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Nitrogen cycle feedbacks as a control on euxinia in the mid-Proterozoic ocean

机译:氮循环反馈控制中元古代海洋中的游动性

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摘要

Geochemical evidence invokes anoxic deep oceans until the terminal Neoproterozoic similar to 0.55 Ma, despite oxygenation of Earth's atmosphere nearly 2 Gyr earlier. Marine sediments from the intervening period suggest predominantly ferruginous (anoxic Fe(II)-rich) waters, interspersed with euxinia (anoxic H2S-rich conditions) along productive continental margins. Today, sustained biotic H2S production requires NO3- depletion because denitrifiers outcompete sulphate reducers. Thus, euxinia is rare, only occurring concurrently with (steady state) organic carbon availability when N-2-fixers dominate the production in the photic zone. Here we use a simple box model of a generic Proterozoic coastal upwelling zone to show how these feedbacks caused the mid-Proterozoic ocean to exhibit a spatial/temporal separation between two states: photic zone NO3- with denitrification in lower anoxic waters, and N-2-fixation- driven production overlying euxinia. Interchange between these states likely explains the varying H2S concentration implied by existing data, which persisted until the Neoproterozoic oxygenation event gave rise to modern marine biogeochemistry.
机译:尽管地球大气氧化了将近2 Gyr,但地球化学证据一直在向缺氧深海活动,直到新元古代末期接近0.55 Ma。中间期的海洋沉积物表明,主要是铁质(富氧的Fe(II))水域,沿生产性大陆边缘散布着游民藻(富氧的H2S条件)。如今,持续的生物硫化氢生产需要消耗NO3,因为反硝化剂的竞争能力超过了硫酸盐还原剂。因此,当N-2-固色剂主导着光合区的生产时,常发生的游民少见,常与(稳态)有机碳同时发生。在这里,我们使用一个通用的元古代沿海上升流区的简单盒模型来显示这些反馈如何导致元古代中洋在两种状态之间表现出时空分离:两个低氧区域的反硝化磷区NO3-和N- 2-固定驱动的生产,覆盖在游刃有余。这些状态之间的互换可能解释了现有数据所隐含的H2S浓度变化,这种变化一直持续到新元古代的氧化事件引起了现代海洋生物地球化学。

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