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張宇欣博士在SCI期刊《Quaternary International》發(fā)表論文

時(shí)間:2024-02-15 20:16:55 來源:科研與研究生管理辦公室 作者:閆軍輝 閱讀:

標(biāo)題:A study on the AMS 14C chronology of late pleistocene lacustrine sediments and related proxies of organic carbon in northwest China

作者Yuxin Zhang, Yu Li, Dawei Chen, Lu Hao, Zhuowen Feng, Haiye Li, Xueru Zhou

來源出版物Quaternary International

DOI10.1016/j.quaint.2024.02.001

出版年2024

文獻(xiàn)類型Article

語種英文

摘要:Lake sediment is an effective archive containing information about past climate change, and accurately determining the deposition age of lake sediment is crucial to investigating past environmental variation. To elucidate the historical climate change modes in the northeastern Qinghai-Tibet Plateau (QTP), the sedimentary profile of a paleolake deposit on the western Qilian Mountains was examined. However, the profile exhibits notable age reversals due to the reservoir effect, as determined by analyzing 46 accelerator mass spectrometry carbon-14 (AMS 14C) dates of bulk organic matter. We therefore conduct a comprehensive examination of carbon-related indicators, including total organic carbon content (TOC), carbon/nitrogen ratio (C/N), and organic carbon isotope (δ13C). And combining with the changing patterns of them in topsoil samples around the northeastern QTP, this study determines that the formation age of the lacustrine sedimentary profile is 16278~20662 cal a BP, corresponding to the Last Glacial Maximum (LGM) and the last deglaciation. The results of sedimentary facies identified by grain size and carbonate oxygen isotope (δ18O) suggest that this profile was developed near the paleolake shoreline, resulting from a transition in lake environment from deep to shallow during the LGM and the last deglaciation. The corresponding reconstructed lake area and precipitation are 642 km2 and 238 mm, respectively, indicating a wet and cold climate mode in the northeastern QTP during this time. Furthermore, the wetter state in the northeastern QTP can be attributed to a combination of reduced evaporation caused by colder conditions and enhanced precipitation driven by stronger southerly westerly jet streams.

關(guān)鍵詞AMS 14C chronology, Organic matter, Lacustrine sediments, Paleoclimate simulations, Westerly jet streams

影響因子2.2

論文鏈接https://doi.org/10.1016/j.quaint.2024.02.001

 

編輯:閆軍輝
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