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Temporal Constraints on Palaeoproterozoic Eclogite Formation and Exhumation (Usagaran Orogen, Tanzania)

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dc.creator Collins, Alan S.
dc.creator Reddy, Steven M.
dc.creator Buchan, Craig
dc.creator Mruma, Abdulkarim H.
dc.date 2016-09-21T14:01:02Z
dc.date 2016-09-21T14:01:02Z
dc.date 2004-06
dc.date.accessioned 2018-03-27T08:58:16Z
dc.date.available 2018-03-27T08:58:16Z
dc.identifier Collins, A.S., Reddy, S.M., Buchan, C. and Mruma, A., 2004. Temporal constraints on Palaeoproterozoic eclogite formation and exhumation (Usagaran Orogen, Tanzania). Earth and Planetary Science Letters, 224(1), pp.175-192.
dc.identifier http://hdl.handle.net/20.500.11810/4004
dc.identifier org/10.1016/j.epsl.2004.04.027
dc.identifier.uri http://hdl.handle.net/20.500.11810/4004
dc.description Full text can be accessed at http://www.sciencedirect.com/science/article/pii/S0012821X04002754
dc.description In-situ rock suites that preserve assemblages consistent with metamorphism to eclogite-facies conditions are absent from the Archaean. Their Palaeoproterozoic appearance is one of the markers of the onset of tectonic processes similar to those seen in the Phanerozoic Earth. We report new U–Pb Secondary Ion Mass Spectrometry (SIMS) zircon data from the oldest known eclogites (the ∼2.0 Ga Usagaran eclogites, Tanzania) that constrain the timing of high-grade metamorphism, deformation and exhumation of these eclogites and constrain the speed of these processes at this critical period in Earth history. Direct dating of metamorphic zircon from mafic eclogites, and isostructurally recrystallised zircon rims from pelites and felsic gneisses indicates that high-grade metamorphism occurred at 1999.1±1.1 Ma. The rocks were quickly cooled and exhumed at rates of ∼25 °C/Ma and 0.06–0.22 GPa/Ma, respectively, at least in part, by amphibolite-facies sinistral transpression constrained by a 1991±2 Ma pegmatite dyke that crosscuts foliation. Detrital zircons in metasedimentary gneiss protoliths were dominantly derived from two sources: (1) the Tanzanian craton, and (2) a 2400–2640 Ma source region that is compatible with a belt of reworked Archaean and Palaeoproterozoic rocks that lie in the East African Orogen.
dc.language en
dc.subject Eclogite
dc.subject Palaeoproterozoic
dc.subject SHRIMP
dc.subject U–Pb isotopes
dc.subject Usagaran Orogen
dc.subject Exhumation
dc.subject Zircon
dc.subject Dating deformation
dc.subject Tanzania
dc.subject Geochronology
dc.title Temporal Constraints on Palaeoproterozoic Eclogite Formation and Exhumation (Usagaran Orogen, Tanzania)
dc.type Journal Article


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