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首页|期刊导航|Acta Geochimica|Geochemistry, zircon U–Pb geochronology, and Hf isotopes of S-type granite in the Baoshan block, constraints on the age and evolution of the Proto-Tethys

Geochemistry, zircon U–Pb geochronology, and Hf isotopes of S-type granite in the Baoshan block, constraints on the age and evolution of the Proto-TethysOAEI

中文摘要

Geochemistry, zircon U–Pb geochronology, and Hf isotope data for the Early Paleozoic granites in the Baoshan Block reveal the Early Paleozoic tectonic evolution of the Proto-Tethys. The samples are high-K, calcalkaline, strongly peraluminous rocks with A/CNK values of 1.37–1.46, are enriched in SiO2, K2O, and Rb, and are depleted in Nb, P, Ti, Eu, and heavy rare earth elements,which indicates the crystallization fractionation of the granitic magma. Zircon U–Pb dating indicates that they formed in ca. 480 Ma. The Nansa granites have εHf(t) values ranging from-16.04 to 4.36 with corresponding TC DMages of 2.10–0.81 Ga, which suggests the magmas derived from the partial melting of ancient metasedimentary with minor involvement of mantle-derived components. A synthesis of data for the Early Paleozoic igneous rocks in the Baoshan block and adjacent(Tengchong,Qiangtang, Sibumasu, Himalaya, etc.) blocks indicates that these blocks were all aligned along the proto-Tethyan margin of East Gondwana in the Early Paleozoic. The Early Paleozoic S-type granites from Nansa were generated in a high-temperature and low-pressure(HTLP) extensional tectonic setting, which resulted from Andean-type orogeny instead of the final assembly of Gondwana or crustal extension in a non-arc environment. In certain places, an expanding environment may exist in opposition to the tectonic backdrop of the lithosphere’s thickening and shortening, leading the crust to melt and decompress,mantle-derived materials to mix, and a small quantity of peraluminous granite to emerge.

Jianjun Zhang;Chuanlong Mou;Chendong Liu;Yong Zhang;Ting Chen;Hualiang Li;

Institute of Geological Survey,East China University of Technology,Nanchang 330013,China School of Earth Sciences,East China University of Technology,Nanchang 330013,ChinaChengdu Geological Survey Center,Chengdu 610081,ChinaSchool of Water Resources&Environmental Engineering,East China University of Technology,Nanchang 330013,China

地质学

Baoshan blockEarly PaleozoicGraniteGeochemistryZirconGeochronologyHf isotope

《Acta Geochimica》 2024 (001)

P.40-58 / 19

funded by the National Natural Science Foundation of China (2019M653840XB);the National Natural Science Foundation of China (41972043 and 42062006)。

10.1007/s11631-023-00639-1

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