生物地球化学
自行车
气溶胶
沉积(地质)
海洋学
环境科学
铁肥
同位素
地质遗迹
地质学
环境化学
营养物
化学
气象学
生态学
地理
海水
地貌学
生物
浮游植物
沉积物
量子力学
考古
物理
作者
Daniela König,T. M. Conway,Douglas S. Hamilton,Alessandro Tagliabue
摘要
Abstract Distinctively‐light isotopic signatures associated with Fe released from anthropogenic activity have been used to trace basin‐scale impacts. However, this approach is complicated by the way Fe cycle processes modulate oceanic dissolved Fe (dFe) signatures (δ 56 Fe diss ) post deposition. Here we include dust, wildfire, and anthropogenic aerosol Fe deposition in a global ocean biogeochemical model with active Fe isotope cycling, to quantify how anthropogenic Fe impacts surface ocean dFe and δ 56 Fe diss . Using the North Pacific as a natural laboratory, the response of dFe, δ 56 Fe diss , and primary productivity are spatially and seasonally variable and do not simply follow the footprint of atmospheric deposition. Instead, the effect of anthropogenic Fe is regulated by the biogeochemical regime, specifically the degree of Fe limitation and rates of primary production. Overall, we find that while δ 56 Fe diss does trace anthropogenic input, the response is muted by fractionation during phytoplankton uptake, but amplified by other isotopically‐light Fe sources.
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