[HTML][HTML] Eocene K-rich adakitic rocks in the Central Iran: implications for evaluating its Cu–Au–Mo metallogenic potential

J Ahmadian, F Sarjoughian, D Lentz, A Esna-Ashari… - Ore Geology …, 2016 - Elsevier
Ore Geology Reviews, 2016Elsevier
Abstract The Kal-e-Kafi intrusive complex is located in the Central Iran magmatic zone and
includes a series of granitoid rocks ranging in composition from gabbro to granite. These
granitoids show some affinities with adakites, eg, high Sr/Y and La/Yb ratios coupled with
low Yb and Y, enrichment in LREE and LILE with no Eu anomalies, similar to products from
all of which are compatible with derivation from slab melting. However, relatively their low
εNd (t) values (0.21 to 2.35) and higher 87 Sr/86 Sr i (0.7041–0.7044) are inconsistent with …
Abstract
The Kal-e-Kafi intrusive complex is located in the Central Iran magmatic zone and includes a series of granitoid rocks ranging in composition from gabbro to granite. These granitoids show some affinities with adakites, e.g., high Sr/Y and La/Yb ratios coupled with low Yb and Y, enrichment in LREE and LILE with no Eu anomalies, similar to products from all of which are compatible with derivation from slab melting. However, relatively their low εNd(t) values (0.21 to 2.35) and higher 87Sr/86Sri (0.7041–0.7044) are inconsistent with an origin by slab melting with these rocks also showing shoshonitic affinities, with high K2O/Na2O ratios. Geochemical characteristics indicate that the Kal-e-Kafi intrusive complex was probably derived by the partial melting of delaminated lower crust, at pressures equivalent to crustal thicknesses of > 40 km, generated near the boundary between garnet-bearing amphibolite or amphibole-bearing eclogite melting. Moreover, the Kal-e-Kafi adakitic magmas must have interacted with the surrounding metasomatized mantle peridotite during their ascent, which elevated not only their MgO, Cr, and Ni contents, but also the oxygen fugacity (ƒO2) of the magma. The high ƒO2 could have induced oxidation of metallic sulfides in the mantle resulting in the mobilization of chalcophile elements, which are required to produce porphyry Cu (Au and Mo) mineralization.
Elsevier
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