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Was the Arctic Ocean ice free during the latest Cretaceous? The role of CO_2 and gateway configurations

机译:最新的白垩纪在北极海洋冰是免费的吗? CO_2和网关配置的作用

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摘要

The Arctic region is thought to play a key role in unraveling Mesozoic climate evolution. However, Late Cretaceous climate reconstructions in the high latitudes suffer from contradicting paleoclimatic interpretations. Toward the end of the Cretaceous hot-house, atmospheric CO2 concentration declined potentially enabling the formation of sea-ice in the Arctic Ocean. We use a coupled atmosphere-ocean climate model to investigate possible effects of different atmospheric CO2 levels and gateway configurations between the North proto-Atlantic Basin and the Arctic Ocean on the formation of Arctic sea-ice in the latest Cretaceous. Sensitivity tests were run with two atmospheric CO2 levels (840 and 1120 ppm, representing 3 x and 4 x pre-industrial concentrations, respectively) with six paleogeographic configurations. In the experiment with 840 ppm CO2, seasonal Arctic sea-ice is observed in each gateway configuration in December-June, while for 1120 ppm sea-ice in the central Arctic is either limited or absent, depending on gateway configuration. This suggests the existence of a CO2 threshold, estimated between 3 x and 4 x pre-industrial (PI) CO2 levels. For higher atmospheric CO2 levels seaice formation can only occur by the combined effect of cold winds blowing over the Arctic from continental North America during boreal winter and seawater freshening. The latter can be caused by either very limited or an absence of gateway connections between the Arctic and the open ocean. Such a configuration likely developed in the latest Cretaceous, i.e. close to the Cretaceous/Paleogene boundary interval.
机译:北极地区被认为在解开中生代气候进化中发挥关键作用。然而,高纬度的后期白垩纪气候重建遭受矛盾的古脑能解释。在白垩纪热门的末端,大气二氧化碳浓度下降可能在北冰洋中形成海冰。我们使用耦合的大气 - 海洋气候模型来研究不同大气二氧化碳水平和网关配置在最新白垩纪的北极海冰中的不同大气二氧化碳水平和网关配置的可能影响。敏感性试验用两个大气压二氧化碳水平(分别表示具有六个古地理构造的3 x和4 x预工业浓度的3 x和4 x预工业浓度。在840ppm CO2的实验中,在12月至6月在每个网关配置中观察到季节性北极海冰,而中央北极的1120ppm海冰是有限或不存在的,具体取决于网关配置。这表明存在CO2阈值,估计在3×和4×预工业前(PI)CO2水平之间。对于较高的大气压二氧化碳水平,海地形成只能通过冷风在北美洲北美洲北美北极吹过北极和海水清新的寒风效应。后者可以由北极和开放海洋之间的非常有限或没有网关连接引起的。这种配置可能在最新的白垩纪中开发,即靠近白垩纪/古缩界间隔。

著录项

  • 来源
    《Global and planetary change》 |2019年第6期|201-212|共12页
  • 作者单位

    Polish Acad Sci ING PAN Inst Geol Sci Res Ctr Krakow Biogeosyst Modelling Grp Senacka 1 PL-31002 Krakow Poland|Helmholtz Ctr Polar & Marine Res Alfred Wegener Inst Bussestr 24 D-27570 Bremerhaven Germany;

    Polish Acad Sci ING PAN Inst Geol Sci Res Ctr Krakow Biogeosyst Modelling Grp Senacka 1 PL-31002 Krakow Poland;

    Helmholtz Ctr Polar & Marine Res Alfred Wegener Inst Bussestr 24 D-27570 Bremerhaven Germany|Cardiff Univ Sch Earth & Ocean Sci Cardiff CF10 3AT S Glam Wales;

    Helmholtz Ctr Polar & Marine Res Alfred Wegener Inst Bussestr 24 D-27570 Bremerhaven Germany|Univ Bremen MARUM Ctr Marine Environm Sci Leobener Str D-28359 Bremen Germany;

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

    Late Cretaceous; Arctic Ocean; Sea-ice; CO2 level; Arctic gateways; Earth system model;

    机译:晚白垩世;北冰洋;海冰;二氧化碳级别;北极网关;地球系统模型;

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