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Two-step rise of atmospheric oxygen linked to the growth of continents

机译:大气氧的两步上升与大陆的增长有关

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摘要

Earth owes its oxygenated atmosphere to its unique claim on life, but how the atmosphere evolved from an initially oxygen-free state remains unresolved. The rise of atmospheric oxygen occurred in two stages: approximately 2.5 to 2.0 billion years ago during the Great Oxidation Event and roughly 2 billion years later during the Neoproterozoic Oxygenation Event. We propose that the formation of continents about 2.7 to 2.5 billion years ago, perhaps due to the initiation of plate tectonics, may have led to oxygenation by the following mechanisms. In the first stage, the change in composition of Earth's crust from iron- and magnesium-rich mafic rocks to feldspar- and quartz-rich felsic rocks could have caused a decrease in the oxidative efficiency of the Earth's surface, allowing atmospheric O-2 to rise. Over the next billion years, as carbon steadily accumulated on the continents, metamorphic and magmatic reactions within this growing continental carbon reservoir facilitated a gradual increase in the total long-term input of CO2 to the ocean-atmosphere system. Given that O-2 is produced during organic carbon burial, the increased CO2 input may have triggered a second rise in O-2. A two-step rise in atmospheric O-2 may therefore be a natural consequence of plate tectonics, continent formation and the growth of a crustal carbon reservoir.
机译:地球将其含氧的大气归功于其对生命的独特主张,但大气如何从最初的无氧状态演变至今仍未解决。大气中氧气的上升分为两个阶段:大约在2.5到20亿年前发生在大氧化事件中,大约在20亿年之后发生在新元古代氧化事件中。我们认为,可能是由于板块构造的开始,大约2.7至25亿年前的大陆形成可能通过以下机制导致了充氧作用。在第一阶段,地壳成分从富含铁和镁的铁镁铁质岩石变为富含长石和石英的长英质岩石,可能会导致地球表面的氧化效率下降,从而使大气中的O-2上升。在接下来的十亿年里,随着碳在大陆上稳定地积累,不断增长的大陆碳库中的变质和岩浆反应促使长期向海洋-大气系统输入的总二氧化碳逐渐增加。考虑到O-2是在有机碳埋葬过程中产生的,增加的CO2输入量可能会触发O-2的第二次上升。因此,大气O-2的两步上升可能是板块构造,大陆形成和地壳碳储层增长的自然结果。

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