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- W2752225058 abstract "Subduction zones facilitate chemical exchanges between Earth's deep interior and volcanism that affects habitability of the surface environment. Lavas erupted at subduction zones are oxidized and release volatile species. These features may reflect a modification of the oxidation state of the sub-arc mantle by hydrous, oxidizing sulfate and/or carbonate-bearing fluids derived from subducting slabs. But the reason that the fluids are oxidizing has been unclear. Here we use theoretical chemical mass transfer calculations to predict the redox state of fluids generated during serpentinite dehydration. Specifically, the breakdown of antigorite to olivine, enstatite, and chlorite generates fluids with high oxygen fugacities, close to the hematite-magnetite buffer, that can contain significant amounts of sulfate. The migration of these fluids from the slab to the mantle wedge could therefore provide the oxidized source for the genesis of primary arc magmas that release gases to the atmosphere during volcanism. Our results also show that the evolution of oxygen fugacity in serpentinite during subduction is sensitive to the amount of sulfides and potentially metal alloys in bulk rock, possibly producing redox heterogeneities in subducting slabs." @default.
- W2752225058 created "2017-09-15" @default.
- W2752225058 creator A5026107186 @default.
- W2752225058 creator A5088213144 @default.
- W2752225058 date "2017-09-04" @default.
- W2752225058 modified "2023-10-12" @default.
- W2752225058 title "Highly oxidising fluids generated during serpentinite breakdown in subduction zones" @default.
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- W2752225058 doi "https://doi.org/10.1038/s41598-017-09626-y" @default.
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