Regulation of Terrestrial Dissolved Se Isotopic Features during algal bloom in a Large River – Sea Interaction System: Changjiang Estuary
编号:1084 稿件编号:2000 访问权限:仅限参会人 更新:2021-06-15 17:07:56 浏览:772次 口头报告

报告开始:2021年07月11日 14:00 (Asia/Shanghai)

报告时间:15min

所在会议:[S6B] 6B、海洋地球科学 » [S6B-3] 6B、海洋地球科学-3

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摘要
Selenium (Se) isotopes has been widely used to track Earth's redox evolution, based on the assumption terrestrial δ82/76Se is faithfully transported to the ocean. While dissolved Se isotope behavior in the estuary is poorly constrained which limits the robust interpretation of Se isotope variability. Therefore, we collected water and phytoplankton samples from a large river estuary system, Changjiang Estuary, and present the first dissolved inorganic Se (DISe) isotope dataset from a salinity gradient. The dδ82/76DISe values increased from 0.96 to 1.74‰ along the salinity gradient in the CJE. The δ82/76DISe showed non-conservative behavior during estuarine mixing. The heavy d82/76DISe values (1.55 ± 0.20‰) in waters corresponding with light Se isotopes for phytoplankton (-0.35‰ ± 0.18‰) in diatom-bloom areas. The significantly increased δ82/76Se signatures due to phytoplankton utilization of DISe were observed and reflected a Se isotopic enrichment factor (ͼ) of -1.92 ± 0.16‰ (Rayleigh model) or -2.14 ± 0.18‰ (steady state model). Biological activities alter to nonconservative activity of Se and also introduce large and variable Se isotopic fractionation.  Therefore, interpreting Se isotopes in the sedimentary record requires taking biological process into consideration.
 
关键字
Selenium isotopes, biological isotopic fractionation, diatom bloom, Changjiang Estuary, Estuarine processes
报告人
常燕
华东师范大学

稿件作者
常燕 华东师范大学
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