Magmas mantélicos a través de un complejo anatéctico: evidencias texturales y composicionales de micas en lamproitas de la región neógena volcánica del sureste de España
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Abstract
Actualmente cobra cada vez más interés la evaluación de los componentes
manto y corteza en la petrogénesis ígnea. En este contexto las rocas
de la región neógena volcánica del sureste de España representan un excelente
ejemplo de interacciones entre magmas mantélicos y derivados corticales.
La caracterización de estos procesos en toda su magnitud se realiza
mediante detallados estudios mineralógicos. En este trabajo mostramos
cómo las micas de las rocas ultrapotásicas de Zeneta ponen de manifiesto
una compleja interacción entre magmas lamproíticos y un complejo anatectico,
evidenciado en las variaciones composicionales (Al2O3, FeOt y TiO2) de
flogopitas y biotitas. Estudios a escala mineral cobran una gran relevancia
para el desarrollo de modelos petrogenéticos
A topic of particular current interest is the evaluation of mantle and crustal components in igneous petrogenesis. In this context, the rocks of the Neogene Volcanic Province of southeast Spain provide an excellent example of interaction between mantle and crustal components. The characterization of such processes, at all scales, is facilitated by detailed mineralogical studies. Here we conclude that micas from Zeneta ultrapotassic rocks reveal a complex interaction between lamproitic magmas and an anatectic complex. This is shown in compositional variations (Al2O3, FeOt y TiO2) in both phlogopites and biotites. Mineral-scale studies clearly have important implications for petrogenetic models
A topic of particular current interest is the evaluation of mantle and crustal components in igneous petrogenesis. In this context, the rocks of the Neogene Volcanic Province of southeast Spain provide an excellent example of interaction between mantle and crustal components. The characterization of such processes, at all scales, is facilitated by detailed mineralogical studies. Here we conclude that micas from Zeneta ultrapotassic rocks reveal a complex interaction between lamproitic magmas and an anatectic complex. This is shown in compositional variations (Al2O3, FeOt y TiO2) in both phlogopites and biotites. Mineral-scale studies clearly have important implications for petrogenetic models







