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地球中年期的造山活动停息。

Orogenic quiescence in Earth's middle age.

机构信息

Key Laboratory of Orogenic Belt and Crustal Evolution, MOE; School of Earth and Space Science, Peking University, Beijing 100871, China.

Department of Earth Sciences, University of Toronto, Toronto, Ontario M5S 3B1, Canada.

出版信息

Science. 2021 Feb 12;371(6530):728-731. doi: 10.1126/science.abf1876.

Abstract

Mountain belts modulate denudation flux and hydrologic processes and are thus fundamental to nutrient cycling on Earth's surface. We used europium anomalies in detrital zircons to track mountain-building processes over Earth's history. We show that the average thickness of active continental crust varied on billion-year time scales, with the thickest crust formed in the Archean and Phanerozoic. By contrast, the Proterozoic witnessed continuously decreasing crustal thickness, leaving the continents devoid of high mountains until the end of the eon. We link this gradually diminished orogenesis to the long-lived Nuna-Rodinia supercontinent, which altered the mantle thermal structure and weakened the continental lithosphere. This prolonged orogenic quiescence may have resulted in a persistent famine in the oceans and stalled life's evolution in Earth's middle age.

摘要

造山带调节剥蚀通量和水文过程,因此对地球表面的养分循环至关重要。我们利用碎屑锆石中的铕异常来追踪地球历史上的造山过程。结果表明,大陆地壳的平均厚度在十亿年的时间尺度上发生了变化,最厚的地壳形成于太古代和显生宙。相比之下,元古代见证了地壳厚度的持续减少,直到这个地质年代末期,大陆上才没有高山。我们将这种逐渐减弱的造山作用与长期存在的努纳-罗迪尼亚超大陆联系起来,该超大陆改变了地幔的热结构并削弱了大陆岩石圈。这种长期的造山活动沉寂可能导致海洋长期的食物匮乏,使地球的中年时期生命的进化陷入停滞。

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