4.5 Article

Compositional Evolution of the Variscan Intra-Orogenic Extensional Magmatism in the Valencia del Ventoso Plutonic Complex, Ossa-Morena Zone (SW Iberia): A View from Amphibole Compositional Relationships

Journal

MINERALS
Volume 11, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/min11040431

Keywords

amphibole compositional relationships; amphibole-plagioclase thermobarometry; post-collisional magmatism; magma mixing and hybridization; Ossa-Morena Zone; Iberia; Variscan orogen

Funding

  1. Ministerio de Economia y Competitividad (Gobierno de Espana) [CGL2017-84469-P]

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The Ossa-Morena Zone in SW Iberia contains Lower Carboniferous compositionally zoned plutons with alkaline, transitional, and calc-alkaline suites. A study of the Valencia del Ventoso main pluton reveals the compositional evolution of magmas during hybridization, with evidence of mixed alkaline and calc-alkaline magmas. Different facies of the pluton crystallized under varying conditions, indicating a complex magmatic history.
The Ossa-Morena Zone (OMZ), SW Iberia, has numerous Lower Carboniferous compositionally zoned plutons that formed in a Variscan intra-orogenic extensional setting. This magmatism shows a wide compositional variation comprising alkaline, transitional, and calc-alkaline suites. The calc-alkaline suite was produced by hybridization of alkaline magmas with felsic melts generated by crustal anatexis related to the intrusion of mafic magmas in the middle crust. In this work, we present a textural and mineralogical study of the Variscan Valencia del Ventoso main pluton from the OMZ to track the compositional evolution of magmas during hybridization using constraints from amphibole compositions and to determine the P-T conditions of emplacement using amphibole-based thermobarometry. This pluton exhibits reverse zoning with an inner facies containing alkaline dolerites, gabbros, and quartz diorites, an intermediate facies with transitional diorites, and an outer facies with calc-alkaline quartz diorites to monzogranites. Magmas from the intermediate and border facies crystallized under oxidizing conditions at relatively low temperatures (range: 640-760 degrees C) and ca. 280-300 MPa, implying near H2O-saturated conditions. These rock facies show mineralogical evidence of hybridization between alkaline to mildly alkalic and calc-alkaline magmas. The former is inferred from the occurrence of antecrysts of labradorite-andesine, high-Ti pargasite-hastingsite, and biotite with deficiency in tetrahedral-site occupancy, a distinctive feature of biotite from the inner facies alkaline dolerites. This contrasts with later crystallization from the calc-alkaline magma of andesine-oligoclase, low-Ti magnesiohornblende-edenite, and biotite with full tetrahedral-site occupancy. Constraints from amphibole-melt compositional relationships in antecrystic high-Ti amphibole suggest that the alkaline magmatic component could have a high- to ultra-K affinity.

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