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A planet in transition: The onset of plate tectonics on Earth between 3?and 2?Ga?

机译:过渡中的行星:地球3?和2?Ga?之间板块构造的开始。

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Many geological and geochemical changes are recorded on Earth between 3 and 2?Ga. Among the more important of these are the following: (1) increasing proportion of basalts with “arc-like” mantle sources; (2) an increasing abundance of basalts derived from enriched (EM) and depleted (DM) mantle sources; (3) onset of a Great Thermal Divergence in the mantle; (4) a decrease in degree of melting of the mantle; (5) beginning of large lateral plate motions; (6) appearance of eclogite inclusions in diamonds; (7) appearance and rapid increase in frequency of collisional orogens; (8) rapid increase in the production rate of continental crust as recorded by zircon age peaks; (9) appearance of ophiolites in the geologic record, and (10) appearance of global LIP (large igneous province) events some of which correlate with global zircon age peaks. All of these changes may be tied directly or indirectly to cooling of Earth's mantle and corresponding changes in convective style and the strength of the lithosphere, and they may record the gradual onset and propagation of plate tectonics around the planet. To further understand the changes that occurred between 3 and 2?Ga, it is necessary to compare rocks, rock associations, tectonics and geochemistry during and between zircon age peaks. Geochemistry of peak and inter-peak basalts and TTGs needs to be evaluated in terms of geodynamic models that predict the existence of an episodic thermal regime between stagnant-lid and plate tectonic regimes in early planetary evolution. Graphical abstract Display Omitted Highlights ? Recycling of crust into the deep mantle may not require plate tectonics. ? Rocks formed during zircon age valleys do not differ from those formed during age peaks. ? Major geologic and geochemical changes occur on Earth between 3 and 2?Ga. ? These changes may reflect the onset and propagation of plate tectonics.
机译:在地球上3到2 Ga之间记录了许多地质和地球化学变化。其中最重要的是:(1)具有“弧状”地幔源的玄武岩所占比例不断增加; (2)来自富(EM)和贫(DM)地幔来源的玄武岩的数量不断增加; (3)地幔开始大的热扩散; (4)地幔融化度降低; (5)开始大的侧板运动; (6)榴辉岩包裹体的外观; (7)碰撞造山带的出现和频率的迅速增加; (8)锆石年龄峰值记录的大陆壳产量迅速增加; (9)地质记录中蛇绿岩的出现,以及(10)全球LIP(大火成岩省)事件的出现,其中一些事件与全球锆石年龄峰值相关。所有这些变化都可能与地幔的冷却以及对流方式和岩石圈强度的相应变化直接或间接相关,并且它们可以记录板块构造在地球上的逐渐开始和传播。为了进一步了解3Ga和2Ga之间发生的变化,有必要比较锆石年龄高峰期间和之间的岩石,岩石缔合,构造和地球化学。高峰和峰间玄武岩以及TTG的地球化学需要根据地球动力学模型进行评估,这些模型可以预测行星早期演化中停滞盖层和板块构造区域之间存在偶发的热区域。图形摘要显示省略的突出显示?将地壳回收到深地幔中可能不需要板块构造。 ?锆石年龄谷形成的岩石与年龄高峰形成的岩石没有区别。 ?地球上主要的地质和地球化学变化发生在3至2 Ga之间。 ?这些变化可能反映了板块构造的开始和传播。

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