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Carbon Isotopic Composition of Neoproterozoic Glacial Carbonates as a Test of Paleoceanographic Models for Snowball Earth Phenomena

机译:新元古代冰川碳酸盐的碳同位素组成,用于雪球地球现象的古海洋学模型测试

摘要

Consistently positive carbon isotopic values were obtained from in situ peloids, ooids, and stromatolitic carbonate within Neoproterozoic glacial successions in northern Namibia, central Australia, and the North American Cordillera. Because positive values continue upward into the immediately overlying postglacial cap carbonates, the negative isotopic excursions widely observed in those carbonate rocks require an explanation that involves a short-term perturbation of the global carbon cycle during deglaciation. The data do not support the ecological consequences of complete coverage of the glacial ocean with sea ice, as predicted in the 1998 snowball Earth hypothesis of P.F. Hoffman et al. In the snowball Earth hypothesis, the postglacial cap carbonates and associated 25% negative carbon isotopic excursions represent the physical record of CO2 transfer from the high-pCO2 snowball atmosphere (~0.12 bar) to the sedimentary reservoir via silicate weathering in the snowball aftermath. Stratigraphic timing constraints on cap carbonates imply weathering rates of ~1000 times preglacial levels to be consistent with the hypothesis. The absence of Sr isotopic variation between glacial and postglacial deposits and calculations of maximum weathering rates do not support a post-snowball weathering event as the origin for cap carbonates and associated isotopic excursions.
机译:从纳米比亚北部,澳大利亚中部和北美山脉的新元古代冰期演替中的原位倍体,卵石和层间碳酸盐获得一致的正碳同位素值。由于正值继续向上延伸到直接覆盖的冰川后盖层碳酸盐中,因此在这些碳酸盐岩石中广泛观察到的负同位素偏移需要作出解释,其中涉及在冰消融化过程中短期扰动全球碳循环。正如1998年P.F雪球地球假说所预测的那样,这些数据不支持冰海完全覆盖冰川海洋的生态后果。霍夫曼等。在雪球地球假设中,冰期后碳酸盐和相关的25%负碳同位素偏移代表了通过雪球余波中的硅酸盐风化将二氧化碳从高pCO2雪球大气(〜0.12 bar)转移到沉积储层的物理记录。帽状碳酸盐岩的地层时机限制意味着风化速率约为冰期前水平的1000倍,与假设相符。冰河和冰川后沉积物之间没有Sr同位素变化以及最大风化速率的计算不支持雪球后风化事件,因为这是碳酸盖碳酸盐和相关同位素偏移的起源。

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