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Sea ice and primary production proxies in surface sediments from a High Arctic Greenland fjord: Spatial distribution and implications for palaeoenvironmental studies

机译:北极高地格陵兰峡湾表层沉积物中的海冰和初级生产代表:空间分布及其对古环境研究的意义

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摘要

In order to establish a baseline for proxy-based reconstructions for the Young Sound–Tyrolerfjord system (Northeast Greenland), we analysed the spatial distribution of primary production and sea ice proxies in surface sediments from the fjord, against monitoring data from the Greenland Ecosystem Monitoring Programme. Clear spatial gradients in organic carbon and biogenic silica contents reflected marine influence, nutrient availability and river-induced turbidity, in good agreement with in situ measurements. The sea ice proxy IP25 was detected at all sites but at low concentrations, indicating that IP25 records from fjords need to be carefully considered and not directly compared to marine settings. The sea ice-associated biomarker HBI III revealed an open-water signature, with highest concentrations near the mid-July ice edge. This proxy evaluation is an important step towards reliable palaeoenvironmental reconstructions that will, ultimately, contribute to better predictions for this High Arctic ecosystem in a warming climate.
机译:为了为Young Sound-Tyrolerfjord系统(东北格陵兰)的基于代理的重建建立基准,我们对照格陵兰生态系统监测的监测数据,分析了峡湾表层沉积物中初级生产和海冰代理的空间分布。程序。有机碳和生物硅含量的清晰空间梯度反映了海洋影响,养分利用率和河流诱发的浊度,与原位测量非常吻合。在所有地点都检测到了海冰代理IP25,但浓度很低,这表明需要仔细考虑峡湾的IP25记录,而不是直接与海洋环境进行比较。与海冰相关的生物标记物HBI III显示了一个开放水域特征,在7月中旬的冰缘附近浓度最高。这项替代评估是迈向可靠的古环境重建的重要一步,最终将有助于在气候变暖的情况下更好地预测这个高北极生态系统。

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