【2h】

The Hadean-Archaean Environment

机译:Hadean-Archaean环境

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摘要

A sparse geological record combined with physics and molecular phylogeny constrains the environmental conditions on the early Earth. The Earth began hot after the moon-forming impact and cooled to the point where liquid water was present in ∼10 million years Subsequently, a few asteroid impacts may have briefly heated surface environments, leaving only thermophile survivors in kilometer-deep rocks. A warm 500 K, 100 bar CO2 greenhouse persisted until subducted oceanic crust sequestered CO2 into the mantle. It is not known whether the Earth's surface lingered in a ∼70°C thermophile environment well into the Archaean or cooled to clement or freezing conditions in the Hadean. Recently discovered ∼4.3 Ga rocks near Hudson Bay may have formed during the warm greenhouse. Alkalic rocks in India indicate carbonate subduction by 4.26 Ga. The presence of 3.8 Ga black shales in Greenland indicates that S-based photosynthesis had evolved in the oceans and likely Fe-based photosynthesis and efficient chemical weathering on land. Overall, mantle derived rocks, especially kimberlites and similar CO2-rich magmas, preserve evidence of subducted upper oceanic crust, ancient surface environments, and biosignatures of photosynthesis.
机译:稀疏的地质记录与物理学和分子系统发育相结合,限制了地球早期的环境条件。在形成月球的撞击后,地球开始变热,并冷却到大约一千万年的液态水。随后,一些小行星撞击可能短暂加热了地表环境,仅嗜热幸存者幸存于千米深的岩石中。持续温暖的500 K,100 bar的CO2温室直到俯冲的洋壳将CO2封存到地幔中为止。尚不清楚地球表面是在约70°C的嗜热环境中滞留在太古代中还是在哈德滩中冷却至自然或冻结状态。在温暖的温室中,最近在哈德逊湾附近发现了约4.3个Ga岩石。印度的碱岩表明碳酸盐岩被4.26 Ga俯冲。格陵兰3.8 Ga黑色页岩的存在表明,海洋中已发生基于S的光合作用,并且可能在陆地上发生了基于Fe的光合作用和有效的化学风化。总体而言,地幔衍生的岩石,尤其是金伯利岩和类似的富含CO2的岩浆,保留了俯冲的上层洋壳,古老的地表环境和光合作用的生物特征的证据。

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