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首页> 外文期刊>Journal of sedimentary research >CALCIC VERTISOLS IN THE UPPER DAPTOCEPHALUS ASSEMBLAGE ZONE, BALFOUR FORMATION, KAROO BASIN, SOUTH AFRICA: IMPLICATIONS FOR LATE PERMIAN CLIMATE
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CALCIC VERTISOLS IN THE UPPER DAPTOCEPHALUS ASSEMBLAGE ZONE, BALFOUR FORMATION, KAROO BASIN, SOUTH AFRICA: IMPLICATIONS FOR LATE PERMIAN CLIMATE

机译:南非卡鲁盆地巴尔福组上部DAPPOCEPHALUS组合带钙质眩晕溶胶:对晚二叠世气候的影响

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摘要

The fully continental succession of the Beaufort Group, Karoo Basin, South Africa, has been used in the development of environmental models proposed for the interval that spans the contact between the Daptocephalus to Lystrosaurus Assemblage Zones, associated by some workers with the end-Permian extinction event. An aridification trend is widely accepted, yet geochemical data indicate that the majority of in situ paleosols encountered in this interval developed in waterlogged environments. To date, the presence of calcic paleosols in the latest Permian can be inferred only from the presence of calcite-cemented pedogenic nodules concentrated in fluvial channel-lag deposits. Here, we report on the first empirical evidence of in situ calcic Vertisols found in the upper Duptocephalus Assemblage Zone near Old Wapadsberg Pass, one of eight classic localities in which the vertebrate turnover is reported in the Karoo Basin. Seven discrete intervals of calcic Vertisols, exposed over a very limited lateral extent, occur in anti similar to 25 m stratigraphic interval. Estimates of mean annual temperature and mean annual precipitation arc calculated from geochemical measurements of one paleosol, and these estimates indicate that the prevailing climate at the time of pedogenesis was seasonally cold and humid. Correlation with adjacent stratigraphic sections indicates that the late Permian landscape experienced poorly drained and better-drained phases, interpreted to reflect a climate that varied between episodically dry and episodically wet. In contrast to a paleoenvironmental reconstruction of unidirectional aridification from strata in the Wapadsberg Pass region, this study provides new evidence for a wetting trend towards the Daptocephalus-Lystrosaurus Assemblage-Zone boundary.
机译:南非卡鲁盆地的Beaufort群的全大陆演替已被用于开发环境模型,该模型适用于跨越Dappocephalus与Lystrosaurus组合区之间接触的间隔,一些工人将其与二叠纪末灭绝事件联系起来。干旱化趋势已被广泛接受,但地球化学数据表明,在这一区间遇到的大多数原位古溶胶都是在涝渍环境中形成的。迄今为止,在最晚的二叠纪中,钙质古溶胶的存在只能从集中在河流河道滞后沉积物中的方解石胶结成成结核的存在来推断。在这里,我们报告了在Old Wapadsberg Pass附近的Duptocephalus上部组合区发现的原位钙质Vertisols的第一个经验证据,这是在Karoo盆地报告脊椎动物更替的八个经典地点之一。钙质维的七个离散区间,暴露在非常有限的横向范围内,出现在与25 m地层区间相似的范围内。根据对一种古溶胶的地球化学测量计算得出的年平均温度和年平均降水弧的估计值,这些估计值表明,土壤形成时的普遍气候是季节性寒冷和潮湿的。与相邻地层剖面的相关性表明,晚二叠世景观经历了排水不良和排水较好的阶段,这被解释为反映了气候在偶发性干燥和偶发性湿润之间变化。与Wapadsberg山口地区地层单向干旱的古环境重建相比,本研究为Daptocephalus-Lystrosaurus组合带边界的湿润趋势提供了新的证据。

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