南极洲松岛冰川最近一次冰川最大值至目前接地线退缩的近海陆上记录

IF 4.8 1区 地球科学 Q1 GEOLOGY
Geology Pub Date : 2023-08-17 DOI:10.1130/g51326.1
K. Nichols, D. Rood, R. Venturelli, G. Balco, Jonathan R. Adams, Louise Guillaume, S. Campbell, B. Goehring, B. Hall, K. Wilcken, J. Woodward, Joanne S. Johnson
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引用次数: 0

摘要

南极西部的松岛冰川是南极对全球海平面上升的最大贡献者,容易受到快速退缩的影响,但我们对其自末次盛冰期以来的冰川消融历史的了解主要基于海洋沉积物,这些沉积物记录了在全新世早期结束的退缩历史。利用一套与松岛冰川直接相邻的陆上冰川沉积物的10Be暴露年龄,我们表明这个主要冰川在全新世早期到中期迅速变薄。结果表明,在约8 ka之前,松岛冰川的厚度至少比现在厚690 m。我们推断,在最下游的地点检测到的快速变薄记录了该地点后退的接地线的到达和稳定,时间为8 ~ 6 ka。通过结合我们的暴露年龄和海洋记录,我们扩展了松岛冰川在空间和时间上的退缩知识:从现代接地线到全新世中期50公里,为未来的数值冰盖模型验证提供了重要的数据集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Offshore-onshore record of Last Glacial Maximum−to−present grounding line retreat at Pine Island Glacier, Antarctica
Pine Island Glacier, West Antarctica, is the largest Antarctic contributor to global sea-level rise and is vulnerable to rapid retreat, yet our knowledge of its deglacial history since the Last Glacial Maximum is based largely on marine sediments that record a retreat history ending in the early Holocene. Using a suite of 10Be exposure ages from onshore glacial deposits directly adjacent to Pine Island Glacier, we show that this major glacier thinned rapidly in the early to mid-Holocene. Our results indicate that Pine Island Glacier was at least 690 m thicker than present prior to ca. 8 ka. We infer that the rapid thinning detected at the site furthest downstream records the arrival and stabilization of the retreating grounding line at that site by 8−6 ka. By combining our exposure ages and the marine record, we extend knowledge of Pine Island Glacier retreat both spatially and temporally: to 50 km from the modern grounding line and to the mid-Holocene, providing a data set that is important for future numerical ice-sheet model validation.
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来源期刊
Geology
Geology 地学-地质学
CiteScore
10.00
自引率
3.40%
发文量
228
审稿时长
6.2 months
期刊介绍: Published since 1973, Geology features rapid publication of about 23 refereed short (four-page) papers each month. Articles cover all earth-science disciplines and include new investigations and provocative topics. Professional geologists and university-level students in the earth sciences use this widely read journal to keep up with scientific research trends. The online forum section facilitates author-reader dialog. Includes color and occasional large-format illustrations on oversized loose inserts.
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