Matrix glass and melt inclusions in phenocrysts from pantellerite lavas of the Boseti volcanic complex, Ethiopia, record extreme fractionation of peralkaline silicic magma, with Al2O3 contents as low as 2.3 wt.%, FeO* contents up to 17 wt.% and SiO2 contents ~65 wt.%. The new data, and published data for natural and experimental glasses, suggest that the effective minimum composition for peralkaline silicic magmas has ~5 wt.% Al2O3, 13 wt.% FeO* and 66±2 wt.% SiO2. The dominant fractionating assemblage is alkali feldspar+fayalite+hedenbergite+ oxides±quartz. Feldspar – melt relationships indicate that the feldspar is close to the minimum on the albiteorthoclase solid solution loop through the entire crystallization history. There is petrographic, mineralogical and geochemical evidence that magma mixing may have been a common process in the Boseti rhyolites.

Evidence for extreme fractionation of peralkaline silicicmagmas, the Boseti volcanic complex, Main Ethiopian Rift

MARZOLI, ANDREA;
2012

Abstract

Matrix glass and melt inclusions in phenocrysts from pantellerite lavas of the Boseti volcanic complex, Ethiopia, record extreme fractionation of peralkaline silicic magma, with Al2O3 contents as low as 2.3 wt.%, FeO* contents up to 17 wt.% and SiO2 contents ~65 wt.%. The new data, and published data for natural and experimental glasses, suggest that the effective minimum composition for peralkaline silicic magmas has ~5 wt.% Al2O3, 13 wt.% FeO* and 66±2 wt.% SiO2. The dominant fractionating assemblage is alkali feldspar+fayalite+hedenbergite+ oxides±quartz. Feldspar – melt relationships indicate that the feldspar is close to the minimum on the albiteorthoclase solid solution loop through the entire crystallization history. There is petrographic, mineralogical and geochemical evidence that magma mixing may have been a common process in the Boseti rhyolites.
2012
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2507579
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