Astronomical Forcing on Loess Deposition in the Junggar Basin Since the Late Pliocene

Author:

Wang Zhixiang1ORCID,Zhang Tianfu2,Licht Alexis3ORCID,Cao Mengmeng4,Zhang Rui5

Affiliation:

1. Qinghai Provincial Key Laboratory of Geology and Environment of Salt Lakes Qinghai Institute of Salt Lakes Chinese Academy of Sciences Xining China

2. Tianjin Center China Geological Survey Tianjin China

3. CEREGE Aix Marseille University CNRS IRD INRAE CEREGE Aix‐en‐Provence France

4. School of Earth Sciences China University of Geosciences Wuhan China

5. College of Urban and Environmental Sciences Hubei Normal University Huangshi China

Abstract

AbstractDeciphering dust outbreak frequency in inland Asia during the late Cenozoic is important for predicting future hydroclimate in the arid parts of China. Here, we present an eolian sedimentary sequence in the southern Junggar Basin over the past 3.5 Ma, Northwestern China. Our data provide a minimum age of 3.5 Ma for the Gurbantunggut Desert. Rb/Sr ratios exhibit prominent 405 Kyr eccentricity cycles throughout our record with weak expression 41 Kyr cycles. We interpret this cyclicity as resulting from a strong impact of the global carbon cycle on western China hydroclimate. By contrast, gamma‐ray intensity data displays significant 100‐ and 41‐Kyr cycles after 2.8 Ma, suggesting important variations of the input of westerly derived dust. Our results demonstrate that Westerly derived moisture supply and dust input into inland Asia respond differently to orbital forcing; they suggest that moisture supply and dust transport by the Westerlies are controlled by different drivers since 3.5 Ma.

Funder

China Postdoctoral Science Foundation

State Key Laboratory of Loess and Quaternary Geology

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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