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Solute sources and geochemical processes in Subglacial Lake Whillans, West Antarctica

机译:西南极洲Whillans湖下的溶质来源和地球化学过程

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Subglacial Lake Whillans (SLW), West Antarctica, is an active component of the subglacial hydrological network located beneath 800 m of ice. The fill and drain behavior of SLW leads to long (years to decades) water residence times relative to those in mountain glacier systems. Here, we present the aqueous geochemistry of the SLW water column and pore waters from a 38-cm-long sediment core. Stable isotopes indicate that the water is primarily sourced from basal-ice melt with a minor contribution from seawater that reaches a maximum of similar to 6% in pore water at the bottom of the sediment core. Silicate weathering products dominate the crustal (non-seawater) component of lake-and pore-water solutes, and there is evidence for cation exchange processes within the clay-rich lake sediments. The crustal solute component ranges from 6 meq L-1 in lake waters to 17 meq L-1 in the deepest pore waters. The pore-water profiles of the major dissolved ions indicate a more concentrated solute source at depth (> 38 cm). The combination of significant seawater and crustal components to SLW lake and sediment pore waters in concert with ion exchange processes result in a weathering regime that contrasts with other subglacial systems. The results also indicate cycling of marine water sourced from the sediments back to the ocean during lake drainage events.
机译:西极南极的Whillans冰河湖(SLW)是位于800 m冰以下的冰河水文网络的活跃组成部分。相对于山区冰川系统,SLW的充水和排水行为导致水停留时间长(数年至数十年)。在这里,我们介绍了SLW水柱的含水地球化学和38厘米长的沉积物岩心的孔隙水。稳定的同位素表明,水主要来自基冰融化,而海水中的贡献很小,最高达到沉积物核心底部孔隙水中的6%左右。硅酸盐风化产物在湖泊和孔隙水溶质的地壳(非海水)成分中占主导地位,并且有证据表明富含粘土的湖泊沉积物中存在阳离子交换过程。地壳的溶质成分范围从湖水的6 meq L-1到最深的孔隙水的17 meq L-1。主要溶解离子的孔隙水剖面表明,深度(> 38 cm)处的溶质来源更加集中。 SLW湖和沉积物孔隙水中大量的海水和地壳成分与离子交换过程的结合,形成了一种与其他冰河之下系统形成对比的风化状态。结果还表明,在湖泊排水事件中,来自沉积物的海水循环回了海洋。

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