Mantle dynamics and secular variations beneath the East African Rift: Insights from peridotite xenoliths (Mega, Ethiopia)
Autor: | Bianchini G.[1, Bryce J.G.[3], Blichert-Toft J.[4], Beccaluva L.[1], Natali C.[1] |
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Přispěvatelé: | Laboratoire de Sciences de la Terre (LST), Centre National de la Recherche Scientifique (CNRS)-Institut national des sciences de l'Univers (INSU - CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-École normale supérieure - Lyon (ENS Lyon), École normale supérieure de Lyon (ENS de Lyon)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS) |
Jazyk: | angličtina |
Rok vydání: | 2014 |
Předmět: |
010504 meteorology & atmospheric sciences
Geochemistry Mantle lithosphere evolution Sm–Nd isotope system 010502 geochemistry & geophysics 01 natural sciences Mantle (geology) Mantle xenoliths Geochemistry and Petrology Lithosphere [SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/Geochemistry Lu–Hf isotope system East African Rift Sm-Nd isotope system Pb isotopes Geochemistry East African Rift System Xenolith Lu-Hf isotope system ComputingMilieux_MISCELLANEOUS 0105 earth and related environmental sciences Peridotite Pb isotopes geography geography.geographical_feature_category Rift Proterozoic Geology Craton |
Zdroj: | Chemical Geology Chemical Geology, Elsevier, 2014, 386, pp.49-58. ⟨10.1016/j.chemgeo.2014.07.024⟩ Chemical Geology, 2014, 386, pp.49-58. ⟨10.1016/j.chemgeo.2014.07.024⟩ Chemical geology 386 (2014): 49–58. doi:10.1016/j.chemgeo.2014.07.024 info:cnr-pdr/source/autori:Bianchini G.[1,2], Bryce J.G.[3], Blichert-Toft J.[4], Beccaluva L.[1], Natali C.[1]/titolo:Mantle dynamics and secular variations beneath the East African Rift: Insights from peridotite xenoliths (Mega, Ethiopia)/doi:10.1016%2Fj.chemgeo.2014.07.024/rivista:Chemical geology/anno:2014/pagina_da:49/pagina_a:58/intervallo_pagine:49–58/volume:386 |
ISSN: | 0009-2541 |
DOI: | 10.1016/j.chemgeo.2014.07.024⟩ |
Popis: | Segments of the Main Ethiopian Rift (MER), a key sector of the East African Rift (EAR) linking the Afar and Turkana depressions, record different stages of lithospheric evolution from initiation to continental break- up and incipient oceanic spreading. Although EAR tectonic and magmatic activity is generally ascribed to amanifestation of sublithospheric mantle processes, the number, depth of provenance and triggering mechanisms of the related mantle upwellings remain topics of debate. We present new Hf and Pb isotope data for EAR mantle xenolith clinopyroxenes from Southern Ethiopia (Mega, the Sidamo region) that compellingly testify to multiple episodes of mantle depletion and metasomatic enrichment. Radiogenic values (epsilon(Hf) up to + 1076) suggest that present-day MER lithospheric mantle domains underwent melting, possibly in the presence of residual garnet, billions of years ago, thereby fractionating (increasing) the Lu/ Hf ratio and ultimately leading to extremely high Hf-176/ Hf-177. Although the precise dating of these depletion episodes is hampered by possible metasomatic overprinting, positively correlated Lu/Hf and Hf-176/Hf-177 indicates apparent ingrowth at ca. 1.9 Ga, providing a minimum age for the delineated Proterozoic melting events. Our findings of Early Proterozoic melting episodes are complementary to previously determined Os model ages on xenoliths from the same site indicating melt extraction between 2.4 and 2.8 Ga (Reisberg et al., 2004; Chem. Geol. 208, 119-140). Taken together, the geochemical and isotopic characteristics of the Mega xenoliths therefore record melt extraction events and preserve memory of ancient mantle dynamics beneath this site, where important lithospheric discontinuities exist between the Archean/Early Proterozoic Tanzanian craton and the Late Proterozoic Panafrican mobile belt. Subsequent metasomatic reactions variably affected the Nd and Hf isotopic compositions of some samples and completely overprinted the Pb isotopic composition of the whole xenolith suite. The persistence of these geochemical heterogeneities within the investigated suites of xenoliths precludes pervasive melt refertilization, which would have homogenized existing compositions and obliterated the record of previous petrologic processes. This suggests that the MER segment considered here developed on a lithospheric section isolated by preexisting tectonic structures, far from the influence of plumes originating deep in the convecting mantle. (C) 2014 Elsevier B.V. All rights reserved. |
Databáze: | OpenAIRE |
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