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Published on: July 3, 2016
Arctic Ocean: hydrothermal activity on Gakkel Ridge
Philippe Jean-Baptiste1, Elise Fourré
1Laboratoire des Sciences du Climat et de l'Environnement, IPSL, CEA-CNRS, Centre d'Etudes de Saclay, 91191 Gif-sur-Yvette, France. pjb@lsce.saclay.cea.fr
Abstract:
In the hydrothermal circulation at mid-ocean ridges, sea water penetrates the fractured crust, becomes heated by its proximity to the hot magma, and returns to the sea floor as hot fluids enriched in various chemical elements. In contradiction to earlier results that predict diminishing hydrothermal activity with decreasing spreading rate, a survey of the ultra-slowly spreading Gakkel Ridge (Arctic Ocean) by Edmonds et al. and Michael et al. suggests that, instead of being rare, the hydrothermal activity is abundant--exceeding by at least a factor of two to three what would be expected by extrapolation from observation on faster spreading ridges. Here we use helium-3 (3He), a hydrothermal tracer, to show that this abundance of venting sites does not translate, as would be expected, into an anomalous hydrothermal 3He output from the ridge. Because of the wide implications of the submarine hydrothermal processes for mantle heat and mass fluxes to the ocean, these conflicting results call for clarification of the link between hydrothermal activity and crustal production at mid-ocean ridges.
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