首页> 外文OA文献 >Ground-ice stable isotopes and cryostratigraphy reflect late Quaternary palaeoclimate in the Northeast Siberian Arctic (Oyogos Yar coast, Dmitry Laptev Strait)
【2h】

Ground-ice stable isotopes and cryostratigraphy reflect late Quaternary palaeoclimate in the Northeast Siberian Arctic (Oyogos Yar coast, Dmitry Laptev Strait)

机译:地冰稳定同位素和低温地层反映了东北西伯利亚北极晚期第四纪古气候(Oyogos Yar海岸,Dmitry Laptev海峡)

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

To reconstruct palaeoclimate and palaeoenvironmental conditions in the northeast Siberian Arctic, we studied late Quaternary permafrost at the Oyogos Yar coast (Dmitry Laptev Strait). New infrared-stimulated luminescence ages for distinctive floodplain deposits of the Kuchchugui Suite (112.5 ± 9.6 kyr) and thermokarst-lake deposits of the Krest Yuryakh Suite (102.4 ± 9.7 kyr), respectively, provide new substantial geochronological data and shed light on the landscape history of the Dmitry Laptev Strait region during Marine Isotope Stage (MIS) 5. Ground-ice stable-isotope data are presented together with cryolithological information for eight cryostratigraphic units and are complemented by data from nearby Bol'shoy Lyakhovsky Island. Our combined record of ice-wedge stable isotopes as a proxy for past winter climate conditions covers about 200 000 years and is supplemented by stable isotopes of pore and segregated ice which reflect annual climate conditions overprinted by freezing processes. Our ice-wedge stable-isotope data indicate substantial variations in northeast Siberian Arctic winter climate conditions during the late Quaternary, in particular between glacial and interglacial times but also over the last millennia to centuries. Stable isotope values of ice complex ice wedges indicate cold to very cold winter temperatures about 200 kyr ago (MIS7), very cold winter conditions about 100 kyr ago (MIS5), very cold to moderate winter conditions between about 60 and 30 kyr ago, and extremely cold winter temperatures during the Last Glacial Maximum (MIS2). Much warmer winter conditions are reflected by extensive thermokarst development during MIS5c and by Holocene ice-wedge stable isotopes. Modern ice-wedge stable isotopes are most enriched and testify to the recent winter warming in the Arctic. Hence, ice-wedge-based reconstructions of changes in winter climate conditions add substantial information to those derived from paleoecological proxies stored in permafrost and allow a distinction between seasonal trends of past climate dynamics. Future progress in ice-wedge dating and an improved temporal resolution of ice-wedge-derived climate information may help to fully explore the palaeoclimatic potential of ice wedges.
机译:为了重建东北西伯利亚北极的古气候和古环境条件,我们研究了Oyogos Yar海岸(德米特里·拉普捷夫海峡)的晚第四纪多年冻土。 Kuchchugui套房(112.5±9.6 kyr)的独特洪泛区沉积物和Krest Yuryakh Suite(102.4±9.7 kyr)的独特洪泛区沉积物的新的红外激发发光年龄分别提供了新的实质性年代学数据和景观照明海洋同位素阶段(MIS)在德米特里·拉普捷夫海峡地区的历史。5.地下冰的稳定同位素数据与八个冰层地层单位的冰冻岩学资料一起显示,并由附近的博尔舒伊·拉霍霍夫斯基岛提供了数据。我们结合冰楔稳定同位素作为过去冬季气候条件的替代记录,涵盖了约200 000年,并补充有孔隙和分离冰的稳定同位素,这些同位素反映了冻结过程覆盖的年度气候条件。我们的冰楔稳定同位素数据表明,第四纪末期,特别是在冰川期和冰川间期之间,以及最近一千年至几个世纪之间,东北西伯利亚北极冬季气候条件都有很大变化。冰块冰楔的稳定同位素值指示大约200 coldkyr以前(MIS7)的寒冷到非常寒冷的冬季温度,大约100 kyr之前的MISS(5个寒冷的冬天),大约60和30 kyr之前的非常寒冷到中度的冬天。最后冰川期(MIS2)期间的冬季极冷。 MIS5c期间广泛的热岩溶发育和全新世的冰楔稳定同位素反映了冬季更加温暖的状况。现代的冰楔稳定同位素最丰富,并证明了北极最近冬季的变暖。因此,基于冰楔的冬季气候条件变化重建为从永久冻土中存储的古生态学代理获得的信息增加了实质性信息,并可以区分过去气候动态的季节性趋势。冰楔测年的未来进展和改进的冰楔衍生气候信息的时间分辨率可能有助于充分探索冰楔的古气候潜力。

著录项

相似文献

  • 外文文献
代理获取

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