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Hydrological (in)stability in Southern Siberia during the Younger Dryas and early Holocene

机译:在较年轻的Dryas和早期全新世中Southern Siberia的水文(In)稳定性

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摘要

Southern Siberia is currently undergoing rapid warming, inducing changes in vegetation, loss of permafrost, and impacts on the hydrodynamics of lakes and rivers. Lake sediments are key archives of environmental change and contain a record of ecosystem variability, as well as providing proxy indicators of wider environmental and climatic change. Investigating how hydrological systems have responded to past shifts in climate can provide essential context for better understanding future ecosystem changes in Siberia. Oxygen isotope ratios within lacustrine records provide fundamental information on past variability in hydrological systems. Here we present a new oxygen isotope record from diatom silica (delta O-18(diatom)) at Lake Baunt (55 degrees 11'15 '' N, 113 degrees 01,45 '' E), in the southern part of eastern Siberia, and consider how the site has responded to climate changes between the Younger Dryas and Early to Mid Holocene (ca. 12.4 to 6.2 ka cal BP). Excursions in delta O-18(diatom) are influenced by air temperature and the seasonality, quantity, and source of atmospheric precipitation. These variables are a function of the strength of the Siberian High, which controls temperature, the proportion and quantity of winter versus summer precipitation, and the relative dominance of Atlantic versus Pacific air masses. A regional comparison with other Siberian delta O-18(diatom) records, from lakes Baikal and Kotokel, suggests that delta O-18(diatom) variations in southern Siberia reflect increased continentality during the Younger Dryas, delayed Early Holocene warming in the region, and substantial climate instability between similar to 10.5 to similar to 8.2 ka cal BP. Unstable conditions during the Early Holocene thermal optimum most likely reflect localised changes from glacial melting. Taking the profiles from three very different lakes together, highlight the influence of site specific factors on the indi-vidual records, and how one site is not indicative of the region as a whole. Overall, the study documents how sensitive this important region is to both internal and external forcing.
机译:西伯利亚南部目前正在进行快速变暖,诱导植被的变化,永久冻土丧失,以及对湖泊和河流流体动力学的影响。湖泊沉积物是环境变化的关键档案,并含有生态系统变异性的记录,并提供更广泛的环境和气候变化的代理指标。调查水文系统如何应对气候过去的转变可以为更好地了解西伯利亚的未来生态系统变化提供必要的背景。在湖泊记录中的氧同性能率提供有关水文系统中过去变异性的基本信息。在这里,我们介绍了来自湖博湖(55度11'15''n,113度01,45')的硅藻基石(Delta O-18(Diatom))的新氧同位素记录,在西伯利亚南部的南部,并考虑该网站如何应对较年轻的Dratas和早期到全新世(CA.12.4至6.2 Ka Cal BP)之间的气候变化。 Delta O-18(硅藻)的游览受到空气温度和季节性,数量和大气降水来源的影响。这些变量是西伯利亚高强度的函数,它控制温度,冬季与夏季降水的比例和数量,以及大西洋与太平洋空气群众的相对主导地位。与湖泊贝加尔和科托基尔的其他西伯利亚三角洲O-18(Diadom)记录的区域比较表明,西伯利亚南部的Delta O-18(硅藻)变异反映了在较年轻的Dryas期间的州长增加,延迟了该地区的早期全新世更加温暖,在类似于10.2 ka cal bp的情况下,与10.2 ka cal bp相似的实质性气候不稳定。在全新世热最佳最佳期间的不稳定条件最有可能反映冰川熔化的局部变化。将曲线从三个非常不同的湖泊中占据在一起,突出了站点特定因素对INDI-VIDUAL记录的影响,以及一个网站如何指示整个地区。总体而言,研究文件这一重要地区对内部和外部强制敏感程度。

著录项

  • 来源
    《Global and planetary change》 |2020年第12期|103333.1-103333.15|共15页
  • 作者单位

    UCL Environm Change Res Ctr Dept Geog London WC1E 6BT England|Royal Holloway Univ London Dept Geog Ctr Quaternary Res Egham TW20 0EX Surrey England;

    SB RAS Vinogradov Inst Geochem Irkutsk 664033 Russia|SB RAS Irkutsk Sci Ctr Irkutsk 664033 Russia;

    SB RAS Vinogradov Inst Geochem Irkutsk 664033 Russia|Helmholtz Ctr Polar & Marine Res Alfred Wegener Inst Res Unit Potsdam D-14473 Potsdam Germany;

    British Geol Survey Natl Environm Isotope Facil Keyworth NG12 5GG Notts England;

    British Geol Survey Natl Environm Isotope Facil Keyworth NG12 5GG Notts England|Univ Nottingham Ctr Environm Geochem Sch Biosci Loughborough LE12 5RD Leics England;

    Helmholtz Ctr Polar & Marine Res Alfred Wegener Inst Res Unit Potsdam D-14473 Potsdam Germany;

    SB RAS Vinogradov Inst Geochem Irkutsk 664033 Russia;

    SB RAS Inst Earths Crust Irkutsk 664033 Russia|Irkutsk State Univ 2 Chkalov St Irkutsk 664003 Russia|Russian Acad Sci Geol Inst Pyzhevsky Lane 7 Moscow 119017 Russia;

    UB RAS Inst Mineral Miass 456317 Russia;

    Free Univ Berlin Inst Geol Sci Palaeontol D-12249 Berlin Germany;

    UCL Environm Change Res Ctr Dept Geog London WC1E 6BT England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LGIT; Siberia; Paleoclimate; Paleohydrology; Stable-isotopes; Diatoms;

    机译:Lgit;西伯利亚;古古典;古水资学;稳定同位素;硅藻;

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