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Petrogenesis of coexisting SiO2-undersaturated to SiO2-oversaturated felsic igneous rocks: The alkaline complex of Itatiaia, southeastern Brazil
Authors:P Brotzu  CB Gomes  L Melluso  L Morbidelli  V Morra  E Ruberti
Institution:

aDipartimento di Scienze della Terra, Universitàdi Napoli Federico II, Via Mezzocannone 8, 80134 Napoli, Italy

bInstitute de Geocie?ncias, Universidade de Sa?o Paulo, Sa?o Paulo, Brazil

cDipartimento di Scienze della Terra, Universitàdi Roma ‘La Sapienza’, Roma, Italy

Abstract:The Itatiaia alkaline complex is a Late Cretaceous intrusion (72 Myr) made up of felsic differentiates, with syenitic rocks dominant throughout and with presence of both nepheline- and quartz-rich varieties. Dykes with phonolitic or trachytic composition cross-cut the coarse-grained facies. The rocks are arranged concentrically, with the core of the complex being formed by SiO2-oversaturated syenites (with a small outcrop of granites), and are radially displaced by faults related to regional tectonic lineaments. The minerals show gradual but significant changes in composition (salitic and augitic to aegirine-rich pyroxenes, hastingsite and actinolite to richterite and arfvedsonite amphiboles, sodic plagioclase to orthoclase feldspars and so on) and the whole-rock trends are broadly consistent with fractional crystallization processes dominated by alkali feldspar removal. Sr-isotopic data indicate more radiogenic ratios for the SiO2-oversaturated rocks (0.7062-0.7067 against 0.7048-0.7054 for the SiO2-undersaturated syenites), consistent with small amounts of crustal input. The favored hypothesis for the petrogenesis of the different syenitic groups is the prolonged differentiation starting from differently SiO2-undersaturated mafic parental magmas (potassic alkali basalts to ankaratrites, present in the Late Cretaceous dyke swarms of the area), accompanied by variable crustal contamination prior to the final emplacement. The lack of carbonatite as a significant lithotype, the potassic affinity of the Itatiaia complex, and the relatively high Sr-isotopic ratios match the characteristics of the other complexes of the Rio de Janeiro-Sa?o Paulo states coastline and confirm the ultimate derivation of these differentiated rocks from an enriched lithospheric mantle source.
Keywords:Nepheline syenites  Quartz syenites  Granites  Crustal contamination  Magmatic evolution  Itatiaia  Brazil
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