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首页> 外文期刊>Geosphere >Sequence boundaries and chronostratigraphic gaps in the Llandovery of Ohio and Kentucky: The record of early Silurian paleoceanographic events in east-central North America
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Sequence boundaries and chronostratigraphic gaps in the Llandovery of Ohio and Kentucky: The record of early Silurian paleoceanographic events in east-central North America

机译:俄亥俄和肯塔基州兰德沃里的层序界线和年代地层空白:北美中东部地区志留纪早期古海洋学事件的记录

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New and published data are integrated herein to resolve the age and stratigraphic relationships for problematic strata of the Aeronian and Telychian (Llandovery; Silurian) in Ohio and Kentucky (USA). At least two major depositional sequences were traced along the eastern flank of the Cincinnati Arch; these are separated by a regionally angular unconformity with complex topography. Underlying units are progressively truncated to the northwest while overlying strata change facies, condense, and onlap in the same direction.The basal unit of the upper sequence is the Waco Member of the Alger Shale Formation in Kentucky and southern Ohio and the Dayton Formation in western Ohio. A persistent, positive carbonate carbon isotope (?′13Ccarb) excursion associated with the mid-Telychian Valgu Event is recognized in the upper subunit of the Waco Member; the absence of a comparable signal in the Dayton Formation corroborates interpretations that it is significantly younger.The correlations proposed here can be used to understand the nuanced depositional history and chronostratigraphic completeness of the lower Silurian in eastern North America. This framework can be used to characterize sea-level history and local conditions that prevailed during global paleoenvironmental events.
机译:本文整合了新的和已发布的数据,以解决俄亥俄州和肯塔基州(美国)的Aeronian和Telychian(Llandovery; Silurian)有问题地层的年龄和地层关系。在辛辛那提拱门的东翼至少有两个主要的沉积序列。这些被复杂地形的区域角度不整合所分隔。下层单元逐渐向西北方向截断,而上层地层变化相,凝结和重叠方向相同。上层层序的基础单元是肯塔基州和俄亥俄州南部的阿尔及页岩组的韦科成员以及西部的代顿组。俄亥俄州。在韦科成员的上亚单元中,发现了与中特利契亚瓦尔古事件有关的持久的正碳酸盐碳同位素(?′13Ccarb)偏移;代顿组中没有可比的信号,这证实了它年轻得多的解释。这里提出的相关性可以用来了解北美东部志留纪下层细微的沉积历史和年代地层完整性。该框架可用于描述全球古环境事件期间盛行的海平面历史和当地条件。

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