Exploring a shallow seafloor hydrothermal system on the Arctic Mid-Ocean Ridge

Society for Mining, Metallurgy & Exploration
A. Filipa A. Marques R. B. Pedersen
Organization:
Society for Mining, Metallurgy & Exploration
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2
File Size:
491 KB
Publication Date:
Sep 1, 2014

Abstract

"Shallow-depth (<200m) high temperature submarine hydrothermal systems are not commonly observed on mid-ocean ridge settings, as most known systems are located within arc - island-arc volcanic settings, often proximal to coastal areas (meteoric waters added). In 2013, during the Centre for Geobiology’s 2013 oceanographic cruise (R/V G.O. Sars), a dredge successfully sampled massive sulfides and hydrothermally altered rocks from the top of a volcanic edifice (~144-284 m depth) located on the northern sector of the Kolbeinsey Ridge. Dredged samples include vesicular altered basalts, and matrix supported anhydrite, barite and barite-pyrite-anhydrite volcaniclastic breccias. Sulfidesulfate breccias depict complex zoning where numerous small vent orifices are distributed with large blades of marcasite that appear intergrown with barite. Native sulfur was observed in one of these small vent orifices. On a microscopic scale, numerous spherical silica-rich structures appear associated to these breccias. These rocks are evidence for the presence of a relatively high temperature (minimum 150ºC) shallow-water seafloor hydrothermal system in the Arctic mid-ocean ridge, far from mainland influence. This new discovery presents a unique opportunity to study the dynamics of fluid chemistry, metal mobility and precipitation in shallow hydrothermal systems. The remote location of this system dictates that fluid recharge will be influenced solely by seawater and magmatic fluids, In July-August 2014 we expect to survey this new field and acquire new and comprehensive data."
Citation

APA: A. Filipa A. Marques R. B. Pedersen  (2014)  Exploring a shallow seafloor hydrothermal system on the Arctic Mid-Ocean Ridge

MLA: A. Filipa A. Marques R. B. Pedersen Exploring a shallow seafloor hydrothermal system on the Arctic Mid-Ocean Ridge. Society for Mining, Metallurgy & Exploration, 2014.

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