<p dir="ltr">Supplementary Information for "Mechanisms of mass transfer in Sediment-Rich Mélanges in Modern Subduction Zones".</p><p dir="ltr">This Supplementary Information contains additional tables (Table S1 to S13) with the detailed chemistry composition of the starting material, minerals, melts, the calculated rock densities, melange and mantle viscosities calculations and mélange diapir melting modeling results.</p><p dir="ltr">Table S1. Starting material major and trace element compositions.</p><p dir="ltr">Table S2. Experimental melt composition at 2 and 3 GPa and melt and aqueous fluid proportions (w.t%).</p><p dir="ltr">Table S3. Bulk mineral residue composition and phase proportions (wt.%).</p><p dir="ltr">Table S4. Orthopyroxene composition and phase proportion</p><p dir="ltr">Table S5. Mica composition and phase proportion</p><p dir="ltr">Table S6. Amphibole composition and phase proportion</p><p dir="ltr">Table S7. Quartz composition and phase proportion</p><p dir="ltr">Table S8. Garnet composition and phase proportion</p><p dir="ltr">Table S9. Rutile/Ti-magnetite composition and phase proportion</p><p dir="ltr">Table S10. Thermodynamic parameters used in the modified Tait equation of state in Holland and Powell (2011).</p><p dir="ltr">Table S11. Density contrast data between mélange/sediment and the mantle</p><p dir="ltr">Table S12. Rheologic parameter input and viscosity outputs.</p><p dir="ltr">Table S13. Trace elements modeling of partial melting of sediment-rich mélanges.</p><hr><p dir="ltr"><i>For inquiries regarding the contents of this dataset, please contact the Corresponding Author listed in the README.txt file. Administrative inquiries (e.g., removal requests, trouble downloading, etc.) can be directed to data-management@arizona.edu</i></p><p dir="ltr"><br></p>
Funding
GPSC Research and Project Grant
Collaborative Research: Tracking nitrogen in mélange matrix from fore-arc to sub-arc depths with implications for deep nitrogen cycling: A combined field and experimental approach