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上升流增强了加利福尼亚海流系统中汞颗粒的清除作用。

Upwelling Enhances Mercury Particle Scavenging in the California Current System.

机构信息

Department of Ocean Sciences, University of California Santa Cruz, Santa Cruz, California 95064, United States.

Scripps Institution of Oceanography, University of California San Diego, La Jolla, California 92037, United States.

出版信息

Environ Sci Technol. 2024 Sep 3;58(35):15598-15606. doi: 10.1021/acs.est.4c04308. Epub 2024 Aug 22.

Abstract

Coastal upwelling supplies nutrients supporting primary production while also adding the toxic trace metal mercury (Hg) to the mixed layer of the ocean. This could be a concern for human and environmental health if it results in the enhanced bioaccumulation of monomethylmercury (MMHg). Here, we explore how upwelling influences Hg cycling in the California Current System (CCS) biome through particle scavenging and sea-air exchange. We collected suspended and sinking particle samples from a coastal upwelled water parcel and an offshore non-upwelled water parcel and observed higher total particulate Hg and sinking flux in the upwelling region compared to open ocean. To further investigate the full dynamics of Hg cycling, we modeled Hg inventories and fluxes in the upper ocean under upwelling and non-upwelling scenarios. The model simulations confirmed and quantified that upwelling enhances sinking fluxes of Hg by 41% through elevated primary production. Such an enhanced sinking flux of Hg is biogeochemically important to understand in upwelling regions, as it increases the delivery of Hg to the deep ocean where net conversion to MMHg may take place.

摘要

沿海上升流为海洋混合层提供了支持初级生产的营养物质,同时也增加了有毒痕量金属汞(Hg)。如果这导致单甲基汞(MMHg)的生物累积增强,这可能会对人类和环境健康造成影响。在这里,我们通过颗粒捕获和海-气交换来探索上升流如何影响加利福尼亚海流系统(CCS)生物群系的汞循环。我们从沿海上升水域和近海非上升水域收集了悬浮和沉降颗粒样本,并观察到上升水域的总颗粒态汞和沉降通量高于开阔海域。为了进一步研究汞循环的全部动态,我们根据上升流和非上升流情景对上层海洋中的汞储量和通量进行了建模。模型模拟证实并量化了上升流通过提高初级生产力将 Hg 的沉降通量增加了 41%。在上升流区域,这种增强的 Hg 沉降通量在生物地球化学上非常重要,因为它增加了 Hg 向深海的输送,在深海中可能发生净转化为 MMHg。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ad/11375766/2441895720f3/es4c04308_0001.jpg

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