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All Outputs (4)

Isotopic evidence for iron mobility during subduction (2016)
Journal Article
Debret, B., Millet, M., Pons, M., Bouilhol, P., Inglis, E., & Williams, H. (2016). Isotopic evidence for iron mobility during subduction. Geology, 44(3), 215-218. https://doi.org/10.1130/g37565.1

Subduction zones are one of the most important sites of chemical interchange between the Earth's surface and interior. One means of explaining the high Fe3+/ΣFe ratios and oxidized nature of primary arc magmas is the transfer of sulfate (SOX), carbon... Read More about Isotopic evidence for iron mobility during subduction.

Jurassic rifting at the Eurasian Tethys margin: Geochemical and geochronological constraints from granitoids of North Makran, southeastern Iran (2015)
Journal Article
Hunziker, D., Burg, J., Bouilhol, P., & von Quadt, A. (2015). Jurassic rifting at the Eurasian Tethys margin: Geochemical and geochronological constraints from granitoids of North Makran, southeastern Iran. Tectonics, 34(3), 571-593. https://doi.org/10.1002/2014tc003768

This study focuses on an east-west trending belt of granitic to intermediate intrusions and their volcanic cover in the northern Dur Kan Complex, a continental slice outcropping to the north of the exposed Makran accretionary wedge in southeastern Ir... Read More about Jurassic rifting at the Eurasian Tethys margin: Geochemical and geochronological constraints from granitoids of North Makran, southeastern Iran.

A numerical approach to melting in warm subduction zones (2014)
Journal Article
Bouilhol, P., Magni, V., van Hunen, J., & Kaislaniemi, L. (2015). A numerical approach to melting in warm subduction zones. Earth and Planetary Science Letters, 411, 37-44. https://doi.org/10.1016/j.epsl.2014.11.043

The complex feedback between dehydration and melting in hot subduction zones is quantitatively addressed in this study. We present an integrated numerical tool that combines a high-resolution thermo-mechanical subduction model with a thermodynamic da... Read More about A numerical approach to melting in warm subduction zones.

Deep water recycling through time (2014)
Journal Article
Magni, V., Bouilhol, P., & van Hunen, J. (2014). Deep water recycling through time. Geochemistry, Geophysics, Geosystems, 15(11), 4203-4216. https://doi.org/10.1002/2014gc005525

We investigate the dehydration processes in subduction zones and their implications for the water cycle throughout Earth's history. We use a numerical tool that combines thermo-mechanical models with a thermodynamic database to examine slab dehydrati... Read More about Deep water recycling through time.