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Changes in ocean denitrification during Late Carboniferous glacial-interglacial cycles

机译:石炭纪晚期冰间期循环中海洋反硝化作用的变化

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Denitrification (the process by which nitrate and nitrite are reduced to nitrogen gas) in the oxygen-minimum zones of modern oceans is an important part of the global nitrogen cycle. Variations in rates of denitrification over Quaternary glacial-interglacial timescales may have affected global climate. Evidence of denitrification has been reported from some older marine systems, but it is unclear whether denitrification rates varied during pre-Quaternary glacial cycles. Here we present ratios of organic carbon to nitrogen and nitrogen isotope data from the Upper Carboniferous black shales of the North American mid-continent. In these cyclic deposits, we find evidence of variations in the intensity of denitrification in the eastern tropical Panthalassic Ocean associated with glacially driven sea-level changes. Sedimentary delta N-15 increases during the interval of rapid sea-level rise in each cycle, indicative of intensified denitrification, before returning to background levels as sea level stabilized during the interglacial phase. Nearly identical patterns of denitrification have been observed in the eastern tropical Pacific during the Quaternary period. We therefore conclude that ice ages have produced similar oceanographic conditions and nitrogen cycle dynamics in these regions over the past 300 million years.
机译:现代海洋中氧气最少的区域中的反硝化(将硝酸盐和亚硝酸盐还原为氮气的过程)是全球氮循环的重要组成部分。第四纪冰川间时间尺度上反硝化率的变化可能影响了全球气候。一些较旧的海洋系统已经报道了反硝化作用的证据,但目前尚不清楚第四纪前冰期循环期间的反硝化率是否有所不同。在这里,我们介绍了来自北美中部大陆上石炭统黑色页岩的有机碳与氮和氮同位素的比率。在这些周期性矿床中,我们发现了由冰川带动的海平面变化引起的东部热带泛太平洋海洋反硝化强度变化的证据。在每个周期海平面迅速上升期间,沉积物δN-15增加,这表明反硝化作用增强,然后在冰间期海平面稳定后又回到本底水平。在第四纪期间,在热带东部太平洋地区观察到了几乎相同的反硝化模式。因此,我们得出结论,在过去的3亿年中,冰河时代在这些地区产生了相似的海洋条件和氮循环动态。

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