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开阔大洋缺氧区镉的无记录水柱汇。

Undocumented water column sink for cadmium in open ocean oxygen-deficient zones.

机构信息

School of Earth and Ocean Sciences, University of Victoria, Victoria, BC, Canada V8W 2Y2;

Department of Earth and Ocean Sciences, University of South Carolina, Columbia, SC 29208; and.

出版信息

Proc Natl Acad Sci U S A. 2014 May 13;111(19):6888-93. doi: 10.1073/pnas.1402388111. Epub 2014 Apr 28.

Abstract

Cadmium (Cd) is a micronutrient and a tracer of biological productivity and circulation in the ocean. The correlation between dissolved Cd and the major algal nutrients in seawater has led to the use of Cd preserved in microfossils to constrain past ocean nutrient distributions. However, linking Cd to marine biological processes requires constraints on marine sources and sinks of Cd. Here, we show a decoupling between Cd and major nutrients within oxygen-deficient zones (ODZs) in both the Northeast Pacific and North Atlantic Oceans, which we attribute to Cd sulfide (CdS) precipitation in euxinic microenvironments around sinking biological particles. We find that dissolved Cd correlates well with dissolved phosphate in oxygenated waters, but is depleted compared with phosphate in ODZs. Additionally, suspended particles from the North Atlantic show high Cd content and light Cd stable isotope ratios within the ODZ, indicative of CdS precipitation. Globally, we calculate that CdS precipitation in ODZs is an important, and to our knowledge a previously undocumented marine sink of Cd. Our results suggest that water column oxygen depletion has a substantial impact on Cd biogeochemical cycling, impacting the global relationship between Cd and major nutrients and suggesting that Cd may be a previously unidentified tracer for water column oxygen deficiency on geological timescales. Similar depletions of copper and zinc in the Northeast Pacific indicate that sulfide precipitation in ODZs may also have an influence on the global distribution of other trace metals.

摘要

镉(Cd)是一种微量元素,也是海洋生物生产力和循环的示踪剂。海水中溶解态 Cd 与主要藻类营养盐之间的相关性,使得利用微化石中保存的 Cd 来约束过去海洋营养盐的分布成为可能。然而,要将 Cd 与海洋生物过程联系起来,就需要对 Cd 的海洋源汇进行约束。在这里,我们发现东北太平洋和北大西洋的缺氧区(ODZs)内 Cd 与主要营养盐之间存在解耦,我们将其归因于下沉生物颗粒周围的缺氧微环境中 Cd 硫化物(CdS)的沉淀。我们发现,溶解态 Cd 在含氧水域中与溶解态磷酸盐很好地相关,但在 ODZs 中与磷酸盐相比则被耗尽。此外,北大西洋的悬浮颗粒在 ODZ 内表现出高 Cd 含量和轻的 Cd 稳定同位素比值,表明 CdS 沉淀的存在。在全球范围内,我们计算出 ODZs 中 CdS 的沉淀是 Cd 的一个重要的、据我们所知的以前未被记录的海洋汇,这表明水层缺氧对 Cd 的生物地球化学循环有重大影响,影响了 Cd 与主要营养盐之间的全球关系,并表明 Cd 可能是过去在地质时间尺度上对水柱缺氧未被识别的示踪剂。东北太平洋铜和锌的类似消耗表明,ODZs 中的硫化物沉淀也可能对其他痕量金属的全球分布产生影响。

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