Abstract

The Neoproterozoic mafic intrusions and granitoids of the Hannan and Micangshan massifs, located at the northwestern margin of the Yangtze Block in South China, are composed mainly of subduction-related plutons. Here we present LA-ICPMS zircon U–Pb data on the granitoids from Wudumen, Xishenba, Xixiang and Hanshan within the Hannan massif which show crystallization ages of 718±9Ma, 706±9Ma, 707±20Ma and 777±8Ma, respectively. The arc-related Mujiaba gabbros display crystallization age of 746±4Ma. In the Micangshan massif, the crystallization ages of the granodiorite at Daheba, and the granites at Xihe and Guangwushan are 871±77Ma, 832±5Ma and 838±17Ma, respectively, whereas the Shatan diorite, Xihe and Zhengyuan gabbroic intrusions yield crystallization ages of 840±6Ma, 824±4Ma and 857±46Ma, respectively. The tonalites in the Wudumen pluton display adakitic affinity, characterized by strong depletion of Nb, Ta, P and Ti, and enrichment of large-ion lithophile elements (LILE) (i.e. Cs, Rb, Ba, Th, U and K) as well as positive Pb and Sr anomalies, suggesting an origin by the melting of a thickened mafic lower crust at ca. 718Ma. The syenogranite at Xixiang is characterized by depletion of Nb, Ta, Sr, P and Ti, and marked enrichment of LILE, K and Pb, indicating a post-collisional orogenic collapse at ca. 707Ma.The results from our study suggests that the arc-related magmatism migrated from Micangshan area during ca. 870–820Ma, through Huijunba-Xixiang in ca. 840–820Ma, and to Hannan during 825–706Ma, based on which we propose an accretionary tectonic model for the northwestern margin of the Yangtze Block.

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