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Formation of supercontinents linked to increases in atmospheric oxygen

机译:超大气层的形成与大气氧的增加有关

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Atmospheric oxygen concentrations in the Earth's atmosphere rose from negligible levels in the Archaean Era to about 21% in the present day. This increase is thought to have occurred in six steps, 2.65, 2.45, 1.8, 0.6, 0.3 and 0.04 billion years ago, with a possible seventh event identified at 1.2 billion years ago. Here we show that the timing of these steps correlates with the amalgamation of Earth's land masses into supercontinents. We suggest that the continent-continent collisions required to form supercontinents produced supermountains. In our scenario, these supermountains eroded quickly and released large amounts of nutrients such as iron and phosphorus into the oceans, leading to an explosion of algae and cyanobacteria, and thus a marked increase in photosynthesis, and the photosynthetic production of O-2. Enhanced sedimentation during these periods promoted the burial of a high fraction of organic carbon and pyrite, thus preventing their reaction with free oxygen, and leading to sustained increases in atmospheric oxygen.
机译:目前,地球大气中的大气氧气浓度已从古细菌时代的微不足道的水平上升到目前的约21%。据认为,这种增加发生在六个步骤,分别是2.65亿,2.45、1.8、0.6、0.3和0.04亿年前,而可能的第七个事件是在12亿年前。在这里,我们证明了这些步骤的时机与将地球的陆地融合成超大陆有关。我们建议形成超大陆所需的大陆-大陆碰撞产生了超高山。在我们的情况下,这些超级山峰迅速侵蚀,并向海洋释放了大量的养分,例如铁和磷,导致藻类和蓝细菌爆炸,因此光合作用显着增加,并且光合产生O-2。在这些时期内增加的沉淀作用促使大量有机碳和黄铁矿被掩埋,从而阻止了它们与游离氧的反应,并导致大气中氧气的持续增加。

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