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Evidence for rapid weathering response to climatic warming during the Toarcian Oceanic Anoxic Event

机译:在Toarcian海洋缺氧事件中快速风化对气候变暖作出反应的证据

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摘要

Chemical weathering consumes atmospheric carbon dioxide through the breakdown of silicate minerals and is thought to stabilize Earth’s long-term climate. However, the potential influence of silicate weathering on atmospheric pCO2 levels on geologically short timescales (103–105 years) remains poorly constrained. Here we focus on the record of a transient interval of severe climatic warming across the Toarcian Oceanic Anoxic Event or T-OAE from an open ocean sedimentary succession from western North America. Paired osmium isotope data and numerical modelling results suggest that weathering rates may have increased by 215% and potentially up to 530% compared to the pre-event baseline, which would have resulted in the sequestration of significant amounts of atmospheric CO2. This process would have also led to increased delivery of nutrients to the oceans and lakes stimulating bioproductivity and leading to the subsequent development of shallow-water anoxia, the hallmark of the T-OAE. This enhanced bioproductivity and anoxia would have resulted in elevated rates of organic matter burial that would have acted as an additional negative feedback on atmospheric pCO2 levels. Therefore, the enhanced weathering modulated by initially increased pCO2 levels would have operated as both a direct and indirect negative feedback to end the T-OAE.
机译:化学风化通过硅酸盐矿物的分解消耗大气中的二氧化碳,被认为可以稳定地球的长期气候。但是,硅酸盐风化对大气中pCO2水平的潜在影响在地质上较短的时间尺度上(10 3 –10 5 年)仍然受到限制。在这里,我们重点关注北美西部一个开放海洋沉积演替过程中整个Toarcian海洋缺氧事件或T-OAE发生的严重气候变暖的瞬态间隔记录。配对的data同位素数据和数值模拟结果表明,与事前基线相比,风化率可能提高了215%,甚至可能高达530%,这将导致大量的大气CO2被隔离。这一过程还将导致营养物质向海洋和湖泊的输送增加,从而刺激生物生产力,并导致随后出现的浅水缺氧现象,这是T-OAE的标志。这种提高的生物生产力和缺氧将导致有机物埋葬的比率升高,这将对大气中的pCO2水平产生额外的负面反馈。因此,由最初增加的pCO2水平调节的增强的耐候性将作为直接和间接的负反馈来终止T-OAE。

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