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Mineral chemistry from the Alfeu-I lamproite (Southern Brazil) and its contribution to understand the mantle heterogeneity under South American Plate during the Gondwana breakup

Authors :
Larissa Colombo Carniel
Rommulo Vieira Conceição
Carlos Augusto S. Provenzano
Andrea Sander
Felipe Padilha Leitzke
Andrea Brum da Silva
Jasper Berndt
Stephan Klemme
Source :
Brazilian Journal of Geology, Vol 53, Iss 3 (2023)
Publication Year :
2023
Publisher :
Sociedade Brasileira de Geologia, 2023.

Abstract

Abstract The Alfeu-I lamproite is one of the few alkaline rock occurrences in the South of Brazil that represents the alkaline event related to the South Atlantic opening and the enormous magmatic activity that formed the Paraná basalts. Alfeu-I lamproite is a diatreme facies and exhibits an inequigranular texture with macrocrysts of mica, spinel, garnet, and ilmenite and microcrysts of mica, pyroxene, and rare olivine, all immersed in a groundmass of pyroxene, spinel, perovskite, rutile, ilmenite, and, more rarely, olivine. Major element compositions of Alfeu-I pyroxene, garnet, ilmenite, mica, and olivine were determined by electron microprobe analyses, and trace element concentrations of clinopyroxene, garnet, ilmenite, and mica were measured using laser-ablation inductively coupled plasma mass spectrometry techniques. Temperature, pressure, and oxygen fugacity (fO2) conditions during the crystallization of Alfeu-I lamproite were calculated with the geothermobarometers and olivine, spinel, garnet, and orthopyroxene. The resulting mean equilibrium temperature ranges from 1375°C at 4 GPa to 1395°C at 5 GPa, whereas the fO2 points to ΔFMQ = +2.4 (at 4 GPa) and ΔFMQ = +2.2 (at 5 GPa). Rb-Sr and Sm-Nd isotopic data together with the trace element concentrations of minerals suggest that melting of a mantle source enriched in incompatible elements and volatiles due to previous subduction events occurred during the Gondwana breakup around 125 Ma ago. Fluids that may have originated from subducting slabs in the old subduction zone are probably the cause of the high fO2 conditions in Alfeu-I lamproite.

Details

Language :
English, Spanish; Castilian, French, Portuguese
ISSN :
23174692 and 23174889
Volume :
53
Issue :
3
Database :
Directory of Open Access Journals
Journal :
Brazilian Journal of Geology
Publication Type :
Academic Journal
Accession number :
edsdoj.8a3b8e2408a48d8b14c2cc746f5cb65
Document Type :
article
Full Text :
https://doi.org/10.1590/2317-4889202320220092