Artículo

Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

In this study we present U–Pb and Hf isotope data combined with O isotopes in zircon from Neoarchean granitoids and gneisses of the southern São Francisco craton in Brazil. The basement rocks record three distinct magmatic events: Rio das Velhas I (2920–2850 Ma), Rio das Velhas II (2800–2760 Ma) and Mamona (2750–2680 Ma). The three sampled metamorphic complexes (Bação, Bonfim and Belo Horizonte) have distinct εHf vs. time arrays, indicating that they grew as separate terranes. Paleoarchean crust is identified as a source which has been incorporated into younger magmatic rocks via melting and mixing with younger juvenile material, assimilation and/or source contamination processes. The continental crust in the southern São Francisco craton underwent a change in magmatic composition from medium- to high-K granitoids in the latest stages, indicating a progressive HFSE enrichment of the sources that underwent anatexis in the different stages and possibly shallowing of the melting depth. Oxygen isotope data shows a secular trend towards high δ18O (up to 7.79‰) indicating the involvement of metasediments in the petrogenesis of the high potassium granitoids during the Mamona event. In addition, low δ18O values (down to 2.50‰) throughout the Meso- and Neoarchean emphasize the importance of meteoritic fluids in intra-crustal magmatism. We used hafnium isotope modelling from a compilation of detrital zircon compositions to constrain crustal growth rates and geodynamics from 3.50 to 2.65 Ga. The modelling points to a change in geodynamic process in the southern São Francisco craton at 2.9 Ga, from a regime dominated by net crustal growth in the Paleoarchean to a Neoarchean regime marked by crustal reworking. The reworking processes account for the wide variety of granitoid magmatism and are attributed to the onset of continental collision. © 2016 Elsevier B.V.

Registro:

Documento: Artículo
Título:Archean crustal evolution in the Southern São Francisco craton, Brazil: Constraints from U-Pb, Lu-Hf and O isotope analyses
Autor:Albert, C.; Farina, F.; Lana, C.; Stevens, G.; Storey, C.; Gerdes, A.; Dopico, C.M.
Filiación:Departamento de Geologia, Universidade Federal de Ouro Preto, Morro do Cruzeiro, Ouro Preto, MG 35400-000, Brazil
University of Geneva, Section of Earth and Environmental Sciences, 13 Rue des Maraichers, Geneva, 1205, Switzerland
Department of Earth Sciences, Centre for Crustal Petrology, Stellenbosch University, Private Bag X1, Stellenbosch, Matieland 7602, South Africa
School of Earth and Environmental Sciences, University of Portsmouth, Burnaby Building, Burnaby Rd, Portsmouth, PO1 3QL, United Kingdom
Institut für Geowissenschaften, Goethe-Universität Frankfurt, Altenhöferallee 1, Frankfurt am Main, D-60438, Germany
Instituto de Geocronología y Geología Isotópica, CONICET, Universidad de Buenos Aires, Avenida Int. Güiraldes s/n, Ciudad Universitaria, Buenos Aires, Argentina
Palabras clave:Crustal evolution; Lu–Hf isotopes; O isotopes; São Francisco craton; U–Pb dating; Zircon; Archean; continental crust; crustal evolution; geodynamics; gneiss; granitoid; hafnium; isotopic analysis; lutetium; oxygen isotope; uranium-lead dating; zircon; Brazil; Sao Francisco Craton
Año:2016
Volumen:266-267
Página de inicio:64
Página de fin:86
DOI: http://dx.doi.org/10.1016/j.lithos.2016.09.029
Título revista:Lithos
Título revista abreviado:Lithos
ISSN:00244937
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00244937_v266-267_n_p64_Albert

Referencias:

  • Alkmim, F.F., Marshak, S., The Transamazonian orogeny in the Quadrilátero-Ferrífero, Minas Gerais, Brazil: Paleoproterozoic collision and collapse in the Souhtern São Francisco Craton region (1998) Precambrian Research, 90, pp. 29-58
  • Almeida, F.F.M., Hasui, Y., Brito Neves, B.B., Fuck, R.A., Brazilian structural provinces: an introduction (1981) Earth Science Reviews, 17, pp. 1-29
  • Amelin, Y., Lee, D.-C., Halliday, A.N., Early-middle Archaean crustal evolution deduced from Lu–Hf and U–Pb isotopic studies of single zircon grains (2000) Geochimica et Cosmochimica Acta, 64, pp. 4205-4225
  • Appleby, S.K., Gillespie, M.R., Graham, C.M., Hinton, R.W., Oliver, G.J.H., Kelly, N.M., Do S-type granites commonly sample infracrustal sources? New results from an integrated O, U–Pb and Hf isotope study of zircon (2010) Contributions to Mineralogy and Petrology, 160, pp. 115-132
  • Barbosa, J.S.F., Sabaté, P., Archean and Paleoproterozoic crust of the São Francisco craton, Bahia, Brazil: geodynamic features (2004) Precambrian Research, 133, pp. 1-27
  • Belousova, E.A., Kostitsyn, Y.A., Griffin, W.L., Begg, G.C., O'Reilly, S.Y., Pearson, N.J., The growth of the continental crust: constraints from zircon Hf-isotope data (2010) Lithos, 119, pp. 457-466
  • Bennett, V.C., DePaolo, D.J., Proterozoic crustal history of the western United States as determined by neodymium isotopic mapping (1987) Geological Society of America Bulletin, 99, pp. 674-685
  • Bindeman, I.N., When do we need pan-global freeze to explain 18-O depleted zircons and rocks? (2011) Geology, 39, pp. 799-800
  • Bindeman, I.N., Valley, J.W., Low- δ18O rhyolites from Yellowstone: magmatic evolution based on analyses of zircons and individual phenocrysts (2001) Journal of Petrology, 42, pp. 1491-1517
  • Bindeman, I.N., Fu, B., Kita, N., Valley, J.W., Origin and evolution of silicic magmatism at Yellowstone based on ion microprobe analysis of isotopically zoned zircons (2008) Journal of Petrology, 49, pp. 163-193
  • Blichert-Toft, J., Puchtel, I.S., Depleted mantle sources through time: evidence from Lu–Hf and Sm–Nd isotope systematics of Archean komatiites (2010) Earth and Planetary Science Letters, 297 (3-4), pp. 598-606
  • Boekhout, F., Roberts, N.M., Gerdes, A., Schaltegger, U., A Hf-isotope perspective on continent formation in the south Peruvian Andes (2013) Continent Formation Through Time, Geological Society, London, Special Publications, 389. , N.M.W. Roberts M. Van Kranendonk S. Parman S. Shirey P.D. Clift
  • Campos, J.C.S., Carneiro, M.A., Basei, M.A.S., U-Pb evidence for Late Neoarchean crustal reworking in the southern São Francisco Craton (Minas Gerais, Brazil) (2003) Anais da Academia Brasileira de Ciências, 75 (4), pp. 497-511
  • Carneiro, M.A., O Complexo Metamórfico Bonfim Setentrional (Quadrilátero Ferrífero, Minas Gerais): Litoestratigrafia e evolução geológica de um segmento de crosta continental do Arqueano (1992), p. 233. , Unpublished PhD Thesis University of São Paulo, Brazil; Carneiro, M.A., Jordt-Evangelista, H., Teixeira, W., Eventos Magmaticos Arqueanos de Natureza Calcio-alcalina e Tholeiitica no Quadrilatero Ferrifero e suas Implicações Tectonicas (1997) Revista Brasileira de Geociencias, 27, pp. 121-128
  • Cavosie, A.J., Valley, J.W., Wilde, S.A., Magmatic δ18O in 4400–3900 Ma detrital zircons: a record of the alteration and recycling of crust in the Early Archean (2005) Earth and Planetary Science Letters, 235, pp. 663-681
  • Collins, W.J., Hot orogens, tectonic switching, and creation of continental crust (2002) Geology, 30, pp. 535-538
  • Collins, W.J., Belousova, E.A., Kemp, A.I.S., Murphy, J.B., Two contrasting Phanerozoic orogenic systems revealed by hafnium isotope data (2011) Nature Geoscience, 4 (5), pp. 333-337
  • Czarnota, K., Champion, D.C., Goscombe, B., Blewett, R.S., Cassidy, K.F., Henson, P.A., Groenewald, P.B., Geodynamics of the Eastern Yilgarn Craton (2010) Precambrian Research, 183, pp. 175-202
  • Dhuime, B., Hawkesworth, C.J., Cawood, P.A., Storey, C.D., A change in the geodynamics of continental growth 3 billion years ago (2012) Science, 335, pp. 1334-1336
  • Dorr, J.V.N., II, Physiographic, Stratigraphic and Structural Development of the Quadrilátero Ferrífero, Minas Gerais, Brazil (1969) USGS/DNPM, Washington, Professional Paper 641-A, , (110 pp.)
  • Duretz, T., Gerya, T.V., Slab detachment during continental collision: influence of crustal rheology and interactions with lithospheric delamination (2013) Tectonophysics, 602, pp. 124-140
  • Eiler, J.M., Oxygen isotope variations of basaltic lavas and upper mantle rocks (2001) Stable Isotope Geochemistry, Reviews in Mineralogy and Geochemistry, 43, pp. 319-364. , J.W. Valley D.R. Cole Mineralogical Society of America/Geochemical Society Washington, DC
  • Farina, F., Stevens, G., Gerdes, A., Frei, D., Small-scale Hf isotopic variability in the Peninsula pluton (South Africa): the processes that control inheritance of 176Hf/177Hf diversity in S-type granites (2014) Contributions to Mineralogy and Petrology, 168, p. 1065
  • Farina, F., Albert, C., Lana, C., The Neoarchean transition between medium- and high-K granitoids: clues from the Southern São Francisco Craton (Brazil) (2015) Precambrian Research, 266, pp. 375-394
  • Farina, F., Albert, C., Martínez Dopico, C., Aguilar Gil, C., Moreira, H., Hippertt, J.P., Cutts, K., Lana, C., The Archean-Paleoproterozoic evolution of the Quadrilatero Ferriferro (Brasil): current models and open questions (2016) Journal of South American Earth Sciences, 68, pp. 4-21
  • Gerdes, A., Zeh, A., Combined U–Pb and Hf isotope LA-(MC-)ICP-MS analyses of detrital zircons: comparison with SHRIMP and new constraints for the provenance and age of an Armorican metasediment in central Germany (2006) Earth and Planetary Science Letters, 249, pp. 47-61
  • Gerdes, A., Zeh, A., Zircon formation versus zircon alteration – new insights from combined U–Pb and Lu–Hf in-situ LA–ICP–MS analyses, and consequences for the interpretation of Archean zircon from the Central Zone of the Limpopo Belt (2009) Chemical Geology, 261, pp. 230-243
  • Gregory, R.T., Oxygen history of seawater revisited: timescales for boundary event changes in the oxygen isotope composition of seawater (1991) Stable Isotope Geochemistry, pp. 65-76. , H.P. Taylor et al. (eds.) Lancaster Press San Antonio, Texas
  • Gilliam, C.E., Valley, J.W., Low δ18O magma, Isle of Skye, Scotland; evidence from zircons (1997) Geochimica et Cosmochimica Acta, 61, pp. 4975-4981
  • Griffin, W.L., Belousova, E.A., Shee, S.R., Pearson, N.J., O'Reilly, S.Y., Archean crustal evolution in the northern Yilgarn Craton: U–Pb and Hf-isotope evidence from detrital zircons (2004) Precambrian Research, 131, pp. 231-282
  • Griffin, W.L., Belousova, E.A., O'Neill, C., O'Reilly, S.Y., Malkovets, V., Pearson, N.J., Spetsius, S., Wilde, S.A., The world turns over: Hadean-Archean crust- mantle evolution (2014) Lithos, 189, pp. 2-15
  • Guitreau, M., Les isotopes de l'Hafnium dans les TTG et leurs zircons: témoins de la croissance des premiers continents (2012), Unpublished PhD Thesis Ecole Normale Supérieure de Lyon France; Hartmann, L.A., Endo, I., Suita, M.T.F., Santos, J.O.S., Frantz, J.C., Carneiro, M.A., Naughton, N.J., Barley, M.E., Provenance and age delimitation of Quadrilátero Ferrífero sandstones based on zircon U–Pb isotopes (2006) Journal of South American Earth Sciences, 20, pp. 273-285
  • Hiess, J., Bennett, V.C., Nutman, A.P., Williams, I.S., Archaean fluid-assisted crustal cannibalism recorded by low δ18O and negative εHf(T) isotopic signatures of West Greenland granite zircon (2011) Contributions to Mineralogy and Petrology, 161, pp. 1027-1050
  • Hollis, J.A., Van Kranendonk, M.J., Cross, A.J., Kirkland, C.L., Armstrong, R.A., Allen, C.M., Low δ18O zircon grains in the Neoarchean Rum Jungle Complex, northern Australia: an indicator of emergent continental crust (2014) Lithosphere, 6, pp. 17-25
  • Hoskin, P.W.O., Black, L.P., Metamorphic zircon formation by solid-state recrystallization of protolith igneous zircon (2000) Journal of Metamorphic Geology, 18, pp. 423-439
  • Ivanic, T.J., Van Kranendonk, M.J., Kirkland, C.L., Wyche, S., Wingate, M.T.D., Belousova, E.A., Zircon Lu-Hf isotopes and granite geochemistry of the Murchison Domain of the Yilgarn Craton: evidence for reworking of Eoarchean crust during Meso-Neoarchean plume-driven magmatism (2012) Lithos, 148, pp. 112-127
  • Kelemen, P., Hanghoj, K., Greene, A., One view of the geochemistry of subduction-related magmatic arcs, with an emphasis on primitive andesite and lower crust (2003) Treatise on Geochemistry 3, pp. 1-70. , H. Holland K. Turekian Elsevier-Pergammon Oxford
  • Kemp, A.I.S., Hawkesworth, C.J., Paterson, B.A., Kinny, P.D., Episodic growth of the gondwana supercontinent from hafnium and oxygen isotopes in zircon (2006) Nature, 439, pp. 580-583
  • Kemp, A.I.S., Hawkesworth, C.J., Foster, G.L., Paterson, B.A., Woodhead, J.D., Hergt, J.M., Gray, C.M., Whitehouse, M.J., Magmatic and crustal differentiation history of granitic rocks from Hf–O isotopes in zircon (2007) Science, 315 (5814), pp. 980-983
  • Kemp, A.I.S., Hawkesworth, C.J., Collins, W.J., Gray, C.M., Blevin, P.L., Isotopic evidence for rapid continental growth in an extensional accretionary orogen: the Tasmanides, eastern Australia (2009) Earth and Planetary Science Letters, 284, pp. 455-466
  • Kemp, A.I.S., Foster, G.L., Scherstén, A., Whitehouse, M.J., Darling, J., Storey, C., Concurrent Pb–Hf isotope analysis of zircon by laser ablation multi-collector ICP-MS, with implications for the crustal evolution of Greenland and the Himalayas (2009) Chemical Geology, 261, pp. 244-260
  • Kita, N.T., Ushikubo, T., Fu, B., Valley, J.W., Hihg precision SIMS oxygen isotope analysis and the effect of sample topography (2009) Chemical Geology, 264, pp. 43-57
  • Koglin, N., Zeh, A., Cabral, A.R., Gomes, A.A.S., Jr., Corrêa Neto, A.V., Brunetto, W.J., Galbiatti, H., Depositional age and sediment source of the auriferous Moeda Formation, Quadrilatero Ferrifero of Minas Gerais, Brazil: new constraints from U-Pb-Hf isotopes in zircon and xenotime (2014) Precambrian Research, 255, pp. 96-108
  • Lana, C., Alkmim, F.F., Armonstrong, R., Scholz, R., Romano, R., Nalini, H.R., Jr., The ancestry and magmatic evolution of Archaean TTG rocks of the Quadrilátero Ferrífero province, Southeast Brazil (2013) Precambrian Research, 231, pp. 157-173
  • Lancaster, P.J., Storey, C.D., Hawkesworth, C.J., The Eoarchean foundation of the North Atlantic Craton (2014) Continent Formation Through Time, Geological Society, London, Special Publications, 389. , N.M.W. Roberts M. Van Kranendonk S. Parman S. Shirey P.D. Clift
  • Lancaster, P.J., Dey, S., Storey, C.D., Mitra, A., Bhunia, R.K., Contrasting crustal evolution processes in the Dharwar craton: insights from detrital zircon U-Pb and Hf isotopes (2015) Gondwana Research, 28, pp. 1361-1372
  • Laurent, O., Martin, H., Moyen, J.-F., Doucelance, R., The diversity and evolution of late-Archean granites: evidence for the onset of a “modern-style” plate tectonics between 3.0 and 2.5 Ga (2014) Lithos, 205, pp. 208-235
  • Lobato, L.M., Ribeiro-Rodrigues, L.C., Vieira, F.W.R., Brazil's premier gold province. Part II: geology and genesis of gold deposits in the Archean Rio das Velhas Greenstone belt, Quadrilátero Ferrífero (2001) Mineralium Deposita, 36, pp. 249-277
  • Longstaffe, F.J., Schwarcz, H.P., 18O/16O of Archean clastic metasedimentary rocks: a petrogenetic indicator for Archean gneisses? (1977) Geochimica et Cosmochimica Acta, 41, pp. 1303-1312
  • Ludwig, K.R., Isoplot/Ex Version 3.00: A Geochronological Toolkit for MicrosoftExcel (2003), Berkeley Geochronology Center Berkeley, CA; Machado, N., Carneiro, M.A., U–Pb evidence of late Archean tectono-thermal activity in the southern São Francisco shield, Brazil (1992) Canadian Journal of Earth Sciences, 29, pp. 2341-2346
  • Machado, N., Noce, C.M., Ladeira, E.A., Belo de Oliveira, O.A., U–Pb geochronology of Archean magmatism and Proterozoic metamorphism in the Quadrilátero Ferrífero, Southern São Francisco craton, Brazil (1992) Geological Society of America Bulletin, 104, pp. 1221-1227
  • Machado, N., Schrank, A., Noce, C.M., Gauthier, G., Ages of detrital zircon from Archean-Paleoproterozoic sequences: implications for Greenstone Belt setting evolution of a Transamazonian foreland basin in Quadrilátero Ferrífero, southeast Brazil (1996) Earth and Planetary Science Letters, 141, pp. 259-276
  • Marshak, S., Alkmim, F.F., Jordt Evangelista, H., Proterozoic crustal extension and the generation of dome-and-keel structure in an Archean granite–greenstone terrane (1992) Nature, 397, pp. 491-493
  • Marshak, S., Tinkham, D., Alkmim, F.F., Brueckner, H., Bornhorst, T., Dome-and-keel provinces formed during Paleoproterozoic orogenic collapse – diapir clusters, core complexes, or neither? Examples from the Quadrilatero Ferrifero (Brazil) and the Penokean Orogen (USA) (1997) Geology, 25, pp. 415-418
  • Monani, S., Valley, J.W., Oxygen isotope ratios of zircon: magma genesis of low δ18O granites from the British Tertiary igneous province, western Scotland (2001) Earth and Planetary Science Letters, 184, pp. 377-392
  • Moreira, H., Lana, C., Nalini, H.A., Jr., The detrital zircon record of an Archaean convergent basin in the Southern São Francisco Craton, Brazil (2016) Precambrian Research, 275, pp. 84-99
  • Moyen, J.F., The composite Archaean grey gneisses: petrological significance, and evidence for a non-unique tectonic setting for Archaean crustal growth (2011) Lithos, 123 (1-4), pp. 21-36
  • Moyen, J.F., Martin, H., Forty years of TTG research (2012) Lithos, 148, pp. 312-336
  • Murakami, T., Chakoumakos, B.C., Ewing, R.C., Lumpkin, G.R., Weber, W.J., Alpha-decay event damage in zircon (1991) American Mineralogist, 76, pp. 1510-1532
  • Naeraa, T., Scherstein, A., Rosing, M.T., Kemp, A.I.S., Hofmann, J.E., Koldelt, T.F., Whitehouse, M.J., Hafnium isotope evidence for a transition in the dynamics of continental growth 3.2 Ga ago (2012) Nature, 485, pp. 627-630
  • Nebel, O., Nebel-Jacobsen, Y., Mezger, K., Berndt, J., Initial Hf isotope compositions in magmatic zircon from early Proterozoic rocks from the Gawler Craton, Australia: a test for zircon model ages (2007) Chemical Geology, 241, pp. 27-37
  • Noce, C.M., Machado, N., Teixeira, W., U–Pb geochronology of gneisses and granitoids in the Quadrilátero Ferrífero (southern São Francisco craton): age constraints for Archean and Paleoproterozoic magmatism and metamorphism (1998) Revista Brasileira de Geociencias, 28, pp. 95-102
  • Noce, C.M., Zuccheti, M., Baltazar, O.F., Armstrong, R., Dantas, E., Renger, F.E., Lobato, L.M., Age of felsic volcanism and the role of ancient continental crust in the evolution of the Neoarchean Rio das Velhas greenstone belt (Quadrilátero Ferrífero, Brazil): U–Pb zircon dating of volcaniclastic graywackes (2005) Precambrian Research, 141, pp. 67-82
  • Patchett, P.J., Arndt, N.T., Nd isotopes and tectonics of 1.9–1.7 Ga crustal genesis (1986) Earth and Planetary Science Letters, 78, pp. 329-338
  • Payne, J.L., McInerney, D.J., Barovich, K.M., Kirkland, C.L., Pearson, N.J., Hand, M., Strengths and limitations of zircon Lu-Hf and O isotopes in modelling crustal growth (2016) Lithos, 248-251, pp. 175-192
  • Peck, W.H., King, E.M., Valley, J.V., Oxygen isotope perspective on Precambrian crustal growth and maturation (2000) Geology, 28, pp. 363-366
  • Pietranik, A.B., Hawkesworth, C.J., Storey, C.D., Kemp, A.I.S., Sircombe, K.N., Whitehouse, M.J., Bleeker, W., Episodic mafic crust formation from 4.5–2.8 Ga: new evidence from detrital zircons, Slave Craton, Canada (2008) Geology, 36, pp. 875-878
  • Rapp, R.P., Watson, E.B., Dehydration melting of metabasalt at 8-32 kbar: implications for continental growth and crust-mantle recycling (1995) Journal of Petrology, 36, pp. 891-931
  • Roberts, N.M.W., Spencer, C.J., The Zircon Archive of Continent Formation Through Time, Geological Society, London, Special Publications (2014); Romano, R., Lana, C., Alkmim, F.F., Stevens, G.S., Armstrong, R., Stabilization of the southern portion of the São Francisco Craton, SE Brazil, through a long-lived period of potassic magmatism (2013) Precambrian Research, 224, pp. 143-159
  • Sandiford, M., McLaren, S., Tectonic feedback and the ordering of heat producing elements within the continental lithosphere (2002) Earth and Planetary Science Letters, 204, pp. 133-150
  • Sandiford, M., Powell, R., Deep crustal metamorphism during continental extension: ancient and modern examples (1986) Earth and Planetary Science Letters, 79, pp. 151-158
  • Satkoski, A.M., Bickford, M.E., Samson, S.D., Bauer, R.L., Mueller, P.A., Kamenov, G.D., Geochemical and Hf–Nd isotopic constraints on the crustal evolution of Archean rocks from the Minnesota River Valley, USA (2013) Precambrian Research, 224, pp. 36-50
  • Taylor, S.R., Island arc models and the composition of the continental crust (1977) Island Arcs, Deep Sea Trenches, and Back-Arc Basins, Maurice Ewing Ser. 1, pp. 325-335. , M. Talwani W.C. Pitman III AGU Washington D.C
  • Teixeira, W., Figueiredo, M.C.H., An outline of Early Proterozoic crustal evolution in the São Francisco Craton, Brazil: a review (1991) Precambrian Research, 53, pp. 1-22
  • Teixeira, W., Carneiro, M.A., Noce, C.A., Machado, N., Sato, K., Taylor, P.N., Pb, Sr and Nd isotope constraints on the Archean evolution of gneissic granitoid complexes in the southern São Francisco Craton, Brazil (1996) Precambrian Research, 78, pp. 151-164
  • Valley, J.W., Oxygen isotopes in zircon (2003) Reviews in Mineralogy and Geochemistry, 53, pp. 343-385
  • Valley, J.W., Chiarenzelli, J.R., McLelland, J.M., Oxygen isotope geochemistry of zircon (1994) Earth and Planetary Science Letters, 126, pp. 187-206
  • Valley, J.W., Kinny, P.D., Schulze, D.J., Spicuzza, M.J., Zircon megacrysts from kimberlite: oxygen isotope variability among mantle melts (1998) Contributions to Mineralogy and Petrology, 133, pp. 1-11
  • Valley, J.W., Lackey, J.S., Cavosie, A.J., Clechenko, C.C., Spicuzza, M.J., Basei, M.A.S., Bindeman, I.N., Wei, C.S., 4.4 billion years of crustal maturation: oxygen isotope ratios of magmatic zircon (2005) Contributions to Mineralogy and Petrology, 150, pp. 561-580
  • Van Achterbergh, E., Ryan, C.G., Jackson, S.E., Griffin, W., Data reduction soft- ware for LA-ICP-MS (2001) Laser Ablation ICPMS in the Earth Science, 29, pp. 239-243. , P. Sylvester Mineralogical Association of Canada
  • van Hunen, J., Allen, M.B., Continental collision and slab break-off: a comparison of 3-D numerical models with observations (2011) Earth and Planetary Science Letters, 302 (1-2), pp. 27-37
  • Veizer, J., Mackenzie, F.T., Evolution of sedimentary rocks (2003) Treatise on Geochemistry, 7, pp. 369-407
  • Villaros, A., Buick, I.S., Stevens, G., Isotopic variations in S-type granites: an inheritance from a heterogeneous source? (2012) Contributions to Mineralogy and Petrology, 163, pp. 243-257
  • Wiedenbeck, M., Hanchar, J.M., Peck, W.H., Sylvester, P., Valley, J., Whitehouse, M., Kronz, A., Zheng, Y.-F., Further characterization of the 91500 zircon crystal (2004) Geostandards and Geoanalytical Research, 28, pp. 9-39
  • Windley, B.F., Garde, A.A., Arc-generated blocks with crustal sections in the North Atlantic craton of West Greenland: crustal growth in the Archean with modern analogues (2009) Earth-Science Reviews, 93, pp. 1-30
  • Workman, R.K., Hart, S.R., Major and trace element composition of the depleted MORB mantle (DMM) (2005) Earth and Planetary Science Letters, 231 (1-2), pp. 53-72
  • Wotslaw, J.-F., Bindeman, I.N., Schaltegger, U., Brooks, C.K., Naslund, H.R., High-resolution insights into episodes of crystallization, hydrothermal alteration and remelting in the Skaergaard intrusive complex (2012) Earth and Planetary Science Letters, 355-356, pp. 199-212
  • Zeh, A., Gerdes, A., Barton, J.M., Jr., Archean accretion and crustal evolution of the Kalahari Craton – the zircon age and Hf isotope record of granitic rocks from Barberton/Swaziland to the Francistown Arc (2009) Journal of Petrology, 50, pp. 933-966
  • Zeh, A., Stern, R.A., Gerdes, A., The oldest zircons of Africa – their U-Pb-Hf-O isotope and trace element systematics, and implications for Hadean to Archean crust-mantle evolution (2014) Precambrian Research, 241, pp. 203-230

Citas:

---------- APA ----------
Albert, C., Farina, F., Lana, C., Stevens, G., Storey, C., Gerdes, A. & Dopico, C.M. (2016) . Archean crustal evolution in the Southern São Francisco craton, Brazil: Constraints from U-Pb, Lu-Hf and O isotope analyses. Lithos, 266-267, 64-86.
http://dx.doi.org/10.1016/j.lithos.2016.09.029
---------- CHICAGO ----------
Albert, C., Farina, F., Lana, C., Stevens, G., Storey, C., Gerdes, A., et al. "Archean crustal evolution in the Southern São Francisco craton, Brazil: Constraints from U-Pb, Lu-Hf and O isotope analyses" . Lithos 266-267 (2016) : 64-86.
http://dx.doi.org/10.1016/j.lithos.2016.09.029
---------- MLA ----------
Albert, C., Farina, F., Lana, C., Stevens, G., Storey, C., Gerdes, A., et al. "Archean crustal evolution in the Southern São Francisco craton, Brazil: Constraints from U-Pb, Lu-Hf and O isotope analyses" . Lithos, vol. 266-267, 2016, pp. 64-86.
http://dx.doi.org/10.1016/j.lithos.2016.09.029
---------- VANCOUVER ----------
Albert, C., Farina, F., Lana, C., Stevens, G., Storey, C., Gerdes, A., et al. Archean crustal evolution in the Southern São Francisco craton, Brazil: Constraints from U-Pb, Lu-Hf and O isotope analyses. Lithos. 2016;266-267:64-86.
http://dx.doi.org/10.1016/j.lithos.2016.09.029