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Nutrient distribution and nitrogen and oxygen isotopic composition of nitrate in water masses of the subtropical southern Indian Ocean

机译:亚热带南方印度洋水中硝酸盐营养分布及氮气同位素组成

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The Indian Ocean subtropical gyre (IOSG) is one of five extensive subtropical gyres in the world's ocean. In contrast to those of the Atlantic and Pacific oceans, the IOSG has been sparsely studied. We investigate the water mass distributions based on temperature, salinity and oxygen data, and the concentrations of water column nutrients and the stable isotope composition of nitrate, using water samples collected between ~30° S and the Equator during two expeditions: MSM?59/2 in 2016 and SO 259 in 2017. Our results are the first from this oceanic region and provide new information on nitrogen sources and transformation processes. We identify the thick layer of nutrient-depleted surface waters of the oligotrophic IOSG with nitrate (NO3-) and phosphate (PO43-) concentrations of  3 and  0.3 μmol kg?1, respectively ( 300 m; σ? 26.4 kg?1 m?3). Increased nutrient concentrations towards the Equator represent the northern limb of the gyre, which is characterized by typical strong horizontal gradients of the outcropping nutriclines. The influx of the Subantarctic Mode Water (SAMW) from the Southern Ocean injects oxygen-saturated waters with preformed nutrients, indicated by the increased N and O isotope composition of nitrate (δ15N  7 ‰; δ18O  4 ‰) at 400–500 m (26.6–26.7 kg?1 m?3), into the subtropical thermocline. These values reflect partial N assimilation in the Southern Ocean. Moreover, in the northern study area, a residue of nitrate affected by denitrification in the Arabian Sea is imported into intermediate and deep water masses ( 27.0 kg?1 m?3) of the gyre, indicated by an N deficit (N* ~-1 to ?4 μmol kg?1) and by elevated isotopic ratios of nitrate (δ15N  7 ‰; δ18O  3 ‰). Remineralization of partially assimilated organic matter, produced in the subantarctic, leads to a decoupling of N and O isotopes in nitrate and results in a relatively low Δ(15–18) value of  3 ‰ within the SAMW. In contrast, remineralization of 15N-enriched organic matter from the Arabian Sea indicates higher Δ(15–18) values of  4 ‰ within the Red Sea–Persian Gulf Intermediate Water (RSPGIW). Thus, the subtropical southern Indian Ocean is supplied by preformed nitrate from the lateral influx of water masses from regions exhibiting distinctly different N-cycle processes documented in the dual isotope composition of nitrate. Additionally, a significant contribution of N2 fixation between 20.36 and 23.91° S is inferred from reduced δ15N–NO3- values towards surface waters (upward decrease of δ15N?~2.4 ‰), N* values of  2 μmol kg?1 and a relatively low Δ(15–18) value of  3 ‰. A mass and isotope budget implies that at least 32 %–34 % of the nitrate in the upper ocean between 20.36 and 23.91° S is provided from newly fixed nitrogen, whereas N2 fixation appears to be limited by iron or temperature south of 26° S.
机译:印度洋亚热带(IOSG)是世界海洋中五种广泛的亚热带旋转之一。与大西洋和太平洋的人相比,IOSG已经稀疏地研究过。我们基于温度,盐度和氧气数据以及水柱营养物的浓度和硝酸稳定同位素组成的水分分布,使用在两次探险期间在〜30°S和赤道之间收集的水样品来研究水柱营养素和稳定同位素组成:MSM?59 / 2在2016年和2017年259年。我们的结果是来自该海域的第一个,并提供有关氮源和转型过程的新信息。我们鉴定了硝酸盐(NO 3-)和磷酸盐(PO43-)浓度为<3和<0.3μmolkgα1的厚度的烯营养 - 耗尽表面水层(300μm;σ≤16.4千克?1米?3)。向赤道的营养素浓度增加代表了陀螺骨的北部,其特征在于典型的外侧营养素的典型强度梯度。来自南海的小学模式水(SAMW)的流入用预成型的营养素注射氧饱和水,由400-500米处的硝酸N和O同位素组成增加(Δ15n> 7‰;Δ18O> 4°)表示(26.6-26.7 kg?1 m?3),进入亚热带热液。这些值反映了南洋中的部分n同化。此外,在北部研究区域,阿拉伯海中反硝化影响的硝酸盐残留物进口到中间水肿(> 27.0kg?1米?3)的腺体,由N缺陷表示(n *〜 -1至α4μmolkg≤1)并通过硝酸盐的同位素比(Δ15n>7μ;Δ18O> 3°)升高。在下视神经中产生的部分同化有机物的再矿化导致硝酸盐中的N和O同位素的去耦,并导致SAMW内的相对低的δ(15-18)值<3‰。相比之下,来自阿拉伯海的15N富集的有机物的再矿化表明红海 - 波斯湾中间水(RSPGIW)内> 4‰的δ(15-18)值较高。因此,亚热带南部印度洋通过从在硝酸盐的双同位素组合物中呈现出明显不同的n循环过程的区域,通过从水块的横向涌入来供应硝酸盐。另外,将N2固定在20.36和23.91°S之间的显着贡献从降低的Δ15n-no3-值朝向表面水(Δ15nΩ·〜2.4‰的向上减小),n *值>2μmolkg?1和相对低δ(15-18)值<3‰。质量和同位素预算意味着从新固定的氮气提供20.36和23.91°S的上海洋中至少32%-34%的硝酸盐,而N2固定似乎受到26°以上的铁或温度的限制。

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