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A non-zircon Hf isotope record in Archean black shales from the Pilbara craton confirms changing crustal dynamics ca. 3 Ga ago

机译:来自皮尔巴拉克拉通的太古代黑色页岩中的非锆石H同位素记录证实了地壳动力学的变化。 3 Ga前

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摘要

Plate tectonics and associated subduction are unique to the Earth. Studies of Archean rocks show significant changes in composition and structural style around 3.0 to 2.5 Ga that are related to changing tectonic regime, possibly associated with the onset of subduction. Whole rock Hf isotope systematics of black shales from the Australian Pilbara craton, selected to exclude detrital zircon components, are employed to evaluate the evolution of the Archean crust. This approach avoids limitations of Hf-in-zircon analyses, which only provide input from rocks of sufficient Zr-concentration, and therefore usually represent domains that already underwent a degree of differentiation. In this study, we demonstrate the applicability of this method through analysis of shales that range in age from 3.5 to 2.8 Ga, and serve as representatives of their crustal sources through time. Their Hf isotopic compositions show a trend from strongly positive εHfinitial values for the oldest samples, to strongly negative values for the younger samples, indicating a shift from juvenile to differentiated material. These results confirm a significant change in the character of the source region of the black shales by 3 Ga, consistent with models invoking a change in global dynamics from crustal growth towards crustal reworking around this time.
机译:板块构造和相关的俯冲是地球独有的。太古代岩石的研究表明,在3.0至2.5 Ga附近,成分和结构样式发生了显着变化,这与构造状态的变化有关,可能与俯冲的发生有关。来自澳大利亚Pilbara克拉通的黑色页岩的全岩Hf同位素系统被选择用来评估碎屑锆石的演化。这种方法避免了锆石中Hf分析的局限性,Hf-in-Zircon分析仅提供了Zr浓度足够的岩石的输入,因此通常表示已经经历了一定程度的区分的区域。在这项研究中,我们通过分析年龄在3.5至2.8 Ga之间的页岩,证明了该方法的适用性,并随时间成为其地壳来源的代表。它们的H同位素组成显示出趋势,即从最老的样品强烈的正εH最终值到年轻的样品的强烈负值,表明从少年到分化物质的转变。这些结果证实了黑色页岩源区的特征发生了3 Ga的显着变化,这与在此期间引起地壳生长向地壳返工的全球动力学变化的模型一致。

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