Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/124434
Título: Disequilibrium in historic volcanic rocks from Fogo, Cape Verde traces carbonatite metasomatism of recycled ocean crust
Autores/as: Barker, A. K.
Magnusson, E.
Troll, V. R.
Harris, C.
Mattsson, H. B.
Holm, P. M.
Pérez Torrado, Francisco José 
Carracedo Gomez,Juan Carlos 
Deegan, F. M.
Clasificación UNESCO: 250621 Vulcanología
Palabras clave: Carbonated Eclogite
Fogo, Cape Verde
Magma Hybridization
Mantle Heterogeneity
Oxygen Isotopes, et al.
Fecha de publicación: 2023
Publicación seriada: Lithos 
Resumen: Fogo, Cape Verde, located upon thick oceanic lithosphere, provides a window into processes occurring in the mantle where recycled ocean crust in an upwelling mantle plume interacts with ambient mantle. Our objective is to investigate the nature of the lithologies of the mantle sources involved in the petrogenesis of historic volcanic rocks from Fogo. We observe enclaves and mingling textures in the lavas combined with oxygen isotope disequilibrium between olivine and clinopyroxene phenocrysts. Olivine δ18O values display positive correlations with Zr/Hf and Zr/Y and a negative correlation with U/Th, whereas clinopyroxene δ 18O values correlate positively with Ba/Nb. Heterogeneity between crystal populations and within the groundmass indicates that multiple magma batches are mixed beneath Fogo. In terms of mantle endmembers and source lithologies, a HIMU endmember was generated by melting of carbonated eclogite as indicated by low δ 18O values, Zr/Hf, Ba/Nb and high U/Th ratios. In contrast, we show the EM1 endmember has high δ 18O, Zr/Hf, Ba/Nb and low U/Th ratios, derived from melting of variably carbonated peridotite. Additionally, Ba/Th ratio are high, indicating that carbonatite melts have contributed to alkaline magma compositions at Fogo.
URI: http://hdl.handle.net/10553/124434
ISSN: 0024-4937
DOI: 10.1016/j.lithos.2023.107328
Fuente: Lithos [ISSN 0024-4937], v. 456-457, (Noviembre 2023)
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