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Chemical weathering under the Greenland Ice Sheet

机译:格陵兰冰原下的化学风化

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To contrast continental and alpine subglacial weathering regimes and thereby assess the role of large ice masses in chemical weathering, borehole and outlet water samples were collected from multiple locations on a major, land-terminating outlet of the Greenland Ice Sheet. Boreholes, reaching ice depths to 824 m, were drilled to the bed with hot-water methods in four areas of the ice sheet ablation zone along a 45 km transect extending inland from the outlet terminus. The bulk chemical composition of these samples shows substantially less infl uence of sulfi des and carbonates than found in alpine glaciers, suggesting that the sediment under this region of the ice sheet has become depleted of accessory minerals. The waters show wide variability in chemical composition over both large and small temporalspatial scales, suggesting large ranges in length of subglacial water storage and in rates of abrasion and comminution of subglacial earth materials. The dissolved solids concentrations found in the Greenland Ice Sheet are comparable to and in some cases exceed those of alpine glaciers, suggesting that large ice masses are capable of generating substantial dissolved loads through silicate weathering mechanisms.
机译:为了对比大陆和高山冰河下的风化状况,从而评估大冰团在化学风化中的作用,从格陵兰冰原的一个主要陆地终止出口处的多个位置收集了钻孔和出口水样。沿冰层消融区的四个区域,沿着从出口终点向内陆延伸的45 km断面,用热水方法在冰层消融区的四个区域钻出了冰深达824 m的钻孔。这些样品的整体化学成分显示出的硫和碳酸盐的影响力比在高山冰川中发现的要少得多,这表明冰盖此区域下的沉积物已耗尽了辅助矿物质。在大小时空尺度上,水域的化学成分都有很大的变化,这表明冰下储水时间长,冰下土层材料的磨蚀和粉碎速率范围大。在格陵兰冰原中发现的溶解固体浓度与高山冰川相当,在某些情况下还超过了高山冰川,这表明大冰团能够通过硅酸盐风化机制产生大量溶解负荷。

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