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Dead Sea lake level for the last 237 ka reconstructed with deep core halite fluid inclusions and marginal sediments

The rain regime in the Eastern Mediterranean is primarily controlled by Mediterranean winter cyclonic systems. The lake level of the Dead Sea responds sensitively to hydrological changes, and can be used to track the evolution of the Mediterranean hydroclimate during the late Quaternary. However, lake level reconstructions beyond 70 ka are limited by a lack of paleoshorelines and dating methodologies. Here, we reconstruct the Dead Sea lake level back to 237 ka using measurements of brine density from halite fluid inclusions of the deep ICDP core 5017-1-A. We combine our mass balance-based reconstruction with an age reevaluation of published sequence stratigraphy-based lake levels, by tying their chronology to the ICDP core. The lake levels obtained with the two different methods compare very well, within better than 10 m. Combined with a compilation of published paleoshorelines for the last 70 ka, our reconstruction covers three glacial-interglacial cycles.

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Cite this as

Guillerm, Emmanuel, Gardien, Véronique, Waldmann, Nicolas D, Brall, Niels S, Ariztegui, Daniel, Schwab, Markus J, Neugebauer, Ina, Lach, Adeline, Caupin, Frédéric (2024). Dataset: Dead Sea lake level for the last 237 ka reconstructed with deep core halite fluid inclusions and marginal sediments. https://doi.org/10.1594/PANGAEA.964545

DOI retrieved: 2024

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.964545
Author Guillerm, Emmanuel
Given Name Emmanuel
Family Name Guillerm
More Authors
Gardien, Véronique
Waldmann, Nicolas D
Brall, Niels S
Ariztegui, Daniel
Schwab, Markus J
Neugebauer, Ina
Lach, Adeline
Caupin, Frédéric
Source Creation 2024
Publication Year 2024
Resource Type application/zip - filename: Dead_Sea_level
Subject Areas
Name: LandSurface

Name: Lithosphere

Related Identifiers
Title: Reconstruction of Dead Sea lake level and mass balance back to 237 ka BP using halite fluid inclusions
Identifier: https://doi.org/10.1016/j.quascirev.2023.107964
Type: DOI
Relation: References
Year: 2023
Source: Quaternary Science Reviews
Authors: Guillerm Emmanuel , Gardien Véronique , Waldmann Nicolas D , Brall Niels S , Ariztegui Daniel , Schwab Markus J , Neugebauer Ina , Lach Adeline , Caupin Frédéric .