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Multicentennial record of Labrador Sea primary productivity and sea-ice variability archived in coralline algal barium

机译:珊瑚藻藻钡中记录的拉布拉多海初级生产力和海冰变异性的百年记录

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摘要

Accelerated warming and melting of Arctic sea-ice has been associated with significant increases in phytoplankton productivity in recent years. Here, utilizing a multiproxy approach, we reconstruct an annually resolved record of Labrador Sea productivity related to sea-ice variability in Labrador, Canada that extends well into the Little Ice Age (LIA; 1646 AD). Barium-to-calcium ratios (Ba/Ca) and carbon isotopes (δ13C) measured in long-lived coralline algae demonstrate significant correlations to both observational and proxy records of sea-ice variability, and show persistent patterns of co-variability broadly consistent with the timing and phasing of the Atlantic Multidecadal Oscillation (AMO). Results indicate reduced productivity in the Subarctic Northwest Atlantic associated with AMO cool phases during the LIA, followed by a step-wise increase from 1910 to present levels—unprecedented in the last 363 years. Increasing phytoplankton productivity is expected to fundamentally alter marine ecosystems as warming and freshening is projected to intensify over the coming century.
机译:近年来,北极海冰的加速变暖和融化与浮游植物生产力的显着提高有关。在这里,我们采用多重代理方法,重建了加拿大拉布拉多与海冰可变性相关的拉布拉多海生产力的年度解析记录,该记录一直延伸到小冰期(LIA; 1646 AD)。在长寿命珊瑚藻中测得的钡钙比(Ba / Ca)和碳同位素(δ 13 C)与海冰变化的观测记录和代理记录均显示出显着相关性,并显示协方差的持续模式与大西洋多年代际振荡(AMO)的时间和阶段大致一致。结果表明,与LIA期间AMO冷却相相关的北大西洋西北大西洋的生产力下降,随后从1910年逐步提高到现在的水平,这是过去363年以来从未有过的。预计浮游植物生产力的提高将在根本上改变海洋生态系统,因为预计变暖和新鲜度将在下个世纪加剧。

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