论文标题

1150年的冰核心记录,罗斯海Polynya,南极洲

1150 year long ice core record of the Ross Sea Polynya, Antarctica

论文作者

Beers, Thomas Manuel, Mayewski, Paul Andrew, Kurbatov, Andrei, Dixon, Daniel, Bertler, Nancy, Birkel, Sean, Maasch, Kirk A., Handley, Michael, Auger, Jeff, Blunier, Thomas, Neff, Peter, Tuohy, Andrea, Simonsen, Marius Folden

论文摘要

对南极多尼亚人的过去行为的了解,例如罗斯和韦德尔海洋,有助于了解生物生产力,海冰生产,katabatic和南半球西风(SHW)风力,南极底部水(ABW)形成(ABW)形成和海洋二氧化碳序列。先前的研究将钡(BA)海洋沉积与Polynya的一级生产率联系起来(Bonn等,1998; McManus等,2002; Pirrung等,2008),Polynya面积与Katabatic风能和近端旋风旋风的区域(RSP)(Rhodes等,2009)。在这里,我们使用的是距离罗斯冰架前部仅120公里的米冰芯来捕获1150年的RSP行为。我们将大气BA波动与夏季Ross Sea Polynya的BA海洋沉积联系起来,创建了第一个深层冰芯的RSP代理。 RSP面积目前是我们1150年记录中有史以来最小的发现,在整个冰河时代,Amundsen Sea Low(ASL)强度与Ross Sea Cyclone相关。过去的RSP重建使我们能够预测RSP面积对未来气候变化的未来反应,考虑到Weddell Sea Polynya最近消失是对人为强迫的响应(De Lavergne等,2014)。

Knowledge of the past behavior of Antarctic polynyas such as the Ross and Weddell Seas contributes to the understanding of biological productivity, sea ice production, katabatic and Southern Hemisphere Westerly (SHW) wind strength, Antarctic bottom water (ABW) formation, and marine CO2 sequestration. Previous studies link barium (Ba) marine sedimentation to polynya primary productivity (Bonn et al., 1998; McManus et al., 2002; Pirrung et al., 2008), polynya area to katabatic wind strength and proximal cyclones (Bromwich et al., 1998; Drucker et al., 2011), and highlight the influence of Ross Ice Shelf calving event effects on the Ross Sea Polynya (RSP) (Rhodes et al., 2009). Here we use the RICE ice core, located just 120 km from the Ross Ice Shelf front to capture 1150 years of RSP behavior. We link atmospheric Ba fluctuations to Ba marine sedimentation in the summer Ross Sea Polynya, creating the first deep ice core based RSP proxy. RSP area is currently the smallest ever observed over our 1150-year record, and varied throughout the Little Ice Age with fluctuations in Amundsen Sea Low (ASL) strength related with Ross Sea cyclones. Past RSP reconstructions allow us to predict future responses of RSP area to future climate change, which is of special interest considering the recent disappearance of the Weddell Sea Polynya in response to anthropogenic forcing (de Lavergne et al., 2014).

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