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Compositions of magmas and carbonate-silicate liquid immiscibility in the Vulture alkaline igneous complex, Italy

Articolo
Data di Pubblicazione:
2005
Abstract:
This paper presents a study of melt and fluid inclusions in minerals of an olivine-leucite phonolitic nephelinite bomb from the Monticchio Lake Formation, Vulture. The rock contains 50 vol.% clinopyroxene, 12% leucite, 10% alkali feldspars, 8% hauyne/sodalite, 7.5% nepheline, 4.5% apatite, 3.2% olivine, 2% opaques, 2.6% plagioclase, and < 1% amphibole. We distinguished three generations of clinopyroxene differing in composition and morphology. All the phenocrysts bear primary and secondary melt and fluid inclusions, which recorded successive stages of melt evolution. The most primitive melts were found in the most magnesian olivine and the earliest clinopyroxene phenocrysts. The melts are near primary mantle liquids and are rich in Ca, Mg and incompatible and volatile elements. Thermometric experiments with the melt inclusions suggested that melt crystallization began at temperatures of about 1200 °C. Because of the partial leakage of all primary fluid inclusions, the pressure of crystallization is constrained only to minimum of 3.5 kbar. Combined silicate–carbonate melt inclusions were found in apatite phenocrysts. They are indicative of carbonate–silicate liquid immiscibility, which occurred during magma evolution. Large hydrous secondary melt inclusions were found in olivine and clinopyroxene. The inclusions in the phenocrysts recorded an open-system magma evolution during its rise towards the surface including crystallization, degassing, oxidation, and liquid immiscibility processes.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Inclusion; Olivine bearing phonolitic nephelinite; Carbonate silicate liquid immiscibility; Vol Vulture; Southern Italy
Elenco autori:
Solovova, I. P.; Girnis, A. V.; Kogarko, L. N.; Kononkova, N. N.; Stoppa, Francesco; Rosatelli, Gianluigi
Autori di Ateneo:
ROSATELLI Gianluigi
STOPPA Francesco
Link alla scheda completa:
https://ricerca.unich.it/handle/11564/134328
Pubblicato in:
LITHOS
Journal
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URL

http://www.sciencedirect.com/science/article/pii/S002449370500112X
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