New U-Pb zircon tuff ages and revised stratigraphic correlations in the Superior craton during the Great Oxidation Episode

IF 4.8 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Earth and Planetary Science Letters Pub Date : 2024-05-29 DOI:10.1016/j.epsl.2024.118779
Birger Rasmussen , Jian-wei Zi , Andrey Bekker
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Abstract

Major environmental changes during the Great Oxidation Episode are recorded in 2.5–2.0 Ga sedimentary successions across the world. In North America, the Huronian Supergroup is the most complete succession, preserving three glacial intervals with possible equivalents in the Lake Superior region. The third and youngest glacial unit (Gowganda Formation, Cobalt Group) of the Huronian Supergroup has been correlated with glacial deposits of the Chocolay Group in the Lake Superior region. Here we present the results of in situ SHRIMP U-Pb geochronology of zircon in thin tuff layers from the basal Wewe Slate, Chocolay Group, from drill-core in the Marquette Range area, upper Michigan. Zircon U-Pb data from two intervals ∼16 m apart yielded weighted mean 207Pb/206Pb ages of 2174 ± 9 Ma and 2172 ± 6 Ma, which define the depositional ages of the Wewe Slate and the conformably underlying Kona Dolomite. In the Huronian Supergroup, SHRIMP U-Pb dating of zircon in a tuff bed from the Gordon Lake Formation, Cobalt Group, yielded a weighted mean 207Pb/206Pb age of 2318 ± 8 Ma, interpreted to be the age of deposition. Re-examination of previously published U-Pb zircon data from the Gordon Lake Formation (Rasmussen et al., 2013) yields a slightly older weighted mean 207Pb/206Pb age of 2310 ± 5 Ma. Our results show that the Wewe Slate, and probably the Kona Dolomite, are ∼150 million years younger than the ∼2.32 Ga Gordon Lake Formation, with which they were previously correlated. Our results suggest that the glacial deposits in the Lake Superior region represent a fourth Paleoproterozoic glaciation in North America, whose age range corresponds to that of the fourth and final early Paleoproterozoic glaciation in southern Africa. We propose that the Chocolay Group was deposited after the Huronian Supergroup and is broadly coeval with the rift-passive margin succession (Cycle 1 of the Kaniapiskau Supergroup) in the New Québec Orogen, Canada, whose deposition has been linked to rifting and breakup along the eastern margin of the Superior craton at ∼2.22 Ga.

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大氧化作用期间苏必利尔克拉通的新U-Pb锆凝灰岩年龄和修订的地层相关性
世界各地的 2.5-2.0 Ga 沉积演替记录了大氧化期的主要环境变化。在北美洲,休伦超群是最完整的演替,保留了三个冰川期,苏必利尔湖地区可能也有类似的冰川期。休伦超群的第三个也是最年轻的冰川单元(高干达层,科博尔特组)已与苏必利尔湖地区的乔克雷组冰川沉积物相关联。在此,我们介绍了对密歇根州上马奎特山脉地区钻芯中的 Chocolay 组基底 Wewe 板岩薄凝灰岩层中的锆石进行原位 SHRIMP U-Pb 地质年代测定的结果。相距 16 米的两个区间的锆石 U-Pb 数据得出的加权平均 Pb/Pb 年龄分别为 2174 ± 9 Ma 和 2172 ± 6 Ma,从而确定了 Wewe 板岩和下伏科纳白云岩的沉积年龄。在休伦超群中,对来自戈登湖地层、钴群的凝灰岩床中的锆石进行了 SHRIMP U-Pb 测定,得出的加权平均 Pb/Pb 年龄为 2318 ± 8 Ma,被解释为沉积年龄。-对以前发表的戈登湖地层的 U-Pb 锆石数据(Rasmussen 等人,2013 年)进行检验,得出的加权平均 Pb/Pb 年龄为 2310 ± 5 Ma,略早于此年龄。我们的研究结果表明,Wewe板岩以及科纳白云岩可能比之前与之相关的2.32 Ga的戈登湖地层年轻1.5亿年。我们的研究结果表明,苏必利尔湖地区的冰川沉积代表了北美洲古生代的第四次冰川作用,其年龄范围与非洲南部古生代早期第四次也是最后一次冰川作用的年龄范围一致。我们认为 Chocolay 组沉积于休伦超群之后,与加拿大新魁北克造山带的裂谷-被动边缘演替(Kaniapiskau 超群的第 1 周期)大致同时期,其沉积与 2.22 Ga ∼ 2.22 Ga 时苏必利尔陨石坑东缘的裂谷和断裂有关。
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来源期刊
Earth and Planetary Science Letters
Earth and Planetary Science Letters 地学-地球化学与地球物理
CiteScore
10.30
自引率
5.70%
发文量
475
审稿时长
2.8 months
期刊介绍: Earth and Planetary Science Letters (EPSL) is a leading journal for researchers across the entire Earth and planetary sciences community. It publishes concise, exciting, high-impact articles ("Letters") of broad interest. Its focus is on physical and chemical processes, the evolution and general properties of the Earth and planets - from their deep interiors to their atmospheres. EPSL also includes a Frontiers section, featuring invited high-profile synthesis articles by leading experts on timely topics to bring cutting-edge research to the wider community.
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