4.7 Article

Salt precipitation and dissolution in the late Quaternary Dead Sea: Evidence from chemical and δ37Cl composition of pore fluids and halites

期刊

EARTH AND PLANETARY SCIENCE LETTERS
卷 487, 期 -, 页码 127-137

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.epsl.2018.02.003

关键词

Dead Sea; halite dissolution; halite precipitation; delta Cl-37; Mount Sedom salt diapir; ICDP

资金

  1. Excellence Center of the Israel Science Foundation [1736/11]

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The chemical composition and delta Cl-37 of pore fluids from the ICDP core drilled in the deepest floor of the terminal and hypersaline Dead Sea, and halites from the adjacent Mount Sedom salt diapir, are used to establish the dynamics of halite precipitation and dissolution during the last interglacial and glacial periods. Between similar to 132 and 116 thousand years ago (ka) halites precipitated in the lake resulting in the expulsion of Na+ and Cl- from the residual solution. Over 50% of the Cl- reservoir was removed, resulting in a decrease in the Na/Cl ratio from 0.57 to 0.19. This process was accompanied by a decrease in delta Cl-37 values in the precipitating halites and the associated residual Cl- in the lake. The observed decrease fits a Rayleigh distillation curve with a fractionation factor of Delta((NaCl-Dead Sea solution)) = +0.32 parts per thousand (+/- 0.12) determined in the present study. This behavior implies negligible contribution of external sources of Cl- to the lake during the main peak of the last interglacial, MIS5e. Subsequently, during the last glacial (ca. 117 to 17 ka) dissolution of halite took place, the Na+ and Cl- inventory were replenished, accompanied by an increase in Na/C1 from 0.21 to 0.55 and in the delta Cl-37 values from -0.46 parts per thousand to -0.12 parts per thousand. While the lake underwent significant dilution during that time, the decrease in salinity was somewhat suppressed by the dissolution of the halite which was mostly derived from Mount Sedom salt diapir. (C) 2018 Elsevier B.V. All rights reserve.

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