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DOI10.1016/j.quaint.2016.08.009
Climate changes of the northeastern Tibetan Plateau since the late glaciation inferred from clay mineralogy of sediments in Kuhai Lake
Sun, Qingfeng; Colin, Christophe; Liu, Zhifei; Mischke, Steffen; Duchamp-Alphonse, Stephanie; Zhang, Chengjun; Chen, Fahu
发表日期2017
ISSN1040-6182
卷号440页码:24-34
英文摘要

A high-resolution study of clay mineralogy has been carried out on a sediment core recovered from Kuhai Lake in order to investigate climatic and environmental changes in the northeastern Tibetan Plateau since the late glacial period. Clay mineralogy reveals significant changes in sedimentary sources and hydrolysis conditions in the Kuhai Lake catchment area. Before 14.9 cal ka BP, the predominance of illite and relatively high amount of kaolinite, derived mainly from the reworking of sedimentary rocks, imply unstable cold-arid conditions and significant glacier cover that prevented from weathering of metamorphic and mafic rocks in the high relief of the catchment. Between 14.9 and 5.4 cal ka BP, an increase in smectite and chlorite contents associated with relatively low values of the illite chemistry index indicate that clay minerals derived from the weathering of metamorphic and volcanic rocks in the highlands of the catchment area. Such modifications were triggered by a melting of glaciers in the lake's catchment during the Bolling-Allerod interstadial, followed by an intensification of monsoon precipitations in the early Holocene (around 10.0 cal ka BP). Both processes are responsible for significant physical erosion in the highlands together with an efficient transport of smectite and chlorite from areas of high relief to the lake. After 5.4 cal ka BP, lower smectite and chlorite proportions, associated with a predominance of Al-rich illite and kaolinite, indicate a return to relatively dry conditions and a lowering of physical erosion in the drainage basin. Comparison between clay mineralogy and pollen records indicates that variations in weathering intensity in the Kuhai Lake catchment area and changes in its surrounding vegetation are synchronous, demonstrating the large potential of clay mineralogical analysis to trace climate change of the Tibetan Plateau. (C) 2016 Elsevier Ltd and INQUA. All rights reserved.


英文关键词Northeastern Tibetan Plateau;Weathering;Clay mineralogy;Pollen;Monsoon rainfall;Mountain glaciers
语种英语
WOS研究方向Physical Geography ; Geology
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS记录号WOS:000404315300003
来源期刊QUATERNARY INTERNATIONAL
来源机构兰州大学 ; 中国科学院青藏高原研究所
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/1752
推荐引用方式
GB/T 7714
Sun, Qingfeng,Colin, Christophe,Liu, Zhifei,et al. Climate changes of the northeastern Tibetan Plateau since the late glaciation inferred from clay mineralogy of sediments in Kuhai Lake[J]. 兰州大学, 中国科学院青藏高原研究所,2017,440:24-34.
APA Sun, Qingfeng.,Colin, Christophe.,Liu, Zhifei.,Mischke, Steffen.,Duchamp-Alphonse, Stephanie.,...&Chen, Fahu.(2017).Climate changes of the northeastern Tibetan Plateau since the late glaciation inferred from clay mineralogy of sediments in Kuhai Lake.QUATERNARY INTERNATIONAL,440,24-34.
MLA Sun, Qingfeng,et al."Climate changes of the northeastern Tibetan Plateau since the late glaciation inferred from clay mineralogy of sediments in Kuhai Lake".QUATERNARY INTERNATIONAL 440(2017):24-34.
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