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Carbon sequestration in an expanded lake system during the Toarcian oceanic anoxic event

机译:在Toarcian海洋缺氧事件期间扩展湖泊系统中的碳封存

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The Early Jurassic Toarcian oceanic anoxic event (similar to 183 Ma) was marked by marine anoxia-euxinia and globally significant organic-matter burial, accompanied by a major global carbon-cycle perturbation probably linked to Karoo-Ferrar volcanism. Although the Toarcian oceanic anoxic event is well studied in the marine realm, accompanying climatic and environmental change on the continents is poorly understood. Here, utilizing radioisotopic, palynological and geochemical data from lacustrine black shales, we demonstrate that a large lake system developed contemporaneously with the Toarcian oceanic anoxic event in the Sichuan Basin, China, probably due to enhanced hydrological cycling under elevated atmospheric p(CO2). We attribute increased lacustrine organic productivity to elevated fluvial nutrient supply, which resulted in the burial of similar to 460 Gt of organic carbon in the Sichuan Basin alone, creating an important negative feedback in the global exogenic carbon cycle. We suggest that enhanced nutrient delivery to marine and large lacustrine systems was a key component in the global carbon cycle recovery during the Toarcian oceanic anoxic event and acted to shorten the duration of the recovery of global delta C-13 values.
机译:早期的侏罗纪Toarcian缺氧事件(类似于183 mA)是由海洋缺氧 - 肠道和全球性有机物埋葬的标志,并伴随着可能与Karoo-鼬火山有关的主要全球碳循环扰动。虽然Toarcian Oceoic缺氧事件在海洋境界中得到了很好的研究,但随着大陆的气候和环境变化仍然很清楚。在这里,利用来自Lapustrine Black Shales的放射性同位素,Palynologic和地球化学数据,我们证明了一个大型湖泊系统与中国四川盆地的Toarcian海洋缺氧事件一起开发,可能是由于在升高的大气P(CO2)下的水文循环。我们将Lapustrine有机生产率提高到升高的氟尿营养供应,这导致埋葬与四川盆地中的460gt的有机碳相似,在全球外源碳循环中产生了重要的负面反馈。我们建议加强对海洋和大型湖泊系统的营养交付是在Toarcian海洋缺氧事件期间全球碳循环恢复的关键组成部分,并挑战了全球δC-13值的恢复的持续时间。

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