Volcanically induced glacier collapses in southern Jan Mayen (Sør-Jan), Norway

IF 2.9 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Boreas Pub Date : 2024-11-27 DOI:10.1111/bor.12687
Eiliv Larsen, Astrid Lyså, Asbjørn Hiksdal, Ulysses N. Ninnemann, Stefan Wastegård
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引用次数: 0

Abstract

Jan Mayen is a small volcanic island situated in the Norwegian–Greenland Sea. The entire island was covered by a contiguous ice cap during the Last Glacial Maximum. The deglaciation of the ice cap was interrupted by a glacier advance in the southern part of the island in the Early Holocene. Today, there are no glaciers in this area, and until now it has been unknown whether any glaciers survived there into the Middle–Late Holocene. We show here that glaciers existed at several sites in the mountain areas of southern Jan Mayen. The investigations were triggered by the discovery of a relict glacier completely covered by tephra and impacted by a lava flow. Samples of ice from the glacier have 18O values that are isotopically indistinguishable from modern precipitation values and fall along the local meteoric water line trend. The lava flow in the glacier catchment and sculpted forms along the base of dry meltwater channels in bedrock show that glacier melting was abrupt and marked by sudden meltwater outbursts (jökulhlaups). Three more sites in southern Jan Mayen have meltwater channels with sculpted beds, gorges and/or sediments associated with lava flows and can be attributed to jökulhlaups caused by rapidly melting glaciers. Radiocarbon dates associated with glacial outwash sediments, cosmogenic dates of meltwater channel incisions, and cosmogenic and K-Ar dates of lava flows associated with former periods of rapid glacier melting show that the four glaciers collapsed at different times in the Holocene. None of the glaciers reformed after their collapses despite subsequent cooling event(s). Likely, the glaciers were on the brink of existence before their sudden demise.

Abstract Image

挪威Jan Mayen南部火山引发的冰川崩塌
扬马延岛是位于挪威-格陵兰海的一个小火山岛。在末次盛冰期,整个岛屿被连续的冰帽覆盖。在全新世早期,冰盖的消冰作用被岛南部的冰川推进所中断。今天,这个地区没有冰川,直到现在还不知道是否有冰川在那里存活到全新世中晚期。我们在这里展示了冰川存在于扬马延南部山区的几个地点。这次调查是由于发现了一个完全被火山覆盖并受到熔岩流影响的废弃冰川而引发的。来自冰川的冰样品的18O值在同位素上与现代降水值难以区分,并且沿着当地的大气水线趋势下降。冰川集水区的熔岩流和基岩中干融水通道底部的雕刻形式表明冰川融化是突然的,以突然的融水爆发为特征(jökulhlaups)。扬马延南部的另外三个地点有融水通道,有雕刻的河床、峡谷和/或与熔岩流有关的沉积物,这可归因于jökulhlaups冰川迅速融化造成的。与冰川外积沉积物相关的放射性碳测年、融水通道切口的宇宙成因测年以及与以前冰川快速融化期相关的熔岩流的宇宙成因和K-Ar测年表明,这四个冰川在全新世的不同时期崩塌。尽管随后发生了降温事件,但没有一个冰川在崩塌后重新形成。很可能,冰川在突然消亡之前就处于存在的边缘。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Boreas
Boreas 地学-地球科学综合
CiteScore
5.90
自引率
4.50%
发文量
36
审稿时长
>12 weeks
期刊介绍: Boreas has been published since 1972. Articles of wide international interest from all branches of Quaternary research are published. Biological as well as non-biological aspects of the Quaternary environment, in both glaciated and non-glaciated areas, are dealt with: Climate, shore displacement, glacial features, landforms, sediments, organisms and their habitat, and stratigraphical and chronological relationships. Anticipated international interest, at least within a continent or a considerable part of it, is a main criterion for the acceptance of papers. Besides articles, short items like discussion contributions and book reviews are published.
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