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Paired N and O isotopic analysis of nitrate and nitrite in the Arabian Sea oxygen deficient zone

机译:阿拉伯海缺氧地区硝酸盐和亚硝酸盐的N和O同位素配对分析

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摘要

The Arabian Sea is home to one of the three main oceanic oxygen deficient zones (ODZs). We present paired nitrogen (N) and oxygen (O) isotope measurements of nitrate (NO3-) and nitrite (NO2-) from the central Arabian Sea in order to understand the effects of N biogeochemistry on the distribution of these species in the low oxygen waters. Within the ODZ, NO2- accumulated in a secondary NO2- maximum (SNM), though the shape and magnitude of the SNM, along with the isotopic composition of NO3- and NO2-, were highly dependent on the location within the ODZ. We also explored water mass mixing within the Arabian Sea as an explanatory factor in the distribution of NO2- in the SNM. The intrusion of Persian Gulf Water at depth may influence the shape of the NO2- peak by introducing small amounts of dissolved oxygen (02), favoring NO2- oxidation. There was also evidence that vertical mixing may play a role in shaping the top of the SNM peak. Finally, we present evidence for NO2- oxidation and NO2- reduction co-occurring within the ODZ, as has been previously suggested in the Arabian Sea, as well as in other ODZs. The decoupling of the N and O isotopes of NO3-, deviating from the expected 1:1 ratio for dissimilatoryNO(3)(-) reduction, indicates that NO2- oxidation has a significant influence on the isotopic composition of NO3-. Additionally, the N isotopes of NO2- were generally fit well by Rayleigh curves for NO2- oxidation. However, the removal of dissolved inorganic nitrogen (DIN) within the domain reflects the importance of NO2- reduction to N-2 .
机译:阿拉伯海是三个主要的海洋缺氧地区(ODZ)之一。我们目前对来自阿拉伯海中部的硝酸盐(NO3-)和亚硝酸盐(NO2-)的氮(N)和氧(O)同位素进行配对测量,以便了解氮生物地球化学对这些物种在低氧环境中的分布的影响水域。在ODZ内,NO2-积累在次要的NO2-最大值(SNM)中,尽管SNM的形状和大小以及NO3-和NO2-的同位素组成在很大程度上取决于ODZ内的位置。我们还探索了阿拉伯海内的水团混合,以此作为SNM中NO2-分布的解释性因素。波斯湾深水的入侵可能会通过引入少量溶解的氧气(02)来促进NO2-氧化,从而影响NO2-峰的形状。也有证据表明,垂直混合可能在塑造SNM峰的顶部方面起作用。最后,我们提供了ODZ内同时发生的NO2-氧化和NO2-还原的证据,正如先前在阿拉伯海以及其他ODZ中所建议的那样。 NO3-的N和O同位素的解耦偏离了异化NO(3)(-)还原的预期1:1比例,表明NO2-氧化对NO3-的同位素组成具有重大影响。此外,NO2-的N同位素通常可以通过Rayleigh曲线很好地拟合NO2-的氧化。但是,在域内去除溶解的无机氮(DIN)反映了将NO2-还原为N-2的重要性。

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