4.6 Article

Petrogenesis of the Eocene lacustrine evaporites in the western Qaidam Basin: Implications for regional tectonic and climate changes

Journal

SEDIMENTARY GEOLOGY
Volume 416, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.sedgeo.2021.105867

Keywords

Evaporites; Qaidam Basin; Eocene; Global cooling; Altyn Mountains

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Funding

  1. China Scholarship Council [201908080005]

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Evaporites in the western Qaidam Basin in China during the Eocene period provide important information on paleoclimate and hydrochemistry. The study identified three types of evaporites and high-frequency superimposed sequences, indicating progressive lake salinization and early diagenesis. It is suggested that the transition of evaporitic associations was influenced by global cooling and mountain building activities.
Evaporites are of great significance because they provide crucial information on paleoclimate and hydrochemistry. This paper presents a depositional system comprising a mixture of siliciclastics, carbonates, and evaporites that recorded the Eocene sedimentary evolution in thewestern Qaidam Basin, China, in response to mountain building and climate change. Based on lithology and rock textures, three types of evaporites - thickbedded halite, macrocrystalline glauberite-anhydrite association and anhydrite lumps - are identified in the Xiaganchaigou Formation (43.8-35.5 Ma). High-frequency superimposed sequences are also identified, with mineral paragenesis successively changing from argillaceous clastics to carbonates to sulfates and chloride. These associations are suggested to have formed during progressive lake salinization and early diagenesis. The results of stable isotopic data and trace element abundances suggest a semi-closed saline lacustrine environment, with intermittent terrigenous sediment and freshwater inputs during humid climatic periods. The transition of evaporitic associations from glauberite-anhydrite to halite associated with the continuous salinization of the lacustrine basin indicates a decrease inmoisture transported to the QaidamBasin due to the global cooling and the initial uplift of the Altyn Mountains in the Eocene. (C) 2021 Elsevier B.V. All rights reserved.

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