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  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 6 (1873), S. 345-352 
    ISSN: 0365-9496
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1365-3121
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Geosciences
    Notes: The Kostomuksha greenstone belt consists of two lithotectonic terranes, one mafic igneous and the other sedimentary, separated by a major shear zone. The former contains submarine 2.8 Gyr old komatiite-basalt lavas and volcaniclastic lithologies with trace element and isotopic compositions resembling those of recent oceanic flood basalts [ɛNd(T) =+ 2,8, μ.1= 8.73 (Nb/Th)N= 1.5–2.1 (Nb/La)N= 1.0–1.5]. We suggest that the mafic terrane is a remnant of the upper crustal part of an Archaean oceanic plateau derived from partial melting of a mantle plume head. When the plateau reached the continental margin, it collided with the sedimentary terrane but was too buoyant to subduct. As a result, the volcanic section of the plateau was imbricated and obducted thus becoming a new piece of continental crust. The deeper zones were subducted and disappeared from the geological record.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 296 (1982), S. 821-825 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] Sr and Nd isotope ratios are reported for 17 mid-ocean ridge basalts and for 11 oceanic islands and island groups. Data from the Azores, Samoa and the Society Islands diverge significantly from the mantle array. These results are not explained by binary mixing of depleted and undepleted mantle ...
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 385 (1997), S. 219-229 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] Basaltic volcanism 'samples' the Earth's mantle to great depths, because solid-state convection transports deep material into the (shallow) melting region. The isotopic and trace-element chemistry of these basalts shows that the mantle contains several isotopically and chemically distinct ...
    Type of Medium: Electronic Resource
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  • 5
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] Hydrous, silica-rich melts migrating through the mantle are preserved as glass inclusions in mantle minerals in xenoliths from Philippine arc lavas. These melts, with chemistries that indicate an origin by very low degrees of melting of the subducted ocean crust, have altered their host ...
    Type of Medium: Electronic Resource
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  • 6
    Electronic Resource
    Electronic Resource
    Springer
    Contributions to mineralogy and petrology 98 (1988), S. 408-416 
    ISSN: 1432-0967
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Notes: Abstract The Ascutney Mountain complex of eastern Vermont, USA, is a composite epizonal pluton of genetically related gabbro to granite intrusives. Nd isotopic data are reported for mafic rocks, granites, and nearby country rock. The parental mafic magma producing the complex 122 m.y. ago had 87Sr/86Sr=0.7039, 143Nd/144Nd=0.512678 (ɛ Nd=+3.8) and δ 18O=6.1‰, indicating a mantle source with time-integrated lithophile element depletion. Uniform initial radiogenic isotope ratios for granites, which are undistinguishable from those for the most primitive gabbro, suggest that the granite magma evolved from the mafic magma without crustal contamination and that the increase in δ 18O, to about 7.8‰, is the result of fractional crystallization. Mafic rocks show a large range in initial 143Nd/144Nd ratio, from about 0.51267 to 0.51236 (ɛ Nd= +3.7 to −2.5), which is correlated with elevated 87Sr/86Sr ratios and δ 18O. These data substantiate the production of mafic lithologies by fractional crystallization of the parental magma accompanied by assimilation of up to about 50% crust. The local country rocks include gneiss and schist and assimilation involved representatives of both rock types. The isotopic and chemical relationships preclude derivation from a single batch of magma undergoing contamination and indicate that a large magma body at depth evolved largely by fractionation with batches of melt issued from this chamber being variably contaminated at higher levels or at the level of emplacement. The Precambrian gneisses of the Chester dome and overlying lower Paleozoic schists have essentially identical Nd isotope systematics which suggest a crustal formation age of about 1.6. b.y. The parental sediments for the schists were apparently derived from a protolith similar to the gneissic basement without appreciable Sm/Nd fractionation.
    Type of Medium: Electronic Resource
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  • 7
    Electronic Resource
    Electronic Resource
    Springer
    Contributions to mineralogy and petrology 97 (1987), S. 31-42 
    ISSN: 1432-0967
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Notes: Abstract The Ivrea zone represents a tilted cross section through deep continental crust. Sm-Nd isotopic data for peridotites from Baldissero and Balmuccia and for a suite of gabbros from the mafic formation adjacent to the Balmuccia peridotite provide evidence for an event of partial melting 607±19 Ma ago in an extended mantle source with ɛ 607 Nd =+0.4±0.3. The peridotites are interpreted as the corresponding melt residue, the lower part of the mafic formation as the complementary melts which underwent further differentiation immediately after extraction. The Finero body represents a complex with layers of phlogopite peridotite, hornblende peridotite, and amphibole-rich gabbro. The isotopic signatures fall into two groups: (1) highly radiogenic Nd and low-radiogenic Sr characterize the phlogopite-free, amphibole-rich rocks, whereas (2) low-radiogenic Nd and highly radiogenic Sr is found in ultramafics affected by “phlogopite metasomatism”. Phlogopite metasomatism in the Ivrea zone is dated by a Rb-Sr whole rock isochron yielding 293±13 Ma. It was fed by K-rich fluids which were probably derived from metasediments. The high initial ɛ 293 Nd value of about +7.5 for phlogopite-free samples indicates a high time-integrated Sm/Nd ratio in the Finero protolith 293 Ma ago. Sm-Nd analyses of metapelites from the paragneiss series yield Proterozoic “crustal residence ages” of 1.2 to 1.8 Ga. Internal Sm-Nd isochrons for three garnetiferous rocks show that closure of garnet at temperatures around 600° C or even lower occurred about 250 Ma ago.
    Type of Medium: Electronic Resource
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  • 8
    ISSN: 1432-0967
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Notes: Abstract Apparent crustal residence ages indicated by Nd model age data for metamorphic rocks, sediments and granitoids of the Hercynian Fold Belt of Europe vary from 1.3 Ga to 3.0 Ga, but are mainly in the range 1.4–1.7 Ga. 2 Ga basement inliers have been documented previously in northern Spain and islands off northwestern France but, in addition to these, old (∼2–3 Ga) model ages are found along the southern margin of the fold belt. These do not identify old inliers but are interpreted to represent Archeanearly Proterozoic crustal components recycled from a southern source. The Nd data, when considered together with the surface geology and recent single-grain zircon ion microprobe data, argue against a binary mixing of Archean components with new Palaeozoic crustal additions to generate the main 1.4–1.7 Ga model age population. Hercynian Europe comprise mainly recycled Proterozoic components although significant new Palaeozoic additions as well as Archean contributions are indicated. Nd and Sr isotopic data together with previous chemical and petrographic observations allow the recognition of a northern belt of continent margin I-type granitoids grading southwards to inner continent S-type plutons in the eastern half of the fold belt. This felsic plutonic association is used to infer a Hercynian plate configuration involving the attachment of the fold belt to a southern parent cratonic block that the model age data suggest may be of early Proterozoic-Archean age.
    Type of Medium: Electronic Resource
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  • 9
    ISSN: 1437-3262
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Description / Table of Contents: Abstract Crust formation ages inferred on the basis of Nd model age, U-Pb zircon and Pb-Pb data for granulites from central Sri Lanka, and the late Archean Lewisian (Scotland) and Nuk (south-western Greenland) high-grade gneisses are comparable, and in the range 2.2–3.0 Ga and 2.8–3.0 Ga respectively. The time interval between crust formation and high-grade metamorphism (with its attendant depletions of incompatible and heat-producing elements) is in the order of ∼ 2 Ga for the ∼ 0.6 Ga Highland granulites of Sri Lanka, but are less than ∼ 0.1–0.2 Ga for the Lewisian and Nuk gneisses. Severe depletions of U and Th produced the distinctive unradiogenic present-day Pb ratios of the Lewisian and Nuk gneisses. The Sri Lanka granulites, in contrast, preserve a record of an extended residence in a high U/Pb, high Th/Pb environment and display radiogenic »upper crustal« — like present-day isotope ratios. Relative to primitive mantle compositions, the Pb isotopes identify the Lewisian and Nuk terrains as crustal reservoirs depleted in Th and U (relative to Pb), whereas the Highland granulites are enriched. The global Pb isotope mass balance requires the existence of low U/Pb, low Th/Pb and high Th/U reservoir(s) for successful solutions, and the lower crust is a likely candidate for this reservoir. High-grade terrains like Sri Lanka show depletions of measured U and Th abundances relative to Pb, but do not show Pb isotope signatures of »model bulk lower crust«. Archean high-grade gneisses display the appropriate combination of retarded Th/Pb and U/Pb although their absolute compositions are much less radiogenic than those of »model bulk lower crust« predicted from simple mass balance calculations.
    Abstract: Résumé Les âges modèles de formation de la croûte, estimés à partir des méthodes Nd, U-Pb (zircon) et Pb-Pb, pour les granulites du Sri Lanka central d'une part et les gneiss de degré élevé lewisiens (Archéen sup.) d'Ecosse et de Nuk (sud-ouest du Groenland) d'autre part, sont comparables et se situent respectivement dans les intervalles de 2,2–3,0 Ga et 2,8–3,0 Ga. L'intervalle de temps qui sépare la formation de la croûte et le pic du métamorphisme (accompagné de pertes d'éléments incompatibles et producteurs de chaleur) est de l'ordre de ± 2 Ga pour les granulites du Sri Lanka, âgées de ± 0,6 Ga, mais n'excède pas 0,1 à 0,2 Ga pour le Lewisien et les gneiss de Nuk. Des pertes sévères en U et en Th sont responsables des rapports Pb actuels peu radiogéniques dans le Lewisien et les gneiss de Nuk. Par contre, les granulites du Sri Lanka se sont maintenues dans des conditions de rapports U/Pb et Th/Pb élevés et fournissent des rapports isotopiques analogues à ceux de la croûte supérieure actuelle. Par rapport aux compositions mantéliques primitives, les isotopes du Pb identifient le Lewisien et les formations de Nuk comme des réservoirs crustaux appauvris en Th et en U (par rapport au Pb), tandis que les granulites du Sri Lanka ont été enrichies. Le bilan de masse des isotopes du Pb à l'échelle globale requiert l'existence d'un ou de plusieurs réservoirs à faible U/Pb, faible Th/Pb et haut Th/U; la croûte inférieure pourrait constituer ce réservoir. Des formations très métamorphiques comme celles du Sri Lanka présentent un appauvrissement des teneurs en U et en Th par rapport au Pb, mais ne montrent pas les signatures isotopiques du Pb correspondant à un modèle de croûte inférieure globale. Les gneiss archéens de degré élevé possèdent la combinaison adéquate des rapports Th/Pb et U/Pb déprimés, bien que leurs compositions absolues soient moins radiogéniques que celle de la »croûte inférieure type« prévue par les bilans de masse.
    Notes: Zusammenfassung Nd-Modellalter, U-Pb-Zirkondaten sowie Pb-Pb-Alter weisen auf vergleichbare Krustenbildungsalter von 2.2–3.0 Ga für den zentralen Granulitgürtel Sri Lankas bzw. 2.8–3.0 Ga für die spätarchaischen Granulitgebiete der Lewisian-(Schottland) und Nuk-Komplexe (südwestliches Grönland) hin. Die extrem lange Zeitspanne von ca. 2 Ga zwischen Krustenbildung und hochgradiger Metamorphose und die daraus resultierende Verarmung an hochinkompatiblen Elementen unterscheidet jedoch die ca. 0.6 Ga alten Granulite der Highland- und Südwest-Gruppe Sri Lankas von den Lewisian- und Nuk-Gneisen. Hier erfolgte die Granulitmetamorphose verhältnismäßig bald nach der Krustenbildung (≤ 0.1–0.2 Ga), und die frühe signifikante Verarmung an U und Th ist verantwortlich für die heutige, wenig radiogene Pb-Isotopie in diesen Gesteinen. Im Gegensatz dazu zeigen Konzentrationsmessungen an den Granuliten Sri Lankas zwar eine Verarmung von U und Th relativ zu Pb, was aber aus der hochradiogenen Pb-Isotopie nicht ersichtlich ist. Der Grund hierfür ist, daß dieser Krustenkomplex eine sehr lange Zeit zur kontinentalen Oberkruste gehörte, mit entsprechend hohen U/Pb- und Th/Pb-Verhältnissen und dem daraus entstandenen Zuwachs an radiogenem Blei. Die terrestrische Massenbilanz des Bleis erfordert, daß die zeitintegrierten erhöhten U/Pb-, Th/Pb- und erniedrigten Th/U-Werte sowohl der Oberkruste als auch fast aller Mantel-derivate durch ein Reservoir, wie z.B. die Unter-kruste, mit langfristig erniedrigtem U/Pb und Th/ Pb und erhöhtem Th/U kompensiert werden muß. Krustenkomplexe wie Sri Lanka, die erst in jüngster Zeit in die Unterkruste versenkt wurden, kommen dafür nicht in Frage. Archaische Granulitgebiete, jedoch, zeigen das entsprechende Th/Pb und U/Pb, wenn auch ihre absolute Zusammensetzung deutlich weniger radiogen ist als es die Modellunterkruste verlangt.
    Type of Medium: Electronic Resource
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  • 10
    Electronic Resource
    Electronic Resource
    Springer
    Virchows Archiv 105 (1886), S. 532-532 
    ISSN: 1432-2307
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Type of Medium: Electronic Resource
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