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Global water cycle and the coevolution of the Earth’s interior and surface environment

机译:全球水循环与地球内部和地面环境的共同演化

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摘要

The bulk Earth composition contains probably less than 0.3% of water, but this trace amount of water can affect the long-term evolution of the Earth in a number of different ways. The foremost issue is the occurrence of plate tectonics, which governs almost all aspects of the Earth system, and the presence of water could either promote or hinder the operation of plate tectonics, depending on where water resides. The global water cycle, which circulates surface water into the deep mantle and back to the surface again, could thus have played a critical role in the Earth’s history. In this contribution, we first review the present-day water cycle and discuss its uncertainty as well as its secular variation. If the continental freeboard has been roughly constant since the Early Proterozoic, model results suggest long-term net water influx from the surface to the mantle, which is estimated to be 3−4.5×1014 g yr−1 on the billion years time scale. We survey geological and geochemical observations relevant to the emergence of continents above the sea level as well as the nature of Precambrian plate tectonics. The global water cycle is suggested to have been dominated by regassing, and its implications for geochemical cycles and atmospheric evolution are also discussed.This article is part of the themed issue ‘The origin, history and role of water in the evolution of the inner Solar System’.
机译:地球上的大块成分可能包含不到0.3%的水,但是这种微量的水可以通过多种不同方式影响地球的长期演变。最重要的问题是板块构造的发生,它控制着地球系统的几乎所有方面,而水的存在可能促进或阻碍板块构造的运行,具体取决于水的位置。因此,全球水循环将地表水循环到深层地幔中,然后又回到地表,因此可能在地球历史上发挥了关键作用。在这项贡献中,我们首先回顾了当今的水循环,并讨论了其不确定性及其长期变化。如果自古元古代以来大陆干舷基本保持恒定,则模型结果表明长期净水从地表流向地幔,估计为3-4.5×10 14 g yr <十亿年时间尺度上的sup> -1 。我们调查与海平面以上大陆的出现以及前寒武纪板块构造的性质有关的地质和地球化学观测。建议将全球水循环主要由回气控制,并讨论其对地球化学循环和大气演化的影响。本文是主题问题“水的起源,历史和在内部太阳的演化中的作用”的一部分。系统'。

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