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首页> 外文期刊>Oceanographic Literature Review >Sea-ice, primary productivity and ocean temperatures at the Antarctic marginal zone during late Pleistocene
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Sea-ice, primary productivity and ocean temperatures at the Antarctic marginal zone during late Pleistocene

机译:南极边缘区后南极边缘区的海冰,初级生产力和海洋温度

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摘要

While Pleistocene glacial-interglacial cycles are commonly associated with strong waxing and waning of Northern Hemisphere ice sheets, the response of the Antarctic ice sheet and regional changes in oceanographic and environmental conditions to Pleistocene climate dynamics remain poorly constrained. We present a reconstruction of sea-ice cover, sea surface temperature and primary productivity off the Ross Sea margin (Adare Basin at the slope of the Drygalski Basin) during the marine isotope stages (MIS) 9 to 5 (350-70 thousands years ago, encompassing Terminations Ⅳ to Ⅱ ). Our multiproxy study relies on micropa-leontology (diatoms, dinoflagellate cysts, benthic foraminifers), organic and inorganic geochemistry proxies (carbon and nitrogen isotopes, lipid biomarkers, XRF-data), and sedimentology (IRD) obtained from deep-sea core AS05-10. For each glacial-interglacial transition a clear succession of events can be observed: (near-)permanent sea ice cover during glacial stages is followed by ice-shelf break-up with episodic ice-free areas and surface water stratification. Notably, ice-shelf break-up precedes the increase in air temperature as measured in the Vostok ice core for each glacial-interglacial transition. Generally, air temperature over Vostok starts rising once sea-ice cover at site AS05-10 has significantly decreased, becoming seasonal, as indicated by the diatom species composition. This is also reflected by the high diatom productivity and increased water mixing at site AS05-10, which is indicative of its proximity to the Marginal Ice Zone. At the onset of Termination Ⅱ (MIS6 to 5), high export productivity and dysoxic bottom water conditions occurred, while water temperature increased about 5 °C. During each interglacial spring/summer sea-ice cover is most reduced, and highest productivity occurs. Following each interglacial, the warm and cold fluctuations match the sawtooth character of the temperatures over Vostok. This record illustrates that at the Ross Sea margin, sea surface conditions and (export) productivity were strongly influenced by the natural climate variability of the Pleistocene. In light of this, current global warming may lead to increased ice-shelf break-up, water column stratification and shifts in the position/size of the Marginal Ice Zone with implications for algal species composition and diversity, and for primary productivity.
机译:虽然冰水冰川间循环通常与北半球冰盖的强烈打蜡和衰落,但南极冰盖和海洋摄影和环境条件的区域变化对更新的气候动力学的响应仍然受到严重。我们在海洋同位素阶段(MIS)9至5(350-70千年前)重建海冰覆盖(Drosski盆地坡度的初级生产率)的重建海冰覆盖,海面温度和初级生产力。 ,包括终端ⅳ到Ⅱ)。我们的多元XY研究依赖于微量渗透学(硅藻,Dinoflabelate,Benthic Forminifers),有机和无机地球化学代理(碳和氮同位素,脂质生物标志物,XRF数据)和沉积物(IRD),获得深海核心AS05- 10。对于每个冰川间过渡,可以观察到的清晰连续事件:(近)冰川阶段的永久海冰覆盖之后是具有冰架的冰块和表面水分分解。值得注意的是,在沃斯托克冰芯中测量的空气温度的增加之前,冰架断裂在每个冰川层间过渡中测量。一般来说,一旦位于As05-10的海冰盖,Vostok的空气温度开始升高,正如硅藻种组合物所示。这也反映了高硅藻生产率和在部位AS05-10中的水混合增加,这表明其对边缘冰区的邻近。在终止Ⅱ(MIS6至5)的开始时,发生高的出口生产率和Dysfisic底部水条件,而水温增加约5℃。在每个春天/夏季海冰覆盖最低,产生最高的生产率。在每个中间夹层之后,温暖和冷波动与Vostok的温度的锯齿特征匹配。本次记录说明,在罗斯海缘,海面状况和(出口)生产力受到优质的自然气候变化强烈影响。鉴于此,目前的全球变暖可能导致冰架分段,水柱分层和边际冰区位置/大小的变化,具有对藻类组成和多样性的影响,以及初级生产率。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1949-1949|共1页
  • 作者单位

    Department of Earth Sciences Utrecht University Utrecht Netherlands;

    Department of Earth Sciences Utrecht University Utrecht Netherlands;

    Department of Earth Sciences Utrecht University Utrecht Netherlands;

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