3 research outputs found
Crustal evolution of the amphiboliteā to granuliteāfacies transition zone in the eastern Dharwar Craton, southern India:insight from petrological modelling, zircon UāPb geochronology and Hf isotopes
Integrated petrological, geochemical, isotopic and thermobarometric study of metasedimentary rocks from the amphiboliteā to granuliteāfacies transition zone of the Eastern Dharwar Craton (EDC), South India, has provided new insight into the evolution of the lower continental crust in this region. Phase equilibrium modelling of metapelites and metagreywackes suggests that they reached peak metamorphism at ~800ā850Ā°C and 6ā7 kbar (corresponding to a paleodepth of ~20 km), with minor retrograde change occurring at ~700Ā°C and 3ā5 kbar during exhumation. UāPb ages of conventionally separated zircon from metapelite samples range from 2.5 to 3.4 Ga, whereas garnetāhosted zircons yield younger ages of 2.5ā2.7 Ga. Zircon Th/U ratios and Hf isotopes reveal several significant pulses of zircon growth at 3.0, 2.95 and 2.7 Ga. Hf isotope data suggest the evolution of juvenile magma at around 3.2 Ga, while Hf model ages show that the crust building process also involved the recycling of preāexisting Mesoarchean crust. Our study confirms the presence of a Paleoarchean component in the EDC lower crust, as well as older metamorphic events in the terrain and the gradational distribution of the metamorphic rocks
Crustal evolution of the amphibolite- to granulite-facies transition zone in the eastern Dharwar Craton, southern India: insight from petrological modelling, zircon UāPb geochronology and Hf isotopes
Integrated petrological, geochemical, isotopic and thermobarometric study of metasedimentary rocks from the amphibolite- to granulite-facies transition zone of the Eastern Dharwar Craton (EDC), South India, has provided new insight into the evolution of the lower continental crust in this region. Phase equilibrium modelling of metapelites and metagreywackes suggests that they reached peak metamorphism at ~800ā850Ā°C and 6ā7ākbar (corresponding to a paleodepth of ~20ākm), with minor retrograde change occurring at ~700Ā°C and 3ā5ākbar during exhumation. UāPb ages of conventionally separated zircon from metapelite samples range from 2.5 to 3.4āGa, whereas garnet-hosted zircons yield younger ages of 2.5ā2.7āGa. Zircon Th/U ratios and Hf isotopes reveal several significant pulses of zircon growth at 3.0, 2.95 and 2.7āGa. Hf isotope data suggest the evolution of juvenile magma at around 3.2āGa, while Hf model ages show that the crust building process also involved the recycling of pre-existing Mesoarchean crust. Our study confirms the presence of a Paleoarchean component in the EDC lower crust, as well as older metamorphic events in the terrain and the gradational distribution of the metamorphic rocks