Arid
DOI10.1016/j.quascirev.2016.12.023
Climate variability in the past similar to 19,000 yr in NE Tibetan Plateau inferred from biomarker and stable isotope records of Lake Donggi Cona
Saini, Jeetendra1; Guenther, Franziska1; Aichner, Bernhard2; Mischke, Steffen3; Herzschuh, Ulrike2; Zhang, Chengjun4; Maeusbacher, Roland5; Gleixner, Gerd1
通讯作者Gleixner, Gerd
来源期刊QUATERNARY SCIENCE REVIEWS
ISSN0277-3791
出版年2017
卷号157页码:129-140
英文摘要

We investigated 4.84-m-long sediment record spanning over the Late Glacial and Holocene from Lake Donggi Cona to be able to reconstruct circulation pattern on the Tibetan Plateau (TP). Presently, Lake Donggi Cona is located at the boundaries of Westerlies and Asian monsoon circulations in the northeastern TP. However, the exact timing and stimulating mechanisms for climatic changes and monsoon shifts in this region are still debated. We used a 19-ka-long stable isotope record of sedimentary n-alkanes to address this discrepancy by providing insights into paleohydrological conditions. The SD of nC(23) is influenced by lake water evaporation; the BD. values of sedimentary nC(29) are mainly controlled by moisture source and temperature changes.


Long-chain n-alkanes dominate over the core whereas three mean clusters (i.e. microbial, aquatic and terrestrial) can be inferred. Multi-proxies suggest five major episodes in the history of Lake Donggi Cona. The Lake Donggi Cona record indicates that the Late Glacial(18.4-14.8 cal ka BP) was dominated by low productivity of mainly microbial and aquatic organisms. Relatively low delta D values suggest low temperatures and moist conditions eventually caused by stronger Westerlies, winter monsoon and melt-water influence. Likely, the shift (similar to 17.9 cal ka BP) from microbial to enhanced aquatic input suggests either a change from deep to shallow water lake or a break in local stratification. Between 14.8 and 13.0 cal ka BP, variable climatic conditions prevailed. Although the Westerlies weekend, the increase in temperature enhanced the permafrost and snow melting (displayed by a high sedimentary accumulation rate). Higher delta D values indicate increasingly arid conditions with higher temperatures which eventually lead to high evaporative conditions and lowest lake levels. Low vegetation cover and high erosion rates led to high sediment accumulation resulting in stratification followed by anoxia in the terminal lake. From 13.0 to 9.2 cal ka BP, lowered values of 813 along with high contents of terrestrial organic matter marked the early-Holocene warming indicating a further strengthening of summer precipitation and higher lake levels. A cooling trend was observed in the mid-Holocene between 9.2 and 3.0 cal ka BP accompanied by higher moisture availability (displayed by lowered SD values) caused by reduced evaporative conditions due to a drop in temperature and recovering Westerlies. After 3.0 cal ka BP, a decrease in lake productivity and cold and semi-arid conditions prevailed suggesting lower lake levels and reduced moisture from recycled air masses and Westerlies. We propose that the summer monsoon was the predominant moisture source during the Belling-Allered warm complex and early -Holocene followed by Westerlies in mid-to-late Holocene period. Stable carbon isotope values-32%o indicate the absence of C-4 -type vegetation in the region contradicting with their presence in the Lake Qinghai record. The 81) record from lake Donggi Cona highlights the importance of the interplay between Westerlies and summer monsoon circulation at this location, which is highly dynamic in northeastern plateau compared to the North Atlantic circulation and insolation changes. Consequently lake Donggi Cona might be an important anchor point for environmental reconstructions on the Tibetan Plateau. (C) 2017 The Authors. Published by Elsevier Ltd.


英文关键词n-alkanes Hydrogen isotopes (delta D) Carbon isotopes (delta C-13) Carbon preference index (CPI) Westerlies Continental air masses Precipitation Late Glacial and Holocene
类型Article
语种英语
国家Germany ; Iceland ; Peoples R China
收录类别SCI-E
WOS记录号WOS:000393936200009
WOS关键词ASIAN SUMMER MONSOON ; LAST GLACIAL MAXIMUM ; DELTA-D VALUES ; QINGHAI LAKE ; NW CHINA ; MULTI-PROXY ; NAM CO ; HYDROLOGICAL CHANGES ; HOLOCENE VEGETATION ; SEDIMENTS
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
来源机构兰州大学
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/201848
作者单位1.Max Planck Inst Biogeochem, D-07745 Jena, Germany;
2.Univ Potsdam, Inst Earth & Environm Sci, D-14476 Potsdam, Germany;
3.Univ Iceland, Sch Engn & Nat Sci, IS-101 Reykjavik, Iceland;
4.Lanzhou Univ, Coll Geol Sci & Mineral Resources, Lanzhou, Peoples R China;
5.Friedrich Schiller Univ, Inst Geog, D-07747 Jena, Germany
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GB/T 7714
Saini, Jeetendra,Guenther, Franziska,Aichner, Bernhard,et al. Climate variability in the past similar to 19,000 yr in NE Tibetan Plateau inferred from biomarker and stable isotope records of Lake Donggi Cona[J]. 兰州大学,2017,157:129-140.
APA Saini, Jeetendra.,Guenther, Franziska.,Aichner, Bernhard.,Mischke, Steffen.,Herzschuh, Ulrike.,...&Gleixner, Gerd.(2017).Climate variability in the past similar to 19,000 yr in NE Tibetan Plateau inferred from biomarker and stable isotope records of Lake Donggi Cona.QUATERNARY SCIENCE REVIEWS,157,129-140.
MLA Saini, Jeetendra,et al."Climate variability in the past similar to 19,000 yr in NE Tibetan Plateau inferred from biomarker and stable isotope records of Lake Donggi Cona".QUATERNARY SCIENCE REVIEWS 157(2017):129-140.
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