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Dissolved and particulate trace metal micronutrients under the McMurdo Sound seasonal sea ice: basal sea ice communities as a capacitor for iron

机译:麦克默多峡湾季节性海冰下溶解的颗粒状微量金属微量营养素:基础海冰群落作为铁的电容器

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摘要

Dissolved and particulate metal concentrations are reported from three sites beneath and at the base of the McMurdo Sound seasonal sea ice in the Ross Sea of Antarctica. This dataset provided insight into Co and Mn biogeochemistry, supporting a previous hypothesis for water column mixing occurring faster than scavenging. Three observations support this: first, Mn-containing particles with Mn/Al ratios in excess of the sediment were present in the water column, implying the presence of bacterial Mn-oxidation processes. Second, dissolved and labile Co were uniform with depth beneath the sea ice after the winter season. Third, dissolved Co:PO3−4 ratios were consistent with previously observed Ross Sea stoichiometry, implying that over-winter scavenging was slow relative to mixing. Abundant dissolved Fe and Mn were consistent with a winter reserve concept, and particulate Al, Fe, Mn, and Co covaried, implying that these metals behaved similarly. Elevated particulate metals were observed in proximity to the nearby Islands, with particulate Fe/Al ratios similar to that of nearby sediment, consistent with a sediment resuspension source. Dissolved and particulate metals were elevated at the shallowest depths (particularly Fe) with elevated particulate P/Al and Fe/Al ratios in excess of sediments, demonstrating a sea ice biomass source. The sea ice biomass was extremely dense (chl a >9500 μg/L) and contained high abundances of particulate metals with elevated metal/Al ratios. A hypothesis for seasonal accumulation of bioactive metals at the base of the McMurdo Sound sea ice by the basal algal community is presented, analogous to a capacitor that accumulates iron during the spring and early summer. The release and transport of particulate metals accumulated at the base of the sea ice by sloughing is discussed as a potentially important mechanism in providing iron nutrition during polynya phytoplankton bloom formation and could be examined in future oceanographic expeditions.
机译:据报道,在南极罗斯海的麦克默多峡湾季节性海冰之下和底部的三个位置,发现了溶解的和颗粒状的金属浓度。该数据集提供了对Co和Mn生物地球化学的深入了解,支持了以前的假设,即水柱混合发生的时间比清除快。三个观察结果证明了这一点:首先,水柱中存在锰/铝比超过沉积物的含锰颗粒,这意味着存在细菌锰氧化过程。第二,在冬季之后,溶解和不稳定的钴在海冰下的深度是均匀的。第三,溶解的Co:PO <3> 4比率与先前观察到的Ross Sea化学计量相符,这意味着越冬清除相对于混合缓慢。大量溶解的Fe和Mn与冬季保护区概念一致,并且颗粒Al,Fe,Mn和Co发生了协变,这意味着这些金属的行为类似。在附近岛屿附近观察到颗粒金属升高,颗粒铁/铝比与附近沉积物相似,与沉积物重悬浮源一致。溶解金属和颗粒金属在最浅的深度(特别是铁)升高,颗粒P / Al和Fe / Al比例升高,超过了沉积物,这说明了海冰生物量的来源。海冰的生物量非常致密(cha> 9500μg/ L),并且含有大量的金属/铝比较高的颗粒金属。提出了一个基本藻类群落在麦克默多峡湾海底冰盖生物活性金属的季节性假说,类似于一个在春季和初夏时会积聚铁的电容器。讨论了通过剥落积聚在海冰底部的颗粒金属的释放和运输,这是在浮游植物浮游生物大花形成期间提供铁营养的潜在重要机制,可以在未来的海洋探险中进行研究。

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