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| DOI | 10.1016/J.EPSL.2010.12.018 | ||
| Año | 2011 | ||
| Tipo |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
U-series disequilibria provide important constraints on the processes and time scales of melt production, differentiation, and transport in subduction settings. Such constraints, which are essential for understanding the chemical evolution of the continental crust, are conventionally based on the assumption that the U-series disequilibria measured in mafic lavas are produced during mantle metasomatism and melting, and that intracrustal differentiation and assimilation have limited impacts. Here we show that mantle-derived U-series disequilibria in mafic lavas erupted at Volcán Llaima, Chile are significantly diminished by assimilation of plutonic rocks forming Llaima's subvolcanic basement. This contamination process is extremely subtle in terms of "classical" indicators of crustal assimilation like Sr, Nd or Pb isotopes because it is a manifestation of assimilative recycling of the plutonic roots of the arc. This process results in variations in U-series disequilibria and incompatible trace element ratios that are significant compared to regional and global variability in arc magmas. Furthermore, it yields linear correlations between U-series excesses and incompatible trace element ratios that are generally interpreted as slab-fluid indicators and chronometers, or tracers of sediment recycling in subduction zone. Cannibalization of ancestral magmas by ascending melts warrants careful evaluation when considering the components and chemical fluxes in subduction zones. Linear arrays defined by activity ratios of U-series nuclides with different half-lives may be the most reliable indicators of assimilative recycling of ancestral intrusive magmas. © 2010 Elsevier B.V.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Reubi, O. | - |
ETH Zurich - Suiza
Université de Genève - Suiza |
| 2 | Bourdon, Bernard | Hombre |
ETH Zurich - Suiza
Ecole Normale Supérieure de Lyon - Francia |
| 3 | Dungan, M. A. | - |
Université de Genève - Suiza
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| 4 | Koornneef, J. M. | - |
ETH Zurich - Suiza
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| 5 | Selles, Daniel | Hombre |
Harvard University - Estados Unidos
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| 6 | Langmuir, C. H. | - |
Harvard University - Estados Unidos
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| 7 | Aciego, S. | - |
ETH Zurich - Suiza
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| Agradecimiento |
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| This work was supported by a Swiss NSF grant ( 20_125019 ) to M. Dungan. The manuscript was partly written while O. Reubi was supported by a Swiss NSF Ambizione fellowship. We thank Jose Antonio Naranjo, Alain Burgisser, Jason Jweda, Steve Goldstein, and Pablo Salas for participation in field work. We are grateful to A. Stracke for help with Nd isotope measurements, F. Oberli for his help to run the MC-ICPMS, L. Cooper for comments on an earlier version of the manuscript, and to C. Bouvet de Maisonneuve for participation in field work, sharing unpublished melt inclusion data and numerous discussions about the Llaima magmatic system. The manuscript was improved by reviews by S. Turner and an anonymous reviewer. |