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  • 2020-2024
  • 2010-2014  (33)
  • 1985-1989
  • 2010  (33)
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  • 2020-2024
  • 2010-2014  (33)
  • 1985-1989
Year
  • 1
    Publication Date: 2010-05-01
    Print ISSN: 0012-821X
    Electronic ISSN: 1385-013X
    Topics: Geosciences , Physics
    Published by Elsevier
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  • 2
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    PANGAEA
    In:  Supplement to: Kretschmer, Sven; Geibert, Walter; Rutgers van der Loeff, Michiel M; Mollenhauer, Gesine (2010): Grain size effects on Th-230 (xs) inventories in opal-rich and carbonate-rich marine sediments. Earth and Planetary Science Letters, 294(1-2), 131-142, https://doi.org/10.1016/j.epsl.2010.03.021
    Publication Date: 2024-06-26
    Description: Excess Thorium-230 (230Thxs) as a constant flux tracer is an essential tool for paleoceanographic studies, but its limitations for flux normalization are still a matter of debate. In regions of rapid sediment accumulation, it has been an open question if 230Thxs-normalized fluxes are biased by particle sorting effects during sediment redistribution. In order to study the sorting effect of sediment transport on 230Thxs, we analyzed the specific activity of 230Thxs in different particle size classes of carbonate-rich sediments from the South East Atlantic, and of opal-rich sediments from the Atlantic sector of the Southern Ocean. At both sites, we compare the 230Thxs distribution in neighboring high vs. low accumulation settings. Two grain-size fractionation methods are explored. We find that the 230Thxs distribution is strongly grain size dependent, and 50-90% of the total 230Thxs inventory is concentrated in fine material smaller than 10 µm, which is preferentially deposited at the high accumulation sites. This leads to an overestimation of the focusing factor Psi, and consequently to an underestimation of the vertical flux rate at such sites. The distribution of authigenic uranium indicates that fine organic-rich material has also been re-deposited from lateral sources. If the particle sorting effect is considered in the flux calculations, it reduces the estimated extent of sediment focusing. In order to assess the maximum effect of particle sorting on Psi, we present an extreme scenario, in which we assume a lateral sediment supply of only fine material (〈 10 µm). In this case, the focusing factor of the opal-rich core would be reduced from Psi = 5.9 to Psi = 3.2. In a more likely scenario, allowing silt-sized material to be transported, Psi is reduced from 5.9 to 5.0 if particle sorting is taken into consideration. The bias introduced by particle sorting is most important for strongly focused sediments. Comparing 230Thxs-normalized mass fluxes biased by sorting effects with uncorrected mass fluxes, we suggest that 230Thxs-normalization is still a valid tool to correct for lateral sediment redistribution. However, differences in focusing factors between core locations have to be evaluated carefully, taking the grain size distributions into consideration.
    Keywords: ANT-VIII/3; AWI_MarGeoChem; Center for Marine Environmental Sciences; GeoB1027-2; GeoB1028-4; Giant box corer; GKG; Gravity corer (Kiel type); M6/6; Marine Geochemistry @ AWI; MARUM; Meteor (1986); Polarstern; PS16; PS16/311; PS16/312; PS1768-8; PS1769-1; Shona Ridge; SL; Walvis Ridge
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 3
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    PANGAEA
    In:  Supplement to: Venchiarutti, Célia; Rutgers van der Loeff, Michiel M; Stimac, Ingrid (2011): Scavenging of 231Pa and thorium isotopes based on dissolved and size-fractionated particulate distributions at Drake Passage (ANTXXIV-3). Deep Sea Research Part II: Topical Studies in Oceanography, 58(25-26), 2767-2784, https://doi.org/10.1016/j.dsr2.2010.10.040
    Publication Date: 2024-06-26
    Description: Drake Passage is a major route for many water masses from the strong Antarctic Circumpolar Current. During the ANTXXIV-3 expedition (in 2008) the vertical distributions of dissolved and size-fractionated particulate 231Pa and thorium isotopes (230Th, 232Th and 234Th) were investigated in order to better define the scavenging regimes and the effects of the oceanic circulation on the fate of particulate material and on the Pa-Th distributions in the water column. The reversible scavenging-model applied to both 230Th and 234Th, in the upper 1500 m depth, gives estimates of the particle dynamics (settling velocities S~ 500-1300 m/y, adsorption and desorption rate constants of 0.1-0.4 1/y and 1-6 1/y respectively). Particulate 234Th/230Th activity ratio shows a depth dependence, with decreasing ratio with increasing depth in agreement with previous studies, but no relationship with particle size was found. 231Pa and thorium isotope fractionation and partition coefficients were investigated with particle size vs depth and latitude and appear to vary horizontally following a North-South gradient. This suggests that both radionuclides are mostly bound to the fine suspended particles. At Drake Passage, the 230Thxs distribution is controlled by a southward upwelling of deep water (clearly visible on the vertical section of total 230Thxs, defined as dissolved + particulate concentrations) and reversible-scavenging processes (linear increase of 230Thxs with increasing depth) with North of the Southern ACC Front, higher settling velocities and less adsorption/desorption cycles, than South of it. Distributions of dissolved and total 231Paxs also reflect the influence of the North-South upwelling but somehow this effect appears to be limited to the upper 1500 m depth of the water column. Below this depth, 231Paxs vertical profiles exhibit contrasted concentrations, with some high dissolved activities in the deep water of the stations in the northern part of the ACC and not South of the ACC. These N-S differences in dissolved 231Paxs were attributed to the different origins and scavenging history of the deep Pacific waters flowing across Drake Passage. Here at North, radionuclides-rich deep water originates from the Central Pacific, while at South, deep water derives from the Southern Pacific in which the observed low radionuclides concentrations are attributed to high opal abundance. South of the Drake Passage, high dissolved and particulate activities of 230Th and 232Th confirmed the intrusion of 230Th-rich Weddell Sea Deep Water (WSDW) close to the Antarctic Peninsula.
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; CTD/Rosette; CTD/Rosette, ultra clean; CTD-RO; CTD-UC; Drake Passage; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; MULT; Multiple investigations; Polarstern; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; PS71; PS71/097-2; PS71/099-2; PS71/101-3; PS71/104-6; PS71/104-8; PS71/113-4; PS71/131-6; PS71/154-1; PS71/161-4; PS71/161-6; PS71/178-3; PS71/193-6; PS71/193-7; PS71/222-2; PS71/230-4; PS71/230-6; PS71/236-6; PS71/241-7; PS71/244-10; PS71/244-8; PS71/250-1; Scotia Sea, southwest Atlantic; South Atlantic Ocean; SPP1158; Weddell Sea
    Type: Dataset
    Format: application/zip, 21 datasets
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  • 4
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Calculated; CTD/Rosette, ultra clean; CTD-UC; Density, sigma-theta (0); DEPTH, water; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; PS71; PS71/097-2; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 102 data points
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  • 5
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Bottle number; Calculated; CTD/Rosette; CTD-RO; Density, sigma-theta (0); DEPTH, water; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; PS71; PS71/099-2; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 102 data points
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  • 6
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Bottle number; Calculated; CTD/Rosette; CTD-RO; Density, sigma-theta (0); DEPTH, water; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; PS71; PS71/104-8; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 95 data points
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  • 7
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Bottle number; Calculated; CTD/Rosette; CTD-RO; Density, sigma-theta (0); DEPTH, water; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; PS71; PS71/113-4; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 144 data points
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  • 8
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Bottle number; Calculated; CTD/Rosette; CTD-RO; Density, sigma-theta (0); DEPTH, water; Fractionation factor; Fractionation factor, error; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; Protactinium-231 excess, particulate; Protactinium-231 excess, particulate, standard deviation; Protactinium-231 excess, standard deviation; PS71; PS71/101-3; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-230 excess, particulate; Thorium-230 excess, particulate, standard deviation; Thorium-230 excess, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation; Thorium-232, particulate; Thorium-232, particulate, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 204 data points
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  • 9
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Bottle number; Calculated; CTD/Rosette; CTD-RO; Density, sigma-theta (0); DEPTH, water; Fractionation factor; Fractionation factor, error; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; Protactinium-231 excess, particulate; Protactinium-231 excess, particulate, standard deviation; Protactinium-231 excess, standard deviation; PS71; PS71/104-6; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-230 excess, particulate; Thorium-230 excess, particulate, standard deviation; Thorium-230 excess, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation; Thorium-232, particulate; Thorium-232, particulate, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 192 data points
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  • 10
    Publication Date: 2024-06-26
    Keywords: ANT-XXIV/3; AWI_MarGeoChem; Bottle number; Calculated; CTD/Rosette; CTD-RO; Density, sigma-theta (0); DEPTH, water; Fractionation factor; Fractionation factor, error; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; Marine Geochemistry @ AWI; Polarstern; Pressure, water; Protactinium-231 excess; Protactinium-231 excess, dissolved; Protactinium-231 excess, dissolved, standard deviation; Protactinium-231 excess, particulate; Protactinium-231 excess, particulate, standard deviation; Protactinium-231 excess, standard deviation; PS71; PS71/131-6; Salinity; see further details; South Atlantic Ocean; Temperature, water, potential; Thorium-230 excess; Thorium-230 excess, dissolved; Thorium-230 excess, dissolved, standard deviation; Thorium-230 excess, particulate; Thorium-230 excess, particulate, standard deviation; Thorium-230 excess, standard deviation; Thorium-232, dissolved; Thorium-232, dissolved, standard deviation; Thorium-232, particulate; Thorium-232, particulate, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 204 data points
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