Zircon U–Pb Geochronology, Geochemistry, and Sr–Nd–Pb–Hf Isotopes of the Qula Syenogranite in the Central Lhasa Terrane, Tibet, Western China: Petrogenesis and Tectonic Implications

The Early Cretaceous post-collisional magmatic evolution of the central Lhasa Terrane remains hotly debated, and the Qula syenogranite provides new constraints on crust–mantle interaction. Whole-rock major and trace element analyses, zircon LA-ICP-MS U–Pb dating, and Sr–Nd–Pb–Hf isotopic analyses were carried out on seven samples from this newly recognized pluton to decipher its petrogenesis and tectonic setting. This pluton exhibits typical geochemical signatures of a weakly peraluminous, ferroan A2-type granite, including elevated SiO2 and total alkalis, low Al2O3 and CaO contents, high FeOT/(FeOT + MgO) (0.86–0.91) and 10,000 × Ga/Al (2.9–3.1), prominent negative Eu anomalies, chondrite-normalized rare earth element patterns with a seagull shape, enrichment in Rb, Th, U, Zr, and Hf, and depletion in Ba, Sr, P, Nb, and Ti. Zircon U–Pb dating yields a weighted mean crystallization age of 105.6 ± 0.46 Ma (MSWD = 1.16, n = 24), corresponding to the late Early Cretaceous. Positive zircon εHf(t) (+4.4 to +5.8), moderately negative whole-rock εNd(t) values (−5.3 to−3.4), and radiogenic Pb isotopic compositions together indicate that the parental magma most likely originated from the partial melting of juvenile lower crust, with contributions from both ancient basement and mantle-derived melts. Slab break-off of the southward-subducted Bangong–Nujiang lithosphere and consequent asthenospheric upwelling following the Qiangtang–Lhasa collision provide the tectonic scenario most consistent with these data, and the magma subsequently underwent extensive fractional crystallization dominated by K-feldspar, plagioclase, and biotite to form the Qula A2-type syenogranite.

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Journal
Minerals
Published
2026-09-30
DOI
https://doi.org/10.3390/min16101010
Primary Topic
Geological and Geochemical Analysis
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article
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Zircon U–Pb Geochronology, Geochemistry, and Sr–Nd–Pb–Hf Isotopes of the Qula Syenogranite in the Central Lhasa Terrane, Tibet, Western China: Petrogenesis and Tectonic Implications

白景国, Jianxin Hu, Xinxin Wang, Fugui Pang et al.
Minerals
Geological and Geochemical Analysis
article

Zircon U–Pb Geochronology, Geochemistry, and Sr–Nd–Pb–Hf Isotopes of the Qula Syenogranite in the Central Lhasa Terrane, Tibet, Western China: Petrogenesis and Tectonic Implications

白景国, Jianxin Hu, Xinxin Wang, Fugui Pang, Guoqiang Yan, Hong Liu, Lu Zhao, Lijun Jin, Chao Che
article en

Abstract

The Early Cretaceous post-collisional magmatic evolution of the central Lhasa Terrane remains hotly debated, and the Qula syenogranite provides new constraints on crust–mantle interaction. Whole-rock major and trace element analyses, zircon LA-ICP-MS U–Pb dating, and Sr–Nd–Pb–Hf isotopic analyses were carried out on seven samples from this newly recognized pluton to decipher its petrogenesis and tectonic setting. This pluton exhibits typical geochemical signatures of a weakly peraluminous, ferroan A2-type granite, including elevated SiO2 and total alkalis, low Al2O3 and CaO contents, high FeOT/(FeOT + MgO) (0.86–0.91) and 10,000 × Ga/Al (2.9–3.1), prominent negative Eu anomalies, chondrite-normalized rare earth element patterns with a seagull shape, enrichment in Rb, Th, U, Zr, and Hf, and depletion in Ba, Sr, P, Nb, and Ti. Zircon U–Pb dating yields a weighted mean crystallization age of 105.6 ± 0.46 Ma (MSWD = 1.16, n = 24), corresponding to the late Early Cretaceous. Positive zircon εHf(t) (+4.4 to +5.8), moderately negative whole-rock εNd(t) values (−5.3 to−3.4), and radiogenic Pb isotopic compositions together indicate that the parental magma most likely originated from the partial melting of juvenile lower crust, with contributions from both ancient basement and mantle-derived melts. Slab break-off of the southward-subducted Bangong–Nujiang lithosphere and consequent asthenospheric upwelling following the Qiangtang–Lhasa collision provide the tectonic scenario most consistent with these data, and the magma subsequently underwent extensive fractional crystallization dominated by K-feldspar, plagioclase, and biotite to form the Qula A2-type syenogranite.

MineralsVol. 16(10)
China Geological Survey (CN), China Metallurgical Geology Bureau (CN), Shanghai Institute of Geological Survey (CN), Shanxi Transportation Research Institute (CN), Shanxi Datong University (CN)
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Openalex Percentile: Top 14%
Geological and Geochemical Analysis
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