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New insights into the Aeolian Islands and other arc source compositions from high-precision olivine chemistry

Authors :
Valentina Batanova
Jarek Trela
Esteban Gazel
Alexander V. Sobolev
Federico Lucchi
Denis Zamboni
Benedetto De Vivo
C. Cannatelli
Zamboni, Deni
Trela, Jarek
Gazel, Esteban
Sobolev, Alexander V.
Cannatelli, Claudia
Lucchi, Federico
Batanova, Valentina G.
De Vivo, Benedetto
Source :
Lithos, Artículos CONICYT, CONICYT Chile, instacron:CONICYT
Publication Year :
2017

Abstract

The Aeolian arc (Italy) is characterized by some of the strongest along-the-arc geochemical variations in the planet, making it an ideal location to study the effect of subducting components in modifying the mantle source of island arc melts. Here, we use high-precision element concentrations in primitive phenocrystic olivine from basalts along the arc to elucidate the effects of mantle source modification by the subduction process. Olivines from this arc have Ni concentrations and Fe/Mn ratios that show similarity to peridotite sources that melted to produce mid-ocean ridge basalts. Nevertheless, they also have systematically lower Ca concentrations and Fe/Mn ratios that broadly overlap with olivines from the available global arc array. These phenocrysts also do not show significant variations in Ca as a function of olivine forsterite content. The global data suggest that all olivines crystallizing from island-arc melts have suppressed Ca concentrations and Fe/Mn ratios, relative to olivines derived from melts at intraplate and mid-ocean ridge settings suggesting elevated H 2 O concentrations and higher oxidation state of the equilibrium melts. Based on olivine chemistry, we interpret a predominantly peridotite source (fluxed by subduction fluids) beneath the Aeolian Arc and also for other examples of arc-related lavas.

Details

Language :
English
Database :
OpenAIRE
Journal :
Lithos, Artículos CONICYT, CONICYT Chile, instacron:CONICYT
Accession number :
edsair.doi.dedup.....5a3c5d9675f653ee222d6be803d1a23b