
handle: 10023/18484 , 20.500.11937/72205
Abstract Apatite is an accessory mineral that is frequently found in both igneous and clastic sedimentary rocks. It is conventionally considered to be characterized by a closure temperature range between 375 and 600 °C and hence has been employed to address mid-temperature thermochronology questions relevant to the reconstruction of thermal events in the middle to lower crust. However, questions remain as to whether apatite faithfully records thermally-activated volume diffusion profiles, or rather is influenced by recrystallization and new growth processes. We present a case study of two apatite samples from the Akia Terrane in Greenland that help chart some of the post magmatic history of this region. Apatite in a tonalitic gneiss has distinct U-enriched rims and its U-Pb apparent ages correlate with Mn chemistry, with a high Mn group yielding an age of c. 2813 Ma. The U-Pb and trace element chemistry and morphology support an interpretation in which these apatite crystals are originally igneous and record cooling after metamorphism, with subsequent generation of discrete new rims. Epidote observed in the sample implies a
Metamorphism, 550, Geochronology, Greenland, Pseudosection, Geology, DAS, U-Pb, QE Geology, Geochemistry and Petrology, QE, Themochronology, Apatite
Metamorphism, 550, Geochronology, Greenland, Pseudosection, Geology, DAS, U-Pb, QE Geology, Geochemistry and Petrology, QE, Themochronology, Apatite
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