999 resultados para U-pb Ages


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The 590-580 Ma Itu Granite Province (IGP) is a roughly linear belt of post-orogenic granite plutons similar to 60 km wide extending for some 350 km along the southern edge of the Apia-Guaxupe Terrane in southeastern Brazil. Typical components are subalkaline A-type granites (some with rapakivi texture) that crystallized at varied, but mostly strongly oxidizing conditions, and contrast with a coeval association of also oxidized high-K calc-alkaline granites in terms of major (e. g., lower Ca/Fe) and trace elements (higher Nb, Y, Zr). Mantle-derived magmas (such as those forming the LILE-rich Piracaia Monzodiorite, with epsilon(Nd(t)) = -7 to -10, (87)Sr/(86)Sr((t)) = 0.7045-0.7055) are inferred to derive from enriched subcontinental lithosphere modified during previous subduction, and may have played a role in the generation of the A-type granites, adding melts or fluids or both to the lower crust from which the latter were generated. The IGP is interpreted as a reflection of crust uplift and increased heat flux during ascent of hot, less dense asthenosphere after continental collision, probably reflecting breakoff of an oceanic slab coeval to the right-lateral accretion of a terrane related to the Mantiqueira Orogenic System.

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This paper examines the extensive regions of Proterozoic accretionary belts that either formed most of the Amazonian Craton, or are marginal to its southeastern border. Their overall geodynamic significance is considered taking into account the paleogeographic reconstruction of Columbia, Rodinia and Gondwana. Amazonia would be part of Columbia together With Laurentia, North China and Baltica, forming a continuous, continental landmass linked by the Paleo- to Mesoproterozoic mobile belts that constitute large portions of it. The Rodinia supercontinent was formed in the Mesoproterozoic by the agglutination of the existing cratonic fragments, such as Laurentia and Amazonia, during contemporary continental collisions worldwide. The available paleomagnetic data suggest that Laurentia and Amazonia remained attached until at least 600 Ma. Since all other cratonic units Surrounding Laurentia have already rifted away by that time, the separation between Amazonia and Laurentia marks the final break-up of Rodinia with the opening of the lapetus ocean. (C) 2009 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.

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The main Precambrian tectonic units of Uruguay include the Piedra Alta tectonostratigraphic terrane (PATT) and Nico Perez tectonostratigraphic terrane (NPTT), separated by the Sarandi del Yi high-strain zone. Both terranes are well exposed in the Rio de La Plata craton (RPC). Although these tectonic units are geographically small, they record a wide span of geologic time. Therefore improved geological knowledge of this area provides a fuller understanding of the evolution of the core of South America. The PATT is constituted by low-to medium-grade metamorphic belts (ca. 2.1 Ga); its petrotectonic associations such as metavolcanic units, conglomerates, banded iron formations, and turbiditic deposits suggest a back-arc or a trench-basin setting. Also in the PATT, a late to post-orogenic, arc-related layered mafic complex (2.3-1.9 Ga), followed by A-type granites (2.08 Ga), and finally a taphrogenic mafic dike swarm (1.78 Ga) occur. The less thoroughly studied NPTT consists of Palaeoproterozoic high-grade metamorphic sequences (ca. 2.2 Ga), mylonites and postorogenic and rapakivi granites (1.75 Ga). The Brasiliano-Pan African orogeny affected this terrane. Neoproterozoic cover occurs in both tectonostratigraphic terranes, but is more developed in the NPTT. Over the past 15 years, new isotopic studies have improved our recognition of different tectonic events and associated processes, such as reactivation of shear zones and fluids circulation. Transamazonian and Statherian tectonic events were recognized in the RPC. Based on magmatism, deformation, basin development and metamorphism, we propose a scheme for the Precambrian tectonic evolution of Uruguay, which is summarized in the first Palaeoproterozoic tectonic map of the Rio de La Plata craton.

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The Amazonian craton in the Sao Felix do Xingu city, southeast region of the Para state, north of Brazil, hosts exceptionally well-preserved Paleoproterozoic bimodal magmatic units grouped in the Sobreiro and Santa Rosa formations. These formations are correlated to the Uatuma magmatic event, which is largely distributed in the Amazonian craton occupying more than 1,500,000 km(2). Geological mapping and petrographical observations reveal distinct spectra of volcanic facies in both formations. The basal calc-alkaline Sobreiro Formation is composed mainly of andesitic and dacitic lava flows and associated volcaniclastic facies of autoclastic origin, with subordinate pyroclastic flow deposits. This formation shows inferred eruption style that is similar to those in Flood Basalt Provinces, with rare scutulum-type lava shields. The upper A-type Santa Rosa Formation was generated by multicyclic explosive and effusive episodes predominantly associated with large fissures and is materialized by voluminous ignimbrites with subordinated ash-fall tuff, crystal tuff, lapilli-tuff, co-ignimbritic breccias, rhyolitic dikes and domes, and associated granitic porphyries and equigranular granitic intrusions. Ignimbrite and rhyolite dikes reveal conspicuous vertical flow pattern pointing to a fissure-controlled eruption, similar to Sierra Madre Occidental ignimbrite province. The proposed evolutionary model for the Sao Felix do Xingu units differs from those of other occurrences related to the Uatuma magmatic event in the Amazonian craton, characterized by predominance of A-type volcanism and contemporaneous granites. (C) 2010 Elsevier B.V. All rights reserved.

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Os depósitos de metais-base (Camaquã, Santa Maria e na Formação Passo Feio), e Au (Bossoroca) mais importantes do Rio Grande do Sul foram gerados durante o Ciclo Brasiliano ao longo de três eventos distintos, relacionados ao magmatismo e metamorfismo contemporâneos (700, 594 e 562 Ma); os metais foram derivados de fontes relacionadas à crosta juvenil e ao embasamento antigo. O depósito de ouro da Bossoroca (700 Ma) consiste de veios de quartzo com Au e subordinadamente pirita, calcopirita, galena e teluretos, sendo classificado como um depósito orogênico epizonal. Os filões de quartzo aurífero são hospedados por rochas, piroclásticas calcico-alcalinas de composição andesítica, dacítica com basaltos e epiclásticas subordinadas, pertencentes a Formação Campestre. Estudos do zircão através do método U-Pb via SHRIMP mostram que as rochas vulcânicas encaixantes foram geradas a cerca de 760 Ma atrás, no início do Ciclo Brasiliano, e sofreram metamorfismo regional de baixa pressão na transição entre os facies xistos verdes e anfibolito a cerca de 700 Ma. Os depósitos de metais-base do sistema Camaquã Cu (Au, Ag) e Santa Maria Pb-Zn (Cu, Ag) são hidrotermais magmáticos distantes, provavelmente ligados à intrusões graníticas, e foram gerados há cerca de 594 Ma durante o magmatismo pós-colisional do final da Orogenêse Dom Feliciano. As mineralizações de Cu (Au) e Pb hospedados pela Formação Passo Feio são hidrotermais epigenéticas e foram gerados há 562 Ma durante a intrusão do Granito Caçapava. A composição isotópica do Pb dos sulfetos dos depósitos de Camaquã-Santa Maria indica que os metais foram derivados de uma fonte crustal com Pb muito primitivo no final do Ciclo Brasiliano. A composição isotópica do enxofre dos sulfetos desses depósitos (~ 0‰ CDT) indica uma origem magmática para o enxofre. Os metais dos depósitos hidrotermais epigenéticos da Formação Passo Feio foram também derivados do embasamento antigo, com contribuição importante das rochas meta-vulcanosedimentares da Formação Passo Feio. O enxofre dessas mineralizações possui origem mista, originada pela mistura de fluidos magmáticos (Granito Caçapava) com enxofre derivado da lixiviação das meta-vulcanosedimentares da Formação Passo Feio. Os metais concentrados no depósito de Au da Bossoroca foram mobilizados durante o metamorfismo regional dinamotermal através da interação de fluidos de origem profunda que ascenderam através da pilha vulcanosedimentar extraindo Au e outros metais, e depositando-os em níveis crustais mais rasos em sítios estruturalmente favoráveis. A fonte do Pb determinada para o depósito de Au da Bossoroca é de origem profunda e corresponde a mesma fonte do magma de arco juvenil gerador das rochas vulcânicas do arco. Os isótopos de C-O mostram assinaturas compatíveis com uma fonte profunda para estes fluidos mineralizadores.

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The of Serrinha plutonic suite, northeastern portion of the Borborema Province (NE Brazil), is characterized by a voluminous and diversified magmatism of Neoproterozoic age, intrusive in the Archean to Paleoproterozoic gneissic-migmatitic basement of the São José de Campestre massif. Field relations and petrographic and geochemical data allowed us to individualize different lithologic types among this plutonic suite, which is represented by intermediate to mafic enclaves, porphyritic diorites, porphyritic granitoids, porphyritic granodiorites, microporphyritic granites and dykes/sheets of microgranite. The intermediate-to-mafic enclaves occur associated with porphyritic granitoids, showing mixture textures. The porphyrytic diorites occur as isolated bodies, generally associated with intermediate-to-mafic enclaves and locally as enclaves within porphyritic granites. The granodiorites represent mixing between an intermediate to mafic magma with an acidic one. The micropophyritic granites occur as isolated small bodies, generally deformed, while the microgranite dykes/sheets crosscut all the previous granitoids. A U-Pb zircon age of 576 + 3 Ma was obtained for the Serrinha granite. This age is interpreted as age of the peak of the regional ductile deformational event (D3) and of the associated the E-W Rio Jacu shear zone, which control the emplacement of the Neoproterozoic syntectonic plutons. The porphyrytic granitoids show monzogranitic composition, transitional between peraluminous and metaluminous types, typically of the high potassium subalkaline-calc-alkaline series. The intermediate-to-mafic enclaves present vary from quartz diorite to tonalite/granodiorite, with metaluminous, shoshonitic affinity. The diorites are generally quartz-monzodiorite in composition, with metaluminous, subalkaline affinity. They display coarse-grained, inequigranular, porphyrytic texture, with predominance of plagioclase phenocrystals immersed in a matrix composed of biotite and pyroxenes. The microporphyrytic granites are essentially monzogranites of fine- to medium-grained texture, whereas microgranite dikes/sheets varying from monzogranites to syenogranites, with fine to media texture, equigranular. The diversified magmatism occurring at a relatively small surface associated with shear zones, suggests lithospheric dimensions for such structures, with magma extractions from different depths within the lower crust and upper mantle. The geological, geochemical and geochronological characteristics of the Serrinha plutonic suite suggest a pos-collisional geodynamic context for the Neoproterozoic magmatism. Thermobarometric data show emplacement conditions in the range 5-6 kbar (AlTamphibole) and 730-740°C (plagioclase-amphibole) for the porphyrytic granitoids (Serrinha body) and the intermediate-to-mafic enclaves

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The mafic/ultramafic Ipanema Layered Complex (ILC), Minas Gerais Brazil, consists of seven individual bodies. These units crosscut polyphase orthogneisses and interlayered paragneisses of the Paleoproterozoic Juiz de Fora Complex. Intrusive granitoids tectonically related to [lie Neoproterozoie Aracuai orogen are also present in the study area.A Sm-Nd whole-rock linear array for seven samples metapyoxenites, metaperidotiles, metagabbro. and meta-anorthosite) from the Santa Cruz massif, the largest body of the ILC. suggest that it was emplaced at 1104 +/- 78 Ma the original magma was derived from a depleted mantle source (epsilon(Ndt)= +3.8). U-Pb single-grain zircon stud of a meta-anorthosite yields all upper intercept age of 1719 +/- 4 Ma, which is interpreted to represent inheritance. The lower intercept at 630+/-3 Ma indicates (hat a Neoproterozoic tectonothermal episode overprinted the ILC, this event occurred under upper-amphiolite-, to granulite-facies conditions. The 630 Ma episode is consistent with the timing of regional metamorphism and deformation of the adjacent Aracuai orogen (Brasiliano collage). Emplacement of the ILC and other coeval metamafies and meta-ultramafics (of alkaline affinity) in the re, oil is attributed to early extension tectonics, accompanying accretion of the Rodinia super- continent during the Mesoproterozoic-Neoproterozoic time boundary.

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Recent field investigations and geochronological studies of Neoproterozoic rocks in the northwestern part of the Borborema Province, Ceará State, NE Brazil provide important clues pertaining to the nature of convergence between the Borborema Province and the West African-São Luis craton during the assembly of West Gondwana. U-Pb zircon data indicate that the earliest evidence of convergent magmatism along the northwest margin of the Borborema Province occurred around 777 Ma, and was followed by the development of a large continental arc batholith (Santa Quitéria batholith) between ca. 665 and 591 Ma within the central part of Ceará State. These findings, along with supporting geophysical data, suggest that convergence between the Borborema Province and the West African-São Luis craton involved closure of an oceanic realm with subduction polarity to the southeast beneath the northwestern part of the province. Consequently, it seems likely that the Pharusian Ocean was continuous from the Hoggar Province in West Africa into South America during the late Neoproterozoic and additional data suggests that it may have even been connected with the Goianides Ocean of the Brasília Belt farther to the southwest.

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Recent structural investigations and geochronological studies of rocks from the Médio Coreaú domain in the NW part of northeast Brazil's Borborema Province provide important constraints on the tectonic evolution of the region both preceeding and during the assembly of West Gondwana. Field observations of structural features and fabrics have revealed the presence of four distinct deformational phases in the MCD: D1, D2, D3 and D4. Only the early Paleoproterozoic gneisses record the D1 tectonic event and its preservation is cryptic owing to strong overprinting by the subsequent tectonic phases. The D2, D3 and D4 events affected younger supracrustal rocks and Neoproterzoic magmatic units, and U-Pb geochronological constraints show that all of these tectonic phases represent deformational events that occurred during Brasiliano collision between the West African craton and the NW part of the Borborema Province. The D2 phase, lasting between ca. 622 and 591 Ma, represents a frontal collision stage, which generated NW verging thrust-nappe systems, low-angle foliation, high-grade metamorphism and crustal anatexis. Transition to a strike-slip regime (D3) occurred at around 591 Ma when the region entered a phase of escape tectonics. During this time, the motion of crustal blocks towards NE and E was accommodated along numerous anastomosing shear zones. Syntectonic emplacement of granitoid plutons took place in transtensional domains of the shear zone system. The intrusion of late tectonic granitoids and rapid uplift and cooling of the orogen around 560 Ma as a result of D4 transpressional movements marked the end of the D3 transcurrent regime. These findings show that only the early Paleoproterozoic gneisses in the Médio Coreaú domain are polycyclic in nature. Rather than representing distinct orogenic events, the D2, D3 and D4 tectonic phases are a manifestation of progressive deformational events that developed in response to changes in the regional stress field during convergence and collision between the Borborema Province and its surrounding cratons.

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The c. 600 Ma Brasiliano Borborema Province of NE Brazil comprises a complex collage of Precambrian crustal blocks cut by a series of continental-scale shear zones. The predominant basement rocks in the province are 2.1-2.0 Ga Transamazonian gneisses of both juvenile and reworked nature. U-Pb zircon and Sm-Nd whole-rock studies of tonalite-trondhjemite-granodiorite basement gneisses in the NW Ceará or Médio Coreaú domain in the northwestern part of the Borborema Province indicate that this represents a continental fragment formed by 2.35-2.30 Ga juvenile crust. This block has no apparent genetic affinity with any other basement gneisses in the Borborema Province, and it does not represent the tectonized margin of the c. 2.1-2.0 Ga São Luis Craton to the NW. The petrological and geochemical characteristics, as well as the Nd-isotopic signatures of these gneisses, are consistent with their genesis in an island arc setting. This finding documents a period of crustal growth during a period of the Earth's history which is known for its tectonic quiescence and paucity of crust formation. © Geological Society of London 2009.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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ABSTRACT: Analytical procedures for U-Pb isotope dilution analyses at the Pará-Iso isotope geology laboratory of the Federal University of Pará (UFPA) are described in detail. The procedures are applied to zircon, titanite, rutile, apatite, columbite-tantalite and whole rock. Reagent preparation and chemical processing are done in clean-room conditions. Samples are dissolved using Teflon™ microcapsules in steel jacket Teflon™ Parr Instrument™ bomb or Teflon™ screw cap containers. U and Pb are separated using anion exchange AG 1x8 resin columns. Typical blanks for mineral sample amounts of 0.01 to 1.0 mg are less than 1 pg U and 20-30 pg Pb. Isotope analysis of the U and Pb from the same filament are carried out using a Finnigan MAT 262 mass-spectrometer in static and dynamic modes. The current analytical level is demonstrated on analyses of international standard zircon 91500 with three different 235U-205Pb and 235U-208Pb isotope tracers and whole rock standards. Results of analyses of two zircon samples are also presented.

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Rochas siliciclásticas da Formação Raizama, unidade basal do Grupo Alto Paraguai de idade ediacarana-cambriana (635 – 541 Ma), ocorrem distribuídas descontinuamente ao longo da margem sul do Cráton Amazônico e segmento norte da Faixa Paraguai, centro-oeste do Brasil, estado do Mato Grosso. Estas recobrem discordantemente os depósitos de plataforma carbonática do Grupo Araras, onde foram registrados evidências do evento glacial Marinoano (635 Ma). O Grupo Alto Paraguai representa os estágios finais da colisão entre os blocos Amazônico e Paranapanema que culminaram no fechamento do Oceano Clymene (540-520 Ma). A Formação Raizama com espessura de aproximadamente 570 m é constituída por pelitos, arenitos finos a grossos, e arenitos com cimento dolomítico previamente interpretados como depósitos flúvio-costeiros distribuídos nos membros inferior (270 m) e superior (300 m). O estudo faciológico e estratigráfico desta unidade na região de Nobres, Estado do Mato Grosso, foi focado principalmente na seção aflorante de 600 m no leito do rio Serragem, que inclui a Cachoeira da Serra do Tombador. Foram definidas 17 fácies sedimentares, agrupadas em cinco associações de fácies (AF) representativas de uma sucessão costeira progradante iniciando por depósitos de shoreface inferior, os quais recobrem em conformidade correlativa os depósitos de plataforma carbonática da Formação Serra do Quilombo (Grupo Araras). A AF1 consiste em arenitos com laminação plano-paralela e laminação truncada por onda (microhummocky), individualizada por camadas de pelito laminado interpretadas como depósitos de shoreface inferior. Destaca-se na AF1 a primeira ocorrência de níveis centimétricos bioturbados por Skolithos em depósitos neoproterozoicos – cambrianos na Faixa Paraguai. A AF2 é formada por arenitos com estratificação cruzada swaley e estratificação plano-paralela interpretada como depósitos de shoreface superior. A AF3 é composta por arenitos com estratificações cruzadas tangenciais e acanaladas com recobrimentos de siltito/arenito muito fino representativos de depósitos de canal e barras de submaré. A AF4 é caracterizada por arenitos com estratificações cruzadas tangencial e sigmoidal, laminação plano-paralela a cruzadas de baixo-ângulo, ritmito arenito muito fino/siltito com acamamento flaser e gretas de contração, organizados em ciclos métricos de raseamento ascendente de planície de maré. A AF5 é constituída por arenito com estratificação cruzada acanalada marcada por lags residuais na base da associação, arenito com estratificações plano-paralela e cruzada de baixo-ângulo, interpretados como depósitos fluviais distais de rios entrelaçados, parcialmente retrabalhados por ondas. Grãos detríticos de zircão foram obtidos da AF3 e datados pelo método U-Pb, sendo a idade de 1001±9 Ma interpretada como a idade de máxima deposição da Formação Raizama. Aliado a tal análise, as paleocorrentes NE-SE mostram que estes grãos teriam como áreas fontes principais a Faixa Sunsás, SW do Cráton Amazônico, não sendo descartada contribuições oriundas da parte NW desse Cráton. A idade mesoproterozóica obtida serviu principalmente para desvendar a proveniência da Formação Raizama, enquanto que as datações da base do Grupo Araras, em torno de 627-622 Ma, associada à presença inequívoca do icnogênero Skolithos, tornam esta unidade muito mais próxima do limite com o Cambriano Inferior. Traços fósseis do Proterozoico são caracterizados quase que exclusivamente por traços horizontais, sendo que bioturbações verticais praticamente são ausentes ao longo do Neoproterozoico. Esta inferência vem de encontro com a idade máxima de 541 Ma obtida para a Formação Diamantino, a qual recobre a unidade estudada. Os dados radiométricos aliados com as interpretações paleoambientais, que incluem o registro das primeiras atividades de organismos perfurantes na Faixa Paraguai, abrem perspectivas de entender com maiores detalhes a sequência de eventos que tipificam os estratos do limite Ediacarano-Cambriano do Brasil, ainda pouco conhecidos.

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O Batólito Cerro Porã é um corpo de aproximadamente 30 por 4 km de extensão, localizado na região de Porto Murtinho, Mato Grosso do Sul. Situa-se nos domínios do Terreno Rio Apa, porção sul do Cráton Amazônico. Constitui-se pela Fácies sienogranítica rosa e Fácies monzogranítica cinza. A primeira é caracterizada por textura equi a, essencialmente, inequigranular xenomórfica e pela presença constante de intercrescimentos gráfico e granofíric; constitui-se por feldspatos alcalinos, quartzo e plagioclásio, tendo biotita como único máfico primário. A Fácies monzogranítica cinza apresenta textura porfirítica, com uma matriz de granulação fina gráfica a granofírica e consiste de quartzo, plagioclásio, feldspatos alcalinos e agregados máficos (biotita e anfibólio). Ambas foram metamorfizadas na fácies xisto verde e a Fácies sienogranítica rosa mostra-se milonitizada quando em zonas de cisalhamento. Foi identificado um evento deformacional dúctil-rúptil originado em regime compressivo, responsável pela geração de xistosidade e lineação de estiramento mineral. A Zona de Cisalhamento Esperança relaciona-se a esta fase e reflete a história cinemática convergente, reversa a de cavalgamento, com transporte de topo para NWW. Quimicamente, esses litotipos classificam-se como granitoides do tipo A2 da série alcalina potássica saturada em sílica. Determinação geocronológica obtida pelo método U-Pb (SHRIMP) em zircão, forneceu idade de 1749 ±45 Ma para sua cristalização. Do ponto vista geotectônico, admite-se que o Granito Cerro Porã corresponda a um magmatismo associado a um arco vulcânico desenvolvido no Estateriano e que sua colocação se deu no estágio tardi a pós-orogênico.