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  • 1057-2; 1065-1; 1070-2; 1071-2; 14C dating; 230Th/U dating; Age, dated; Age, dated standard deviation; Age, Uranium-Thorium, corrected; Age, Uranium-Thorium, uncorrected; Alboran Sea; Alboran Sea - E-Melilla - Brittlestar Ridge I; Angola; Area/locality; Atlantic; Azores Front; Banda mounds; Batm age; Campaign of event; Canyon S of Timiris mound chain; cold-water coral; Core; Date/Time of event; DEPTH, sediment/rock; ELEVATION; EUROFLEETS; Event label; GC; GeoB14884-1; GeoB14890-2; GeoB14899-1; GeoB14904-2; GeoB14905-2; GeoB18118-1; GeoB18118-2; GeoB20908-2; GeoB20928-1; GeoB20933-1; GeoB20935-1; GeoB20953-2; GeoB20955-1; GeoB20958-1; GeoB23109-1; GeoB23110-1; GeoB23112-1; GeoB23113-1; GeoB23120-1; GeoB23121-1; GeoB23147-1; GeoB23153-1; GeoB23404-1; GeoB23415-1; GeoB23425-1; GeoB23429-1; GeoB23436-1; GeoB23437-1; Giant box corer; GKG; Grab; GRAB; Gravity corer; iAtlantic; Integrated Assessment of Atlantic Marine Ecosystems in Space and Time; Laboratory code/label; Latitude of event; Location; Longitude of event; M122; M122_091-2; M122_111-1; M122_116-1; M122_118-1; M122_137-2; M122_139-1; M122_142-1; M151; M151_100-1; M151_10-1; M151_110-1; M151_114-1; M151_12-1; M151_121-1; M151_122-1; M151_13-1; M151_20-1; M151_21-1; M151_47-1; M151_53-1; M151_89-1; M151_9-1; Maria S. Merian; Marion Dufresne (1995); Mauritania; MD13-3455G; MD13-3459G; MD194; MeBo70; Meteor (1986); Method/Device of event; MSM16/3; MSM16/3_1051-1; MSM36; northern Banda slide; radiocarbon dating; Reference/source; Remotely operated vehicle SQUID; ROV SQUID; Species; Thorium-230/Thorium-232, standard deviation; Thorium-230/Thorium-232 ratio; Thorium-230/Uranium-238, standard deviation; Thorium-230/Uranium-238 ratio; Thorium-232; Thorium-232, standard deviation; U/Th; Uranium-238; Uranium-238, standard deviation; ventilation; δ234 Uranium; δ234 Uranium, standard deviation; δ234 Uranium (0); δ234 Uranium (0), standard deviation  (1)
  • Mound aggradation rate
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  • 1
    Publication Date: 2024-02-27
    Description: Uranium-thorium dating offers the possibility of absolute age determination of cold-water corals (CWCs). We present here the complementary dataset to "Radiocarbon dating of Atlantic cold-water corals over the last 32.000 years". It contains 230Th/U ages obtained on CWCs from various locations in the central and east Atlantic Ocean, as well as the Alboran Sea. It also includes an update of previously published data, necessitated by a recently discovered "ghost signal" (Kerber et al., 2023). U and Th were extracted according to the method of Wefing et al. (2017). The high precision isotopic measurements were performed on a multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS, Thermo Fisher Neptune Plus) at the Institute of Environmental Physics, Heidelberg University, Germany. For age calculations the half-lives of 234U and 230Th published in (Cheng et al., 2013) were used. The mass spectrometry setup and data treatment follows the methods recently updated in great detail by Kerber et al. (2023).
    Keywords: 1057-2; 1065-1; 1070-2; 1071-2; 14C dating; 230Th/U dating; Age, dated; Age, dated standard deviation; Age, Uranium-Thorium, corrected; Age, Uranium-Thorium, uncorrected; Alboran Sea; Alboran Sea - E-Melilla - Brittlestar Ridge I; Angola; Area/locality; Atlantic; Azores Front; Banda mounds; Batm age; Campaign of event; Canyon S of Timiris mound chain; cold-water coral; Core; Date/Time of event; DEPTH, sediment/rock; ELEVATION; EUROFLEETS; Event label; GC; GeoB14884-1; GeoB14890-2; GeoB14899-1; GeoB14904-2; GeoB14905-2; GeoB18118-1; GeoB18118-2; GeoB20908-2; GeoB20928-1; GeoB20933-1; GeoB20935-1; GeoB20953-2; GeoB20955-1; GeoB20958-1; GeoB23109-1; GeoB23110-1; GeoB23112-1; GeoB23113-1; GeoB23120-1; GeoB23121-1; GeoB23147-1; GeoB23153-1; GeoB23404-1; GeoB23415-1; GeoB23425-1; GeoB23429-1; GeoB23436-1; GeoB23437-1; Giant box corer; GKG; Grab; GRAB; Gravity corer; iAtlantic; Integrated Assessment of Atlantic Marine Ecosystems in Space and Time; Laboratory code/label; Latitude of event; Location; Longitude of event; M122; M122_091-2; M122_111-1; M122_116-1; M122_118-1; M122_137-2; M122_139-1; M122_142-1; M151; M151_100-1; M151_10-1; M151_110-1; M151_114-1; M151_12-1; M151_121-1; M151_122-1; M151_13-1; M151_20-1; M151_21-1; M151_47-1; M151_53-1; M151_89-1; M151_9-1; Maria S. Merian; Marion Dufresne (1995); Mauritania; MD13-3455G; MD13-3459G; MD194; MeBo70; Meteor (1986); Method/Device of event; MSM16/3; MSM16/3_1051-1; MSM36; northern Banda slide; radiocarbon dating; Reference/source; Remotely operated vehicle SQUID; ROV SQUID; Species; Thorium-230/Thorium-232, standard deviation; Thorium-230/Thorium-232 ratio; Thorium-230/Uranium-238, standard deviation; Thorium-230/Uranium-238 ratio; Thorium-232; Thorium-232, standard deviation; U/Th; Uranium-238; Uranium-238, standard deviation; ventilation; δ234 Uranium; δ234 Uranium, standard deviation; δ234 Uranium (0); δ234 Uranium (0), standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 2609 data points
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  • 2
    Publication Date: 2022-05-25
    Description: © The Author(s), 2018. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Quaternary Science Reviews 185 (2018): 135-152, doi:10.1016/j.quascirev.2018.02.012.
    Description: The largest coherent cold-water coral (CWC) mound province in the Atlantic Ocean exists along the Mauritanian margin, where up to 100 m high mounds extend over a distance of ∼400 km, arranged in two slope-parallel chains in 400–550 m water depth. Additionally, CWCs are present in the numerous submarine canyons with isolated coral mounds being developed on some canyon flanks. Seventy-seven Uranium-series coral ages were assessed to elucidate the timing of CWC colonisation and coral mound development along the Mauritanian margin for the last ∼120,000 years. Our results show that CWCs were present on the mounds during the Last Interglacial, though in low numbers corresponding to coral mound aggradation rates of 16 cm kyr−1. Most prolific periods for CWC growth are identified for the last glacial and deglaciation, resulting in enhanced mound aggradation (〉1000 cm kyr−1), before mound formation stagnated along the entire margin with the onset of the Holocene. Until today, the Mauritanian mounds are in a dormant state with only scarce CWC growth. In the canyons, live CWCs are abundant since the Late Holocene at least. Thus, the canyons may serve as a refuge to CWCs potentially enabling the observed modest re-colonisation pulse on the mounds along the open slope. The timing and rate of the pre-Holocene coral mound aggradation, and the cessation of mound formation varied between the individual mounds, which was likely the consequence of vertical/lateral changes in water mass structure that placed the mounds near or out of oxygen-depleted waters, respectively.
    Description: This study received funding from and contributes to the DFG-projects "Palaeo-WACOM" (HE 3412/17-1) and "Cold-water coral mound development in a tropical upwelling cell – the great wall of(f) Mauritania" (Ti 706/3-1). A. Freiwald received funding from the Hessian initiative for the development of scientific and economic excellence (LOEWE) at the Biodiversity and Climate Research Centre (BiK-F), Frankfurt, Germany.
    Keywords: Lophelia pertusa ; Coral mound ; Submarine canyon ; Uranium-series dating ; Mound aggradation rate ; Last glacial ; Dissolved oxygen concentration ; South Atlantic Central Water ; Mauritanian margin
    Repository Name: Woods Hole Open Access Server
    Type: Article
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