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First evidence of denitrification vis-à-vis monsoon in the Arabian Sea since Late Miocene

机译:晚中新世以来阿拉伯海反季风反硝化的第一个证据

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摘要

In the Arabian Sea, South Asian monsoon (SAM)-induced high surface water productivity coupled with poor ventilation of intermediate water results in strong denitrification within the oxygen minimum zone (OMZ). Despite the significance of denitrification in the Arabian Sea, we have no long-term record of its evolution spanning the past several million years. Here, we present the first record of denitrification evolution since Late Miocene (~10.2 Ma) in the Eastern Arabian Sea, where the SAM generates moderate surface water productivity, based on the samples retrieved during the International Ocean Discovery Program (IODP) Expedition 355. We find that (i) the SAM was persistently weaker from ~10.2 to 3.1 Ma; it did not intensify at ~8 Ma in contrast to a few previous studies, (ii) on tectonic timescale, both the SAM and the East Asian Monsoon (EAM) varied synchronously, (iii) the first evidence of denitrification and productivity/SAM intensification was at ~3.2–2.8 Ma that coincided with Mid-Pliocene Warm Period (MPWP), and (iv) the modern strength of the OMZ where denitrification is a permanent feature was attained at ~1.0 Ma.
机译:在阿拉伯海,南亚季风(SAM)引起的地表水生产率高,加上中间水的通风不良,会导致最小氧气区域(OMZ)内的强烈反硝化作用。尽管在阿拉伯海进行反硝化具有重要意义,但我们在过去几百万年中都没有长期的反硝化演变记录。在这里,我们根据国际海洋发现计划(IODP)远征355期间获得的样本,提出了自东部阿拉伯海中新世晚期(〜10.2 Ma)以来SAM产生中等地表水生产率的第一个反硝化演化记录。我们发现(i)SAM从〜10.2一直弱到3.1 persistentMa;与先前的一些研究相比,它在约8Ma时没有增强;(ii)在构造时间尺度上,SAM和东亚季风(EAM)同步变化;(iii)反硝化和生产力/ SAM强化的第一个证据处于约3.2-2.8MPMa,与上新世中期(MPWP)相吻合;(iv)OMZ的现代强度(其中反硝化是永久特征)达到了1.0 Ma。

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