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February 8, 2026Minerals2 citationsOpen Access

Geochronology and Geochemistry of Late Cretaceous Plutonic Rocks in Southeastern Anatolian Orogenic Belt, Eastern Türkiye: Implications for Petrogenesis and Tectonic Evolution

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ASAbdullah SarMRMustafa Eren Rizeli

Key Points

  • The aim is to clarify the petrogenesis of Late Cretaceous plutonic rocks and their tectonic significance in the Southeastern Anatolian Orogenic Belt.
  • Conducted whole-rock geochemical analyses on granodiorites, diorites, and gabbros.
  • Applied zircon U-Pb dating to determine crystallization ages.
  • Analyzed trace elements in zircon grains for geochemical data.
  • Crystallization ages yielded 73.52 ± 0.24 Ma for granodiorites and 78.86 ± 0.39 Ma for diorites.
  • Diorites and granodiorites exhibited tholeiitic-calc-alkaline compositions.
  • Geochemical signatures indicated a magmatic origin and suggested subduction processes involved in their formation.

Abstract

Late Cretaceous plutonic rocks are commonly observed along the Southeastern Anatolian Orogenic Belt (SAOB), which constitutes a significant part of the Alpine–Himalayan Orogenic Belt. Here, we present new whole-rock geochemical analyses, zircon U–Pb ages, and zircon trace element data of plutonic rocks located in the SAOB (eastern Türkiye). This study aims to determine the petrogenesis of the studied plutonic rocks in light of new data and to contribute to the tectonic evolution of the SAOB. Geochemical data demonstrate that the studied granodiorites, diorites, and gabbros are tholeiitic–calc–alkaline in composition, metaluminous, and I-type granite. Zircon U-Pb ages yielded crystallisation ages of 73.52 ± 0.24 Ma for the studied granodiorites and 78.86 ± 0.39 Ma for the diorites. These age data indicate that the studied plutonic rocks represent the youngest granodiorite and diorite formations observed around the study area. High Th/U ratios (granodiorite: 0.15–0.29; diorite: 0.31–0.96) and positive Ce/Ce* (granodiorite: 8.11 to 609.86; diorite: 58.07 to 564.31) and negative Eu/Eu* (granodiorite: 0.49 to 0.62; diorite: 0.59–0.97) values obtained in zircon grains suggest that they are of magmatic origin. Geochemical data indicate that the studied diorites and gabbros originate from a spinel-bearing source representing shallow depths. In light of all the data, the studied plutonic rocks are products of arc magmatism resulting from the subduction of the NeoTethys Oceanic lithosphere along the SAOB.

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Cite This Study

Sar et al. (2026) studied this question.

synapsesocial.com/papers/698828b90fc35cd7a8848703https://doi.org/10.3390/min16020173
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