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Tracking millennial-scale Holocene glacial advance and retreat using osmium isotopes : insights from the Greenland ice sheet.

机译:使用同位素追踪千禧世规模的全新世冰川进退:格陵兰冰原的见解。

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摘要

High-resolution Os isotope stratigraphy can aid in reconstructing Pleistocene ice sheet fluctuation and elucidating the role of local and regional weathering fluxes on the marine Os residence time. This paper presents new Os isotope data from ocean cores adjacent to the West Greenland ice sheet that have excellent chronological controls. Cores MSM-520 and DA00-06 represent distal to proximal sites adjacent to two West Greenland ice streams. Core MSM-520 has a steadily decreasing Os signal over the last 10 kyr (187Os/188Os = 1.35–0.81). In contrast, Os isotopes from core DA00-06 (proximal to the calving front of Jakobshavn Isbræ) highlight four stages of ice stream retreat and advance over the past 10 kyr (187Os/188Os = 2.31; 1.68; 2.09; 1.47). Our high-resolution chemostratigraphic records provide vital benchmarks for ice-sheet modelers as we attempt to better constrain the future response of major ice sheets to climate change. Variations in Os isotope composition from sediment and macro-algae (seaweed) sourced from regional and global settings serve to emphasize the overwhelming effect weathering sources have on seawater Os isotope composition. Further, these findings demonstrate that the residence time of Os is shorter than previous estimates of ∼104 yr.
机译:高分辨率的Os同位素地层学可以帮助重建更新世的冰盖波动,并阐明局部和区域风化通量对海洋Os停留时间的作用。本文介绍了来自西格陵兰冰盖附近海心的Os同位素新数据,这些数据具有良好的时序控制。 MSM-520和DA00-06岩心代表了与两条西格陵兰冰河相邻的近端站点。 MSM-520的核心在最近10年内(187Os / 188Os = 1.35–0.81)的Os信号稳定下降。相反,来自DA00-06核心的Os同位素(最靠近雅各布港伊斯布雷的产犊锋)突出了冰流退缩的四个阶段,并在过去的10年中前进(187Os / 188Os = 2.31; 1.68; 2.09; 1.47)。当我们试图更好地限制主要冰原对气候变化的未来响应时,我们的高分辨率化学地热记录为冰原建模者提供了至关重要的基准。来自区域和全球环境的沉积物和大型藻类(海藻)的Os同位素组成变化有助于强调风化源对海水Os同位素组成的压倒性影响。此外,这些发现表明,Os的滞留时间比以前估计的约104年要短。

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