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Journal Article

Controls of focused fluid release in subduction zones: insights from experimental dehydration of brucite vein networks in serpentinite

Manuel D. Menzel; Lisa Eberhard; Austin Arias; José Alberto Padrón-Navarta; Oliver Plümper
Contributions to Mineralogy and Petrology · Vol. 180, Issue 4 · 2025

Abstract

Aqueous fluids released by metamorphic dehydration of serpentinites are a key component for seismicity, creep, and geochemical cycling in subduction zones. How these fluids drain and migrate towards the mantle wedge has yet to be fully understood. Here we address the influence of pre-existing structural and mineralogical heterogeneities in serpentinites on dehydration and fluid migration at forearc conditions. We partially dehydrated natural serpentinite containing brucite veins in a piston-cylinder apparatus with a temperature gradient across the conditions of the brucite + antigorite = olivine + fluid reaction (485–520 °C; 1.5 GPa). Micro-tomography, electron microscopy and microstructural analysis of the experimental results, coupled with thermodynamic modelling, show that temperature, mineralogical heterogeneity and variable ingress of external H 2 controlled the dehydration extent. Experimentally formed olivine indicates a topotactic relationship between [100] Ol and [0001] Brc , although the resultant fabric is overall random because brucite was randomly oriented. Olivine forms mono-mineralic aggregates along the walls of brucite veins, displaying very high porosity (up to 32%) and permeability (10 –13 –10 –14 m 2 ). Tracing the pre-existing brucite vein network, these aggregates can form a transient network of interconnected, highly permeable fluid channels that allows drainage and may enhance open-system exchange with neighboring lithologies. Infiltration of reduced external fluids can trigger redox dehydration of magnetite + antigorite to Fe-rich olivine, which renews porosity and propagates focused fluid flow. The distribution of brucite and magnetite, especially as vein networks, therefore has a first-order control on how focused fluid drainage and flow paths develop during subduction of serpentinites.

Bibliographic Information

JournalContributions to Mineralogy and Petrology
PublisherSpringer
Publication Date2025-04-01
Publication Year2025
Volume180
Issue4
Document TypeJournal Article
Print ISSN0010-7999
eISSN1432-0967
DOI10.1007/s00410-025-02221-9

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NARA Access Coverage1947-01-01~Current
Journal Homepagehttps://www.springer.com/journal/410
Publisher PageOpen Publisher Page
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