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Response of Soils and Soil Ecosystems to the Pennsylvanian–Permian Climate Transition in the Upper Fluvial Plain of the Dunkard Basin, Southeastern Ohio, USA

机译:土壤与土壤生态系统对俄亥俄州东南部的博德德盆地上部河流平原宾夕法尼亚二维气候转型的响应

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摘要

Direct exposure of paleosols to the atmosphere during formation make them ideal for reconstructing paleoclimate. Paleosol and ichnofossil properties are dependently linked making it important to study them in tandem, to avoid errors in interpretation. Small scale studies (<1 km) yield high resolution data that can be used to assess allogenic processes through comparison of spatial and temporal trends. This study used field and laboratory analyses to gather data from Late Pennsylvanian to Early Permian Upper Monongahela and Lower Dunkard group paleosols on Ohio Route 33 in Meigs County, OH, USA. The physical and geochemical properties of the paleosols from the field sites indicate that channel migration was the primary control on paleosol formation in the study area, however, a clear climate signal was observed. The change in paleosol type and calculated mean annual precipitation (MAP) values indicate that the climate became more strongly seasonal and drier over the course of the Pennsylvanian–Permian transition with a temporary excursion to a more ever-wet climate with higher MAP, marked by the occurrence of the Waynesburg Coal at the Pennsylvanian–Permian boundary.
机译:在形成期间直接暴露古溶解到大气中的大气使其成为重建古气候的理想选择。古醇和Ichnofossil属性依赖地联系起来使他们在串联中研究它们是很重要的,以避免解释中的错误。小规模研究(<1公里)产生高分辨率数据,可通过空间和时间趋势进行比较来评估同种异体过程。本研究采用了现场和实验室分析,将宾夕法尼亚州初中初中的数据从俄亥俄州米格斯县俄亥俄州米格尔县的第33号公路中收集到初二蒙上的Monongahela和下达洁组古溶解。从田间部位的古溶胶物理和地球化学性质表明,通道迁移是研究区域古溶胶形成的主要对照,然而,观察到清晰的气候信号。古醇类类型和计算的平均年降水量(地图)值的变化表明,在宾夕法尼亚 - 二叠纪过渡的过程中,气候变得更加强烈,更干燥,临时短途旅行,以更高的地图更加潮湿的气候,标志着宾夕法尼亚 - 二叠纪边界的Waynesburg煤炭发生。

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  • 作者单位
  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-20 22:21:35

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