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Elizondo-Pacheco, L.A., Solari, L.A., González-Guzmán, R., He, H.L., Becerra-Torres, E., Ramírez-Fernández, J.A., Maldonado, R. (2024) Multi-isotope and geochemical approach to the magma source and tectonic setting of Proterozoic anorthosite massifs and Anorthosite-Mangerite-Charnockite-Granite (AMCG) suites. Geoscience Frontiers, 15 (6). doi:10.1016/j.gsf.2024.101880

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Reference TypeJournal (article/letter/editorial)
TitleMulti-isotope and geochemical approach to the magma source and tectonic setting of Proterozoic anorthosite massifs and Anorthosite-Mangerite-Charnockite-Granite (AMCG) suites
JournalGeoscience Frontiers
AuthorsElizondo-Pacheco, L.A.Author
Solari, L.A.Author
González-Guzmán, R.Author
He, H.L.Author
Becerra-Torres, E.Author
Ramírez-Fernández, J.A.Author
Maldonado, R.Author
Year2024 (November)Volume15
Issue6
PublisherElsevier BV
DOIdoi:10.1016/j.gsf.2024.101880Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID17967709Long-form Identifiermindat:1:5:17967709:0
GUID0
Full ReferenceElizondo-Pacheco, L.A., Solari, L.A., González-Guzmán, R., He, H.L., Becerra-Torres, E., Ramírez-Fernández, J.A., Maldonado, R. (2024) Multi-isotope and geochemical approach to the magma source and tectonic setting of Proterozoic anorthosite massifs and Anorthosite-Mangerite-Charnockite-Granite (AMCG) suites. Geoscience Frontiers, 15 (6). doi:10.1016/j.gsf.2024.101880
Plain TextElizondo-Pacheco, L.A., Solari, L.A., González-Guzmán, R., He, H.L., Becerra-Torres, E., Ramírez-Fernández, J.A., Maldonado, R. (2024) Multi-isotope and geochemical approach to the magma source and tectonic setting of Proterozoic anorthosite massifs and Anorthosite-Mangerite-Charnockite-Granite (AMCG) suites. Geoscience Frontiers, 15 (6). doi:10.1016/j.gsf.2024.101880
In(2024, November) Geoscience Frontiers Vol. 15 (6). Elsevier BV

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.

Amelin (2000) Canada. Econ. Geol. Nd-Pb-Sr Isotope systematics of crustal assimilation in the Voisey’s Bay and Mushuau Intrusions, Labrador 95, 815
Chakrabarti (2011) Age and origin of the Chilka Anorthosites, Eastern Ghats, India: Implications for massif anorthosite petrogenesis and break-up of Rodinia , 355
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Díaz-González (2022) TecMagDiSys: A new computer program for multidimensional tectonomagmatic discrimination , 455
Drüppel (2003) , 345
Dymek (2004) AGU Spring Meeting Abstracts. Anorthosite magma revisited: field and petrographic evidence from the CRUML Belt, Grenville Province, Quebec
Emslie (1975) Can. Mineral. Pyroxene megacrysts from anorthositic rocks; new clues to the sources and evolution of the parent magmas 13, 138
Emslie (1985) Proterozoic Anorthosite Massifs , 39
Evans (1999) S. Afr. J. Geol. Mafic, ultramafic, and anorthositic rocks of the Tete Complex, Mozambique; petrology, age, and significance 102, 153
Fred (2022) Lithos Thermodynamic constraints on the petrogenesis of massif-type anorthosites and their parental magmas 422–423
Not Yet Imported: - book-chapter : 10.1130/2022.1220(10)

If you would like this item imported into the Digital Library, please contact us quoting Book ID 9780813712208
Not Yet Imported: - journal-article : 10.1007/s11004-023-10052-2

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He (2021) Lithos Lower crust-mantle interactions in the massif-type anorthosite formation: New evidence from zircon U-Pb-Hf-O isotopes of the Neoproterozoic Kadavur Complex, southern India 380–381
Kwon (1990) J. Geol. Soc. Korea Preliminary Sr-Nd isotope study of the Hadong-Sanchung anorthositic rocks in Korea : Implication for their origin and for the Precambrian tectonics 26, 341
Lambert (2000) Econ. Geol. Re-Os isotope systematics of the Voisey’s Bay Ni-Cu-Co magmatic sulfide system, Labrador, Canada: II. Implications for parental magma chemistry, ore genesis, and metal redistribution 95, 867
Larin (2002) Dokl. Earth Sci. Neodymium and strontium isotope constraints on genesis of the Geran anorthosite massif 382, 101
Not Yet Imported: Geological Society of America Special Papers - book-chapter : 10.1130/SPE246-p301

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Mitchell (1993) , 213 pp.
Morisset (2008) , 301 pp.
Morse (1982) Am. Mineral. A partisan review of Proterozoic anorthosites 67, 1087
Park (2001) J. Petrol. Soc. Korea Sm-Nd mineral ages of charnockites and ilmenite-bearing anorthositic rocks of Jirisan area and their genetic relationship 10, 27
Not Yet Imported: Treatise on Geochemistry - book-chapter : 10.1016/B978-0-08-095975-7.00301-6

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Not Yet Imported: Laurentia: Turning Points in the Evolution of a Continent - book-chapter : 10.1130/2022.1220(14)

If you would like this item imported into the Digital Library, please contact us quoting Book ID 9780813712208
Taylor (1969) , 18
Verma (2020) Lithos Comprehensive multidimensional tectonomagmatic discrimination from log-ratio transformed major and trace elements 362–363
Verma (2011) Revista Mexicana De Ciencias Geologicas New tectonic discrimination diagrams for basic and ultrabasic volcanic rocks through log-transformed ratios of high field strength elements and implications for petrogenetic processes 28, 24
Verma (2015) Czech Republic. J. Geosci. (Czech Republic) A new computer program tecDIA for multidimensional tectonic discrimination of intermediate and acid magmas and its application to the bohemian massif 60, 203
Whalen (2019) Lithos Trace element discrimination of arc, slab failure, and A-type granitic rocks 348–349, 105179
Wiszniewska (2000) Geological Quarterly Strontium isotope ratios and REE geochemistry in the Suwałki anorthosites, NE Poland 44, 183
Xie (1988) Geochimica A preliminary study on the emplacement age of the Damiao anorthosite complex 17, 13
Not Yet Imported: - journal-article : 10.3190/jgeosci.172

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Zhao (2009) North China Craton. Lithos Geochemical and Nd–Hf isotopic constraints on the origin of the ∼ 1.74-Ga Damiao anorthosite complex 113, 673


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