Loess deposits in the low latitudes of East Asia reveal the ~20-kyr precipitation cycle

Author:

Li XushengORCID,Zhou YuwenORCID,Han ZhiyongORCID,Yuan Xiaokang,Yi Shuangwen,Zeng Yuqiang,Qin Lisha,Lu Ming,Lu HuayuORCID

Abstract

AbstractThe cycle of precipitation change is key to understanding the driving mechanism of the East Asian summer monsoon (EASM). However, the dominant cycles of EASM precipitation revealed by different proxy indicators are inconsistent, leading to the “Chinese 100 kyr problem”. In this study, we examine a high-resolution, approximately 350,000-year record from a low-latitude loess profile in China. Our analyses show that variations in the ratio of dithionite−citrate−bicarbonate extractable iron to total iron are dominated by the ~20-kyr cycle, reflecting changes in precipitation. In contrast, magnetic susceptibility varies with the ~100-kyr cycle and may be mainly controlled by temperature-induced redox processes or precipitation-induced signal smoothing. Our results suggest that changes in the EASM, as indicated by precipitation in this region, are mainly forced by precession-dominated insolation variations, and that precipitation and temperature may have varied with different cycles over the past ~350,000 years.

Funder

National Natural Science Foundation of China

National Science Foundation of China | International Cooperation and Exchange Programme

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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