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  • AGE; Age, uncertainty maximum/old; Age, uncertainty minimum/young; CDRILL; Core drilling; Dead Sea; Dead Sea Basin, Israel; DEPTH, sediment/rock; DSDDP_5017-1-A; Eastern Mediterranean; ICDP; International Continental Scientific Drilling Program; Lateglacial; microfacies analyses; Paleoclimate; varve chronology  (1)
  • AGE; Carbonate analyser, KIEL IV; chironomid-inferred temperature reconstructions; Depth, composite; Element analyser, Carlo Erba NC2500; GOS18_composite; Lake Gościąż; Lake Gościąż, Poland; microfacies analyses; PCUWI; Piston corer, UWITEC; Poland; varve chronology; δ13C, organic carbon; δ13Corg; δ18O, carbonate; δ18Ocarb  (1)
  • Dead Sea; Eastern Mediterranean; ICDP; International Continental Scientific Drilling Program; Lateglacial; microfacies analyses; Paleoclimate; varve chronology  (1)
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  • 1
    Publication Date: 2024-01-03
    Description: These datasets provide data for the lowest part of a new composite profile GOS18 from Lake Gościąż in central Poland. The composite profile was established using sediment cores recovered in 2015 and 2018 with an UWITEC Piston Corer at 19.6-21.5 m water depth (Bonk et al., in press). Our data covers the time interval from the onset of lacustrine sedimentation in the late Allerød to the early Preboreal. Since Lake Gościąż comprises a continuous, seasonally resolved (varved) and exceptionally well-preserved archive of the Younger Dryas (YD) climate variation, it is highly suitable for detailed investigations of lake system responses during periods of rapid climate cooling (YD onset) and warming (YD termination), respectively. Stable isotopes of oxygen in carbonates (δ18Ocarb) and of carbon in bulk organic matter (δ13Corg) were determined on bulk sediment samples contiguously taken at 0.5-1 cm resolution for the time interval from late Allerød to early Preboreal in Lake Gościąż (central Poland). All samples were freeze-dried, manually ground and homogenized, while samples for δ13Corg were additionally de-carbonized in situ. The dataset incorporates the composite depth and age [BP] for the sample midpoint, as well as the respective δ18Ocarb and δ13Corg values.
    Keywords: AGE; Carbonate analyser, KIEL IV; chironomid-inferred temperature reconstructions; Depth, composite; Element analyser, Carlo Erba NC2500; GOS18_composite; Lake Gościąż; Lake Gościąż, Poland; microfacies analyses; PCUWI; Piston corer, UWITEC; Poland; varve chronology; δ13C, organic carbon; δ13Corg; δ18O, carbonate; δ18Ocarb
    Type: Dataset
    Format: text/tab-separated-values, 612 data points
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  • 2
    Publication Date: 2024-06-12
    Description: This dataset provides the results from Bayesian age depth modelling in OxCal for ICDP core 5017-1-A, retrieved from the deep northern Dead Sea basin in 2010/11, for the last glacial-interglacial transition between ~101 and 88.5 m sediment depth below lake floor (ca. 17-11.5 ka BP). The model was performed in OxCal v.4.4 using a P_Sequence (1,1,C(-2,2)) (Ramsey 2008; Ramsey 2009; Ramsey and Lee 2013) and includes three tephrochronological ages from Neugebauer et al. (2021) and three radiocarbon ages from Kitagawa et al. (2017).
    Keywords: AGE; Age, uncertainty maximum/old; Age, uncertainty minimum/young; CDRILL; Core drilling; Dead Sea; Dead Sea Basin, Israel; DEPTH, sediment/rock; DSDDP_5017-1-A; Eastern Mediterranean; ICDP; International Continental Scientific Drilling Program; Lateglacial; microfacies analyses; Paleoclimate; varve chronology
    Type: Dataset
    Format: text/tab-separated-values, 5636 data points
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  • 3
    Publication Date: 2024-06-12
    Description: These datasets provide sedimentological data partly at annual resolution and an age model for the lateglacial part of (1) the ICDP sediment core 5017-1-A retrieved from the deep northern Dead Sea basin in 2010/11, and (2) for the Masada outcrop located at the southwestern shore of the Dead Sea sampled in 2018. The here investigated two sediment sections cover the last glacial-interglacial transition (ca. 17-11.5 ka BP) in the hydroclimatically sensitive Levant, when the water level of Lake Lisan – the precursor of the Dead Sea – dropped dramatically from its glacial high-stand to the Holocene low levels. Here, we analyze the interval between the last two gypsum units – the Upper Gypsum Unit (UGU) and the Additional Gypsum Unit (AGU) – which were also used to correlate the two sites. In the ICDP core this section is located between ~101 and 88.5 m sediment depth below lake floor and at Masada it encompasses the uppermost ~3.8 m sediments of the Lisan Formation, which form the terminal deposit at this site. Due to the lake level decline, the complete transition into the Holocene is only recorded in the ICDP core, while sedimentation at Masada terminates earlier. The microfacies was investigated by continuous thin section microscopy, while additional macroscopic information is provided from over- and underlying sediment sections. A revised chronology using age modelling in OxCal (Ramsey 2008; Ramsey 2009; Ramsey and Lee 2013) was developed for the ICDP core and a floating varve chronology was constructed at Masada. Using these new microfacies data from marginal (Masada) and deep-water (ICDP core) sediments, the hydroclimatic variability during the final stage of Lake Lisan can be reconstructed, which could provide important insights into the development of human sedentism in the region at this time.
    Keywords: Dead Sea; Eastern Mediterranean; ICDP; International Continental Scientific Drilling Program; Lateglacial; microfacies analyses; Paleoclimate; varve chronology
    Type: Dataset
    Format: application/zip, 5 datasets
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