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Decoupling biogeochemical records extinction and environmental change during the Cambrian SPICE event

机译:在寒武纪SPICE事件中将生物地球化学记录灭绝和环境变化脱钩

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摘要

Several positive carbon isotope excursions in Lower Paleozoic rocks, including the prominent Upper Cambrian Steptoean Positive Carbon Isotope Excursion (SPICE), are thought to reflect intermittent perturbations in the hydrosphere-biosphere system. Models explaining these secular changes are abundant, but the synchronicity and regional variation of the isotope signals are not well understood. Examination of cores across a paleodepth gradient in the Upper Cambrian central Missouri intrashelf basin (United States) reveals a time-transgressive, facies-dependent nature of the SPICE. Although the SPICE event may be a global signal, the manner in which it is recorded in rocks should and does vary as a function of facies and carbonate platform geometry. We call for a paradigm shift to better constrain facies, stratigraphic, and biostratigraphic architecture and to apply these observations to the variability in magnitude, stratigraphic extent, and timing of the SPICE signal, as well as other biogeochemical perturbations, to elucidate the complex processes driving the ocean-carbonate system.
机译:下古生代岩石中的几个正碳同位素偏移,包括突出的上寒武统阶阶正碳同位素偏移(SPICE),被认为反映了水圈-生物圈系统中的间歇性扰动。解释这些长期变化的模型非常丰富,但是对同位素信号的同步性和区域变化却知之甚少。在密苏里州上寒武统中部陆架盆地(美国)的古深度梯度上对岩心进行的研究揭示了SPICE具有随时间变化,取决于相的性质。尽管SPICE事件可能是一个整体信号,但它在岩石中的记录方式应该并且确实根据相和碳酸盐台地几何形状而变化。我们呼吁进行范式转换,以更好地约束相,地层和生物地层构造,并将这些观察结果应用于SPICE信号的大小,地层范围和时间变化以及其他生物地球化学扰动,以阐明驱动复杂过程的过程。海洋碳酸盐系统。

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