Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantle rock hydration, dehydration, and element recycling in subduction zones. Here we compile serpentinite geochemical data and, for the first time, report discriminative FME enrichment trends for mid ocean ridge vs. forearc serpentinisation by applying alkali element-U ratios. Characteristic element fractionations are thereby governed by redox-dependent differential U mobility at mid ocean ridges and in forearcs, and by high Cs input in forearcs due to fluids equilibrated with sediments. Simple modelling reproduces the observed enrichment trends in serpentinites that range over several orders of magnitude. From these systematics, first constrain...
Serpentinites release at sub-arc depths volatiles and several fluid-mobile trace elements found in a...
Serpentinites (hydrated ultramafic rocks, 13 wt.% water) are particularly abundant in the oceanic li...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
The key role of serpentinites in the global cycles of volatiles, halogens and fluid-mobile elements ...
The key role of serpentinites in the global cycles of volatiles, halogens and fluid-mobile elements ...
Serpentinites are important components of the oceanic lithosphere and are viewed as major water sour...
International audienceSerpentinization of the oceanic lithosphere contributes significantly to the g...
Free to read at publisher's site. We provide new insights into the geochemistry of serpentinites fro...
We provide new insights into the geochemistry of serpentinites from mid-ocean ridges (Mid-Atlantic R...
International audienceThe Tso Morari serpentinites in the Ladakh area, northwest Himalaya, originate...
Serpentinites release at sub-arc depths volatiles and several fluid-mobile trace elements found in a...
We provide new insights into the geochemistry of serpentinites from mid-ocean ridges (Mid-Atlantic R...
Serpentinites release at sub-arc depths volatiles and several fluid-mobile trace elements found in a...
Serpentinites (hydrated ultramafic rocks, 13 wt.% water) are particularly abundant in the oceanic li...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
The key role of serpentinites in the global cycles of volatiles, halogens and fluid-mobile elements ...
The key role of serpentinites in the global cycles of volatiles, halogens and fluid-mobile elements ...
Serpentinites are important components of the oceanic lithosphere and are viewed as major water sour...
International audienceSerpentinization of the oceanic lithosphere contributes significantly to the g...
Free to read at publisher's site. We provide new insights into the geochemistry of serpentinites fro...
We provide new insights into the geochemistry of serpentinites from mid-ocean ridges (Mid-Atlantic R...
International audienceThe Tso Morari serpentinites in the Ladakh area, northwest Himalaya, originate...
Serpentinites release at sub-arc depths volatiles and several fluid-mobile trace elements found in a...
We provide new insights into the geochemistry of serpentinites from mid-ocean ridges (Mid-Atlantic R...
Serpentinites release at sub-arc depths volatiles and several fluid-mobile trace elements found in a...
Serpentinites (hydrated ultramafic rocks, 13 wt.% water) are particularly abundant in the oceanic li...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...