Arid
DOI10.1016/j.epsl.2017.05.017
Immediate propagation of deglacial environmental change to deep-marine turbidite systems along the Chile convergent margin
Bernhardt, Anne1,2; Schwanghart, Wolfgang2; Hebbeln, Dierk3; Stuut, Jan-Berend W.3,4,5; Strecker, Manfred R.2
通讯作者Bernhardt, Anne
来源期刊EARTH AND PLANETARY SCIENCE LETTERS
ISSN0012-821X
EISSN1385-013X
出版年2017
卷号473页码:190-204
英文摘要

Understanding how Earth-surface processes respond to past climatic perturbations is crucial for making informed predictions about future impacts of climate change on sediment "uxes. Sedimentary records provide the archives for inferring these processes, but their interpretation is compromised by our incomplete understanding of how sediment-routing systems respond to millennial-scale climate cycles.


We analyzed seven sediment cores recovered from marine turbidite depositional sites along the Chile continental margin. The sites span a pronounced arid-to-humid gradient with variable relief and related sediment connectivity of terrestrial and marine environments. These sites allowed us to study event related depositional processes in different climatic and geomorphic settings from the Last Glacial Maximum to the present day. The three sites reveal a steep decline of turbidite deposition during deglaciation. High rates of sea-level rise postdate the decline in turbidite deposition. Comparison with paleoclimate proxies documents that the spatio-temporal sedimentary pattern rather mirrors the deglacial humidity decrease and concomitant warming with no resolvable lag times.


Our results let us infer that declining deglacial humidity decreased "uvial sediment supply. This signal propagated rapidly through the highly connected systems into the marine sink in north-central Chile. In contrast, in south-central Chile, connectivity between the Andean erosional zone and the "uvial transfer zone probably decreased abruptly by sediment trapping in piedmont lakes related to deglaciation, resulting in a sudden decrease of sediment supply to the ocean. Additionally, reduced moisture supply may have contributed to the rapid decline of turbidite deposition. These different causes result in similar depositional patterns in the marine sinks. We conclude that turbiditic strata may constitute reliable recorders of climate change across a wide range of climatic zones and geomorphic conditions. However, the underlying causes for similar signal manifestations in the sinks may differ, ranging from maintained high system connectivity to abrupt connectivity loss. (C) 2017 Elsevier B.V. All rights reserved.


英文关键词signal propagation turbidity currents Chile sediment-routing system connectivity Last Glacial Maximum
类型Article
语种英语
国家Germany ; Netherlands
收录类别SCI-E
WOS记录号WOS:000406571500019
WOS关键词SEA-SURFACE TEMPERATURE ; CLIMATE VARIABILITY ; SOUTHERN CHILE ; SEDIMENT CONNECTIVITY ; SEISMIC STRATIGRAPHY ; SIGNAL PROPAGATION ; UPWELLING REGION ; ARMORICAN MARGIN ; ODP SITE-1233 ; RECORD
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/198337
作者单位1.Free Univ Berlin, Inst Geol Sci, Berlin, Germany;
2.Potsdam Univ, Inst Earth & Environm Sci, Potsdam, Germany;
3.Univ Bremen, MARUM Ctr Marine Environm Sci, Bremen, Germany;
4.NIOZ Royal Netherlands Inst Sea Res, Dept Ocean Syst, Texel, Netherlands;
5.Univ Utrecht, Texel, Netherlands
推荐引用方式
GB/T 7714
Bernhardt, Anne,Schwanghart, Wolfgang,Hebbeln, Dierk,et al. Immediate propagation of deglacial environmental change to deep-marine turbidite systems along the Chile convergent margin[J],2017,473:190-204.
APA Bernhardt, Anne,Schwanghart, Wolfgang,Hebbeln, Dierk,Stuut, Jan-Berend W.,&Strecker, Manfred R..(2017).Immediate propagation of deglacial environmental change to deep-marine turbidite systems along the Chile convergent margin.EARTH AND PLANETARY SCIENCE LETTERS,473,190-204.
MLA Bernhardt, Anne,et al."Immediate propagation of deglacial environmental change to deep-marine turbidite systems along the Chile convergent margin".EARTH AND PLANETARY SCIENCE LETTERS 473(2017):190-204.
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