Early Holocene ice retreat from Isle Royale in the Laurentian Great Lakes constrained with 10Be exposure-age dating

IF 2.7 Q2 GEOCHEMISTRY & GEOPHYSICS Geochronology Pub Date : 2023-11-29 DOI:10.5194/gchron-5-413-2023
E. Portenga, D. Ullman, L. Corbett, P. Bierman, Marc Caffee
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Abstract

Abstract. The timing of the Laurentide Ice Sheet's final retreat from North America's Laurentian Great Lakes is relevant to understanding regional meltwater routing, changing proglacial lake levels, and lake-bottom stratigraphy following the Last Glacial Maximum. Recessional moraines on Isle Royale, the largest island in Lake Superior, have been mapped but not directly dated. Here, we use the mean of 10 new 10Be exposure ages of glacial erratics from two recessional moraines (10.1 ± 1.1 ka, one standard deviation; excluding one anomalously young sample) to constrain the timing of Isle Royale's final deglaciation. This 10Be age is consistent with existing minimum-limiting 14C ages of basal organic sediment from two inland lakes on Isle Royale, a sediment core in Lake Superior southwest of the island, and an estimated deglaciation age of the younger of two subaqueous moraines between Isle Royale and Michigan's Keweenaw Peninsula. Relationships between Isle Royale's landform ages and Lake Superior bottom stratigraphy allow us to delineate the retreat of the Laurentide ice margin across and through Lake Superior in the early Holocene. We suggest that Laurentide ice was in contact with the southern shorelines of Lake Superior later than previously thought.
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用 10Be 暴露年代测定法确定劳伦伦五大湖罗亚尔岛全新世早期的冰退情况
摘要。劳伦特德冰原从北美劳伦森五大湖最后退却的时间与了解末次冰期极盛之后的区域融水路由、冰期湖泊水位变化以及湖底地层有关。苏必利尔湖中最大的岛屿--罗亚尔岛(Isle Royale)上的衰退期冰碛已经绘制了地图,但没有直接测定其年代。在这里,我们利用来自两个退行冰碛的冰川碎屑的 10 个新 10Be 暴露年龄的平均值(10.1 ± 1.1 ka,一个标准差;不包括一个异常年轻的样本)来确定罗亚尔岛最终冰川消融的时间。该 10Be 年龄与罗亚尔岛两个内陆湖基底有机沉积物的现有最小极限 14C 年龄、该岛西南部苏必利尔湖的一个沉积物岩芯以及罗亚尔岛和密歇根州基威纳夫半岛之间两个水下冰碛中较年轻冰碛的估计消融年龄一致。罗亚尔岛的地貌年龄与苏必利尔湖湖底地层之间的关系使我们能够勾勒出全新世早期劳伦特山脉冰缘穿越苏必利尔湖的退缩过程。我们认为,劳伦泰德冰缘与苏必利尔湖南部海岸线接触的时间比以前认为的要晚。
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
Geochronology
Geochronology Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
0.00%
发文量
35
审稿时长
19 weeks
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