确定美国爱荷华州谢尔顿溪地层--威斯康星中统(MIS 3)沉积层

IF 1.9 3区 地球科学 Q3 GEOGRAPHY, PHYSICAL
STEPHANIE A. Tassier-Surine, PHILLIP J. Kerr, SUSAN M. Kilgore, BRADLEY D. Cramer
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引用次数: 0

摘要

长期以来,人们一直认为爱荷华州中北部有一片威斯康星晚期之前、伊利诺斯晚期之后的沉积层,但直到现在才得到正式承认或界定。早期的研究人员将这些沉积物称为 "塔兹维尔",而 "谢尔顿溪 "一词则是爱荷华州地质调查局最近在指南和报告中非正式使用的。最近的测绘工作使东缘的范围大大超出了之前的解释。谢尔顿溪地层的岩性特征与上覆的 Dows 地层的 Alden 成员相似,这两个单元主要通过地层位置来区分。通过岩性,主要是基质粒度和砂分岩性,可以将谢尔顿溪地层与下伏前伊利诺斯时期的沉积层区分开来。一组 22 个放射性碳年龄显示,谢尔顿溪数据中有两个不同的独立组群。这些数据有力地表明,冰两次向南推进到北纬 42°,一次是在海洋同位素阶段 (MIS) 3,另一次是在 MIS 3 晚期或可能的 MIS 2 早期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Defining the Sheldon Creek Formation, a Middle Wisconsinan (MIS 3) till in Iowa, USA

Defining the Sheldon Creek Formation, a Middle Wisconsinan (MIS 3) till in Iowa, USA

A pre-Late Wisconsinan, post-Illinoian, till sheet has long been recognized in north-central Iowa, but has not been formally recognized or defined until now. Early researchers referred to these deposits as the ‘Tazewell’, and the term ‘Sheldon Creek’ was more recently used informally by the Iowa Geological Survey in guidebooks and reports. Recent mapping has extended the eastern margin significantly past previous interpretations. The Sheldon Creek Formation has similar lithologic characteristics to the overlying Alden Member of the Dows Formation, and the two units are distinguished mainly by stratigraphic position. Differentiation from underlying Pre-Illinoian till units is accomplished using lithology, primarily matrix grain-size and sand fraction lithology. A suite of 22 radiocarbon ages indicate two distinct, separate groupings within the Sheldon Creek data. These data strongly suggest ice advanced south to 42° N twice, once during Marine Isotope Stage (MIS) 3 and again during late MIS 3 or possibly early MIS 2. The presence of the Laurentide Ice Sheet in northern Iowa during MIS 3 has significant implications for ice sheet reconstructions during this interval.

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来源期刊
Journal of Quaternary Science
Journal of Quaternary Science 地学-地球科学综合
CiteScore
4.70
自引率
8.70%
发文量
82
审稿时长
6-12 weeks
期刊介绍: The Journal of Quaternary Science publishes original papers on any field of Quaternary research, and aims to promote a wider appreciation and deeper understanding of the earth''s history during the last 2.58 million years. Papers from a wide range of disciplines appear in JQS including, for example, Archaeology, Botany, Climatology, Geochemistry, Geochronology, Geology, Geomorphology, Geophysics, Glaciology, Limnology, Oceanography, Palaeoceanography, Palaeoclimatology, Palaeoecology, Palaeontology, Soil Science and Zoology. The journal particularly welcomes papers reporting the results of interdisciplinary or multidisciplinary research which are of wide international interest to Quaternary scientists. Short communications and correspondence relating to views and information contained in JQS may also be considered for publication.
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