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Middle Jurassic collision of an exotic microcontinental fragment: Implications for magmatism across the Southeast China continental margin
Institution:1. Hong Kong Geological Survey, Geotechnical Engineering Office, Civil Engineering and Development Department, 101 Princess Margaret Road, Kowloon, Hong Kong, China;2. Department of Earth and Planetary Sciences, Birkbeck, University of London, Malet Street, London WC1E 7HX, UK;3. Department of Earth Sciences, University College London, Gower Street, London WC1E 6BT, UK;1. Résidence Croix du Sud, Rue Henri de Montherlant, F-33400 Talence, France;2. Lebanese University, Faculty of Sciences II, Department of Natural Sciences, Fanar, Fanar-Matn, P.O. Box 26110217, Lebanon;3. Muséum National d''Histoire Naturelle, Institut de Systématique, Evolution, Biodiversité, ISYEB, UMR 7205 CNRS UPMC EPHE, CP50, 45 rue Buffon, F-75005 Paris, France;1. Instituto de Geociencias (CSIC-UCM), c/ José Antonio Novais 12, 28040 Madrid, Spain;2. UCD School of Geological Sciences, University College Dublin, Belfield Dublin 4, Ireland;3. 1 rue des Tilleuls, 59152 Gruson, France;4. Universidad Complutense de Madrid, Dpto. de Paleontología, c/ José Antonio Novais, 12, 28040 Madrid, Spain;5. Division du Patrimoine Géologique (DPG), Direction du Développement Minier (DDM), Ministère de l''Énergie, des Mines, de l''Eau et de l''Environnement, Rue Abou Marouane Essadi BP: Rabat Instituts 6208 - Haut Agdal, Rabat, Morocco;6. Laboratorios Generales del Instituto Geológico y Minero de España, c/ La Calera 1, Tres Cantos, 28760 Madrid, Spain
Abstract:Thrusting, folding, and metamorphism of late Paleozoic to middle Mesozoic sedimentary rocks, together with high precision U–Pb zircon ages from Middle to Late Jurassic volcanic and granitic rocks, reveal evidence for a major deformation event in northwestern Hong Kong between 164 and 161 Ma. This episode can be linked with collision of an exotic microcontinental fragment along the southeast China continental margin determined from contrasting detrital zircon provenance histories of late Paleozoic to middle Mesozoic sedimentary rocks either side of an NE-trending suture zone through central Hong Kong. The suture zone is also reflected by isotopic heterogeneities and geophysical anomalies in the crustal basement. Detrital zircon provenance of Early to Middle Jurassic rocks from the accreted terrane have little in common with the pre-Middle Jurassic rocks from southeast China. Instead, the zircon age spectra of the accreted terrane show close affinities to sources along the northern margin of east Gondwana. These data provide indisputable evidence for Mesozoic terrane accretion along the southeast China continental margin. In addition, collision of the exotic terrane, accompanied by subduction rollback, is considered to have hastened foundering of the postulated flat slab beneath southeast China, leading to a widespread igneous flare-up event at 160 Ma.
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