Resupply of mesopelagic dissolved iron controlled by particulate iron composition

中层带 再矿化 生物地球化学 氧气最小区 微粒 环境化学 化学 海洋学 环境科学 地质学 远洋带 上升流 无机化学 氟化物 有机化学
作者
Matthieu Bressac,Cécile Guieu,Michael J. Ellwood,Alessandro Tagliabue,Thibaut Wagener,E. C. Laurenceau-Cornec,Hannah Whitby,Géraldine Sarthou,Philip W. Boyd
出处
期刊:Nature Geoscience [Springer Nature]
卷期号:12 (12): 995-1000 被引量:28
标识
DOI:10.1038/s41561-019-0476-6
摘要

The dissolved iron supply controls half of the oceans’ primary productivity. Resupply by the remineralization of sinking particles, and subsequent vertical mixing, largely sustains this productivity. However, our understanding of the drivers of dissolved iron resupply, and their influence on its vertical distribution across the oceans, is still limited due to sparse observations. There is a lack of empirical evidence as to what controls the subsurface iron remineralization due to difficulties in studying mesopelagic biogeochemistry. Here we present estimates of particulate transformations to dissolved iron, concurrent oxygen consumption and iron-binding ligand replenishment based on in situ mesopelagic experiments. Dissolved iron regeneration efficiencies (that is, replenishment over oxygen consumption) were 10- to 100-fold higher in low-dust subantarctic waters relative to higher-dust Mediterranean sites. Regeneration efficiencies are heavily influenced by particle composition. Their make-up dictates ligand release, controls scavenging, modulates ballasting and may lead to the differential remineralization of biogenic versus lithogenic iron. At high-dust sites, these processes together increase the iron remineralization length scale. Modelling reveals that in oceanic regions near deserts, enhanced lithogenic fluxes deepen the ferricline, which alter the vertical patterns of dissolved iron replenishment, and set its redistribution at the global scale. Such wide-ranging regeneration efficiencies drive different vertical patterns in dissolved iron replenishment across oceanic provinces. Regeneration efficiencies of dissolved iron in the mesopelagic zone vary significantly across the oceans, largely depending on particulate composition, according to in situ mesopelagic experiments.
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