Aqueous fluids and sediment melts from subducting oceanic lithosphere are the driving force for the refertilisation of the mantle overlying subduction zones. Volatile elements in particular play an important role in the generation of aqueous fluids and the transport of fluid mobile elements. Here we report volatile contents of quenched glasses from pillow-lava rims in the Kermadec Arc–Havre Trough subduction system to provide constraints on the source, generation, and composition of slab-derived aqueous fluids. Water (1.5 wt.% in glasses, 2.5 wt.% in two melt inclusions), carbon (up to 16 ppm in glasses, 180 ppm in one inclusion) and sulphur (< 700 ppm) contents of all glasses are consistent with degassing of volatiles, which migrated fr...
We studied the systematics of Cl, F and H2O in Izu arc front volcanic rocks using basaltic through r...
Submarine volcanic glasses from the eastern Manus Basin of Papua New Guinea, ranging from basalt to ...
AbstractHalogen and noble gas systematics are powerful tracers of volatile recycling in subduction z...
Aqueous fluids and sediment melts from subducting oceanic lithosphere are the driving force for the ...
Aqueous fluids and sediment melts from subducting oceanic lithosphere are the driving force for the ...
Measurements of chlorine concentrations in matrix glasses from 18 primitive (>6 wt% MgO) and eight e...
We present H2O, CO2, and Cl concentrations in 66 basaltic glasses from the Easter Microplate (EMP) a...
The North Arch volcanic field is a submarine suite of alkali basaltic to nephelinitic lavas of the s...
Volatile element, major and trace element compositions were measured in glass inclusions in olivine ...
Halogen and noble gas systematics are powerful tracers of volatile recycling in subduction zones. We...
In order to better understand the global halogen cycle and the behaviour of halogens during subducti...
International audienceMechanisms of volatile element transfer from subducting slab to the melting re...
We studied the systematics of Cl, F and H2O in Izu arc front volcanic rocks using basaltic through r...
International audienceHalogens and noble gases within submarine basaltic glasses are critical tracer...
We studied the systematics of Cl, F and H2O in Izu arc front volcanic rocks using basaltic through r...
Submarine volcanic glasses from the eastern Manus Basin of Papua New Guinea, ranging from basalt to ...
AbstractHalogen and noble gas systematics are powerful tracers of volatile recycling in subduction z...
Aqueous fluids and sediment melts from subducting oceanic lithosphere are the driving force for the ...
Aqueous fluids and sediment melts from subducting oceanic lithosphere are the driving force for the ...
Measurements of chlorine concentrations in matrix glasses from 18 primitive (>6 wt% MgO) and eight e...
We present H2O, CO2, and Cl concentrations in 66 basaltic glasses from the Easter Microplate (EMP) a...
The North Arch volcanic field is a submarine suite of alkali basaltic to nephelinitic lavas of the s...
Volatile element, major and trace element compositions were measured in glass inclusions in olivine ...
Halogen and noble gas systematics are powerful tracers of volatile recycling in subduction zones. We...
In order to better understand the global halogen cycle and the behaviour of halogens during subducti...
International audienceMechanisms of volatile element transfer from subducting slab to the melting re...
We studied the systematics of Cl, F and H2O in Izu arc front volcanic rocks using basaltic through r...
International audienceHalogens and noble gases within submarine basaltic glasses are critical tracer...
We studied the systematics of Cl, F and H2O in Izu arc front volcanic rocks using basaltic through r...
Submarine volcanic glasses from the eastern Manus Basin of Papua New Guinea, ranging from basalt to ...
AbstractHalogen and noble gas systematics are powerful tracers of volatile recycling in subduction z...