Alkenone-based SST record in sediment core YJ from northern South China Sea

DOI

Independent inference of the Asian winter monsoon (AWM), albeit achieved at several sparse sites, has reached no consensus for its variability through the Holocene. A sediment core from the northern coast of the South China Sea (SCS) was utilized to analyze organic biomarkers at (bi‐)decadal resolution, unveiling how SCS oceanic conditions fingerprint the AWM signal. Generally, alkenone sea surface temperature (SST) record, resembling the temporal structures of integrated tropical SST over the past 7500 years, shows abnormal cool temperatures (up to ~4°C) during the Little Ice Age (LIA) and between ~1200 and 2500 yr BP, when windborne terrigenous hopane compounds experienced considerable increases superimposed on a general increasing trend. Our results, together with augmented SST gradient between the SCS coast and open ocean, consistently suggest AWM strengthening toward the late Holocene. An intensified AWM during cold intervals like the LIA would have provided strong positive feedback to enhance coastal cooling.

Supplement to: Zhang, Yancheng; Zhu, Kai; Huang, Chao; Kong, Deming; He, Yuxin; Wang, Huanye; Liu, Weiguo; Xie, Zhouqing; Wei, Gangjian; Liu, Zhonghui (2019): Asian Winter Monsoon Imprint on Holocene SST Changes at the Northern Coast of the South China Sea. Geophysical Research Letters, 46(22), 13363-13370

Identifier
DOI https://doi.org/10.1594/PANGAEA.905642
Related Identifier https://doi.org/10.1029/2019GL085617
Metadata Access https://ws.pangaea.de/oai/provider?verb=GetRecord&metadataPrefix=datacite4&identifier=oai:pangaea.de:doi:10.1594/PANGAEA.905642
Provenance
Creator Zhang, Yancheng ORCID logo; Zhu, Kai; Huang, Chao; Kong, Deming; He, Yuxin ORCID logo; Wang, Huanye; Liu, Weiguo; Xie, Zhouqing; Wei, Gangjian ORCID logo; Liu, Zhonghui ORCID logo
Publisher PANGAEA
Publication Year 2019
Rights Creative Commons Attribution 4.0 International; https://creativecommons.org/licenses/by/4.0/
OpenAccess true
Representation
Resource Type Supplementary Dataset; Dataset
Format text/tab-separated-values
Size 2314 data points
Discipline Earth System Research
Spatial Coverage (112.135 LON, 21.524 LAT); South China Sea