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Large-Scale Intrusion of Circumpolar Deep Water on Antarctic Margin Recorded by Stylasterid Corals

机译:Squyasterid Corals记录的南极边缘对Circumpolar深水的大规模侵入

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We present centennial-scale radiocarbon (~(14)C) records archived by deep sea stylasterid corals from the outer shelf and upper slope of the Antarctic margin. These novel stylasterids (Errina spp.) were collected from the western Ross Sea shelf (500 m) and slope (1,700 m), as well as the eastern Wilkes Land shelf (670 m). We provide two corals from each region and document an abrupt reversal of 14C ages in the upper (younger) part of each coral. We test the statistical robustness of each record and demonstrate the significance of the age reversals, as well as the ability of these corals to record environmental change. We discuss a variety of possible drivers for this ~(14)C reversal and conclude that it is most likely an encroachment of 14C-depeleted Circumpolar Deep Water (CDW). This water mass has regionally intruded onto the Antarctic margin in recent decades, facilitating loss of grounded Antarctic ice; which has implications for global sea level, deep-water formation, and carbon sequestration in the Southern Ocean. Thus, understanding the past variability of CDW on the margin is vital to better constrain climate change trajectories in the near future. We estimate large-scale encroachment of CDW onto the shelf likely commencing after 1830 CE (±120 year). We present possible drivers for the intrusion, but highlight the need for additional chronologic constraint. This study not only demonstrates the utility of a novel coral taxon but also presents the paleoceanographic community with a testable hypothesis concerning a recent, widespread CDW intrusion.
机译:我们呈现百年尺度的radioCarbon(〜(14)c)从南极边缘的外部搁板和上坡上存档的深海唱诗鼠存档的记录。这些新颖的曲调术(艰辛SPP)被从西罗斯海架(500米)和斜坡(1,700米),以及东威尔克斯陆架(670米)收集。我们为每个地区提供两枚珊瑚,并记录每个珊瑚的上部(较年轻)部分的14℃突然逆转。我们测试每个记录的统计稳健性,并证明年龄逆转的重要性,以及这些珊瑚记录环境变化的能力。我们讨论了这一各种可能的驱动因素〜(14)C反转并得出结论,它最有可能侵入14C-DECHETED循环深水(CDW)。近几十年来,这种水群地区侵入了南极边缘,促进了南极冰的丧失;这对全球海平面,深水形成和南海碳封存有影响。因此,了解在不久的将来更好地限制气候变化轨迹,了解CDW的过去变异性至关重要。我们估计在1830年(±120年)之后的架子上的大规模侵入CDW可能会开始。我们为入侵提供了可能的驱动因素,但突出了对额外的时间性约束的需求。这项研究不仅展示了一种新型珊瑚礁群体的效用,而且还展示了古生食品界,有关最近的一个普遍的CDW入侵的可经测试假设。

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