Benthic deposition and burial of total mercury and methylmercury estimated using thorium isotopes in the high-latitude North Atlantic
编号:1086 访问权限:仅限参会人 更新:2024-04-11 11:35:33 浏览:833次 口头报告

报告开始:2024年05月19日 09:30(Asia/Shanghai)

报告时间:10min

所在会场:[S6] 主题​6、海洋地球科学 [S6-4] 主题6、海洋地球科学 专题6.10、专题6.13(19日上午,201)

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摘要
The high-latitude oceans feature high mercury (Hg) bioaccumulation which is of great concern in terms of human and ecosystem health. In the far North Atlantic (60-70 ºN), the deep water entrains the Hg-enriched Arctic water southwards, consequently influencing global Hg cycling. Whilst Hg removal has been found en route from the Arctic Ocean to the Atlantic Ocean, the factors and the mechanism underpinning this loss are poorly studied. Here, we constrain Hg behavior at the sediment-water interface during the GEOTRACES process study GApr16 in 2021 using radionuclide approaches. Excess thorium isotopes (234Thex and 228Thex) in the sediment evidence significant sediment resuspension and redeposition on top of the shallow ridges due to the intense overflows. The benthic redeposition and burial rates of Hg species were then evaluated with a constant rate of supply model and particulate Hg/Th ratios. We show that resuspended sediment on the ridges scavenged total Hg from the bottom water at a rate of 14.8 ± 0.3 Mg y-1, and this Hg was fully retained in the sediment, accounting for half of the Hg loss between the Arctic and Atlantic Oceans. In contrast, owing to the different particle reactivities, half of the scavenged methylmercury (MeHg) was re-released to the water column, forming a concentration maximum in the mid depth (~400 m); and the remaining was buried in the sediment at a rate of 38 ± 21 kg y-1.  In particular, benthic Hg efflux was observed on the continental slope of the Irminger Sea, indicating that some Hg to the high-latitude North Atlantic was source from the benthic exchange other than the direct input from the polar water.
关键词
thorium isotopes,benthic process,mercury cycling
报告人
史向明
副教授 集美大学

稿件作者
史向明 集美大学
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重要日期
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    05月17日

    2024

    05月20日

    2024

  • 03月31日 2024

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  • 03月31日 2024

    报告提交截止日期

  • 05月20日 2024

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