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Silica burial enhanced by iron limitation in oceanic upwelling margins

机译:由于海洋上升缘的铁限制而增加了二氧化硅的埋葬

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In large swaths of the ocean, primary production by diatoms may be limited by the availability of silica, which in turn limits the biological uptake of carbon dioxide. The burial of biogenic silica in the form of opal is the main sink of marine silicon. Opal burial occurs in equal parts in iron-limited open-ocean provinces and upwelling margins, especially the eastern Pacific upwelling zone. However, it is unclear why opal burial is so efficient in this margin. Here we measure fluxes of biogenic material, concentrations of diatom-bound iron and silicon isotope ratios using sediment traps and a sediment core from the Gulf of California upwelling margin. In the sediment trap material, we find that periods of intense upwelling are associated with transient iron limitation that results in a high export of silica relative to organic carbon. A similar correlation between enhanced silica burial and iron limitation is evident in the sediment core, which spans the past 26,000 years. A global compilation also indicates that hotspots of silicon burial in the ocean are all characterized by high silica to organic carbon export ratios, a diagnostic trait for diatoms growing under iron stress.We therefore propose that prevailing conditions of silica limitation in the ocean are largely caused by iron deficiency imposing an indirect constraint on oceanic carbon uptake.
机译:在大片海洋中,硅藻的产生可能会受到硅石可用性的限制,从而限制了生物对二氧化碳的吸收。蛋白石形式的生物二氧化硅的埋葬是海洋硅的主要汇。蛋白石埋葬在铁矿有限的开放海洋省份和上升流边缘,特别是东部太平洋上升流带中,均等发生。然而,目前尚不清楚为什么蛋白石埋葬在这种情况下如此有效。在这里,我们使用沉积物陷阱和来自加利福尼亚湾上升流边缘的沉积物核心来测量生物物质的通量,硅藻结合的铁和硅同位素的浓度。在沉积物捕集材料中,我们发现强烈的上升期与短暂的铁限制有关,这导致二氧化硅相对于有机碳的大量出口。在过去的26,000年中,沉积岩心中明显增加了二氧化硅埋藏与铁含量之间的相似关系。全球资料还表明,海洋中硅埋藏的热点都具有较高的二氧化硅与有机碳出口比,这是铁胁迫下硅藻生长的诊断特征,因此我们认为造成海洋中二氧化硅限制的主要条件是铁缺乏对海洋碳的吸收施加了间接限制。

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