Oceanic detachment faults focus very large volumes of black smoker fluids
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Talc-dominated seafloor deposits reveal a new class of hydrothermal system.A serpentinite-hosted ecosystem in the Southern Mariana ForearcCharacterization of Chemosynthetic Microbial Mats Associated with Intertidal Hydrothermal Sulfur Vents in White Point, San Pedro, CA, USA.Modeling of hydrogen production by serpentinization in ultramafic-hosted hydrothermal systems: application to the Rainbow fieldCoupled modeling of thermics and hydrogeology with the Cast3M code: application to the Rainbow hydrothermal field (Mid-Atlantic Ridge, 36°14′N)Fossil clams from a serpentinite-hosted sedimented vent field near the active smoker complex Rainbow, MAR, 36°13′N: Insight into the biogeography of vent faunaMoytirra: Discovery of the first known deep-sea hydrothermal vent field on the slow-spreading Mid-Atlantic Ridge north of the AzoresLinking geology, fluid chemistry, and microbial activity of basalt- and ultramafic-hosted deep-sea hydrothermal vent environmentsSeafloor Massive Sulfides from the Northern Equatorial Mid-Atlantic Ridge: New Discoveries and PerspectivesDetachment fault control on hydrothermal circulation systems: Interpreting the subsurface beneath the TAG hydrothermal field using the isotopic and geological evolution of oceanic core complexes in the AtlanticPervasive silicification and hanging wall overplating along the 13°20′N oceanic detachment fault (Mid-Atlantic Ridge)Dependence of seismic coupling on normal fault style along the Northern Mid-Atlantic RidgeTectonic evolution of 200 km of Mid-Atlantic Ridge over 10 million years: Interplay of volcanism and faultingDeformation associated with the denudation of mantle-derived rocks at the Mid-Atlantic Ridge 13°-15°N: The role of magmatic injections and hydrothermal alterationQuantitative constraint on footwall rotations at the 15°45′N oceanic core complex, Mid-Atlantic Ridge: Implications for oceanic detachment fault processesStructure, temporal evolution, and heat flux estimates from the Lucky Strike deep-sea hydrothermal field derived from seafloor image mosaicsDrilling constraints on lithospheric accretion and evolution at Atlantis Massif, Mid-Atlantic Ridge 30°NSerpentinization and associated hydrogen and methane fluxes at slow spreading ridgesCrystallization depth beneath an oceanic detachment fault (ODP Hole 923A, Mid-Atlantic Ridge)Geodiversity of hydrothermal processes along the Mid-Atlantic Ridge and ultramafic-hosted mineralization: A new type of oceanic Cu-Zn-Co-Au volcanogenic massive sulfide depositPhase equilibria controls on the chemistry of vent fluids from hydrothermal systems on slow spreading ridges: Reactivity of plagioclase and olivine solid solutions and the pH-silica connectionTectonic slicing of subducting oceanic crust along plate interfaces: Numerical modeling
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P2860
Oceanic detachment faults focus very large volumes of black smoker fluids
description
article
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im Januar 2007 veröffentlichter wissenschaftlicher Artikel
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wetenschappelijk artikel
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наукова стаття, опублікована у 2007
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Oceanic detachment faults focus very large volumes of black smoker fluids
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Oceanic detachment faults focus very large volumes of black smoker fluids
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Oceanic detachment faults focus very large volumes of black smoker fluids
@en
Oceanic detachment faults focus very large volumes of black smoker fluids
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Oceanic detachment faults focus very large volumes of black smoker fluids
@en
Oceanic detachment faults focus very large volumes of black smoker fluids
@nl
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P356
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Oceanic detachment faults focus very large volumes of black smoker fluids
@en
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Andrew M. McCaig
Anthony E. Fallick
Christopher J. MacLeod
Robert A. Cliff
P356
10.1130/G23657A.1
P407
P577
2007-01-01T00:00:00Z
P819
2007Geo....35..935M