...
首页> 外文期刊>Boreas >Shallow depositional basins as potential archives of palaeoenvironmental changes in southwestern Greenland over the last 800 years
【24h】

Shallow depositional basins as potential archives of palaeoenvironmental changes in southwestern Greenland over the last 800 years

机译:浅层沉积盆地作为格陵兰西南部的古环境变化的潜在档案,在过去的800年里

获取原文
获取原文并翻译 | 示例
           

摘要

The Arctic, one of the most sensitive components of the Earth's climate system, experienced pronounced climatic fluctuations during the Late Holocene. In order to obtain a detailed record of past environmental and climatic variability, sedimentary cores from two interconnected infilled depositional basins in the Kobbefjord area, southwestern Greenland, were retrieved and subjected to a multi-proxy investigation. The absolute chronostratigraphy was established through radiocarbon (C-14) and short-lived radioisotope (Pb-210, Cs-137) dating. We also analysed magnetic susceptibility, grain size, X-ray fluorescence element composition, total content of carbon, nitrogen and sulphur, biogenic silica and diatom assemblages. The palaeoenvironmental reconstruction presented from the upper basin records similar to 800 years of sedimentation in a former shallow Arctic lake/pond that was modulated by catchment processes and regional hydroclimate. The record is dominated by alternating periods of increased organic and clastic deposition, suggesting warmer/drier and colder/wetter climate, respectively. Comparison of our records with other proxy-based lacustrine, marine and glacier records and instrumental measurements from Greenland and the North Atlantic reveals common climatic trends, consistent with the inferred North Atlantic Oscillation pattern. Periods at similar to 800-600, similar to 320-220 and similar to 140-30 cal. a BP correspond to the main cold phases. The earliest climatic deterioration coincides with the demise of the nearby Norse Western Settlement. The most recent cold period represents the culmination of the Little Ice Age with the maximum Holocene advances of Greenland glaciers. Ameliorated conditions predominated at similar to 550-320 and similar to 220-140 cal. a BP. The evolution of both water bodies is concluded by transition into oligotrophic peat bogs after complete infilling of the basins at similar to 30 cal. a BP. Despite differences in proxy signals between the coring sites, this study endorses the usefulness of shallow lake/pond sediments from infilled basins for environmental reconstructions, as long as local depositional processes do not mask the external driving factors.
机译:北极是地球气候系统最敏感的组成部分之一,在全新世时期经历了明显的气候波动。为了获得过去环境和气候变异性的详细记录,从格陵兰州西南部的Kobbefjord地区两种相互连接的贫困盆地进行了沉积核心,并进行了多功能调查。通过无线碳(C-14)和短寿命的放射性同位素(PB-210,CS-137)确定绝对计数秒形术。我们还分析了磁化率,粒度,X射线荧光元素组合物,碳,氮和硫,生物原二氧化硅和硅藻组合的总含量。古环境重建从上部盆地记录中提出,类似于800年的前浅北极湖/池塘沉淀,被集水过程和区域水池调制。该记录分别由交替的有机和碎屑沉积的交替,暗示加热/干燥和更冷/湿润的气候。我们与其他基于代理的湖泊,海洋和冰川记录以及格陵兰岛和北大西洋的乐器测量的记录的比较揭示了常见的气候趋势,与推断的北大西洋振荡模式一致。类似于800-600的时期,类似于320-220,类似于140-30克拉。 BP对应于主冷阶段。最早的气候恶化与附近的Norse Western Sollement的消亡一致。最近的寒冷时期代表着小型冰河时代的高潮,以最大的格陵兰冰川进展。改善条件优势在类似于550-320,类似于220-140克。 BP。在完全灌注类似于30次Cal的盆地后,通过过渡到寡营泥炭沼泽中的转变为寡萎缩泥炭沼泽的演变。 BP。尽管取芯网站之间的代理信号存在差异,但本研究支持浅层湖/池塘沉积物对环境重建的底池/池塘沉积物的有用性,只要当地沉积过程不掩盖外部驱动因子即可。

著录项

  • 来源
    《Boreas》 |2021年第1期|共17页
  • 作者单位

    Masaryk Univ Fac Sci Dept Geog Kotlarska 2 Brno 61137 Czech Republic;

    Masaryk Univ Fac Sci Dept Bot &

    Zool Kotlarska 2 Brno 61137 Czech Republic;

    Univ JE Purkyne Fac Environm Julius von Payer Inst Subarctic &

    Arctic R Kralova Vysina 7 Usti Nad Labem 40096 Czech Republic;

    Czech Univ Life Sci Prague Dept Soil Sci &

    Soil Protect Fac Agrobiol Food &

    Nat Resources Kamycka 129 Prague 16500 Praha Suchdol Czech Republic;

    Charles Univ Prague Inst Environm Studies Fac Sci Benatska 2 Prague 12801 2 Czech Republic;

    Univ South Bohemia Fac Sci Dept Ecosyst Biol Branisovska 1760 Ceske Budejovice 37005 Czech Republic;

    Czech Univ Life Sci Prague Dept Soil Sci &

    Soil Protect Fac Agrobiol Food &

    Nat Resources Kamycka 129 Prague 16500 Praha Suchdol Czech Republic;

    Czech Univ Life Sci Prague Dept Soil Sci &

    Soil Protect Fac Agrobiol Food &

    Nat Resources Kamycka 129 Prague 16500 Praha Suchdol Czech Republic;

    Czech Univ Life Sci Prague Dept Soil Sci &

    Soil Protect Fac Agrobiol Food &

    Nat Resources Kamycka 129 Prague 16500 Praha Suchdol Czech Republic;

    Masaryk Univ Fac Sci Dept Geog Kotlarska 2 Brno 61137 Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 历史地质学、地层学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号