Scientific Quarterly Journal of Geosciences

Scientific Quarterly Journal of Geosciences

Geochemistry and Petrogenesis of Neogene Perlitic–Spherulitic Rocks from the Galumak Area, Urumieh–Dokhtar Magmatic Assemblage: Evidence for Syn- to Post- Collisional Magmatism in Southeastern Iran

Document Type : Original Research Paper

Authors
Department of Geology, College of Sciences, Shahid Bahonar University of Kerman, Kerman, Iran
10.22071/gsj.2026.572727.2243
Abstract
The Neogene perlitic rocks of the Galumak area, located northeast of Bardsir and within the Urumieh-Dokhtar magmatic assemblage, are associated with limited extent rhyolitic lava flows. These perlites appear to have formed through hydration of rhyolites, progressively devitrifying into spherulites. Geochemical data reveal a rhyolitic composition, high-K calc-alkaline affinity, and meta- to peraluminous character. Spider diagrams and rare earth element (REE) patterns exhibit LREE enrichment relative to HREE, with negative Nb-Ti and Eu anomalies, indicative of an arc-related source, involvement of continental crust, and the role of fractional crystallization (particularly plagioclase and zircon) in magma evolution. Tectonomagmatic discrimination diagrams place the samples in a syn- to post-collisional setting. Geochemical evidence, including incompatible element ratios, suggests that the magma originated from partial melting of meta-greywacke in the middle to upper continental crust. Considering the tectonic setting and Miocene age, the formation of these acidic rocks is attributed to melting of thickened continental crust in a syn- to post-collisional environment, likely triggered by processes such as slab breakoff or lithospheric delamination. These findings provide significant insights into the closure of the Neotethys Ocean and the crustal evolution of Iran during the Miocene.
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Articles in Press, Corrected Proof
Available Online from 09 August 2026