Oceanic crustal carbon cycle drives 26-million-year atmospheric carbon dioxide periodicities
R. Dietmar Müller, Adriana Dutkiewicz
Abstract
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R. Dietmar Müller, Adriana Dutkiewicz
Abstract
Open-access reader
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.
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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.
Key concepts: Carbon dioxide, Carbon dioxide in Earth's atmosphere, Carbon cycle, Environmental science, Carbon fibers, Carbon dioxide equivalent, Atmospheric carbon cycle, Atmospheric sciences