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Redox transfer at subduction zones: insights from Fe isotopes in the Mariana forearc

Authors :
Hugues Beunon
Cdj Reekie
Ivan P. Savov
B Ménez
Baptiste Debret
Nadine Mattielli
Helen M. Williams
Source :
Geochemical Perspectives Letters, 12
Publication Year :
2020
Publisher :
European Association of Geochemistry, 2020.

Abstract

Subduction zones are active sites of chemical exchange between the Earth’s surface and deep interior and play a fundamental role in regulating planet habitability. However, the mechanisms by which redox sensitive elements (e.g., iron, carbon and sulfur) are cycled during subduction remains unclear. Here we use Fe stable isotopes (δ56Fe), which are sensitive to redox-related processes, to examine forearc serpentinite clasts recovered from deep sea drilling of mud volcanoes formed above the Mariana subduction zone in the Western Pacific. We show that serpentinisation of the forearc by slab-derived fluids produces dramatic δ56Fe variation. Unexpected negative correlations between serpentinite bulk δ56Fe, fluid-mobile element concentrations (e.g., B, As) and Fe3+/ƩFe suggest a concomitant oxidation of the mantle wedge through the transfer of isotopically light iron by slab-derived fluids. This process must reflect the transfer of either sulfate- or carbonate-bearing fluids that preferentially complex isotopically light Fe.

Details

ISSN :
24103403 and 2410339X
Database :
OpenAIRE
Journal :
Geochemical Perspectives Letters
Accession number :
edsair.doi.dedup.....3ebadb3989a6bc44c5a9d54811badf82