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Oceanic crustal carbon cycle drives 26-million-year atmospheric carbon dioxide periodicities

机译:海洋地壳碳循环驱动2600万年大气二氧化碳周期性

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摘要

Atmospheric carbon dioxide (CO2) data for the last 420 million years (My) show long-term fluctuations related to supercontinent cycles as well as shorter cycles at 26 to 32 My whose origin is unknown. Periodicities of 26 to 30 My occur in diverse geological phenomena including mass extinctions, flood basalt volcanism, ocean anoxic events, deposition of massive evaporites, sequence boundaries, and orogenic events and have previously been linked to an extraterrestrial mechanism. The vast oceanic crustal carbon reservoir is an alternative potential driving force of climate fluctuations at these time scales, with hydrothermal crustal carbon uptake occurring mostly in young crust with a strong dependence on ocean bottom water temperature. We combine a global plate model and oceanic paleo-age grids with estimates of paleo-ocean bottom water temperatures to track the evolution of the oceanic crustal carbon reservoir over the past 230 My. We show that seafloor spreading rates as well as the storage, subduction, and emission of oceanic crustal and mantle CO2 fluctuate with a period of 26 My. A connection with seafloor spreading rates and equivalent cycles in subduction zone rollback suggests that these periodicities are driven by the dynamics of subduction zone migration. The oceanic crust-mantle carbon cycle is thus a previously overlooked mechanism that connects plate tectonic pulsing with fluctuations in atmospheric carbon and surface environments.
机译:最近4.2亿年(My)的大气二氧化碳(CO2)数据显示与超大陆周期有关的长期波动以及26-32 My的较短周期,其起源未知。 26到30 My的周期性发生在各种地质现象中,包括大灭绝,洪水玄武岩火山作用,海洋缺氧事件,大量蒸发物沉积,层序边界和造山事件,并且以前与地外机制有关。在这些时间尺度上,巨大的海洋地壳碳库是气候波动的另一种潜在驱动力,热液地壳碳的吸收主要发生在年轻的地壳中,并且对海底水的温度有很大的依赖性。我们将全球板块模型和海洋古年龄网格与古海洋底水温度估计值结合起来,以追踪过去230 My期间海洋地壳碳储层的演化。我们显示,海底扩散速率以及海洋地壳和地幔CO2的存储,俯冲和排放在26 My期间波动。与俯冲带回滚中海底扩散速率和等效周期的联系表明,这些周期性是由俯冲带迁移的动力学驱动的。因此,大洋地幔幔碳循环是一种以前被忽视的机制,将板块构造脉动与大气碳和地表环境的波动联系起来。

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