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Revised chronology of the ICDP Dead Sea deep drill core relates drier-wetter-drier climate cycles to insolation over the past 220 kyr.

Authors :
Goldstein, Steven L.
Kiro, Yael
Torfstein, Adi
Kitagawa, Hiroyuki
Tierney, Jessica
Stein, Mordechai
Source :
Quaternary Science Reviews. Sep2020, Vol. 244, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

The Dead Sea Deep Drilling Project drilled 456 meters into the deepest floor of the Dead Sea and recovered a record of the past ∼220 kyr of the Levant hydroclimate history, that is, Marine Isotope Stages 1–7, including the last three interglacials and the last two glacials. We present an updated chronology of the core from DSDDP Hole 5017-1-A, from the Dead Sea's deepest basin, that refines our previous chronology (Torfstein et al. 2015) based on new information. The updated chronology uses the following approaches: (1) radiocarbon ages of Kitagawa et al. (2017); (2) correlation of specific layers in the core with U–Th-dated sediments on the Dead Sea margin, particularly during the interval of glacial Lake Lisan (MIS 2,3,4); (3) tuning of the δ18O data of DSDDP core aragonite to the U–Th dated oxygen isotopes of regional cave speleothems; and (4) tuning of the DSDDP aragonite δ18O data to summer insolation curves when the cave δ18O chronology is less clear. The updated chronology reveals a strong relationship between the sedimentary facies comprising the core and Northern Hemisphere summer insolation variations. It shows that sequences of sediments marking drier/wetter/drier climate conditions in the lake's watershed (e.g., salt/muds/salt, respectively) appear across the flank/peak/flank segments of several summer insolation peaks. In particular, the transition from drier to wetter sedimentary facies during mid-latitude insolation peaks coincides with the intervals of sapropel conditions in the Mediterranean, reflecting enhanced Nile flow due to intense African monsoonal conditions, and marking the impact of the tropical precession cycles on Eastern Mediterranean hydroclimate. This pattern was lost during MIS 2,3,4, when mostly sequences of primary aragonite are punctuated by gypsum precipitation during Heinrich events, marking the strong impact of the North Atlantic on the last glacial Levant hydroclimate. • Updated chronology of the ICDP Dead Sea drill core DSDDP Hole 5017-1-A. • Strong relationships persist between the core's sedimentary facies and NH summer insolation. • Interglacial arid conditions occurred during intervals of enhanced changes in insolation. • Interglacial Levant wetter conditions coincide with Mediterranean sapropels and other NH summer insolation peaks. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02773791
Volume :
244
Database :
Academic Search Index
Journal :
Quaternary Science Reviews
Publication Type :
Academic Journal
Accession number :
145474561
Full Text :
https://doi.org/10.1016/j.quascirev.2020.106460