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DOI10.1016/j.quascirev.2007.10.017
Holocene moisture evolution in arid central Asia and its out-of-phase relationship with Asian monsoon history
Chen, Fahu; Yu, Zicheng; Yang, Meilin; Ito, Emi; Wang, Sumin; Madsen, David B.; Huang, Xiaozhong; Zhao, Yan; Sato, Tomonori; Birks, H. John B.; Boomer, Ian; Chen, Jianhui; An, Chengbang; Wuennemann, Bernd
发表日期2008
ISSN0277-3791
卷号27期号:2018-03-04页码:351-364
英文摘要

We synthesize palaeoclimate records from the mid-latitude arid Asian region dominated today by the Westerlies ("arid central Asia" (ACA)) to evaluate spatial and temporal patterns of moisture changes during the Holocene. Sediment records from I I takes with reliable chronologies and robust proxies were selected to reconstruct moisture histories based on a five-class ordinal wetness index with assigned scores from the driest to wettest periods at individual sites for 200-year time slices. The proxies used in these records include pollen and diatom assemblages, sediment lithology, lake levels, and geochemistry (mainly isotope) data. The results of our synthesis show that ACA as a whole experienced synchronous and coherent moisture changes during the Holocene, namely a dry early Holocene, a wetter (less dry) early to mid-Holocene, and a moderately wet late Holocene. During the early Holocene most of the lakes experienced very low water levels and even dried out before ca 8 ka (1 ka = 1000cal a BP). Hence the effective-moisture history in ACA is out-of-phase with that in monsoonal Asia as documented by numerous palaeoclimate records. In monsoonal Asia, a strong summer monsoon and humid climate characterized the early Holocene, and a weakened summer monsoon and drier climate prevailed during the late Holocene, which were mainly controlled by changes in low-latitude summer insolation. In contrast, we propose that the pattern of Holocene effective-moisture evolution in the westerly dominated ACA was mainly determined by North Atlantic sea-surface temperatures (SSTs) and high-latitude air temperatures that affect the availability, amount and transport of water vapor. Also, topography of the Tibetan Plateau and adjacent Asian highlands could have contributed to the intensification of dry climate in ACA during the early Holocene, as a result of strengthening the subsidence of dry air masses, associated with stronger uplift motion on the plateau by intense heating under a stronger summer insolation. Summer insolation might have played a key role in directly controlling moisture conditions in ACA but only after the northern hemisphere ice-sheets had disappeared in the mid- and late Holocene. (C) 2007 Elsevier Ltd. All rights reserved.


语种英语
WOS研究方向Physical Geography ; Geology
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS记录号WOS:000255534600012
来源期刊QUATERNARY SCIENCE REVIEWS
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/1892
推荐引用方式
GB/T 7714
Chen, Fahu,Yu, Zicheng,Yang, Meilin,et al. Holocene moisture evolution in arid central Asia and its out-of-phase relationship with Asian monsoon history[J]. 兰州大学, 中国科学院青藏高原研究所,2008,27(2018-03-04):351-364.
APA Chen, Fahu.,Yu, Zicheng.,Yang, Meilin.,Ito, Emi.,Wang, Sumin.,...&Wuennemann, Bernd.(2008).Holocene moisture evolution in arid central Asia and its out-of-phase relationship with Asian monsoon history.QUATERNARY SCIENCE REVIEWS,27(2018-03-04),351-364.
MLA Chen, Fahu,et al."Holocene moisture evolution in arid central Asia and its out-of-phase relationship with Asian monsoon history".QUATERNARY SCIENCE REVIEWS 27.2018-03-04(2008):351-364.
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