Chromitites from the Luanga Complex, Carajás, Brazil: Stratigraphic distribution and clues to processes leading to post-magmatic alteration
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[1] E. Mansur,et al. Magmatic structure and geochemistry of the Luanga Mafic-Ultramafic Complex: Further constraints for the PGE-mineralized magmatism in Carajás, Brazil , 2016 .
[2] C. F. Filho,et al. Spinifex-textured komatiites in the south border of the Carajas ridge, Selva Greenstone belt, Carajás Province, Brazil , 2016 .
[3] M. D. Giustina,et al. Geology, petrology and geochronology of the Lago Grande layered complex: Evidence for a PGE-mineralized magmatic suite in the Carajás Mineral Province, Brazil , 2015 .
[4] W. Griffin,et al. Trace-element fingerprints of chromite, magnetite and sulfides from the 3.1 Ga ultramafic–mafic rocks of the Nuggihalli greenstone belt, Western Dharwar craton (India) , 2015, Contributions to Mineralogy and Petrology.
[5] Wolney Dutra Rosa. Complexos acamados da Serra da Onça e Serra do Puma : geologia e petrologia de duas intrusões máfico-ultramáficas com sequencia de cristalização distinta na Província Arqueana de Carajás, Brasil , 2015 .
[6] Cassian Pirard,et al. Experimentally determined stability of alkali amphibole in metasomatised dunite at sub-arc pressures , 2014, Contributions to Mineralogy and Petrology.
[7] R. Dall’Agnol,et al. Archean granitoid magmatism in the Canaã dos Carajás area: Implications for crustal evolution of the Carajás province, Amazonian craton, Brazil , 2013 .
[8] P. Parseval,et al. A new view on the petrogenesis of the Oman ophiolite chromitites from microanalyses of chromite-hosted inclusions , 2012 .
[9] B. Godel,et al. Chromite in komatiites: 3D morphologies with implications for crystallization mechanisms , 2012, Contributions to Mineralogy and Petrology.
[10] A. J. Naldrett,et al. The origin of chromitites and related PGE mineralization in the Bushveld Complex: new mineralogical and petrological constraints , 2012, Mineralium Deposita.
[11] B. O’Driscoll,et al. Cr-spinel Seam Petrogenesis in the Rum Layered Suite, NW Scotland: Cumulate Assimilation and in situ Crystallization in a Deforming Crystal Mush , 2010 .
[12] M. Rosing,et al. Compositional variations in the Mesoarchean chromites of the Nuggihalli schist belt, Western Dharwar Craton (India): potential parental melts and implications for tectonic setting , 2010 .
[13] J. Kinnaird,et al. Chromite composition and PGE content of Bushveld chromitites: Part 1 – the Lower and Middle Groups , 2009 .
[14] J. Gutzmer,et al. Intrusive origin for Upper Group (UG1, UG2) stratiform chromitite seams in the Dwars River area, Bushveld Complex, South Africa , 2009 .
[15] S. Barnes,et al. Platinum-group elements in the UG1 and UG2 chromitites, and the Bastard reef, at Impala platinum mine, western Bushveld Complex, South Africa: Evidence for late magmatic cumulate instability and reef constitution , 2008 .
[16] S. Mondal,et al. Origin of the UG2 chromitite layer, Bushveld Complex , 2007 .
[17] R. Frei,et al. The genesis of Archaean chromitites from the Nuasahi and Sukinda massifs in the Singhbhum Craton, India , 2006 .
[18] J. Mavrogenes,et al. Origin of chromitites in layered intrusions: Evidence from chromite-hosted melt inclusions from the Stillwater Complex , 2005 .
[19] A. Sarkar,et al. Origin of phlogopite-orthopyroxene inclusions in chromites from the Merensky Reef of the Bushveld Complex, South Africa , 2005 .
[20] C. F. Filho,et al. The Chromite Deposit of the Ipueira-Medrado Sill, São Francisco Craton, Bahia State, Brazil , 2003 .
[21] P. Roeder,et al. The Range of Spinel Compositions in Terrestrial Mafic and Ultramafic Rocks , 2001 .
[22] R. Dall’Agnol,et al. Nd, Pb and Sr isotopes in the Identidade Belt, an Archaean greenstone belt of the Rio Maria region (Carajás Province, Brazil): implications for the Archaean geodynamic evolution of the Amazonian Craton , 2001 .
[23] C. Spier,et al. The Chromite Deposits of the Bacuri Mafic-Ultramafic Layered Complex, Guyana Shield, Amapá State, Brazil , 2001 .
[24] Raimundo NetunoVillas,et al. Gold deposits of the Carajás mineral province: deposit types and metallogenesis , 2001, Mineralium Deposita.
[25] P. Roeder,et al. GROWTH FORMS AND COMPOSITION OF CHROMIAN SPINEL IN MORB MAGMA: DIFFUSION-CONTROLLED CRYSTALLIZATION OF CHROMIAN SPINEL , 2001 .
[26] D. Pirrie,et al. Testing the validity of chrome spinel chemistry as a provenance and petrogenetic indicator , 2000 .
[27] R. Holdsworth,et al. The anatomy of shallow-crustal transpressional structures: insights from the Archaean Carajás fault zone, Amazon, Brazil , 2000 .
[28] M. Macambira,et al. Th–U–Pb isotopic systems and internal structures of complex zircons from an enderbite from the Pium Complex, Carajás Province, Brazil: evidence for the ages of granulite facies metamorphism and the protolith of the enderbite , 2000 .
[29] S. Barnes. Chromite in Komatiites, II. Modification during Greenschist to Mid-Amphibolite Facies Metamorphism , 2000 .
[30] S. Sokolov,et al. Re-equilibration of melt inclusions trapped by magnesian olivine phenocrysts from subduction-related magmas: petrological implications , 2000 .
[31] S. Barnes. Chromite in Komatiites, 1. Magmatic Controls on Crystallization and Composition , 1998 .
[32] J. Lancelot,et al. Time Constraints for the Formation of the Archean Rio Maria Crust, Southeastern Amazonian Craton, Brazil , 1996 .
[33] J. Liipo,et al. Zoned Zn-rich chromite from the Naataniemi serpentinite massif, Kuhmo greenstone belt, Finland , 1995 .
[34] V. Diella,et al. PGE and PGM in the Luanga mafic-ultramafic intrusion in Serra dos Carajás (Pará State, Brazil) , 1995 .
[35] R. E. Hill,et al. Poikilitic chromfite in komatiitic cumulates , 1995 .
[36] C. Stowe. Compositions and tectonic settings of chromite deposits through time , 1994 .
[37] L. Froget,et al. Formation of spinels in cosmic objects during atmospheric entry: a clue to the Cretaceous-Tertiary boundary event , 1992 .
[38] Z. Lindenmayer,et al. U-Pb geochronology of Archean magmatism and basement reactivation in the Carajás area, Amazon shield, Brazil , 1991 .
[39] M. Ghiorso,et al. An internally consistent model for the thermodynamic properties of Fe−Mg-titanomagnetite-aluminate spinels , 1991 .
[40] J. Lorand,et al. Silicate and base-metal sulfide inclusions in chromites from the Maqsad area (Oman ophiolite, Gulf of Oman): A model for entrapment , 1989 .
[41] M. Dardenne,et al. The role of shoshonitic and calc-alkaline suites in the tectonic evolution of the Carajás District, Brazil , 1988 .
[42] J. Cottin,et al. Na- Ti- Zr- H2O-rich mineral inclusions indicating postcumulus chrome-spinel dissolution and recrystallization in the Western Laouni mafic intrusion, Algeria , 1987 .
[43] T. Augé,et al. Chromite deposits in the northern Oman ophiolite: Mineralogical constraints , 1987 .
[44] I. Reynolds,et al. Cryptic variations within chromitites of the upper critical zone, northwestern Bushveld Complex , 1986 .
[45] A. K. Gibbs,et al. AGE AND COMPOSITION OF THE GRÃO PARÁ GROUP VOLCANICS, SERRA DOS CARAJÁS , 1986 .
[46] C. Ballhaus,et al. Sulfide and platinum mineralization in the Merensky Reef: evidence from hydrous silicates and fluid inclusions , 1986 .
[47] P. Roeder,et al. The Effect of Postcumulus Reactions on Composition of Chrome-spinels from the Jimberlana Intrusion , 1985 .
[48] L. Hulbert,et al. Textural and compositional features of chromite in the lower and critical zones of the Bushveld Complex south of Potgietersrus , 1985 .
[49] S. Barnes. The petrography and geochemistry of komatiite flows from the Abitibi Greenstone Belt and a model for their formation , 1985 .
[50] J. Marsh,et al. Al/Cr ratios of coexisting pyroxenes and spinellids in some ultramafic rocks , 1983 .
[51] P. Henderson,et al. Reaction relationships of chrome-spinels in igneous rocks — further evidence from the layered intrusions of Rhum and Mull, Inner Hebrides, Scotland , 1982 .
[52] T. Irvine. Origin of chromitite layers in the Muskox intrusion and other stratiform intrusions: A new interpretation , 1977 .
[53] A. J. Naldrett,et al. Komatiitic and Iron-rich Tholeiitic Lavas of Munro Township, Northeast Ontario , 1977 .
[54] B. W. Evans,et al. Chrome-spinel in progressive metamorphism—a preliminary analysis , 1975 .
[55] P. Henderson. Reaction trends shown by chrome-spinels of the Rhum layered intrusion , 1975 .
[56] T. Irvine. Chromian Spinel as a Petrogenetic Indicator: Part 1. Theory , 1965 .