Origin of the Cretaceous Biluocuo Low-Mg Trachy-Andesites in the Southern Qiangtang Block: Implications for Crust–Mantle Interactions and the Precambrian Basement
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We thank the reviewers for their critical comments that helped to improve our manuscript. This study is supported by Deep Earth Probe and Mineral Resources Exploration-National Science and Technology Major Project (Grant No. 2024ZD1001005), The Central Government Guided Local Scientific and Technological Development Funding Project (Grant No. XZ202401YD0006), Key Research and Development Program (Grant No. XZ202403ZY0040), National Natural Science Foundation of China (Grant No. U24A20597), China Geological Survey (Grant Nos. DD20230024, DD20230315), the Basic Scientific Research Project of Chinese Academy of Geological Sciences (Grant No. JKY202209), Hubei Provincial Natural Science Foundation of China (Grant Nos. 2023AFD206, 2023AFD230, 2024AFD401), the Research Fund Program of Hubei Key Laboratory of Resources and Eco-Environment Geology (Grant No. HBREGKFJJ-202302).

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    The Cretaceous andesites were discovered in the Biluocuo area, and provided key records to understand the late Mesozoic geodynamic evolution and crustal basement for the southern Qiangtang block in the central Tibet. In this study, we present a detailed study of zircon U-Pb dating, major and trace elemental composition, and Sr-Nd-Hf isotopes for the Biluocuo trachy-andesites. The trachy-andesites yielded zircon U-Pb ages at ca. 97 Ma, and exhibited SiO2 contents ranging from 55.92 to 69.04 wt%, low TiO2 contents (0.37 to 0.75 wt%) and low Mg# values (18.6 to 53.7), suggesting that they belong to high-K calc-alkaline series. They showed adakitic signatures, such as high Sr/Y ratios (almost 24 to 55) and low Y (<20 ppm), implying they were generated at great depths (>15 kbar). The samples have initial Sr isotopic ratios of 0.70963 to 0.70964, εNd(t) values of ?4.7 to ?4.6, and zircon εHf(t) values of ?1.2 to +1.3 with two-stage Hf model ages of 0.95 to 1.09 Ga. Elemental and Sr-Nd-Hf isotopic signatures suggest that the trachy-andesites were derived from the partial melting of the thickened lower crust with involvement of metasomatized mantle components. Combined with coeval high-Mg andesites, we proposed that underplating of mantle induced melting of the lower crust at ca. 97 Ma in the southern Qiangtang block, following by lithospheric delamination. Inherited/xenocrystic zircons from the trachy-andesites revealed magmatic activities at 2562 Ma, 1850–1804 Ma, 1768–1665 Ma, 1043–935 Ma, 851–736 Ma and 642–540 Ma. There is a Precambrian crustal basement in the southern Qiangtang block, which may have experienced the assembly and break-up of the Columbia, Rodinia, and Gondwana supercontinents.

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JI Changjun, CHEN Chong, ZOU Yuanbing, CHEN Yun, Zhou Lianfeng, ZHU Jiang. 2025. Origin of the Cretaceous Biluocuo Low-Mg Trachy-Andesites in the Southern Qiangtang Block: Implications for Crust–Mantle Interactions and the Precambrian Basement[J]. Acta Geologica Sinica (English Edition), 99(3): 761~773.

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  • 收稿日期:2024-05-16
  • 最后修改日期:2024-12-18
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  • 在线发布日期: 2025-06-18
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