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The origin and degassing history of the Earth's atmosphere revealed by Archean xenon

机译:太古代氙气揭示了地球大气的起源和除气历史

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Xenon (Xe) is an exceptional tracer for investigating the origin and fate of volatile elements on Earth. The initial isotopic composition of atmospheric Xe remains unknown, as do the mechanisms involved in its depletion and isotopic fractionation compared with other reservoirs in the solar system. Here we present high precision analyses of noble gases trapped in fluid inclusions of Archean quartz (Barberton, South Africa) that reveal the isotopic composition of the paleo-atmosphere at ≈3.3?Ga. The Archean atmospheric Xe is mass-dependently fractionated by 12.9±2.4?‰?u?1 (±?2σ, s.d.) relative to the modern atmosphere. The lower than today 129Xe excess requires a degassing rate of radiogenic Xe from the mantle higher than at present. The primordial Xe component delivered to the Earth's atmosphere is distinct from Solar or Chondritic Xe but similar to a theoretical component called U-Xe. Comets may have brought this component to the Earth's atmosphere during the last stages of terrestrial accretion.
机译:氙气(Xe)是一种出色的示踪剂,用于调查地球上挥发性元素的来源和命运。与太阳系中的其他储层相比,大气Xe的初始同位素组成仍然未知,其耗竭和同位素分馏所涉及的机理也是如此。在这里,我们对捕获在太古代石英(南非巴伯顿)的流体包裹体中的稀有气体进行了高精度分析,揭示了在约3.3 Ga处的古大气同位素组成。相对于现代大气,太古代大气Xe的质量分数为12.9±2.4?‰?u ?1 (±?2σ,s.d.)。低于今天的 129 Xe过量需要比目前更高的地幔中放射性Xe的脱气率。输送到地球大气中的原始Xe组分与太阳或Chondritic Xe不同,但与称为U-Xe的理论组分相似。彗星可能在陆地积聚的最后阶段将这种成分带入了地球大气层。

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