Hydrous alteration of olivine is capable of producing molecular hydrogen (H-2) under a wide variety of hydrothermal conditions. Although olivine hydrolysis (i.e., serpentinization) has commonly been assessed at elevated temperatures ( greater than 100 degrees C), the nature of these reactions in relation to H-2 production at lower temperatures has not been systematically evaluated, especially with regard to carbonate-rich fluids. Specifically, carbonate formation may kinetically infringe on geochemical routes related to serpentinization and H-2 production at lower temperatures. Here time-dependent interactions of solid, liquid, and gaseous phases with respect to olivine hydrolysis in a carbonate-rich solution (20 mM HCO3-) at 30, 50 and 70 ...
International audienceGeological storage of CO2 in mafic and ultramafic rocks relies on the dissolut...
International audienceRecent studies have identified carbonaceous material in serpentinite bodies, b...
Although water controls the biology and geology of the surface, hydrogen is perhaps the most poorly ...
AbstractHydrous alteration of olivine is capable of producing molecular hydrogen (H2) under a wide v...
Serpentinization of forsteritic olivine results in the inorganic synthesis of molecular hydrogen (H(...
13 pagesInternational audienceThe present study reports original experiments in order to investigate...
Serpentinization produces molecular hydrogen (H2) and hydrocarbons that can feed the colonies of mic...
The generation of H2 during serpentinization of ultramafic oceanic crust along Earth\u27s mid-ocean ...
Abiotic methane (CH4) and hydrogen (H2) produced after hydration of mafic/ultramafic rocks represent...
AbstractTo understand the influence of fluid CO2 on ultramafic rock-hosted seafloor hydrothermal sys...
To understand the influence of fluid CO2 on ultramafic rock-hosted seafloor hydrothermal systems on ...
International audienceHydrogen is produced in large amounts during hydrothermal alteration of perido...
Serpentinized peridotite is reacting with groundwater in the subsurface of the Samail ophiolite in O...
Large-scale olivine carbonation has been proposed as a potential method for sequestering CO2 emissio...
International audienceNatural hydrogen generation has long been believed to only occur during serpen...
International audienceGeological storage of CO2 in mafic and ultramafic rocks relies on the dissolut...
International audienceRecent studies have identified carbonaceous material in serpentinite bodies, b...
Although water controls the biology and geology of the surface, hydrogen is perhaps the most poorly ...
AbstractHydrous alteration of olivine is capable of producing molecular hydrogen (H2) under a wide v...
Serpentinization of forsteritic olivine results in the inorganic synthesis of molecular hydrogen (H(...
13 pagesInternational audienceThe present study reports original experiments in order to investigate...
Serpentinization produces molecular hydrogen (H2) and hydrocarbons that can feed the colonies of mic...
The generation of H2 during serpentinization of ultramafic oceanic crust along Earth\u27s mid-ocean ...
Abiotic methane (CH4) and hydrogen (H2) produced after hydration of mafic/ultramafic rocks represent...
AbstractTo understand the influence of fluid CO2 on ultramafic rock-hosted seafloor hydrothermal sys...
To understand the influence of fluid CO2 on ultramafic rock-hosted seafloor hydrothermal systems on ...
International audienceHydrogen is produced in large amounts during hydrothermal alteration of perido...
Serpentinized peridotite is reacting with groundwater in the subsurface of the Samail ophiolite in O...
Large-scale olivine carbonation has been proposed as a potential method for sequestering CO2 emissio...
International audienceNatural hydrogen generation has long been believed to only occur during serpen...
International audienceGeological storage of CO2 in mafic and ultramafic rocks relies on the dissolut...
International audienceRecent studies have identified carbonaceous material in serpentinite bodies, b...
Although water controls the biology and geology of the surface, hydrogen is perhaps the most poorly ...