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Temperatures and oxygen isotopic composition of Phanerozoic oceans

机译:代生代海洋的温度和氧同位素组成

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摘要

The temperature of ancient oceans is an important constraint for understanding the climate history of our planet. The classical oxygen isotope paleothermometry on fossil shells, while very proficient when applied to the younger (Cenozoic) portion of the geologic record, is believed to yield only unreliable results for the Phanerozoic "deep time", either because the empirically well documented secular trend to more negative delta O-18 values with increasing age was generated by post-depositional recrystallization processes or, if primary, implies ecologically unpalatable hot early oceans. Here we present a compilation of delta O-18 measurements for 58,532 low-Mg calcite marine shells that cover almost the entire Phanerozoic eon, argue that the secular decline of about - 6 parts per thousand is primary, propose that it reflects the changing oxygen isotopic composition of sea water, and define a new baseline trend for delta O-18 of paleo-sea water; the latter providing a new template for calculation of ambient habitat temperatures of fossil specimens. The resulting pattern for fossil taxa (foraminifera, brachiopods, belemnites and bivalves) mimics their modern counterparts in temperature ranges and modes. This conceptual framework enables application of actualistic concepts to ambient habitat temperatures of fossils and provides us with a long overdue tool for interpretation of "deep time" geologic history. (c) 2015 Elsevier B.V. All rights reserved.
机译:古代海洋的温度是了解我们星球气候历史的重要限制。化石壳上的经典氧同位素古温度计,虽然很熟练地应用于地质记录的年轻(新生代)部分,但据信对于生代“深期”只会产生不可靠的结果,这是因为经验上有据可查的沉积后的再结晶过程会随着年龄的增长而产生更多的负O-18负值,或者,如果是原生的,则意味着生态上不宜食用的高温早期海洋。在这里,我们提供了对58,532个低镁方解石海洋贝壳的δO-18测量值的汇编,这些贝壳几乎覆盖了整个生代世,认为长期下降约千分之六是主要的,提议它反映了氧同位素的变化海水的组成,并为古海水的O-18定义了新的基线趋势;后者为计算化石标本的环境栖息地温度提供了新的模板。生成的化石类群(有孔虫,腕足类,贝类和双壳类)的模式在温度范围和模式上模仿了它们的现代对应物。这个概念框架使现实概念可以应用于化石的周围栖息地温度,并为我们提供了一个解释“深部时间”地质历史的长期逾期工具。 (c)2015 Elsevier B.V.保留所有权利。

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