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The oceanic budgets of nickel and zinc isotopes: the importance of sulfidic environments as illustrated by the Black Sea

机译:镍和锌同位素的海洋预算:如黑海所示硫化环境的重要性

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摘要

Isotopic data collected to date as part of the GEOTRACES and other programmes show that the oceanic dissolved pool is isotopically heavy relative to the inputs for zinc (Zn) and nickel (Ni). All Zn sinks measured until recently, and the only output yet measured for Ni, are isotopically heavier than the dissolved pool. This would require either a non-steady-state ocean or other unidentified sinks. Recently, isotopically light Zn has been measured in organic carbon-rich sediments from productive upwelling margins, providing a potential resolution of this issue, at least for Zn. However, the origin of the isotopically light sedimentary Zn signal is uncertain. Cellular uptake of isotopically light Zn followed by transfer to sediment does not appear to be a quantitatively important process. Here, we present Zn and Ni isotope data for the water column and sediments of the Black Sea. These data demonstrate that isotopically light Zn and Ni are extracted from the water column, probably through an equilibrium fractionation between different dissolved species followed by sequestration of light Zn and Ni in sulfide species to particulates and the sediment. We suggest that a similar, non-quantitative, process, operating in porewaters, explains the Zn data from organic carbon-rich sediments.This article is part of the themed issue ‘Biological and climatic impacts of ocean trace element chemistry’.
机译:迄今为止,作为GEOTRACES和其他计划的一部分收集的同位素数据表明,相对于锌(Zn)和镍(Ni)的输入量,海洋溶解池的同位素重。直到最近测得的所有Zn汇和同位素测得的唯一产出都比溶解池的同位素重。这将需要非稳态海洋或其他未确定的汇。最近,已经从生产上升流边缘测量了富含有机碳的沉积物中的同位素轻锌,至少对于锌而言,它提供了解决该问题的潜在方法。但是,同位素轻沉积锌信号的来源尚不确定。同位素轻锌的细胞摄取随后转移到沉积物中似乎并不是一个重要的定量过程。在这里,我们介绍了黑海水柱和沉积物的Zn和Ni同位素数据。这些数据表明,同位素轻锌和镍是从水柱中提取的,可能是通过在不同溶解物之间进行平衡分馏,然后将硫化物中轻锌和镍螯合为颗粒和沉积物。我们建议在孔隙水中进行类似,非定量的过程来解释富含有机碳的沉积物中的锌数据。本文是“海洋微量元素化学的生物和气候影响”主题问题的一部分。

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