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Zircon Hf Isotopic Evidence for Mixing of Crustal and Silicic Mantle-derived Magmas in a Zoned Granite Pluton, Eastern Australia
Authors:Shaw  S E; Flood  R H
Institution:Gemoc National Key Centre, Department of Earth and Planetary Sciences, Macquarie University, NSW, 2109, Australia
Abstract:Zircon Hf isotopic data from a zoned pluton of the Moonbi supersuite,New England batholith, eastern Australia, are consistent withmagma mixing between two silicic melts, each derived from isotopicallydistinct sources. Although zircons from three zones within theWalcha Road pluton give a U–Pb crystallization age of249 ± 3 Ma, zircon populations from each zone have arange in {varepsilon}Hf. Zircons from the mafic hornblende–biotitemonzogranite pluton margin and intermediate zones have {varepsilon}Hf ~ +5to +11, whereas those from the more felsic centre of the plutonhave {varepsilon}Hf ~ +7 to +16, representing a total variation of 11 {varepsilon}Hfunits. The Lu–Hf depleted mantle model ages range from~650 to 250 Ma, with the younger zircons present only in thefelsic pluton centre. The variation in {varepsilon}Hf indicates the involvementof silicic melts from at least two sources, one a crustal componentwith a Neoproterozoic model age and the other a primitive mantle-derivedcomponent with model ages similar to the U–Pb crystallizationage of the pluton. The zircons reflect the isotopic compositionsof the different proportions of crustal-derived silicic melt,relative to mantle-derived silicic melt, between melt generationand final pluton construction. The Walcha Road pluton is consideredto have formed by incremental assembly of progressively morefelsic melt batches resulting from mixing, replenishment andcrystal–melt separation, with final pluton constructioninvolving mechanical concentration as zones of crystal mush.The zoned pluton and, more broadly, the Moonbi supersuite provideexamples of magma mixing by which the more silicic units havemore juvenile isotopic compositions as a result of increasingproportions of residual melt from basalt fractionation, relativeto crustal partial melt. KEY WORDS: Australia; granite magma mixing; zircon; zoned pluton; Hf isotopes
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