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一个动态的盐地下水系统,位于南极冰流之下。

A dynamic saline groundwater system mapped beneath an Antarctic ice stream.

机构信息

Lamont-Doherty Earth Observatory, Columbia University, Palisades, NY, USA.

Institute of Geophysics and Planetary Physics, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA, USA.

出版信息

Science. 2022 May 6;376(6593):640-644. doi: 10.1126/science.abm3301. Epub 2022 May 5.

Abstract

Antarctica's fast-flowing ice streams drain the ice sheet, with their velocity modulated by subglacial water systems. Current knowledge of these water systems is limited to the shallow portions near the ice-bed interface, but hypothesized deeper groundwater could also influence ice streaming. Here, we use magnetotelluric and passive seismic data from Whillans Ice Stream, West Antarctica, to provide the first observations of deep sub-ice stream groundwater. Our data reveal a volume of groundwater within a >1-kilometer-thick sedimentary basin that is more than an order of magnitude larger than the known subglacial system. A vertical salinity gradient indicates exchange between paleo seawater at depth and contemporary basal meltwater above. Our results provide new constraints for subglacial water systems that affect ice streaming and subglacial biogeochemical processes.

摘要

南极洲快速流动的冰流排出冰原,其速度由冰下水系统调节。目前对这些水系统的了解仅限于接近冰床界面的浅层部分,但假设更深的地下水也可能影响冰流。在这里,我们使用来自南极洲西部的 Whillans 冰流的大地电磁和被动地震数据,首次观测到冰下溪流深处的地下水。我们的数据显示,在一个超过 1 公里厚的沉积盆地中存在着大量地下水,其体积比已知的冰下水系统大一个数量级以上。垂直盐度梯度表明,深部古海水与上方现代基岩融水之间存在交换。我们的研究结果为影响冰流和冰下水生物地球化学过程的冰下水系统提供了新的约束。

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