Academic literature on the topic 'Faixa Araçauí'
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Journal articles on the topic "Faixa Araçauí"
MUNHÁ, JOSÉ M. U., UMBERTO G. CORDANI, COLOMBO C. G. TASSINARI, and TERESA PALÁCIOS PALÁCIOS. "PETROLOGIA E TERMOCRONOLOGIA DE GNAISSES MIGMATÍTICOS DA FAIXA DE DOBRAMENTOS ARAÇUAÍ (ESPÍRITO SANTO, BRASIL)." Revista Brasileira de Geociências 35, no. 1 (March 1, 2005): 123–34. http://dx.doi.org/10.25249/0375-7536.2005351123134.
Full textSilva, Cláudio Maurício Teixeira da, Fernando Flecha Alkmim, and Antônio Carlos Pedrosa-Soares. "Geometria e evolução do feixe de zonas de cisalhamento Manhuaçu - Santa Margarida, Orógeno Araçuaí, MG." Rem: Revista Escola de Minas 62, no. 1 (March 2009): 23–34. http://dx.doi.org/10.1590/s0370-44672009000100005.
Full textLIMA, SIRLENE A. ABREU, MARCELO A. MARTINS-NETO, ANTÔNIO C. PEDROSA-SOARES, UMBERTO G. CORDANI, and ALLEN NUTMAN. "A FORMAÇÃO SALINAS NA ÁREA-TIPO, NE DE MINAS GERAIS: UMA PROPOSTA DE REVISÃO DA ESTRATIGRAFIA DA FAIXA ARAÇUAÍ COM BASE EM EVIDÊNCIAS SEDIMENTARES, METAMÓRFICAS E IDADES U-Pb SHRIMP." Revista Brasileira de Geociências 32, no. 4 (December 1, 2002): 491–500. http://dx.doi.org/10.25249/0375-7536.2002324491500.
Full textBersan, Samuel Moreira, and André Danderfer Filho. "Registro e análise de estruturas relacionadas com a tectônica extensional do rifteamento Macaúbas na Serra Central, norte de Minas Gerais." Geologia USP. Série Científica 17, no. 3 (September 1, 2017): 97. http://dx.doi.org/10.11606/issn.2316-9095.v17-120713.
Full textCardoso, Rayssa de Lima, Paula Cilene Alves Da Silveira, and Delzenira Silva Nascimento Da Costa. "Comunidade ictioplanctônica da zona de arrebentação das praias Do Araçagy E Panaquatira, ilha do Maranhão, Maranhão, Brasil." Latin American Journal of Development 3, no. 4 (July 8, 2021): 1783–99. http://dx.doi.org/10.46814/lajdv3n4-008.
Full textTupinambá, Miguel, Monica Heilbron, Beatriz Paschoal Duarte, José Renato Nogueira, Claudia Valladares, Júlio Almeida, Luiz Guilherme do Eirado Silva, et al. "GEOLOGIA DA FAIXA RIBEIRA SETENTRIONAL: ESTADO DA ARTE E CONEXÕES COM A FAIXA ARAÇUAÍ." Geonomos, February 16, 2013. http://dx.doi.org/10.18285/geonomos.v15i1.108.
Full textWiedemann-Leonardos, Cristina M., Isabel P. Ludka, Sílvia R. de Medeiros, Júlio C. Mendes, and J. Costa-de-Moura. "ARQUITETURA DE PLUTONS ZONADOS DA FAIXA ARAÇUAÍ-RIBEIRA." Geonomos, July 1, 2000. http://dx.doi.org/10.18285/geonomos.v8i1.145.
Full textAlkmim, Fernando Flecha, Antônio Carlos Pedrosa-Soares, Carlos Maurício Noce, and Simone Cerqueira Pereira Cruz. "SOBRE A EVOLUÇÃO TECTÔNICA DO ORÓGENO ARAÇUAÍ-CONGO OCIDENTAL." Geonomos, February 16, 2013. http://dx.doi.org/10.18285/geonomos.v15i1.105.
Full textMenezes, Rita da Cunha Leal, Herbet Conceição, Maria de Lourdes da Silva Rosa, Moacir José Buenano Macambira, Marco Antonio Galarza, and Débora Correia Rios. "GEOQUÍMICA E GEOCRONOLOGIA DE GRANITOS ANOROGÊNICOS TONIANOS (ca. 914–899 Ma) DA FAIXA ARAÇUAÍ NO SUL DO ESTADO DA BAHIA." Geonomos, July 31, 2012. http://dx.doi.org/10.18285/geonomos.v20i1.21.
Full textAracema, Laurenn Wolochate, Ana Carolina Neves, Juliana Cristina Henriques Ferreira, Antônio Carlos Pedrosa-Soares, Lydia Maria Lobato, and Carlos Maurício Noce. "NOVAS EVIDÊNCIAS DE REMANESCENTES OCEÂNICOS NA FAIXA ARAÇUAÍ: AS ROCHAS META-ULTRAMÁFICAS DE SÃO JOSÉ DA SAFIRA." Geonomos, July 1, 2000. http://dx.doi.org/10.18285/geonomos.v8i1.148.
Full textDissertations / Theses on the topic "Faixa Araçauí"
Lopes, Renan Garcia. "Geologia da região de Colatina (ES): Uma abordagem geocronológica, petrográfica e estrutural por ASM." Universidade de São Paulo, 2016. http://www.teses.usp.br/teses/disponiveis/44/44141/tde-28092016-144705/.
Full textThe eastern portion of the Araçuaí Belt, Neoproterozoic age, comprises a large area consisting of anatexites, leucogranites, kinzigites and migmatized granulites, that probably are related with the registration of an extensive partial melting of the middle and lower crust. In the region of this study, there are rocks from de Nova Venécia Complex, that is characterized by ortognesis and, the paragenesis is given by the association cordierite + garnet + biotite + potassium feldspar + plagioclase + quartz and, the presence of sillimanite indicates that these rocks reached upper amphibole - granulite facies. The migmatites range from metatexites to diatexites with wide variation in partial melting structures. The mineralogy observed in these rocks is almost the same found in the Colatina granitoid, with the exception of the metamorphic minerals as cordierite and sillimanite, that were observed in a specific outcrop. Regarding the deformation in the study region, it was performed continuously, going from pre-collisional to post-collisional stage, recorded in the gneissic banding and in the granitoid, also the weak deformation observed in the plagioclase crystals of the norite. The magnetic mineralogy is given mainly ferromagnetic oblate minerals, which are magnetite and to a lesser extent the pyrrhotite and maghemite, it can also have influence of paramagnetic minerals such as biotite. Two deformational stages have been identified, the first one was related to the metamorphism that generated the gneissic and migmatitic banding, and the second, associated to the folding pattern identified in stereograms of some structural domains and in the foliation observed in granitoid. Geochronological data show the age of 582.9 ± 4.1Ma as the age of the source rock that generated the sediments that gave rise to the paragneisses of the Nova Venécia Complex. This age is close to the 576.3 ±2.9Ma obtained for the Colatina granitoid, related to its crystallization, indicating that probably both rocks - the source rock of the sediments and Colatina granitoid were generated at the same tectonic event. These data suggest that the magmatic pulse that generated the source rock of the paragneisses sediments and Colatina granitoid have, respectively, pre-collisional syn-collisional characteristics. The U/Pb analysis in the edges of the zircons show the age of 522 ± 2Ma, that can be attributed to the last metamorphic event who acted in the region. The ratios Th/U show that the origin of the analyzed zircons (zircon core) is magmatic, with the average value of 0.42 in the core of zircon and 0.15 regions in the edges, thus indicating that they were due to a metamorphic event. The 503 ± 4Ma age obtained from the monazite crystals was assigned to the temperature reached during the metamorphic peak (820°C, measured by Munha et al. 2005), indicates that this age can be also related to the last metamorphic event, since the temperature closing system of the monazite is about 750°C. The relationship of these ages and the metamorphic temperatures allow to estimate a cooling rate of about 3.7°C/Ma. Finally, the norite age of 513.2 ± 2.3Ma, can be associated with the final collisional stage, as shown by the deformation recorded in plagioclase crystals observed in the microstructural analysis.
Kawata, Marcelo Takei. "Evolução tectono-metamórfica da formação São Tomé, Grupo Rio Doce, faixa Araçuaí." Universidade de São Paulo, 2018. http://www.teses.usp.br/teses/disponiveis/44/44141/tde-17072018-144805/.
Full textThe present dissertation presents an investigation on the tectono-metamorphic evolution of the São Tomé Formation, one of the metasedimentary units belonging to the Rio Doce Group, in the Araçuaí Orogen. This unit, of pelitic origin, occurs in a band with general direction approximately N-S, with vergence for NE, contrary to the São Francisco craton in this sector of the orogen. It has quartz-mica schist as main lithotype, with varying proportions of grarnet, staurolite, sillimanite and plagioclase. Two deformational phases are recorded through a continuous foliation S1 of the fracture cleavage type and a foliation S2 of crenulation cleavage. The textural relations indicate that part of the mineral phases crystallized both during the deformational event and in conditions absent of deviatore voltage, and record of metamorphic peak conditions of 6 kbar and 650 ° C. The geochronological data were obtained in monazite by means of Th-U-Pb dating in electron microprobe. Three distinct populations were identified: (i) The oldest population of 641 ± 32 Ma, 614 ± 39 Ma and 607 ± 47 Ma, which may represent detrital grains of igneous bodies, no longer outcrops, related to a possible pre- collisional or, being metamorphic monazites formed in a first thermal event; (ii) Populations with intermediate ages between 560 ± 32 Ma and 559 ± 29 Ma, compatible with regional metamorphic apex ages; (iii) Younger population between 501 ± 28 Ma and 491 ± 34 Ma, consistent with the formation concomitant with the generation of late igneous bodies. Although it is unclear whether these ages are related to distinct metamorphic events or are reflective of the low orogenic cooling rate, the three monazite groups of different ages are well established.
Mondou, Mathieu. "Evolução estrutural e térmica de um batólito sin-cinemático no orógenos Neoproterozóico Araçuaí (leste do Brasil)." Universidade de São Paulo, 2010. http://www.teses.usp.br/teses/disponiveis/44/44141/tde-20012011-115432/.
Full textThe allochtonous domain of the Neoproterozoic Araçuaí belt involves large amounts of magma, widespread partial melting, granulitic facies and high geotherm, characterising this belt as a hot orogen. The Galiléia tonalitic suite, emplaced within host metasediments and deformed at magmatic state, represents a huge batholith that strongly influenced the mechanical behaviour of this middle crust. The anisotropy of magnetic susceptibility (AMS) measured through this batholith and used as a petrofabric proxy, combined to a detailed magnetic mineralogy investigation, permitted to characterize the paramagnetic behaviour of the Galiléia suite and therefore to highlight a complex 3D strain deformation. The observed structures developed within the viscous magma resulted from a combination of tangential tectonics induced by the compression, and gravitational forces arising from the load of the overlying crust. The kinematics of the batholith is compatible with that already described for ductile rocks of hot orogens. U/Pb dating on zircons and monazites together with 40Ar/39Ar dating on amphiboles, muscovites and biotites permitted to define the thermal evolution of the Galiléia batholith and its host metasediments and constrain the timing of the deformation. The Galiléia batholith emplaced during an important magmatic, tectonic and thermal event at ~580 Ma. Temperature remained high during the first ~50 Ma of the thermal evolution, promoting a seemingly constant deformation of the batholith at magmatic state during several tens of millions years. Such high temperature conditions and stable deformation kinematics during protracted periods of time are supposed to be characteristic of hot orogen. The slow cooling rate of ~10°C/Ma evidenced after ~500 Ma probably indicate a very slow exhumation probably only conducted by erosion.
Martins, Veridiana Teixeira de Souza. "Geologia Isotópica do Plutonismo Neoproterozóico da Faixa Araçuaí, Região Nordeste de Minas Gerais." Universidade de São Paulo, 2000. http://www.teses.usp.br/teses/disponiveis/44/44134/tde-22082013-144432/.
Full textThe objective of this dissertation is to present the results of a large bibliographic research and the results of a field work to caracterize, in isotopic terms, the diversity of granitic suites of the Araçuaí Fold Belt. The aim is to analyse the granites source rocks between the various basement units, as well the tectonic environment. The granite\'s samples as well the basement\'s ones were submitted to Rb-Sr, Sm-Nd, Pb-Pb and K-Ar analysis. The \'\'épsilon\' IND. Nd\', \'\'épsilon\' IND. Sr\' and initial Sr ratio parameters and the Sm-Nd model ages (\'T IND. DM\'), as well petrographic descrition were also used to reach the objectives. The results allowed to divide the granites into six suites with diferent caracteristics. The G-l suite has metaluminmous I-type granites, with ages between 630 and 580 Ma, Sm-Nd model ages of 2.0 to 1.7 Ga and \'\'épsilon\' IND. Nd\' values between -9.3 and -8.3. The G-2 suite is made of peraluminous S-type granites, with ages between 590 and 575 Ma, Sm-Nd model ages of 1.7 to 1.85 Ga and \'\'épsilon\' IND. Nd\' values among -7 .4 and -8.2. The G-3 suite has both I- and S-types, with ages between 585 and 575 Ma, Sm-Nd model ages among 2.1 and 2.2 Ga and \'\'épsilon\' IND. Nd\' values from -12.9 to -13.0. The G-4 suite was not studied in this work, but represent S-type granitoids of 530 Ma. The G-5 suite comprises I-type granitoids of 520 and 505 Ma, that have Sm-Nd model ages between 1.48 and 1.55 Ga and \'\'épsilon\' IND. Nd\' values from -6.9 to -6.7. The last intrusive suite of the Araçuaí Fold Belt is a granite of 503 Ma, Sm-Nd model age between 2.6 and 2.8 Ga and \'\'épsilon\' IND. Nd\' values from -23.8 to -20.8. The principal source of the granites is a rock similar to the Juiz de Fora Complexo material, without consider the G-6 suite, that has involved arquean material. The major part of Sm-Nd model ages doesn\'t have geological meaning and indicates a mixture of paleoproterozoic and neoproterozoic materials.
Karniol, Tiago da Rocha. "Tectônica da conexão do Cinturão Ribeira com a Faixa Araçuaí - Divisa Rio de Janeiro/Espírito Santo." Universidade de São Paulo, 2008. http://www.teses.usp.br/teses/disponiveis/44/44141/tde-12022009-151332/.
Full textLitho-structural characterizations carried out on two transverse sections of the Neoproterozoic Ribeira Belt, in the north portion State of Rio de Janeiro and southern State of Espírito Santo, southeastern Brazil, show that it represents part of the transpressive dextral orogen related to the Central Mantiqueira Province. NNE-trending and steeply-dipping regional mylonitic belts describe a map-scale, S-C-like structure that is characterized by their deflection towards NE near the Além Paraíba shear zone. This geometry is consistent with oblique continental collision considering the São Francisco Craton as a reference. In the Italva (RJ) - Muriaé (MG) section, the shear zones on its eastern part present predominant top to SW, parallel-to-the-orogen, transpressive movements and top-down-to-ESE tectonics on the central-western part of the section related to intermediary-dipping shear zones with frontal lineation. The main shear zones on the Marechal Floriano - Ibatiba (ES) section describe oblique movements with dextral component and top-to-SW tectonic flow, as described in the Guaçuí shear zone. At some outcrops, sinistral structures may reflect antithetic movements on these zones. Lithological and structural control related to deformation partitioning lead to the formation of milonites and felsic mylonitic granulites in ductile shear zones, alternated with less deformed intermediate to basic granulites with charnockitic lenses. Indeed, the anastomosed geometry and fan-like pattern of planar structures, as well as the complex relation with linear elements, may be a result of the transpressive shear. The garnet granulites on the northern region of Rio de Janeiro present chemical equilibrium from 700 to 780 °C and from 7.9 to 9.3 kbar which is higher than the intervals of 600-670 °C and 5,8-6,7 kbar obtained for aluminous gneisses on the eastern portion of the section. These differences on geothermobarometric results, mostly higher considering the nuclei of minerals in relation to its borders, the kinematic characteristics and microstructural pattern of samples suggest a more elevated exhumation rate for the granulites in this orogenic segment. Considering a transpressive regime related to oblique tectonic plates or blocks collision, this process can be explained by the ductile extrusion of infracrustal portions as shown by extensional shear zones described in this work. Because of our investigations, we think that the limit of Ribeira and Araçuaí belts on parallel 21° South, as considered by some authors, is arbitrary. The contrasts on kinematics on both studied sections point to longitudinal variations of deformation path that may reflect boundary condition changes, like the geometry of the craton and rheologic transitions of rocks caused by differential partial melting, that lead to extrusion tectonics with partial preservation of granulitic parageneses on the investigated segment.
Xavier, Bruna Catarino. "Relações tectonicas no setor central da faixa Araçuaí: Análise estrutural por ASM e geocronologia U/Pb e Lu/Hf." Universidade de São Paulo, 2017. http://www.teses.usp.br/teses/disponiveis/44/44141/tde-22082017-094730/.
Full textThe Araçuaí Orogen corresponds the northern part of the Mantiqueira Province, which can be divided into three different structural domains. These areas are involved in thrust systems towards the west and east. The western part corresponds to the Mylonites Domain, constituted by high temperature mylonitic gneisses, the Central Domain is characterized by a huge tonalitic, granodioritic and granitic magmatism dated around 580 Ma, and, the eastern area, described as Anatexis Domain where the Carlos Chagas Leucogranite (CC) is the predominant lithology. The Galiléia Suite constituting by the St. Vitor and Galiléia tonalites, Aimorés Suites, by the Caladão Granite and the Padre Paraíso Charnockite, all theses suites belong to the Central Domain. The Aimorés Suite and the western border of the Carlos Chagas Leucogranite are the focus of this Master thesis, which the goals are a structural study based on Anisotropy of Magnetic Susceptibility (AMS) and a geochronological analysis using U/Pb in zircon and monazite and Lu/Hf in zircon methodologies. The petrographic analysis shows the Caladão Granite as porphyritic granite, with a thick granulation matrix composed of quartz, feldspar, hornblende and biotite. The feldspar crystals can reach 2 to 5 centimeters in size. The Padre Paraíso Charnockite is hypersthene granite; greenish-colored matrix with a coarse granulation composed of quartz, feldspar, hypersthene, biotite and hornblende, the feldspar crystals size can be bigger than 5 centimeters. The Carlos Chagas Leucogranite has medium to coarse granulation that is constituted by quartz, feldspar, biotite, sillimanite, cordierite and garnet, the mineralogy typical of type S granite. Structural analysis using the AMS showed variable magnetic foliation orientations in distinct sectors of the magmatic bodies, compatible with the spatial trend of the pluton, your emplacement, but the orientations of the magnetic lines suggest a predominantly NNE-SSW direction, suggesting a magmatic flow in this direction. Investigations on magnetic mineralogy through thermomagnetic curves showed evidence of iron magnetite and hematite oxides in both the Caladão Granite and the Padre Paraíso Charnockite. The low values of magnetic susceptibility, on the order of 10-4 to 10-5 SI, suggest that paramagnetic minerals essentially control the ASM for these igneous bodies. The AMS ellipsoids are predominantly oblate, characterizing a strong flattening deformation; only locally prolate ellipsoids have been identified. Isotopic analyzes performed at Caladão Granite provided ages ranging from 500.7 ± 1.5 Ma to 512.1 ± 1.5 Ma (zircon) and 445.0 ± 9.5 Ma (monazite), and zircon ages from 498 ± 2.4 Ma to 502.7 ± 1.9 Ma obtained in the Padre Paraíso Charnockite. Older zircon ages determined in the Caladão Granite and Padre Paraíso Charnockite are, respectively, 556.8 ± 3.7 Ma and 576.0 ± 2.2Ma, whose ages were interpreted as inherited zircons that were captured from the host rocks during the plutons emplacement. In the northern sector of the studied area, the CC age of 570.1 ± 1.7 Ma is compatible with the ages that were obtained in the literature, ranging from 572 ± 4 Ma to 597 ± 3 Ma, however in the south of the area some surprisingly younger ages (510.8 ± 1.7 Ma and 520.5 ± 2.5 Ma) in the CC, suggesting diachronic magmatic pulses. The Lu/Hf determinations revealed negative ?Hf values for all studied plutons, showing that they are derived from crustal reworking, from an Archaean and Paleoproterozoic crust. The most Hf model age are 2,0 Ga, however there are some Archean ages ranging from 3.0 to 3.8 Ga. The presence of highly negative values of -20 and -30 for the Caladão Granite are interpreted as largely crustal-derived melts.
Cavalcante, Geane Carolina Gonçalves. "Evolução tectônica e reologia de uma crosta orogênica quente: o caso do Anatexito Carlos Chagas, Faixa Araçuaí (Leste do Brasil)." Universidade de São Paulo, 2013. http://www.teses.usp.br/teses/disponiveis/44/44141/tde-11022014-143756/.
Full textThe Araçuaí belt was formed by the collision between South American and African protocontinents during the Neoproterozoic. Its eastern part consists of an extensive migmatitic area (~300 km long x 50-100 km wide) where crop out anatexites and leucogranites (Carlos Chagas unit), migmatitic kinzigites and granulites that probably are the record of a widespread partial melting of the middle to lower crust. Field observations associated with microstructural evidences indicate that the deformation occurred when the rocks were incompletely solidified. Synkinematic temperature estimates realized using the TitaniQ (titaniun-in-quartz) geotermomether suggest that the minimum temperature for the quartz crystallization is ~750°C. Such temperatures combined with bulk rock composition of leucosome in the anatexites suggest that the viscosity of crustal rocks was dropped to at least 108 Pa s. Low viscosity values associated with field and microstructural evidences are consistent with the generation of at least 30% volume of melt during the orogeny. The presence of large volumes of melt promotes a drastic weakening of the mechanical strength of rocks and suggests that the anatectic crust of the eastern Araçuaí belt represents an analogue of present day hot orogen such the Himalayas. Detailed mineralogy investigation permitted to characterize the paramagnetic behaviour of the anatexites and the ferromagnetic behaviour of the granulites. Crystallographic preferred orientation (CPO) measurements using the EBSD (Electron Backscatter Diffraction) technique reveal that the magnetic foliation results from the preferred orientation of the biotite [001] oriented normal to the flow plane. However, given the feeble linear anisotropy of this mineral, only a subsidiary contribution of its subfabric to the origin of the magnetic lineation (k1) was observed. Correspondence between [001] of feldspars and k1 is due to the CPO of small inclusions of ilmenite that mimic the CPO of their host minerals. Correlation between k1 of the Anisotropy of Anhysteretic Remanent Magnetization (AARM) and k1 of the Anisotropy of Magnetic Susceptibility (AMS) demonstrate that, at the specimen scale, the magnetic lineation has a contribution of the anisotropy of the ferromagnetic minerals. AMS measurements realized to recover the mineral fabric and investigate the migmatitic flow field revealed a complex strain pattern in which, considering the lineation trends, especially, it is possible to characterize three structural sectors. The north region (structural sector 1) with foliations dominantly sub-horizontal and lineation trending NW-SE is interpreted as a region of tectonic escape that may represent a horizontal channel flow. This oblique tectonic escape probably results from gravity forces (gravity-driven flow). The Southern region (structural sectors 2 and 3) with variable trending foliations (NE-SW, E-W and NW-SE) and lineation plunging to North and West, probably reflect a flow regime dominantly influenced by the E-W convergence of the African and South-American continents (collision-driven flow). Altogether, the characteristics of the various domains suggest that the deformation of the partially molten middle crust of the Araçuaí belt was the result of the combination of gravity forces due to the topographic load and tectonic forces due to the convergence between the African and South-American continents.
Conference papers on the topic "Faixa Araçauí"
F. da Silva, Guilherme, Deusavan Sales Filho, Mônica G. Von Huelsen, Amanda Almeida Rocha, Sidinei Sebastião Tomás, José O. de Araújo Filho, and Hortência Sousa Lamblém. "Estudo gravimétrico do limite Cráton São Francisco - Faixa Araçuaí na região de Grão Mogol, Minas Gerais." In Simpósio Brasileiro de Geofísica. Sociedade Brasileira de Geofísica, 2012. http://dx.doi.org/10.22564/5simbgf2012.160.
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