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Periodic mid-Cretaceous oceanic anoxic events linked by oscillations of the phosphorus and oxygen biogeochemical cycles

机译:白垩纪中期的海洋缺氧事件,其与磷和氧生物地球化学循环的振荡有关

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摘要

[1] A series of oceanic anoxic events (OAEs) occurred in the mid-Cretaceous warm period (120–80 Ma) that have been linked with high rates of organic carbon burial, warm high- and low- latitude temperatures, and sea-level changes. OAEs have been studied individually, but a causal mechanism that connects them has been lacking. We show that peaks in phosphorus accumulation in marine sediments broadly coincide with OAEs 1a, 1b, 1d, 2, and 3, and exhibit a 5–6 Myr periodicity, which for reactive-P is prominent over 100–80 Ma. Oxic-anoxic oscillations of this frequency are also found in a model of the coupled N, P, C, and O_2 biogeochemical cycles. These oscillations are maintained by positive feedbacks between phosphate concentration, biological productivity, and anoxia in the global ocean and counteracting, but slower, negative feedbacks involving changes in atmospheric oxygen. An increase in phosphorus weathering rate above a critical threshold can shift the system into self-sustaining oscillation. This could have been caused by tectonic and volcanic forcing increasing atmospheric CO_2 and global warmth 120–80 Ma, augmented by the rise of flowering plants around 100 Ma. With a plausible forcing scenario, we are able to reproduce the approximate timing of OAEs 1a, 1b, 1d, 2, and 3 in the model.
机译:[1]在白垩纪中期(120–80 Ma)发生了一系列海洋缺氧事件(OAE),这些事件与高有机碳埋藏率,高纬度和低纬度温度以及海级别变化。对OAE进行了单独研究,但缺乏将它们联系起来的因果机制。我们显示,海洋沉积物中磷积累的峰值与OAE 1a,1b,1d,2和3大致相符,并表现出5–6 Myr周期性,其中反应性P在100–80 Ma以上是突出的。在耦合的N,P,C和O_2生物地球化学循环的模型中也发现了该频率的氧-氧振荡。这些振荡是通过全球海洋中磷酸盐浓度,生物生产力和缺氧之间的正反馈来维持的,并且抵消了涉及大气氧变化的较慢的负反馈。磷的风化速率增加到临界阈值以上可将系统转变为自持振荡。这可能是由于构造和火山作用迫使大气中CO_2的增加和全球暖化120-80 Ma,而开花植物在100 Ma左右的上升所加剧。借助合理的强迫情形,我们能够在模型中重现OAE 1a,1b,1d,2和3的大致时序。

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