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Thomas, Rainer, Davidson, Paul, Rericha, Adolf, Recknagel, Ulrich (2023) Ultrahigh-Pressure Mineral Inclusions in a Crustal Granite: Evidence for a Novel Transcrustal Transport Mechanism. Geosciences, 13 (4) 94 doi:10.3390/geosciences13040094

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Reference TypeJournal (article/letter/editorial)
TitleUltrahigh-Pressure Mineral Inclusions in a Crustal Granite: Evidence for a Novel Transcrustal Transport Mechanism
JournalGeosciences
AuthorsThomas, RainerAuthor
Davidson, PaulAuthor
Rericha, AdolfAuthor
Recknagel, UlrichAuthor
Year2023 (March 23)Volume13
Page(s)94Issue4
PublisherMDPI AG
DOIdoi:10.3390/geosciences13040094Search in ResearchGate
Mindat Ref. ID15756104Long-form Identifiermindat:1:5:15756104:5
GUID33c5290b-c6c9-4469-9b2a-b1acda8e0ee6
Full ReferenceThomas, Rainer, Davidson, Paul, Rericha, Adolf, Recknagel, Ulrich (2023) Ultrahigh-Pressure Mineral Inclusions in a Crustal Granite: Evidence for a Novel Transcrustal Transport Mechanism. Geosciences, 13 (4) 94 doi:10.3390/geosciences13040094
Plain TextThomas, Rainer, Davidson, Paul, Rericha, Adolf, Recknagel, Ulrich (2023) Ultrahigh-Pressure Mineral Inclusions in a Crustal Granite: Evidence for a Novel Transcrustal Transport Mechanism. Geosciences, 13 (4) 94 doi:10.3390/geosciences13040094
In(2023, March) Geosciences Vol. 13 (4) MDPI AG

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Thomas, R., and Grew, E. (September, January 29). Coesite inclusions in prismatine from Waldheim, Germany: New constrains on the pressure-temperature evolution of the Saxony Granulite Complex. Proceedings of the Book of Abstracts, 3rd European Mineralogical Conference, EMC 2020, Krakow, Poland.
Thomas (2022) J. Earth Envi. Sci. JEES-103 Prismatine granulite from Waldheim/Saxony: Zircon-Reidite 1, 1
Thomas (2022) Veröffentlichungen Nat. Mus. Chemnitz Water-rich coesite in prismatine-granulite from Waldheim/Saxony 45, 67
Kalkowsky, E. (1907). Der Korundgranulit von Waldheim in Sachsen. Abh. Naturwissenschaftlichen Gesellschaft ISIS in Dresden, Hofbuchhandlung H. Burdach.
Linnemann, U., and Romer, R.L. (2010). Pre-Mesozoic Geology of Saxo-Thuringia, Schweizerbart Sci. Pub.
Hösel, G. (1994). Das Zinnerz-Lagerstättengebiet Ehrenfriedersdorf/Erzgebirge, Sächsisches Landesamt für Umwelt und Geologie. Bergbaumonographie, Bd. 1: 1994.
Acosta-Vigil, A., Stöckert, B., Hermann, J., Yaxley, G., Cesare, B., and Bartoli, O. (2017). Remelting of Nanogranitoids in UHP Felsic Granulites from Erzgebirge (Bohemian Massif, Germany), Fall Meeting, Abstract #V24B-06, American Geophysical Union.
Manghnani, M.H., and Syono, Y. (1987). High-Pressure Research in Mineral Physics, Terra Scientific Pub. Co.
Černok, A. (2015). Diversity of Compressional Mechanisms among SiO2 Polymorphs: Case of Coesite and Cristobalite. [Ph.D. Thesis, University of Bayreuth].
Zagorsky (2007) Memórias Porto Deep fluid flow–melt interaction and problems of granite–pegmatite system petrogenesis. Abstracts in Granitic pegmatites: The state of the art 8, 106
Wirth (2022) J. Geosci. Morphology and Raman spectral parameters of Bohemian microdiamonds: Implications to elastic geothermobarometry 67, 239
Duyster (2001) Geology Microdiamonds daughter crystals precipitated from supercritical COH + silicate fluids included in garnet, Erzgebirge, Germany 29, 391
(1954) Neues Jb. Mineral. Abh. Zur Paragenese erzgebirgischer Zinnlagerstätten 87, 33


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