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Progress in Deciphering the Controls on the Geochemistry of Fluids in Seafloor Hydrothermal Systems
Annual Review of Marine Science ( IF 14.3 ) Pub Date : 2018-01-03 00:00:00 , DOI: 10.1146/annurev-marine-121916-063233
Susan E. Humphris 1 , Frieder Klein 2
Affiliation  

Over the last four decades, more than 500 sites of seafloor hydrothermal venting have been identified in a range of tectonic environments. These vents represent the seafloor manifestation of hydrothermal convection of seawater through the permeable oceanic basement that is driven by a subsurface heat source. Hydrothermal circulation has fundamental effects on the transfer of heat and mass from the lithosphere to the hydrosphere, the composition of seawater, the physical and chemical properties of the oceanic basement, and vent ecosystems at and below the seafloor. In this review, we compare and contrast the vent fluid chemistry from hydrothermal fields in a range of tectonic settings to assess the relative roles of fluid-mineral equilibria, phase separation, magmatic input, seawater entrainment, and sediment cover in producing the observed range of fluid compositions. We focus particularly on hydrothermal activity in those tectonic environments (e.g., mid-ocean ridge detachment faults, back-arc basins, and island arc volcanoes) where significant progress has been made in the last decade in documenting the variations in vent fluid composition.

中文翻译:


海底热液系统流体地球化学控制研究进展

在过去的四十年中,在一系列构造环境中,已经发现了500多个海底热液排放点。这些通气孔代表了通过地下热源驱动的可渗透海洋基底对海水进行水热对流的海底表现。水热循环对从岩石圈到水圈的热量和质量的传递,海水的成分,海洋基底的物理和化学特性以及海底及海​​底以下的通风生态系统具有根本性的影响。在这篇综述中,我们比较并对比了一系列构造环境中热液场的排出流体化学性质,以评估流体-矿物平衡,相分离,岩浆输入,海水夹带,和沉积物覆盖物产生观察到的流体成分范围。我们特别关注那些构造环境(例如,洋中脊分离断层,弧后盆地和岛弧火山)的热液活动,在过去十年中,在记录排气流体成分的变化方面取得了重大进展。

更新日期:2018-01-03
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