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Pimenta Silva, Manuel; Marxer, Felix; Krashenninikov, Stepan; Koch, Lennart; Zech, Rebecca F.; Holtz, François; Ulmer, Peter; Müntener, Othmar (2025) The role of oxygen fugacity in hydrous basaltic phase equilibria: experimental constraints at 0.2 and 0.8 GPa. Contributions to Mineralogy and Petrology, 180 (11). doi:10.1007/s00410-025-02269-7

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Reference TypeJournal (article/letter/editorial)
TitleThe role of oxygen fugacity in hydrous basaltic phase equilibria: experimental constraints at 0.2 and 0.8 GPa
JournalContributions to Mineralogy and Petrology
AuthorsPimenta Silva, ManuelAuthor
Marxer, FelixAuthor
Krashenninikov, StepanAuthor
Koch, LennartAuthor
Zech, Rebecca F.Author
Holtz, FrançoisAuthor
Ulmer, PeterAuthor
Müntener, OthmarAuthor
Year2025 (November)Volume180
Issue11
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00410-025-02269-7Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID19024997Long-form Identifiermindat:1:5:19024997:9
GUID0
Full ReferencePimenta Silva, Manuel; Marxer, Felix; Krashenninikov, Stepan; Koch, Lennart; Zech, Rebecca F.; Holtz, François; Ulmer, Peter; Müntener, Othmar (2025) The role of oxygen fugacity in hydrous basaltic phase equilibria: experimental constraints at 0.2 and 0.8 GPa. Contributions to Mineralogy and Petrology, 180 (11). doi:10.1007/s00410-025-02269-7
Plain TextPimenta Silva, Manuel; Marxer, Felix; Krashenninikov, Stepan; Koch, Lennart; Zech, Rebecca F.; Holtz, François; Ulmer, Peter; Müntener, Othmar (2025) The role of oxygen fugacity in hydrous basaltic phase equilibria: experimental constraints at 0.2 and 0.8 GPa. Contributions to Mineralogy and Petrology, 180 (11). doi:10.1007/s00410-025-02269-7
In(2025, November) Contributions to Mineralogy and Petrology Vol. 180 (11). Springer Science and Business Media LLC

References Listed

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Abers GA, Hacker BR (2016) A MATLAB toolbox and Excel workbook for calculating the densities, seismic wave speeds, and major element composition of minerals and rocks at pressure and temperature. Geochem Geophys Geosyst 17(11):4517–4533. https://doi.org/10.1002/2015GC006171.Received
Not Yet Imported: - proceedings-article : 10.1130/abs/2019am-337568

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Not Yet Imported: - journal-article : 10.2475/ajs.s4-39.230.175

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Not Yet Imported: American Journal of Science - journal-article : 10.2475/ajs.s4-40.236.161

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Not Yet Imported: - journal-article : 10.2475/ajs.s5-26.153.193

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Not Yet Imported: - posted-content : 10.1002/essoar.10502445.2

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Huebner JS (1980) The melting relations at 1 bar of pyroxenes composed largely of Ca-, Mg-, and Fe-bearing components. Am Miner 65:225–271
Not Yet Imported: - journal-article : 10.30909/vol.02.01.0110

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Khitarov NI, Lebedev EB, Rengarten EV, Arseneva RV (1959) The solubility of water in basaltic and granitic melts. Geochemistry 5:479–492
Van Laar, J. J. (1903). L’allure des courbes de fusion d’alliages solides et d’amalgames. Archives Néerlandaises Des Sciences Exactes et Naturelles, II(8), 264–284.
Le Chatelier H (1885) Sur les lois de la dissolution. Comptes Rendus Hebdomadaires des Séances De L’académie des Sciences 100:441–444
Marxer F, Koch L, Almeev R, Holtz F (2025) Quantification of silicate mineral stability fields in calc-alkaline basaltic systems: an experimental approach. Goldschmidt 2025
Nandedkar, R. H. (2014). Evolution of hydrous mantle-derived calc-alkaline liquids by fractional crystallization at 0.7 and 0.4 GPa: An experimental study. ETH Zurich.
Schwab RG, Küstner D (1981) Die Gleichgewichtsfugazita« ten technologisch und petrologisch wichtiger Sauerstoffpuffer. Neues Jb Mineral Abh 140:111–142
Taylor JR, Wall VJ, Pownceby MI (1992) The calibration and application of accurate redox sensors. Am Mineral 77(3–4):284–295
Ulmer P (1988) High-pressure phase equilibria of a calc-alkaline picro-basalt: implications for the genesis of calc-alkaline magmas. Carnegie Inst Washington Yearb 87:28–35
Ulmer, P. (1986). Basische und ultrabasische Gesteine des Adamello (Issue 8105). https://doi.org/10.3929/ethz-a-000403870


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