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Geoquímica, petrología y geocronología de rocas plutónicas Carboníferas del Macizo de Évora (Zona de Ossa-Morena, Portugal). Un caso de repetido reciclaje cortical e influencia mantélica

Authors: Rodríguez, Carmen; Pereira, M. Francisco; Castro Dorado, Antonio; Fernández, C.;

Geoquímica, petrología y geocronología de rocas plutónicas Carboníferas del Macizo de Évora (Zona de Ossa-Morena, Portugal). Un caso de repetido reciclaje cortical e influencia mantélica

Abstract

The Alto São Bento outcrops (Évora Massif, Ossa-Morena Zone, Portugal) offer a possibility to study diverse types of magma and their genetic relations regarding the evolution of the Variscan belt. The main types of plutonic rocks are layers of twomica granites and porphyritic granites including foliated enclaves of sanukitoids and monzogranites. Representative samples of each lithology have been geochemically and petrologically studied, and have been dated establishing a succession of magmatic events: 335 ± 3 Ma for the monzogranitic enclaves, 328 ± 3 Ma for the enclave of sanukitoids, and 316 ± 8 Ma for the porphyritic granite hosting the enclaves. The correlation of new ages is useful to improve the timing of the Carboniferous tectono-thermal evolution of the Évora Massif. The first and second magmatic events are coetaneous with the ductile extensional deformation D2, whereas the third magmatic event occurred along the transition from the extensional deformation D2 to contractional deformation D3. The finding of sanukitoids is a key factor to better understanding the calc-alkaline magma genesis in subduction zones and the implication of mantle sources in the magmatism of the region.

Los afloramientos de Alto São Bento (Macizo de Évora, Zona de Ossa-Morena, Portugal) ofrecen una posibilidad única de estudiar los distintos tipos de magmas y su relación genética en el contexto del cinturón Varisco. Las facies principales de rocas plutónicas son láminas de granito de 2 micas y granito porfirítico que incluyen enclaves foliados de sanukitoides y monzogranitos. Muestras representativas de cada litología han sido estudiadas, geoquímica y petrológicamente, y datadas estableciendo una sucesión de eventos magmáticos: 335 ± 3 Ma para los enclaves monzograníticos, 328 ± 3 Ma para los enclaves de sanukitoides, y 316 ± 8 Ma para el granito porfirítico que engloba los enclaves. La correlación de las nuevas edades permiten mejorar la escala temporal de la evolución tectono-térmica Carbonífera del Macizo de Évora. El primer y segundo evento magmático son contemporáneos con la deformación D2 dúctil extensional, mientras que el tercer evento magmático puede evidenciar el paso de la deformación extensional D2 a deformación contraccional D3. El reconocimiento de estos sanukitoides es clave para entender la génesis de los magmas calcoalcalinos en el contexto de una zona subducción.

X Congreso Geológico de España, 5-7 Julio 2021, Vitoria - Gasteiz

Keywords

Enclaves, Subducción, Sanukitoides, datación U-Pb en zircón, Magmatismo Varisco

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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
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