海水
微粒
河流
生物地球化学循环
自行车
海洋学
环境化学
环境科学
风化作用
地球化学循环
地质遗迹
地质学
地球科学
化学
地球化学
地貌学
地理
有机化学
考古
构造盆地
作者
Mengli Chen,Gonzalo Carrasco,Ning Zhao,Xianfeng Wang,Jen Nie Lee,Jani T. I. Tanzil,Kogila Vani Annammala,Seng Chee Poh,Federico M. Lauro,Alan D. Ziegler,Decha Duangnamon,Edward A. Boyle
标识
DOI:10.1073/pnas.2213163120
摘要
Material fluxes at the land-ocean interface impact seawater composition and global cycling of elements. However, most attention has been focused on the fluvial dissolved fluxes. For elements like lead (Pb), whose fluvial particulate flux into the ocean is two orders of magnitude higher than the dissolved counterpart, the role of particulates in elemental cycling is potentially important but currently less appreciated. Using both chemical analyses on samples collected from around equatorial Southeast Asia and model simulations, we show that particulate-dissolved exchange is an important mechanism controlling the concentration and isotopic composition of dissolved Pb in the ocean. Our model indicates that Pb contributed from particulate-dissolved exchange at ocean boundaries is larger than, or at least comparable to, other major Pb sources to the seawater before the Anthropocene, when the anthropogenic Pb was absent. Our work highlights the importance of boundary exchange in understanding marine element cycling and weathering-climate feedback.
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