7 resultados para filito


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Dissertação de mestrado em Geociências (área de especialização em Valorização de Recursos Geológicos)

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A região semiárida do Nordeste estende-se por aproximadamente 750 mil km², e em suas áreas Pré-Cambrianas predominam solos rasos e pouco desenvolvidos. Grande parte desses solos é classificada, de acordo com o Sistema Brasileiro de Classificação de Solos, como Neossolos Litólicos, Luvissolos e Planossolos. O objetivo deste trabalho foi caracterizar e classificar 12 perfis de solos dispostos em quatro topossequências que representam a ocorrência comum de Luvissolos na região semiárida do Nordeste brasileiro, visando averiguar se podem ser adequadamente classificados no SiBCS. Para isso, foram selecionadas duas topossequências com solos desenvolvidos de gnaisse na região dos Cariris Velhos (PB) e duas no Sertão de Pernambuco, sendo uma com solos desenvolvidos de micaxisto e outra de filito. Após a descrição dos perfis, foram coletadas amostras para a realização das análises físicas e químicas de caracterização. As modificações nos critérios para identificação do caráter crômico introduzidas na segunda edição do SiBCS parecem ter surtido o efeito desejado, pois permitiram a classificação dos dez perfis de solos Brunos Não Cálcicos estudados como Luvissolos Crômicos. Dessa forma, os solos estudados foram adequadamente classificados no SiBCS até o quarto nível categórico, com exceção do perfil de Luvissolo, que apresentou caráter sódico, não contemplado na atual versão do sistema como subgrupo. Com isso, propõe-se a inclusão de um subgrupo sódico dentro da classe dos Luvissolos Crômicos órticos para enquadrar os solos desta classe, que, diferentemente dos solos típicos, apresentam caráter sódico dentro de 100 cm a partir da superfície.

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Estudos sistemáticos sobre os fatores de formação do solo são relativamente escassos no Brasil, em razão da dificuldade de amostrar vários níveis de um fator, mantendo os demais constantes. A região de Lavras, MG, possui grande diversidade geológica em uma área pequena, o que possibilita avaliar o controle exercido por diferentes litologias na mineralogia e nas demais características do solo. Foram selecionados oito solos embasados sobre quartzito, mica-xisto, gabro, itabirito, serpentinito, metacalcário, gnaisse e filito, em condições semelhantes de vegetação (floresta tropical semidecidual), relevo (terço médio de encosta) e clima. Após a descrição dos perfis, coletaram-se amostras dos horizontes e das rochas, e realizaram-se análises físicas e químicas de rotina, composição química total e mineralogia da rocha, da areia e da argila do solo. Todos os solos são pobres em bases trocáveis (exceto o Argissolo sobre itabirito), e notou-se grande variação na composição granulométrica, mineralógica e química. Os teores de Al2O3, SiO2 e Fe2O3 presentes nas rochas não evidenciaram correlação com os respectivos teores nos solos derivados, enquanto o teor de Fe2O3 foi fortemente correlacionado à densidade de partículas e suscetibilidade magnética. Apesar de evidências de material parcialmente alóctone em alguns casos, pôde-se notar forte influência da litologia subjacente na paragênese mineralógica. Os solos foram genericamente agrupados em: cauliníticos com minerais 2:1 (Argissolos sobre mica-xisto e itabirito; e Cambissolo sobre quartzito), cauliníticos (Argissolos sobre gnaisse e filito) e oxídicos (Latossolos sobre metacalcário e gabro; e Plintossolo sobre serpentinito). Os processos de monossialitização e alitização predominam na região, sendo respectivamente associados a rochas com valores intermediários e baixos em sílica, enquanto a presença de minerais 2:1 é acessória à caulinita e parece depender da presença de mica e altos teores de sílica na rocha de origem.

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Over recent years the structural ceramics industry in Brazil has found a very favorable market for growth. However, difficulties related to productivity and product quality are partially inhibiting this possible growth. An alternative for trying to solve these problems and, thus, provide the pottery industry the feasibility of full development, is the substitution of firewood used in the burning process by natural gas. In order to contribute to this process of technological innovation, this paper studies the effect of co-use of ceramic phyllite and kaolin waste on the properties of a clay matrix, verifying the possible benefits that these raw materials can give to the final product, as well as the possibility of such materials to reduce the heat load necessary to obtain products with equal or superior quality. The study was divided into two steps: characterization of materials and study of formulations. Two clays, a phyllite and a residue of kaolin were characterized by the following techniques: laser granulometry, plasticity index by Atterberg limits, X-ray fluorescence, X-ray diffraction, mineralogical composition by Rietveld, thermogravimetric and differential thermal analysis. To study the formulations, specifically for evaluation of technological properties of the parts, was performed an experimental model that combined planning involving a mixture of three components (standard mass x phyllite x kaolin waste) and a 23 factorial design with central point associated with thermal processing parameters. The experiment was performed with restricted strip-plot randomization. In total, 13 compositional points were investigated within the following constraints: phyllite ≤ 20% by weight, kaolin waste ≤ 40% by weight, and standard mass ≥ 60% by weight. The thermal parameters were used at the following levels: 750 and 950 °C to the firing temperature, 5 and 15 °C/min at the heating rate, 15 and 45min to the baseline. The results showed that the introduction of phyllite and/or kaolin waste in ceramic body produced a number of benefits in properties of the final product, such as: decreased absorption of water, apparent porosity and linear retraction at burn; besides the increase in apparent specific mass and mechanical properties of parts. The best results were obtained in the compositional points where the sum of the levels of kaolin waste and phyllite was maximal (40% by weight), as well as conditions which were used in firing temperatures of 950 °C. Regarding the prospect of savings in heat energy required to form the desired microstructure, the phyllite and the residue of kaolin, for having small particle sizes and constitutions mineralogical phases with the presence of fluxes, contributed to the optimization of the firing cycle.

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Pós-graduação em Geologia Regional - IGCE

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The present study aims to evaluate the potential use of bagasse ash from sugar cane (CBC) as a flux, replacing phyllite and/or feldspar in standard industrial mass production of enameled porcelain, verifying the possibility of the CBC contribute to the overall reduction of the coefficient of thermal expansion of the ceramic mass. To this end, as a result of the research, we characterized the raw material components of the standard mass (clay, phyllite, kaolin, feldspar, quartz and talc) and the residue of BCC, by testing by XRF, XRD, AG, DTA and ATG. Specimens (CDP) were manufactured in the dimensions of 100 mm x 50 mm x 8 mm in uniaxial matrix under compaction pressure of 33 MPa, assembled in batches of 3 units subsequently sintered at temperatures of 1150°C to 1210°C by varying the Rating Scale at 10°C, heating and cooling ramp of 50°C/min and 25°C/min, with levels of 1 min, 3 min, 5 min, 8 min, 10 min, 15 min, 30 min and 60 min. analyzing the results of the physical properties of water absorption (WA), linear firing shrinkage (LFS), dilatometric analysis (DTA), flexural strain (SFT) and SEM of the sintered bodies in order to verify the adequacy of CDP to ISO 13006, ISO 10545, NBR 13816 standards; NBR 13817 and NBR 13818. The study showed that the formulations that best suit the requirements of the standards are:. G4 - which was applied in 10% of replacing the CBC phyllite, sintering temperature 1210 ° C for 10 min and porch, and F3 - with application of 7.5% of CBC to replace the feldspar in the sintering temperatures of 1190°C, 1200°C and 1210°C for 10 min and porch. These formulations showed better performance regarding the formation of primary and secondary mullite, with considerable reduction of cracks and pores, meeting the prerequisites of standards for glazed porcelain. The results shows that the use of the CBC as a flux in the preparation of porcelain mass meets standard parameters for the manufacture of the product, and thereby can reduce environmental impact and the cost of production. Therefore, it is recommended to use this residue in the ceramics industry, due to its industrial, commercial and collaborative viability for sustainability.

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Over recent years the structural ceramics industry in Brazil has found a very favorable market for growth. However, difficulties related to productivity and product quality are partially inhibiting this possible growth. An alternative for trying to solve these problems and, thus, provide the pottery industry the feasibility of full development, is the substitution of firewood used in the burning process by natural gas. In order to contribute to this process of technological innovation, this paper studies the effect of co-use of ceramic phyllite and kaolin waste on the properties of a clay matrix, verifying the possible benefits that these raw materials can give to the final product, as well as the possibility of such materials to reduce the heat load necessary to obtain products with equal or superior quality. The study was divided into two steps: characterization of materials and study of formulations. Two clays, a phyllite and a residue of kaolin were characterized by the following techniques: laser granulometry, plasticity index by Atterberg limits, X-ray fluorescence, X-ray diffraction, mineralogical composition by Rietveld, thermogravimetric and differential thermal analysis. To study the formulations, specifically for evaluation of technological properties of the parts, was performed an experimental model that combined planning involving a mixture of three components (standard mass x phyllite x kaolin waste) and a 23 factorial design with central point associated with thermal processing parameters. The experiment was performed with restricted strip-plot randomization. In total, 13 compositional points were investigated within the following constraints: phyllite ≤ 20% by weight, kaolin waste ≤ 40% by weight, and standard mass ≥ 60% by weight. The thermal parameters were used at the following levels: 750 and 950 °C to the firing temperature, 5 and 15 °C/min at the heating rate, 15 and 45min to the baseline. The results showed that the introduction of phyllite and/or kaolin waste in ceramic body produced a number of benefits in properties of the final product, such as: decreased absorption of water, apparent porosity and linear retraction at burn; besides the increase in apparent specific mass and mechanical properties of parts. The best results were obtained in the compositional points where the sum of the levels of kaolin waste and phyllite was maximal (40% by weight), as well as conditions which were used in firing temperatures of 950 °C. Regarding the prospect of savings in heat energy required to form the desired microstructure, the phyllite and the residue of kaolin, for having small particle sizes and constitutions mineralogical phases with the presence of fluxes, contributed to the optimization of the firing cycle.