International audienceThe abundances of F, Cl and S in arc magmas are systematically higher than in other mantle-derived magmas, suggesting that these elements are added from the slab along with H2O. We present ion probe microanalyses of F, Cl and S in serpentine minerals that represent the P–T evolution of the oceanic lithosphere, from its serpentinization at the ridge, to its dehydration at around 100 km depth during subduction. F, Cl and S are incorporated early into serpentine during its formation at mid-ocean ridges, and serpentinized lithosphere then carries these elements to subduction zones. More than 50% of the F, Cl and S are removed from serpentine during the prograde metamorphic lizardite/antigorite transition. Due to the low so...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
Free to read at publisher's site. We provide new insights into the geochemistry of serpentinites fro...
International audienceThe abundances of F, Cl and S in arc magmas are systematically higher than in ...
Serpentinized oceanic mantle lithosphere is considered an important carrier of water and fluid-mobil...
Serpentinites are important components of the oceanic lithosphere and are viewed as major water sour...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...
Subduction at convergent plate boundaries provides a mechanism for recycling fluid-mobile elements f...
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 ...
International audienceSerpentinization of the oceanic lithosphere contributes significantly to the g...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
Free to read at publisher's site. We provide new insights into the geochemistry of serpentinites fro...
International audienceThe abundances of F, Cl and S in arc magmas are systematically higher than in ...
Serpentinized oceanic mantle lithosphere is considered an important carrier of water and fluid-mobil...
Serpentinites are important components of the oceanic lithosphere and are viewed as major water sour...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...
We investigated the halogen (Cl, F, Br, and I) chemistry of serpentinites that record progressive de...
Subduction at convergent plate boundaries provides a mechanism for recycling fluid-mobile elements f...
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 ...
International audienceSerpentinization of the oceanic lithosphere contributes significantly to the g...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
Fluid-mobile element (FME) systematics in serpentinites are key to unravel the environments of mantl...
Free to read at publisher's site. We provide new insights into the geochemistry of serpentinites fro...