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  • 1
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Rutgers van der Loeff, Michiel M; Cai, Pinghe; Stimac, Ingrid; Bauch, Dorothea; Hanfland, Claudia; Roeske, Tobias; Moran, S Bradley (2012): Shelf-basin exchange times of Arctic surface waters estimated from 228Th/228Ra disequilibrium. Journal of Geophysical Research: Oceans, 177, C03024, https://doi.org/10.1029/2011JC007478
    Publication Date: 2023-05-12
    Description: The transpolar drift is strongly enriched in 228Ra accumulated on the wide Arctic shelves with subsequent rapid offshore transport. We present new data of Polarstern expeditions to the central Arctic and to the Kara and Laptev seas. Because 226Ra activities in Pacific waters are 30% higher than in Atlantic waters, we correct 226Ra for the Pacific admixture when normalizing 228Ra with 226Ra. The use of 228Ra decay as age marker critically depends on the constancy in space and time of the source activity, a condition that has not yet adequately been tested. While 228Ra decays during transit over the central basin, ingrowth of 228Th could provide an alternative age marker. The high 228Th/228Ra activity ratio (AR = 0.8-1.0) in the central basins is incompatible with a mixing model based on horizontal eddy diffusion. An advective model predicts that 228Th grows to an equilibrium AR, the value of which depends on the scavenging regime. The low AR over the Lomonosov Ridge (AR = 0.5) can be due to either rapid transport (minimum age without scavenging 1.1 year) or enhanced scavenging. Suspended particulate matter load (derived from beam transmission and particulate 234Th) and total 234Th depletion data show that scavenging, although extremely low in the central Arctic, is enhanced over the Lomonosov Ridge, making an age of 3 years more likely. The combined data of 228Ra decay and 228Th ingrowth confirm the existence of a recirculating gyre in the surface water of the eastern Eurasian Basin with a river water residence time of at least 3 years.
    Keywords: Arctic Ocean; ARK-XI/1; ARK-XXII/2; AWI_MarGeoChem; Barents Sea; CTD/Rosette; CTD-RO; East Siberian Sea; Expendable CTD; In situ pump; ISP; Kara Sea; Laptev Sea; Marine Geochemistry @ AWI; Polarstern; PS36; PS36/002-1; PS36/003-1; PS36/004-1; PS36/006-1; PS36/007-2; PS36/009-1; PS36/010-1; PS36/012-1; PS36/016-1; PS36/018-1; PS36/019-2; PS36/021-1; PS36/023-2; PS36/024A-2; PS36/025-2; PS36/029-2; PS36/031-3; PS36/033-2; PS36/040-2; PS36/042-2; PS36/044-2; PS36/045-2; PS36/047-2; PS36/049-2; PS36/051-1; PS36/052-1; PS36/056-2; PS36/060-1; PS36/062-1; PS36/065-1; PS36/071-1; PS36/073-1; PS36/080-2; PS36/084-1; PS36/089-2; PS36/091-2; PS36/094-1; PS70/237-4; PS70/239-2; PS70/257-6; PS70/261-3; PS70/263-3; PS70/264-6; PS70/266-3; PS70/268-6; PS70/271-6; PS70/272-2; PS70/274-5; PS70/276-4; PS70/277-4; PS70/279-4; PS70/284-2; PS70/285-9; PS70/290-5; PS70/294-6; PS70/299-3; PS70/301-4; PS70/303-2; PS70/309-6; PS70/312-6; PS70/322-5; PS70/326-4; PS70/328-14; PS70/333-6; PS70/335-2; PS70/338-4; PS70/342-12; PS70/346-2; PS70/349-3; PS70/352-7; PS70/358-2; PS70/363-9; PS70/371-7; PS70/377-3; PS70/382-2; PS70/385-7; PS70/389-4; PS70/400-3; PS70/407-3; PS70/409-2; PS70/411-4; PS70/XCTD58-1; PS70 SPACE DAMOCLES; XCTD
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 2
    Publication Date: 2023-03-25
    Keywords: 111-70M58; 122-70M47; 1-NP15; 25-MN8.5; 31-MN15; 38-SL12; 46-SL6; 59-W7.5; 70M36; 93-ZZ14; 9-NP7; Bering Sea; CN6; Cryptophyceae; Cryptophyceae, biomass as carbon; CTD/Rosette; CTD-RO; Date/Time of event; Depth of chlorophyll maximum; Diatoms; Diatoms, biomass as carbon; Dinoflagellates; Dinoflagellates, biomass as carbon; EcoFOCI; Event label; Healy; HLY0802; HLY0802-001; HLY0802-009; HLY0802-025; HLY0802-031; HLY0802-038; HLY0802-046; HLY0802-059; HLY0802-093; HLY0802-111; HLY0802-122; HLY0803; HLY0803-011; HLY0803-029; HLY0803-046; HLY0803-059; HLY0803-086; HLY0803-092; HLY0803-103; HLY0803-116; HLY0803-143; Latitude of event; Longitude of event; LS1_6; Microflagellates; Microflagellates, biomass as carbon; MN12; MN3; MULT; Multiple investigations; Nanoeukaryotes; Nanoeukaryotes, biomass as carbon; NP7; P14_2; Season; SL14; SL8; Station label; Synechococcus; Synechococcus, biomass as carbon
    Type: Dataset
    Format: text/tab-separated-values, 363 data points
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  • 3
    Publication Date: 2023-01-13
    Keywords: 106-ZZ27; 111-70M58; 122-70M47; 148-NP8; 1-NP15; 25-MN8.5; 31-MN15; 34-MN20; 38-SL12; 46-SL6; 59-W7.5; 62-NP7; 70M36; 75-BS1; 76-P14-4; 93-ZZ14; 94-ZZ15; 9-NP7; Bering Sea; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; EcoFOCI; Elevation of event; Event label; Healy; HLY0802; HLY0802-001; HLY0802-009; HLY0802-025; HLY0802-031; HLY0802-034; HLY0802-038; HLY0802-046; HLY0802-059; HLY0802-062; HLY0802-075; HLY0802-076; HLY0802-093; HLY0802-094; HLY0802-106; HLY0802-111; HLY0802-122; HLY0802-148; HLY0803; HLY0803-004; HLY0803-016; HLY0803-029; HLY0803-046; HLY0803-059; HLY0803-067; HLY0803-083; HLY0803-086; HLY0803-087; HLY0803-092; HLY0803-103; HLY0803-111; HLY0803-116; HLY0803-143; Latitude of event; Longitude of event; LS1_6; MN12; MN20; MN3; MULT; Multiple investigations; NP11; NP7; P14_2; PIT1D; PIT 2; PIT3; Season; SL14; SL8; Station label; Thorium-234, total; Thorium-234, total, standard deviation; Thorium-234/Uranium-238 activity ratio; Thorium-234/Uranium-238 activity ratio, standard deviation; UP3; Uranium-238
    Type: Dataset
    Format: text/tab-separated-values, 1666 data points
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  • 4
    Publication Date: 2023-01-13
    Keywords: 106-ZZ27; 110-ICE; 111-70M58; 116-70M53; 122-70M47; 148-NP8; 1-NP15; 25-MN8.5; 31-MN15; 34-MN20; 38-SL12; 43-SL8.5; 46-SL6; 59-W7.5; 62-NP7; 70M36; 75-BS1; 76-P14-4; 93-ZZ14; 94-ZZ15; 9-NP7; Bering Sea; Carbon, organic, particulate, flux; Carbon, organic, particulate, standard deviation; CN6; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Depth with 1% of photosynthetic active radiation; EcoFOCI; Elevation of event; Event label; Healy; HLY0802; HLY0802-001; HLY0802-009; HLY0802-025; HLY0802-031; HLY0802-034; HLY0802-038; HLY0802-043; HLY0802-046; HLY0802-059; HLY0802-062; HLY0802-075; HLY0802-076; HLY0802-093; HLY0802-094; HLY0802-106; HLY0802-110; HLY0802-111; HLY0802-116; HLY0802-122; HLY0802-148; HLY0803; HLY0803-004; HLY0803-011; HLY0803-016; HLY0803-029; HLY0803-046; HLY0803-059; HLY0803-067; HLY0803-083; HLY0803-086; HLY0803-087; HLY0803-092; HLY0803-103; HLY0803-111; HLY0803-116; HLY0803-143; Ice coverage; Latitude of event; Longitude of event; LS1_6; MN12; MN20; MN3; MULT; Multiple investigations; NP11; NP7; P14_2; PIT1D; PIT 2; PIT3; Primary production, carbon assimilation (24 hr.), integrated; Primary production of carbon, standard deviation; Ratio; Season; SL14; SL8; Standard deviation; Station label; Thorium-234, particulate, flux; Thorium-234, particulate, standard deviation; UP3
    Type: Dataset
    Format: text/tab-separated-values, 740 data points
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  • 5
    Publication Date: 2023-05-12
    Keywords: Arctic Ocean; ARK-XI/1; AWI_MarGeoChem; Calculated; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; East Siberian Sea; Elevation of event; Event label; Kara Sea; Laptev Sea; Latitude of event; Longitude of event; Marine Geochemistry @ AWI; Percentage; Polarstern; PS36; PS36/002-1; PS36/003-1; PS36/004-1; PS36/006-1; PS36/007-2; PS36/009-1; PS36/010-1; PS36/012-1; PS36/016-1; PS36/018-1; PS36/019-2; PS36/021-1; PS36/023-2; PS36/024A-2; PS36/025-2; PS36/029-2; PS36/031-3; PS36/033-2; PS36/040-2; PS36/042-2; PS36/044-2; PS36/045-2; PS36/047-2; PS36/049-2; PS36/051-1; PS36/052-1; PS36/056-2; PS36/060-1; PS36/062-1; PS36/065-1; PS36/071-1; PS36/073-1; PS36/080-2; PS36/084-1; PS36/089-2; PS36/091-2; PS36/094-1; Radium-226; Radium-226, standard deviation; Radium-228; Radium-228, standard deviation; Salinity; see further details; Temperature, water, potential
    Type: Dataset
    Format: text/tab-separated-values, 922 data points
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  • 6
    Publication Date: 2023-05-12
    Keywords: Arctic Ocean; ARK-XXII/2; AWI_MarGeoChem; Barents Sea; Calculated; CTD; Date/Time of event; DEPTH, water; Elevation of event; Event label; Expendable CTD; In situ pump; ISP; Laptev Sea; Latitude of event; Longitude of event; Marine Geochemistry @ AWI; Percentage; Polarstern; PS70/237-4; PS70/239-2; PS70/257-6; PS70/261-3; PS70/263-3; PS70/264-6; PS70/266-3; PS70/268-6; PS70/271-6; PS70/272-2; PS70/274-5; PS70/276-4; PS70/277-4; PS70/279-4; PS70/284-2; PS70/285-9; PS70/290-5; PS70/294-6; PS70/299-3; PS70/301-4; PS70/303-2; PS70/309-6; PS70/312-6; PS70/322-5; PS70/326-4; PS70/328-14; PS70/333-6; PS70/335-2; PS70/338-4; PS70/342-12; PS70/346-2; PS70/349-3; PS70/352-7; PS70/358-2; PS70/363-9; PS70/371-7; PS70/377-3; PS70/382-2; PS70/385-7; PS70/389-4; PS70/400-3; PS70/407-3; PS70/409-2; PS70/411-4; PS70/XCTD58-1; PS70 SPACE DAMOCLES; Radium-224; Radium-224, standard deviation; Radium-226; Radium-226, standard deviation; Radium-228; Radium-228, standard deviation; Radium-228/Radium-226 activity ratio; Radium-228/Radium-226 activity ratio, standard deviation; Salinity; see further details; Temperature, water; Thorium-228/Radium-228 activity ratio; Thorium-228/Radium-228 activity ratio, standard deviation; Transmission of light; XCTD
    Type: Dataset
    Format: text/tab-separated-values, 711 data points
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  • 7
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Cai, Pinghe; Rutgers van der Loeff, Michiel M; Stimac, Ingrid; Nöthig, Eva-Maria; Lepore, Kate; Moran, S Bradley (2010): Low export flux of particulate organic carbon in the central Arctic Ocean as revealed by 234Th:238U disequilibrium. Journal of Geophysical Research: Oceans, 115, C10037, https://doi.org/10.1029/2009JC005595
    Publication Date: 2023-05-12
    Description: The loss of Arctic sea ice has accelerated in recent years. With the decline in sea ice cover, the Arctic Ocean biogeochemistry is undergoing unprecedented change. A key question about the changing Arctic Ocean biogeochemistry is concerning the impact of the shrinking sea ice cover on the particulate organic carbon (POC) export from the upper Arctic Ocean. Thus far, there are still very few direct measurements of POC export in the permanently ice-covered central Arctic Ocean. A further issue is that the magnitude of the POC export so far documented in this region remains controversial. During the ARK-XXII/2 expedition to the Arctic Ocean from 28 July to 7 October in 2007, we conducted a high-resolution study of POC export using 234Th/238U disequilibrium. Depth profiles of total 234Th in the upper 200 m were collected at 36 stations in the central Arctic Ocean and its adjacent seas, i.e., the Barents Sea, the Kara Sea and the Laptev Sea. Samples were processed using a small-volume MnO2 coprecipitation method with addition of a yield tracer, which resulted in one of the most precise 234Th data sets ever collected. Thorium-234 deficit with respect to 238U was found to be evident throughout the upper 100 m over the Arctic shelves. In comparison, 234Th deficit was confined to the upper 25 m in the central Arctic Ocean. Below 25 m, secular equilibrium was approached between 234Th and 238U. The observed 234Th deficit was generally associated with enhanced total chlorophyll concentrations, indicating that in situ production and export of biogenic particles are the main mechanism for 234Th removal in the Arctic Ocean. Thorium-234-derived POC fluxes were determined with a steady state model and pump-normalized POC/234Th ratios on total suspended particles collected at 100 m. Results showed enhanced POC export over the Arctic shelves. On average, POC export fluxes over the various Arctic shelves were 2.7 ± 1.7 mmol m**-2 d**-1 (the Barents Sea), 0.5 ± 0.8 mmol m**-2 d**-1 (the Kara Sea), and 2.9 ± 1.8 mmol m**-2 d**-1 (the Laptev Sea) respectively. In comparison, the central Arctic Ocean was characterized by the lowest POC export flux ever reported, 0.2 ± 1.0 mmol m**-2 d**-1 (1 standard deviation, n = 26). This value is very low compared to prior estimates and is also much lower than the POC export fluxes reported in other oligotrophic oceans. A ThE ratio (234Th-derived POC export/primary production) of 〈6% in the central Arctic Ocean was estimated using the historical measurements of primary production. The low ThE ratio indicates that like other oligotrophic regimes, the central Arctic Ocean is characterized by low POC export relative to primary production, i.e., a tightly coupled food web. Our study strongly suggests that the current role of the central Arctic Ocean in C sequestration is still very limited. Meanwhile, this role might be altered because of global warming and future decline in sea ice cover.
    Keywords: Arctic Ocean; ARK-XXII/2; AWI_MarGeoChem; Barents Sea; CTD; CTD/Rosette; CTD/Rosette, ultra clean; CTD-RO; CTD-UC; Date/Time of event; DEPTH, water; Elevation of event; Event label; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Laptev Sea; Latitude of event; Longitude of event; Marine Geochemistry @ AWI; Polarstern; PS70/228-1; PS70/236-5; PS70/237-3; PS70/239-3; PS70/243-1; PS70/246-2; PS70/255-3; PS70/257-2; PS70/260-2; PS70/261-1; PS70/264-2; PS70/266-6; PS70/268-1; PS70/271-2; PS70/276-3; PS70/279-7; PS70/285-2; PS70/295-1; PS70/301-7; PS70/306-1; PS70/309-2; PS70/316-1; PS70/328-2; PS70/333-1; PS70/338-2; PS70/342-2; PS70/349-2; PS70/352-5; PS70/358-1; PS70/371-2; PS70/379-1; PS70/383-1; PS70/385-6; PS70/400-7; PS70/403-1; PS70/407-4; PS70/411-2; PS70 SPACE DAMOCLES; Salinity; see further details; Thorium-234, total; Thorium-234, total, standard deviation; Thorium-234/Uranium-238 activity ratio; Thorium-234/Uranium-238 activity ratio, standard deviation; Uranium-238; Uranium-238, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 1673 data points
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  • 8
    Publication Date: 2023-11-02
    Description: In this study we present dissolved ²³⁰Th and ²³²Th results, as well as amount of particulate ²³⁴Th from total ²³⁴Th. The data, obtained as part of the GEOTRACES central Arctic Ocean sections GN04 (2015) and IPY11 (2007). Samples were analyzed following GEOTRACES methods, and compared to previous results from 1991. We observe significant decreases in ²³⁰Th concentrations in the intermediate waters of the Amundsen Basin. This removal was explained by scavenging removal of dissolved ²³⁰Th on the Barents Sea Shelf and along Atlantic water inflow pathways. This finding shows that a far-field decrease of dissolved ²³⁰Th can be caused by changes in scavenging on inflow passages and highlights the importance of repeated GEOTRACES sections.
    Keywords: 230Th; Arctic Ocean; AWI_MarGeoChem; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Time series
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 9
    Publication Date: 2023-11-02
    Keywords: 230Th; Arctic Ocean; ARK-XXIX/3; AWI_MarGeoChem; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Event label; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; ICP-MS, Thermo Scientific Neptune; Latitude of event; Longitude of event; Marine Geochemistry @ AWI; Polarstern; PS94; PS94/125-2; PS94/125-5; Thorium-230, dissolved; Thorium-230, error; Thorium-232, error; Thorium-232, particulate; Time series
    Type: Dataset
    Format: text/tab-separated-values, 48 data points
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  • 10
    Publication Date: 2023-11-02
    Keywords: 230Th; Arctic Ocean; ARK-XXIX/3; AWI_MarGeoChem; Date/Time of event; DEPTH, water; Event label; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; In situ pump; ISP; Latitude of event; Longitude of event; Marine Geochemistry @ AWI; Polarstern; PS94; PS94/081-9; PS94/117-7; PS94/125-8; Thorium-234, particulate, fraction of total; Time series
    Type: Dataset
    Format: text/tab-separated-values, 33 data points
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