757 resultados para Perfurações de rochas


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No presente trabalho descreve-se o método para determinação de arsênio, antimônio e bismuto em materiais geológicos, utilizando a geração de hidretos acoplado ao ICP-OES, que proporciona a determinação, com exatidão, dos elementos de interesse em concentrações abaixo de 1 ppm. O método é sensível e, por isso, está sujeito a interferências, como as causadas por elementos presentes na matriz. Desenvolveu-se uma técnica de dissolução eficiente e foram realizados diversos tratamentos com dopagens de soluções-padrão e testes com o uso de tiouréia e iodeto de potássio com ácido ascórbico em diferentes concentrações, com o objetivo de minimizar possíveis interferências presentes na matriz. Os resultados finais, mediante a dissolução de material geológico de referência internacional na determinação de arsênio, bismuto e antimônio, mostraram recuperações superiores à 97% em amostras com concentrações abaixo de 1 ppm.

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O Brasil, destacado pela sua espetacular “geodiversidade”, já se coloca no grupo dos grandes produtores e exportadores mundiais do setor de rochas. Sua produção inclui granitos, ardósias, quartzitos, mármores, travertinos, pedra-sabão, serpentinitos, calcários, conglomerados, basaltos, gnaisses foliados e várias outras rochas, somando cerca de 6 milhões de t/ano e abrangendo 600 variedades comerciais, derivadas de 1.500 frentes de lavra. Os 18 arranjos produtivos locais (APL’s) do setor de rochas, identificados no Brasil, envolvem atividades mínero-industriais em 10 estados e 80 municípios, nas regiões Sudeste, Sul, Centro-Oeste, Norte e Nordeste. Mais amplamente, são registrados 370 municípios com recolhimento da CFEM (Compensação Financeira pela Exploração Mineral) para extração de rochas de revestimento. Estima-se a existência de 11.500 empresas do setor de rochas atuantes no Brasil, responsáveis pela geração de 120.000 empregos diretos e por um parque de beneficiamento com capacidade de serragem e polimento para 50 milhões m2/ano em granitos, mármores, travertinos, e de mais 40 milhões m2/ano para rochas de processamento simples, sobretudo ardósias, basaltos laminados, quartzitos e gnaisses foliados. As transações comerciais do setor nos mercados interno e externo, incluindo-se negócios com máquinas, equipamentos e insumos, movimentam cerca de US$ 2,5 bilhões/ano. As exportações do setor somaram US$ 429,4 milhões em 2003 e estão atendendo cerca de 90 países, destacando-se que o Brasil já é o principal fornecedor de granitos beneficiados para os EUA, além de ser o segundo maior exportador mundial de ardósias.

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A redução das emissões de gases de efeito estufa representa um grande desafio tecnológico aos modelos industriais vigentes. Mecanismos de Desenvolvimento Limpo (MDL) e sequestro de CO2 fundamentam grande parte dos planos de crescimento sustentáveis, com vistas à obtenção de níveis mais seguros de CO2. Pesquisas promissoras consideram a técnica de sequestro de CO2, por meio da carbonatação mineral, em que silicatos ricos em magnésio, cálcio, ferro e manganês são transformados em carbonatos. Este trabalho teve por objetivo caracterizar, em caráter preliminar e exploratório, as rochas metamáficas e metaultramáficas dos Complexos Amparo e Itapira, com vistas à avaliação de seu potencial mineral para uso em processos de carbonatação mineral no sequestro de CO2; essas rochas constituem terrenos metamórficos de grau médio a alto, localizadas na região de Itapira, Amparo, Serra Negra e Lindóia (SP). As rochas metamáficas reúnem anfibolitos, actinolita xistos e hornblenditos, e encontram-se na forma de lentes ou camadas estiradas em intercalação com rochas supracrustais. As rochas metaultramáficas ocorrem em corpos pequenos e descontínuos, com composição mineralógica em geral rica em olivina, piroxênio e anfibólio. As rochas avaliadas no presente estudo apresentam potencial para carbonatação mineral, em particular aquelas com teores elevados de magnésio. Dessa forma, podem representar importante prospecto de avaliação de jazidas para utilização em processos de carbonatação mineral.

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Este trabalho descreve um método para quantificar o gás radônio exalado em rochas ornamentais implementado no DPM/IGCE/UNESP de Rio Claro. O gás radônio é radioativo, sendo considerado cancerígeno, o que reforça a necessidade da realização de estudos focando a sua presença no meio ambiente. Alguns métodos para quantificar o radônio exalado de rochas são complicados, precisando de várias etapas em laboratório para que sejam obtidos os dados, o que conduz à perda do gás na medida em que aumenta o tempo para a aquisição dos resultados. A técnica empregada é de fácil uso para se obter os resultados, adquiridos na forma de ciclos de medidas. O principal desafio consistiu no acondicionamento das amostras para a análise em recipiente que mantivesse certa pressão de vácuo interna por período relativamente longo, equivalente aos 25 dias necessários para que o 222Rn atinja seu equilíbrio radioativo, e que permitisse sua conexão ao aparelho medidor do gás sem interferência do ar do meio externo. Os procedimentos permitiram a realização do monitoramento e a quantificação do radônio para várias amostras de rochas ornamentais, contribuindo para o avanço das pesquisas sobre o comportamento e difusão desse gás em materiais pétreos.

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O Maciço Granítico Capão Bonito encontra-se associado à evolução da granitogênese neoproterozóica da Província Mantiqueira Central e localiza-se no sudeste do estado de São Paulo, intrusivo em rochas epimetamórficas do Grupo Açungui (Formação Votuverava) e em rochas do Complexo Granítico Três Córregos. As suas rochas afloram junto à borda da Bacia do Paraná e encontram-se parcialmente encobertas por rochas sedimentares do Grupo Itararé e por sedimentos recentes da Bacia do Paraná. Suas rochas estão distribuídas na forma de um corpo alongado e paralelo a direção NE-SW das principais zonas de cisalhamento. È constituído por sienogranitos vermelhos, holo- a leucocráticos com biotita e rara hornblenda, inequigranulares de granulação média a grossa a porfiríticos e isotrópicos a levemente cataclásticos nas zonas marginais. São rochas pertencentes às séries cálcio-alcalinas alto potássio a shoshonítica ou às séries subalcalinas potássicas e caráter metaluminoso a peraluminoso. O magmatismo é compatível com os granitos do tipo A, tardi-orogênicos a anorogênicos de ambiente intraplaca, a partir da fusão de material da crosta inferior com emplacement associado à estrutura transtensiva correlacionada às zonas de cisalhamentos, em um ambiente extensional ao final do evento colisional da Orogênese Ribeira.

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Geological researches conducted in the past few years detected, through deep drill hole data, the presence of alkaline rocks in the region of Três Fontes-MG, where the Barbacena Group rocks, the Morro do Ferro Greenstone Belt rocks and Araxá/Canastra groups‟ rocks are exposed. This paper aimed the petrographic and chemical characterization of these alkaline rock types, which have not yet been described in the literature. Based on petrographic descriptions and geochemical and Scanning Electron Microscopy analysis, it was possible to characterize the rock in question as lamprophyre, rich in carbonates, phlogopite, pyroxene, olivine, titaniferous opaque minerals and apatite concentrations that reach 7%. This occurrence corresponds to an alkaline intrusion, which caused brecciation of host rocks, possibly indicating that the material is explosive, however, in the study area there was no evidence of volcanic activity on the surface

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The Lavra Velha gold prospect is located in Ibitiara city, in the Espinhaço Setentrional physiographic domain, on the west edge of Chapada Diamantina – central part of Bahia. It is inserting on Gavião Block, a compartment of São Francisco Cráton (Almeida, 1977). The Lavra Velha gold dump is formed by an association of hydrothermal breccia lodged in acid and intermediate rocks, classifying in tonalite, granodiorite and diorite, with high alteration, cut off by a vein and venules system constituted by hydrothermal association composed by hematite, tourmaline, quarz and sericite, located in the north limit of Ibitiara granite. In the regional geological context the area is represented by Archaean rocks (Paramirim Complex) and Paleoproterozoic rocks (Ibitiara granitoid and Matinos Granite) constituted the basement, following by paleo to mesozoic pluton-vulcanic-sedimentary association of Rio dos Remédios Group, intruded by mafic rocks. It was used geochemistry and petrographic analysis compiling to field works data to characterize the rocks where the gold mineralization is inserting. Previously these rocks were classifying in volcanic rocks of Novo Horizonte Formation. Developing this monograph’s work the petrogenetic characteristics suggesting that these rocks called volcanic actually belong to Ibitiara granitoid as a portion more metamorphosed. The green schist is the predominant metamorphism in the area with low deformation, associated to high concentration of fluid circulating. The hydrothermal alteration is the process responsible for rocks modifications and strong sericitization generalize

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Although several studies of Araxá Group in the region of Passos, just a few works deal with the age of metamorphism of this group. The current work aims to determine the cooling age of these rocks by in situ U-Pb dating in rutiles. Interestingly, the region of São Sebastião do Paraíso shows a condensed lithostratigraphic column from the Passos Nappe and exposes the higher metamorphic grade rocks described for this unit. The use of rutile as a geochronometer is based on its ability to incorporate U in its structure, facilitating the calculation of the age of the isotope ratio by U-Pb. Furthermore, the use of in situ dating technique with Laser Ablation has been a reliable and advantageous study because the analysis are punctual, and do not destroy the whole sample to be analyzed. The analyses of this work were made at the University of Gothenburg - Sweden and obtained 238U/206Pb ages between 608-566 ± 10 Ma and 235U/207Pb between 627-572 ± 10 Ma, showing that these ages are concordant with the literature in the area and are interpreted as the cooling age of metamorphism

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This study focuses on metasedimentary rocks from the Passos Nappe in São Sebastião do Paraíso, southern Minas Gerais, Brazil. These rocks belong to the Internal Domain (Araxa Group) of the Southern Brasilia Belt, a Neproterozoic orogenic belt associated to the formation of the Gondwana Supercontinent. Rocks from the studied area are characterized by an inverted metamorphic gradient. Previously calculated metamorphic conditions show an increasing from geenschist facies at the base (450°C, 6 kbar), to upper amphibolite facies (750°C, 11 Kbar) at the top of the sequence. However, most of these estimates are based on Fe-Mg exchange thermometers and peak temperatures may be underestimated due to Fe-Mg exchange from cooling after peak metamorphism. In this study, we present new PT results for these rocks, based on metamorphic mineral assemblage LA-ICP-MS analyses. In the studied area, rocks from the top of the sequence have a typical granulite facies mineral assemblage: Grt+Ky+Kfs+/-Pl+liq. These rocks lack muscovite and have only minor amounts of Ti-rich, dark brown biotite. In a simplified NaKFMASH system the stability field for this mineral assemblage is bounded by the reactions Sil = Ky on the low pressure side, Ms+Ab = Ky+Kfs+liq on the low temperature side and for high-Mg bulk compositions Bt + Grt = Opx + Ky + liq on the high-temperature side. Minimum temperatures (considering post-peak reequilibration) of ca. 750°C are obtained by Fe/(Fe+Mg) values of 0.7 in garnets from a Grt+Ky+Kfs bearing sample. LA-ICP-MS results obtained for three samples show that rutiles included in garnets have up to 1847 ppm of Zr, which would translate into temperatures up to 830°C for a pressure between 12 to 15 kbar. Also for retroeclogite sample, the results indicate the contents of Zr in the garnet 537 ppm at a temperature of 708 ° C. It is noteworthy that several occurrences of retroeclogites occur in the upper part of the sequence and pressures...

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Pós-graduação em Engenharia Mecânica - FEG

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The endodontic perforations are iatrogenic communications that result in a communication between the endodonto and periodontium. This occurrence represents about 10 % of cas- es of failure in endodontic treatment. The management may vary and is related to the drilling site endodontic. This paper aims to report a case of iatrogenic perforation and one of the possible alternatives for the treatment of endodontic perforations -level cervical tooth. During the opening coronary perforation occurred due to improper slope cervical penetration drill. Considering the drilling site, we opted for sealing com- posite resin after surgical access and absolute isolation. After sealing, the channel was filled with medication and instru- mented based on calcium hydroxide. Later the canal was obturated by lateral condensation technique with Sealapex. The radiographic follow-up showed regression of the lesion and the clinical silence confirmed the success of the treatment.

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Geophysical survey is an important method for investigation of contaminated areas used in the characterization of contrasting physical properties in the presence of pollutants. This work applied the geophysical methods of Electrical Resistivity and Self Potential in waste landfill, located in Caçapava do Sul city, RS. The landfill is located over fractured metamorphic rocks. Eight lines of electrical profiling with 288 measures of self potential were done. In addition, 83 measurements of direction and dip of fractures were taken. The application of spontaneous potential method permitted to detect the direction of groundwater flow. The electrical resistivity measurements allowed the identification of low-intensity anomalies associated with the presence of leachate. There is a relationship between anomalous zones and the directions of fractures.

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The region Indiara (GO) is located in southwestern of São Francisco Craton in the Internal Zone of the Brasília Belt, western part of the Tocantins Province. In this locality outcrop rocks of the Goiás Magmatic Arc. These rocks are muscovite gneiss with biotite, muscovite-biotite gneiss, biotite gneiss with muscovite and garnet, biotite-muscovite gneiss, muscovite porfiroclastic gneiss, biotite porfiroclastic gneiss, muscovite-quartz schists, garnetquartz schists, and metamafic rock (hornblende schists) as metric or kilometric lenses. The gneisses have granodioritic composition, granoblastic texture, with some portions with lepidoblastic texture, constituting a discontinuous centimeter to millimeter banding; the structure is anisotropic, marked by the preferred orientation of all the minerals. These gneisses are leucocratic, generally are inequigranular and fine to medium grained. The hornblende schists have nematoblastic texture, are inequigranular and fine to medium grained and have anisotropic structure that is given by a foliation, marked by a strong preferential orientation of the crystals of amphibole and other minerals present in the rock. The gneisses of the area are composed of plagioclase (oligoclase/andesine), quartz, microcline, muscovite, biotite, epidote, apatite, zircon, garnet, kyanite, oxides and hydroxides of iron and opaque minerals. And the metamafic rocks of Indiara region are composed mainly of amphibole, plagioclase (oligoclase/andesine), quartz, titanite, biotite, allanite, garnet, oxides and hydroxides of iron, apatite, epidote, rutile, muscovite and opaque minerals. At least three phases of deformation were observed in the rocks of area of study (Dn-1, Dn and Dn +1). The Dn phase and represented by a well-marked foliation Sn having low dip angle (average dip of 20 °) and dip direction to SW (210/21) and to NE (18/20); the Dn-1 phase is represented by a compositional banding (Sn- 1), this banding is generally...

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The towns of Castro Alves and Rafael Jambeiro, central-east of Bahia state, are located in the east of São Francisco Craton, in granulite terrains of Salvador-Curaçá Belt, formed in Paleoproterozoic. The region of study contains ortognaisses of Caraíba Complex, metamafic and metaultramafic rocks of São José do Jacuípe Suite, metasedimentary rocks of Tanque Novo-Ipirá Complex, granitoids, pegmatites and alkaline rocks. The study carried out regional and detailed geological mapping in addition to petrographical and geochemical characterization of six areas in the search for targets of feldspar and white diopside, minerals used in ceramic industry. The areas consist of granitic ortognaisses interspersed with lenses of mafic granulite rocks, calc-silicate rock, banded iron formations, paragnaisses, quartzites, and bodies of quartz-feldspar or feldspar pegmatites and alkaline rocks that fill discontinuities. The region of study contains four deformations phases, with a predominance of ductile structures. The foliation Sn has N30E to N70W direction, high angle of dip and is characterized by compositional banding of granoblastic and felsic bands interspersed with nematoblastic or lepidoblastic mafic bands. A mineral or stretching lineation Ln is associated with Sn and has trend of S55E to S72E. The rocks have been suffered a regional metamorphism with granulite facies peak and partial retrogression to greenschist facies. Geochemical studies indicate that the green coloring calc-silicate rocks have lower SiO2, MgO and higher Fe2O3 content compared with white calcssilicate rocks. The alkaline rocks of the studied area have higher Na2O, SiO2 and lower K2O, Fe2O3 content compared with others Paleoproterozoic alkaline rocks of Bahia state. The targets of diopside are associated with white calc-silicate rocks, while the targets of feldspar are associated with paragnaisses, pegmatites and alkaline rocks