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盐度驱动的分层作用增强了河流汞向近岸海洋的输出。

Salinity-Driven Stratification Enhances Riverine Mercury Export to the Coastal Ocean.

作者信息

Ovbiebo Roland P, Sephus Cathryn D, Schartup Amina T

机构信息

Scripps Institution of Oceanography, University of California San Diego.

出版信息

Res Sq. 2025 Mar 24:rs.3.rs-6276810. doi: 10.21203/rs.3.rs-6276810/v1.

Abstract

Rivers transport 300 to 5,000 Mg of mercury (Hg) annually to coastal oceans through estuaries, contributing 20-45% of total Hg input, with 100 to 1,500 Mg reaching the open ocean. However, the impact of estuarine circulation and stratification on Hg transport and methylation remains uncertain despite their known influence on other metal exports. This study developed three models to assess Hg transformation under different salinity-driven stratification regimes-well-mixed, slightly stratified, and highly stratified-using data from the Chesapeake Bay (CPB) and Hudson River Estuary (HRE), U.S.A. Results show that stratification increases riverine Hg export by 19% in CPB and 20% in HRE, with shorter Hg residence times promoting faster export. Unstratified estuaries favor Hg burial in sediments due to longer residence times and increased particle settling. Seasonal river discharge variations further influence stratification, with higher discharge enhancing stratification and Hg export. Methylmercury (MeHg) production and export also respond to stratification, with slightly stratified conditions in CPB increasing MeHg production by 11.5% and export by 16.4%. As climate change is expected to intensify stratification in many estuaries, these findings suggest potential increases in Hg and MeHg export to coastal oceans.

摘要

河流每年通过河口向沿海水域输送300至5000毫克汞(Hg),占汞总输入量的20 - 45%,其中100至1500毫克汞进入公海。然而,尽管河口环流和分层对其他金属输出有已知影响,但其对汞输送和甲基化的影响仍不确定。本研究利用美国切萨皮克湾(CPB)和哈得逊河河口(HRE)的数据,开发了三个模型,以评估在不同盐度驱动的分层状态(充分混合、轻度分层和高度分层)下汞的转化情况。结果表明,分层使CPB的河流汞输出增加了19%,使HRE的河流汞输出增加了20%,汞停留时间缩短促进了更快的输出。未分层的河口由于停留时间长和颗粒沉降增加,有利于汞在沉积物中的埋藏。季节性河流流量变化进一步影响分层,流量增加会增强分层和汞输出。甲基汞(MeHg)的产生和输出也对分层有响应,CPB的轻度分层条件使MeHg产量增加了11.5%,输出增加了16.4%。由于气候变化预计会加剧许多河口的分层,这些发现表明向沿海水域输出的汞和甲基汞可能会增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f01/11975043/90090602481e/nihpp-rs6276810v1-f0001.jpg

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