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Ódri, Ágnes, Harris, Chris, Le Roux, Petrus (2020) The role of crustal contamination in the petrogenesis of nepheline syenite to granite magmas in the Ditrău Complex, Romania: evidence from O-, Nd-, Sr- and Pb-isotopes. Contributions to Mineralogy and Petrology, 175 (11). doi:10.1007/s00410-020-01738-5

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Reference TypeJournal (article/letter/editorial)
TitleThe role of crustal contamination in the petrogenesis of nepheline syenite to granite magmas in the Ditrău Complex, Romania: evidence from O-, Nd-, Sr- and Pb-isotopes
JournalContributions to Mineralogy and Petrology
AuthorsÓdri, ÁgnesAuthor
Harris, ChrisAuthor
Le Roux, PetrusAuthor
Year2020 (November)Volume175
Issue11
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00410-020-01738-5Search in ResearchGate
Mindat Ref. ID4569301Long-form Identifiermindat:1:5:4569301:8
GUIDdb117509-0460-48c6-9332-20533415d1ad
Full ReferenceÓdri, Ágnes, Harris, Chris, Le Roux, Petrus (2020) The role of crustal contamination in the petrogenesis of nepheline syenite to granite magmas in the Ditrău Complex, Romania: evidence from O-, Nd-, Sr- and Pb-isotopes. Contributions to Mineralogy and Petrology, 175 (11). doi:10.1007/s00410-020-01738-5
Plain TextÓdri, Ágnes, Harris, Chris, Le Roux, Petrus (2020) The role of crustal contamination in the petrogenesis of nepheline syenite to granite magmas in the Ditrău Complex, Romania: evidence from O-, Nd-, Sr- and Pb-isotopes. Contributions to Mineralogy and Petrology, 175 (11). doi:10.1007/s00410-020-01738-5
In(2020, November) Contributions to Mineralogy and Petrology Vol. 175 (11) Springer Science and Business Media LLC

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.

Almási E (2015) A Ditrói Alkáli Masszívum ultramafikus kumulátum kőzeteinek petrogenetikája. Szegedi Tudományegyetem—PhD dissertation, University of Szeged
Ashwal LD, Torsvik T, Horvath P, Harris C, Webb S, Werner S, Corfu F (2016) A Mantle-derived Origin for Mauritian Trachytes. J Petrol 57:1645–1675
Balintoni I, Gheucă I, Vodă A (1983) Alpine and Hercynian overthrust Napps from Central and Southern Areas of the East Carpathians Crystalline Mesozoic Zone. Anuarul Instutului de Geologie şi Geofizică, LX:15–22
Clemens JD, Holloway JR, White AJR (1986) Origin of an A-type granite: experimental constraints. Am Miner 71:317–324
Not Yet Imported: Stable Isotopes in High Temperature Geological Processes - book-chapter : 10.1515/9781501508936-016

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Dallmeyer DR, Kräutner H-G, Neubauer F (1997) Middle-late Triassic 40Ar/39Ar hornblende ages for early intrusions within the Ditrău alkaline massif, Rumania: Implications for Alpine rifting in the Carpathian orogen. Geol Carpath 48:347–352
Giret A, Lameyre J (1985) Inverted alkaline-tholeiitic sequences related to lithospheric thickness in the evolution of continental rifts and oceanic islands. J Afr Earth Sc 3:261–268
Jakab G (1982) Studiul mineralogic şi geochimic al mineralizaţiilor metalifere dintre Voşlobeni şi Corbu. PhD dissertation, Universitate Alexandru. Ioan Cuza, Iaşi
Jakab G (1998) Geologia Masivului alcalin de la Ditrău. Pallas-Akad., M.-Ciuc., 298
Kovács G, Pál-Molnár E (2005) A Ditrói alkáli masszívum granitoid kőzeteinek petrogenezise [Petrogenesis of granitoid rocks from the Ditrău Alkaline Massif—in Hungarian]. Földtani Közlöny 135:121–143
Kräutner HG, Bindea G (1995) The Ditrău alkaline intrusive complex and its geological environment. Romanian J Mineral 77:1–44
Kräutner HG, Bindea G. (1998) Timing of the Ditrău alkaline intrusive complex (Eastern Carpathians, Romania). Slovak Geological Magazine:213–221
Loiselle MC, Wones DR (1979) Characteristics and origin of anorogenic granites. Abstracts Annual Meetings of the Geological Society of America and Associated Societies, San Diego, California, 5–8, 468
Ludwig KR (2003) Isoplot 3.00: a geochronological toolkit for Microsoft Excel. Berkeley Geochronology. Center Special Publication, pp 71
Míková J, Denková P (2007) Modified chromatographic separation scheme for Sr and Nd isotope analysis in geological silicate samples. J Geosci 52:221–226
Pál-Molnár E (1992) Petrographical characteristics of Ditró (Orotva) hornblendites, Eastern Charpatians, Transylvania (Romania): a preliminary description. Acta Mineral-Pertrogr 33:67–80
Pál-Molnár E (2000) Hornblendites and diorites of the Ditrău Syenite Massif. Ed. Dept. Of Mineralogy, Geochemistry and Petrology, University of Szeged, Szeged, 172
Pál-Molnár E, Árva-Sós E (1995) K/Ar radiometric dating on rocks from the northern part of the Ditrău Syenite Massif and its petrogenetic implications. Acta Mineral-Pertrogr Szeged 36:101–116
Pană D, Balintoni I, Heaman L (2000) Precise U-Pb zircon dating of the syenite phase from Ditrău Alkaline Igneous Complex. Studia Univ Babeş-Bolyai Geol 45:79–89
Popescu G (1985) Rb-Sr geochronological data on rocks of the Ditrău Massif (in Romanian, manuscript). Arch. GEOLEX Harghita (Miercurea Ciuc)
Salvi S, Williams-Jones AE (2005) Alkaline granite-syenite deposits. In: Linnen RL, Samson IM (eds) Rare-element geochemistry and mineral deposits. Geological Association of Canada, Short Course Notes 17: 315–341
Săndulescu M (1984) Geotectonica Romăniei. Editura Technică, 336
Săndulescu M, Kräutner HG, Balintoni I, Russo-Săndulescu M, Micu M (1981) The Structure of the East Carpathians (Moldavia - Maramures Area) Guide Exc. B1, Carp.-Balk. Geol. Assoc., XII Congr. Inst. Geol. Geophys, pp 92, Bucuresti
Streckeisen A, Hunziker IC (1974) On the origin of the Nephelinesyenite Massif of Ditró (Transylvania, Romania). Schweiz Min Petr Mitt 54:59–77
Tuttle O, Bowen NL (1958) Origin of granite in the light of experimental studies in the system NaAlSi3O8– KAlSi3O8–SiO2–H2O. Geol Soc Am 74:1–146
Wilson M, Downes H, Cebria JM (1995) Contrasting fractionation trends in coexisting continental alkaline magma series; Cantal, Massif Central, France. J Petrol 36:1729–1753
Zhao Z, Di-Cheng Z, Dong L, Xuanxue M (2016) In situ SIMS oxygen isotope analysis of olivine in the Tibetan mantle xenoliths. EGU General Assembly 2016 held 17–22 April, 2016 in Vienna Austria, id. EPSC2016–10960


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