Micro-facies and µXRF element scanning data of Dead Sea sediment cores DSEn and 5017-1

Fuente: PANGAEA
Saved in:
Bibliographic Details
Main Authors: Neugebauer, Ina, Brauer, Achim, Schwab, Markus J, Dulski, Peter, Frank, Ute, Hadzhiivanova, Elitsa, Kitagawa, Hiroyuki, Litt, Thomas, Schiebel, Vera, Taha, Nimer, Waldmann, Nicolas D, DSDDP Scientific Party
Format: Dataset Open Access
Language:en
Published: PANGAEA 2015
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1867172223767281664
author Neugebauer, Ina
Brauer, Achim
Schwab, Markus J
Dulski, Peter
Frank, Ute
Hadzhiivanova, Elitsa
Kitagawa, Hiroyuki
Litt, Thomas
Schiebel, Vera
Taha, Nimer
Waldmann, Nicolas D
DSDDP Scientific Party
author_facet Neugebauer, Ina
Brauer, Achim
Schwab, Markus J
Dulski, Peter
Frank, Ute
Hadzhiivanova, Elitsa
Kitagawa, Hiroyuki
Litt, Thomas
Schiebel, Vera
Taha, Nimer
Waldmann, Nicolas D
DSDDP Scientific Party
collection Datos científicos de ciencias marinas y ambientales
contents Laminated lake sediments from the Dead Sea basin provide high-resolution records of climatic variability in the eastern Mediterranean region, which is especially sensitive to changing climatic conditions. In this study, we aim on detailed reconstruction of climatic fluctuations and related changes in the frequency of flood and dust deposition events at ca. 3300 and especially at 2800 cal. yr BP from high-resolution sediment records of the Dead Sea basin. A ca. 4-m-thick, mostly varved sediment section from the western margin of the Dead Sea (DSEn - Ein Gedi profile) was analysed and correlated to the new International Continental Scientific Drilling Program (ICDP) Dead Sea Deep Drilling Project core 5017-1 from the deep basin. To detect even single event layers, we applied a multi-proxy approach of high-resolution microscopic thin section analyses, micro-X-ray fluorescence (µ-XRF) element scanning and magnetic susceptibility measurements, supported by grain size data and palynological analyses. Based on radiocarbon and varve dating, two pronounced dry periods were detected at ~3500-3300 and ~3000-2400 cal. yr BP which are differently expressed in the sediment records. In the shallow-water core (DSEn), the older dry period is characterised by a thick sand deposit, whereas the sedimentological change at 2800 cal. yr BP is less pronounced and characterised mainly by an enhanced frequency of coarse detrital layers interpreted as erosion events. In the 5017-1 deep-basin core, both dry periods are depicted by halite deposits. The onset of the younger dry period coincides with the Homeric Grand Solar Minimum at ca. 2800 cal. yr BP. Our results suggest that during this period, the Dead Sea region experienced an overall dry climate, superimposed by an increased occurrence of flash floods caused by a change in synoptic weather patterns.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_855227
institution PANGAEA
language en
publishDate 2015
publisher PANGAEA
record_format pangaea
spellingShingle Micro-facies and µXRF element scanning data of Dead Sea sediment cores DSEn and 5017-1
Neugebauer, Ina
Brauer, Achim
Schwab, Markus J
Dulski, Peter
Frank, Ute
Hadzhiivanova, Elitsa
Kitagawa, Hiroyuki
Litt, Thomas
Schiebel, Vera
Taha, Nimer
Waldmann, Nicolas D
DSDDP Scientific Party
Dead Sea Basin, Israel; DRILL; Drilling/drill rig; DSDDP_5017-1; DSEn; Ein Gedi; GeoForschungszentrum Potsdam; GFZ
Laminated lake sediments from the Dead Sea basin provide high-resolution records of climatic variability in the eastern Mediterranean region, which is especially sensitive to changing climatic conditions. In this study, we aim on detailed reconstruction of climatic fluctuations and related changes in the frequency of flood and dust deposition events at ca. 3300 and especially at 2800 cal. yr BP from high-resolution sediment records of the Dead Sea basin. A ca. 4-m-thick, mostly varved sediment section from the western margin of the Dead Sea (DSEn - Ein Gedi profile) was analysed and correlated to the new International Continental Scientific Drilling Program (ICDP) Dead Sea Deep Drilling Project core 5017-1 from the deep basin. To detect even single event layers, we applied a multi-proxy approach of high-resolution microscopic thin section analyses, micro-X-ray fluorescence (µ-XRF) element scanning and magnetic susceptibility measurements, supported by grain size data and palynological analyses. Based on radiocarbon and varve dating, two pronounced dry periods were detected at ~3500-3300 and ~3000-2400 cal. yr BP which are differently expressed in the sediment records. In the shallow-water core (DSEn), the older dry period is characterised by a thick sand deposit, whereas the sedimentological change at 2800 cal. yr BP is less pronounced and characterised mainly by an enhanced frequency of coarse detrital layers interpreted as erosion events. In the 5017-1 deep-basin core, both dry periods are depicted by halite deposits. The onset of the younger dry period coincides with the Homeric Grand Solar Minimum at ca. 2800 cal. yr BP. Our results suggest that during this period, the Dead Sea region experienced an overall dry climate, superimposed by an increased occurrence of flash floods caused by a change in synoptic weather patterns.
title Micro-facies and µXRF element scanning data of Dead Sea sediment cores DSEn and 5017-1
topic Dead Sea Basin, Israel; DRILL; Drilling/drill rig; DSDDP_5017-1; DSEn; Ein Gedi; GeoForschungszentrum Potsdam; GFZ
url https://doi.org/10.1594/PANGAEA.855227