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GeoRef Categories
Era and Period
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Book Series
Date
Availability
Hsin-Shan Reservoir
Performance of 2-D ERT in Investigation of Abnormal Seepage: A Case Study at the Hsin-Shan Earth Dam in Taiwan Available to Purchase
Geophysical Assessment of Freshwater Intrusion into Saline Aquifers Beneath Plain Reservoirs Available to Purchase
Localization of Potential Leakage Areas inside Plain Reservoirs Using Waterborne Electrical Resistivity Tomography Available to Purchase
Southwest Borneo, an autochthonous Pangea-Eurasia assembly proxy: Insights from detrital zircon record Available to Purchase
Heterogeneous reservoir seepage characterized by geophysical, hydrochemical, and hydrologic methods Available to Purchase
Oil Prospects in Northeastern China Available to Purchase
A comprehensive genetic model for the world’s largest Sb deposit (Xikuangshan, China) Available to Purchase
Zircon U–Pb geochronology and Hf isotopic compositions of igneous rocks from Sumatra: implications for the Cenozoic magmatic evolution of the western Sunda Arc Open Access
Abstract Sumatra is located at the western end of the Sunda Arc, which resulted from the subduction of the Indo-Australian Plate beneath the Eurasian Plate. In this study, we report detailed zircon U–Pb and Hf isotope data for Cenozoic igneous rocks from the entire island of Sumatra to better constrain the temporal and spatial distribution of arc magmatism. The new dataset, combined with literature information, identifies the following two magmatic stages: (1) Paleocene to Early Eocene (66–48 Ma) and (2) Early Miocene to Recent (23–0 Ma), with a 25 myr-long period of magmatic quiescence in between. The magmatic zircons show predominantly positive and high ε Hf ( t ) values, ranging from +19.4 to +7.1 in western Sumatra, +17.1 to +1.6 in central Sumatra and +18.0 to +7.0 in eastern Sumatra, indicating an isotopically juvenile magma source in the mantle wedge along the western Sunda Arc. We explain the negative and low ε Hf ( t ) values (+0.5 to −13.1) of young samples around the supervolcano Toba as evidence for the subduction of sediment. We argue for a change in the subduction processes, where the first magmatic stage ceased owing to the termination of the Neo-Tethyan subduction and the following stage corresponded to the modern Sunda subduction.