013; PU2012/014; PU2012/015; PU2012/016; PU2012/017; PU2012/018; PU2012/019; PU2012/020; PU2012/021; PU2012/022; PU2012/023; PU2012/024; PU2012/025; PU2012/026; PU2012/027; PU2012/028; PU2012/029; PU2012/030; PU2012/031; PU2012/032; PU2012/033; PU2012/034; PU2012/035; PU2012/036; PU2012/037; PU2012/038; PU2012/039; PU2012/040; PU2012/041; PU2012/042; PU2012/043; PU2012/044; PU2012/045; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 18794 data points
    Location Call Number Expected Availability
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  • 7
    Publication Date: 2024-03-05
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Professor Molchanov; PU2013; PU2013/039; PU2013/040; PU2013/041; PU2013/042; PU2013/043; PU2013/044; PU2013/045; PU2013/046; PU2013/047; PU2013/048; PU2013/049; PU2013/050; PU2013/051; PU2013/052; PU2013/053; PU2013/054; PU2013/055; PU2013/056; PU2013/065; PU2013/066; PU2013/067; PU2013/068; PU2013/069; PU2013/070; PU2013/071; PU2013/072; PU2013/073; PU2013/074; PU2013/075; PU2013/076; PU2013/077; PU2013/078; PU2013/079; PU2013/080; PU2013/081; PU2013/082; PU2013/083; PU2013/084; PU2013/085; PU2013/086; PU2013/087; PU2013/088; PU2013/089; PU2013/090; PU2013/091; PU2013/092; PU2013/093; PU2013/094; PU2013/095; PU2013/096; PU2013/097; PU2013/098; PU2013/099; PU2013/100; PU2013/145; PU2013/146; PU2013/147; PU2013/148; PU2013/149; PU2013/150; PU2013/151; PU2013/152; PU2013/153; PU2013/154; PU2013/155; PU2013/156; PU2013/157; PU2013/158; PU2013/159; PU2013/160; PU2013/161; PU2013/162; PU2013/163; PU2013/164; PU2013/165; PU2013/166; PU2013/167; PU2013/168; PU2013/169; PU2013/170; PU2013/171; PU2013/172; PU2013/173; PU2013/174; PU2013/175; PU2013/176; PU2013/177; PU2013/178; PU2013/179; PU2013/180; PU2013/181; PU2013/182; PU2013/183; PU2013/184; PU2013/185; PU2013/186; PU2013/187; PU2013/188; PU2013/189; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 45848 data points
    Location Call Number Expected Availability
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  • 8
    Publication Date: 2024-03-05
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Latitude of event; Longitude of event; Professor Molchanov; PU2014; PU2014/039; PU2014/040; PU2014/041; PU2014/042; PU2014/043; PU2014/044; PU2014/045; PU2014/046; PU2014/047; PU2014/048; PU2014/049; PU2014/050; PU2014/051; PU2014/052; PU2014/053; PU2014/054; PU2014/055; PU2014/056; PU2014/057; PU2014/058; PU2014/092; PU2014/093; PU2014/094; PU2014/095; PU2014/096; PU2014/097; PU2014/098; PU2014/099; PU2014/100; PU2014/101; PU2014/102; PU2014/103; PU2014/104; PU2014/105; PU2014/106; PU2014/107; PU2014/108; PU2014/109; PU2014/110; PU2014/111; PU2014/112; PU2014/113; PU2014/114; PU2014/115; PU2014/116; PU2014/117; PU2014/118; PU2014/119; PU2014/120; PU2014/121; PU2014/122; PU2014/123; PU2014/124; PU2014/125; PU2014/126; PU2014/127; PU2014/128; PU2014/129; PU2014/130; PU2014/131; PU2014/132; PU2014/133; PU2014/134; PU2014/135; PU2014/136; PU2014/137; PU2014/138; PU2014/139; PU2014/140; PU2014/141; PU2014/142; PU2014/143; PU2014/144; PU2014/145; PU2014/146; PU2014/147; PU2014/148; PU2014/149; PU2014/150; PU2014/151; PU2014/152; PU2014/153; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 37454 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2024-02-27
    Description: The data set includes the light absorption coefficient of colored dissolved organic matter (CDOM) from 200 nm to 700 nm wavelength and dissolved organic carbon (DOC) together with physical oceanographic observations (temperature and salinity) from the Laptev Sea. Sampling was carried out August and September 2018. During the ship-based expedition, we operated a CTD profiler (conductivity temperature-depth; Seabird 911+) to sample the basic hydrographic parameters. The CTD is operated on a carousel water sampler (SBE 32), which can take water samples at the selected depths. The dataset is part of a multi-year study (different seasons over a period of 9 years: 2010-2019) of the dissolved organic matter (CDOM), which includes observations in marine waters from the coastal zone to the shelf edge of the Laptev Sea and East Siberian Sea, the river Lena and ice and water samples from the land-fast in the south-eastern Laptev Sea.
    Keywords: Absorption coefficient, colored dissolved organic matter at given wavelength; Akademik Tryoshnikov; Area/locality; AT18_008-01; AT18_009-01; AT18_011-01; AT18_012-01; AT18_013-02; AT18_014-01; AT18_016-01; AT18_017-04; AT18_018-01; AT18_019-01; AT18_020-01; AT18_021-01; AT18_023-01; AT18_024-01; AT18_025-01; AT18_026-01; AT18_051-03; AT18_052-01; AT2018, TICE, NABOS; Carbon, organic, dissolved; CATS; CATS - The Changing Arctic Transpolar System; CTD, Sea-Bird SBE 911plus; CTD/Rosette; CTD-RO; DATE/TIME; Depth, bathymetric; DEPTH, water; Dissolved Organic Matter; Event label; High Temperature Catalytic Oxidation (Shimadzu TOC-VCPN); Landfast ice; Laptev Sea; Laptev Sea System; LATITUDE; LONGITUDE; LSS; River Lena; Salinity; Siberian Shelf Seas; Spectrophotometer, dual beam (Specord200, Jena Analytik); Station label; Temperature, water; Transdrift-XXIV
    Type: Dataset
    Format: text/tab-separated-values, 57267 data points
    Location Call Number Expected Availability
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  • 10
    Publication Date: 2024-04-20
    Description: RV "Akademik Tryoshnikov" left Arkhangelsk on August, 17 2018 and on August 22-30, observations in the western part of the Laptev Sea under the auspice of CATS/Transdrift program were carried out. Some additional stations were taken on September 4. There are 42 stations obtained from the bottle sampling files. Observations were taken by using a Seabird SBE911plus CTD system. This system measures conductivity, temperature, and pressure at a 24Hz sample rate. Pressure was measured by a Digiquartz® sensor with accuracy of ±0.015% of full-scale range. For temperature measurements an SBE 3T sensor was used with accuracy of 0.005°C. Conductivity was measured by an SBE 4C sensor with accuracy of 0.0003 S/m. This study was supported by the Russian Ministry of Science and Higher Education, project: RFMEFI61617X0076.
    Keywords: Akademik Tryoshnikov; Arctic Ocean; AT18_002-02; AT18_002-04; AT18_003-02; AT18_003-04; AT18_004-02; AT18_004-03; AT18_006-03; AT18_006-04; AT18_007-02; AT18_008-01; AT18_008-02; AT18_009-01; AT18_009-02; AT18_011-01; AT18_011-03; AT18_012-01; AT18_012-02; AT18_013-01; AT18_013-02; AT18_014-01; AT18_016-01; AT18_017-02; AT18_017-04; AT18_018-01; AT18_019-01; AT18_020-01; AT18_021-01; AT18_021-02; AT18_022-01; AT18_022-03; AT18_023-01; AT18_024-01; AT18_025-01; AT18_025-03; AT18_026-01; AT18_051-01; AT18_051-03; AT18_052-01; AT18_052-02; AT2018, TICE, NABOS; Bottle number; CATS; CATS - The Changing Arctic Transpolar System; CTD; CTD, Sea-Bird SBE 911plus; CTD/Rosette; CTD-RO; DATE/TIME; DEPTH, water; Elevation of event; Event label; Laptev Sea; Latitude of event; Longitude of event; Salinity; Temperature, water, potential; Transdrift-XXIV
    Type: Dataset
    Format: text/tab-separated-values, 4645 data points
    Location Call Number Expected Availability
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