1000 resultados para Análise térmica diferencial
Resumo:
Este trabalho foi realizado com o objetivo de estudar a ocorrência de montmorilonita em solos desenvolvidos do arenito de Botucatu no município de Piracicaba. Tais solos são os seguintes: Regossol (série Ribeirão Claro), Podzólico Vermelho Amarelo-variação Laras (série Ibitiruna) e Regossol "intergrade". para Podzólico Vermelho Amarelo. Foram selecionados cinco perfis, sendo dois pertencentes ao Regossol (perfis P1, e Ρ2), dois ao Podzólico (perfis P3 e P4) e um ao Regossol "intergrade" (perfil Ρ5). As amostras dos cinco perfis, em número de 33, foram tratadas convenientemente para se processar a eliminação de sais solúveis e agentes cimentantes (matéria orgânica, óxidos de ferro livres, etc), e assim facilitar o estudo da fração argila. Nesta fração foram feitas as determinações químicas (% de K2O, silica, alumina e C.T.C.) e mineralógicas (raios X e análise térmica diferencial). Também determinações granulométricas e químicas foram realizadas em todas as amostras. Os perfis Ρ1 e P2, que não apresentaram rocha consolidada, tiveram a caolinita como mineral dominante (acima de 50%). Os perfis Ρ3, Ρ4 e Ρ5, que apresentaram como material de origem a rocha arenítica consolidada, tiveram a montmorilonita como mineral dominante, apresentando todavia, diferenças quanto ao teor desse mineral. Assim, o Podzólico Vermelho Amarelo-variação Laras, que possui o arenito de Botucatu de estratificação plano-paralela como material originário, teve um teor médio de montmorilonita de 35%, enquanto que o Regossol "intergrade" para Podzólico Vermelho Amarelo, com o mesmo arenito, mas de estratificação cruzada como material originário apresentou um teor médio de montmorilonita de 57%. A presença da montmorilonita nestes dois solos se deve a uma herança do material originário e não à formação local, por intemperização. Neste caso, o material originário deve ter tido, em outras épocas, condições favoráveis para a formação deste mineral, ou seja, clima semi-árido, riqueza de Ca, Mg, Na, baixa relação Si/Al e baixo teor de H. Pelos resultados obtidos, os perfis Ρ1 e P2), parecem não pertencer ao arenito de Botucatu. Infelizmente, devido à falta de dados mineralógicos da rocha do arenito de Botucatu de outras regiões do Estado, não foi possível verificar se a ocorrência da montmorilonita é ou não comum neste arenito. Outras pesquisas devem ser executadas visando este objetivo.
Resumo:
Neste trabalho, avaliou-se a influência da mineralogia e o histórico de uso na adsorção e formas de P em Latossolos. Empregaram-se cinco Latossolos (LAx, LAd, LVw e dois LVdf, desenvolvidos de gabro, LVdfg, e de tufito, LVdft), de modo a abranger uma ampla faixa de proporções de hematita, goethita, caulinita (Ct) e gibbsita (Gb). Estes solos foram coletados em áreas nunca cultivadas e em áreas adjacentes já cultivadas por longos períodos, onde receberam calagens e adubações fosfatadas periódicas. Procedeu-se à caracterização física, química e mineralógica, envolvendo: granulometria, Fe em formas menos cristalinas (Feo), óxidos livres (Fed) e "totais" (Fes), além do fracionamento e disponibilidade de P. Com o uso da difração de raios-x, obteve-se a composição mineralógica das frações: argila desferrificada e argila ferro-concentrada, e, por análise térmica diferencial, a razão Ct/(Ct + Gb), na fração argila desferrificada. A adsorção de P foi estudada, empregando-se 24 h de agitação e concentrações de 0; 5; 10; 15; 25; 50; 75; 100 e 200 mg L-1, para calcular a isoterma de adsorção, de onde se obteve a capacidade máxima de adsorção de fósforo (CMAF). Os resultados mostraram que, à medida que a mineralogia dos Latossolos tornou-se mais oxídica, aumentaram a adsorção de P, o teor total e as formas ligadas mais fortemente a Al e Fe. O cultivo influenciou, de modo diferenciado, a adsorção de P e aumentou as formas de P ligado a Ca em todos os solos. As formas pouco lábeis de P predominaram nos Latossolos estudados, destacando-se as orgânicas associadas a compostos húmicos naqueles não cultivados e as inorgânicas ligadas a Fe e Al nos cultivados.
Resumo:
Solos dos tabuleiros costeiros do Estado do Espírito Santo foram estudados, com o objetivo de investigar e inter-relacionar suas características mineralógicas, químicas e micromorfológicas e fornecer subsídios para a reconstrução do ambiente pedogenético. Onze perfis de solos foram descritos, coletados e caracterizados analiticamente. Em amostras de perfis selecionados, determinou-se o Fe extraído pelo ditionito-citrato-bicarbonato de sódio. Determinou-se também o Fe menos cristalino pelo oxalato ácido de amônio e o Si amorfo pelo NaOH 0,5 mol L-1. Nas amostras de mosqueados e nódulos determinou-se a proporção de hematita e goethita e a substituição em Al na goethita. Análises mineralógicas foram realizadas por métodos óticos, difratometria de raios X e análise térmica diferencial. De amostras indeformadas dos horizontes subsuperficiais foram confeccionadas lâminas delgadas para análise micromorfológica. Constatou-se que o ambiente pedogenético atual está propiciando a estabilização da caulinita e formação de goethita, removendo a hematita e possivelmente sendo responsável pelo amarelecimento (xantização) dos horizontes superficiais. O processo de segregação de ferro é evidenciado pelo seu acúmulo nos nódulos e mosqueados em relação à matriz do solo, provavelmente por difusão, sendo a fonte a matriz. Os nódulos e mosqueados vermelhos estão em processo de destruição e não de formação. As gotículas de ferro, que com freqüência ocorrem no interior dos nódulos e concreções, constituem uma etapa do processo de formação ou destruição dessas estruturas.
Resumo:
Pequenas partículas de fase peroviskita de BaMnO3 foram preparadas por dois métodos: a rota da coprecipitação convencional (RCC) e o método convencional de microemulsão (MCM). As técnicas instrumentais utilizadas para caracterizar as amostras foram: microscopia eletrônica de varredura (SEM), difratometria de raios X (XRD), termogravimetria (TG) e análise térmica diferencial (DTA). A síntese de materiais em sistemas coloidais auto-organizados tem por objetivo aumentar a homogeneidade de tamanho e forma das partículas. Nos últimos anos aumentou a busca por materiais mais uniformes visando o aperfeiçoamento da microestrutura. A rota de microemulsão é um método alternativo para a síntese de materiais porque permite o controle da relação entre as concentrações de água e do tensoativo, (w), o qual controla o tamanho das gotículas de microemulsão denominadas microreatores. Peroviskita pura obtida de microemulsão forma-se em temperatura menor do que a fase precipitada, e resulta.em partículas com distribuição de tamanho mais adequada, de aproximadamente 0,1 mm de diâmetro comparado com a média de 0,5 mm das partículas coprecipitadas.
Resumo:
A síntese do complexo sólido de estanho(II)-EDTA é descrita e sua caracterização efetuada através da análise elementar, espectroscopia de absorção na região do infravermelho, difratometria de raios X e ressonância magnética nuclear de ¹H e 13C. O comportamento térmico é avaliado através das curvas termogravimétricas TG e de análise térmica diferencial DTA em atmosferas inerte e oxidante sugerindo etapas de decomposição térmica para o quelato de estequiometria [H2SnH2O(NCH2(CH2COO)2)2].¹/2H2O. As microscopias eletrônicas de varredura demonstram diferentes morfologias para os resíduos óxidos obtidos a 1200ºC em função da razão de aquecimento utilizada.
Resumo:
Foram estudadas madeiras de híbridos de Eucalyptus grandis x Eucalyptus urophylla, em três idades diferentes, com o objetivo de avaliar o comportamento da madeira e do carvão vegetal produzido diante do aumento controlado de temperatura, bem como verificar a influência das características da madeira sobre o carvão vegetal. Foram realizadas análises químicas (extrativos totais, lignina, holocelulose, celulose, cinza e análise elementar) e térmicas (análise termogravimétrica - TG, análise térmica diferencial - DTA e calorimetria 1,67 ºC min-1 e temperatura final de 450 ºC. No carvão vegetal produzido, foram realizadas análise imediata, elementar e térmica. A densidade básica da madeira correlacionou-se positivamente com a relação carbono/ hidrogênio (C/H) e negativamente com os teores de cinza, nitrogênio, oxigênio, enxofre e relação siringil/ guaiacil (S/G). Os teores de cinza, nitrogênio, enxofre e S/G da madeira correlacionaram-se positivamente entre si e negativamente com a variável C/H da madeira. O teor de carbono fixo (TCF), o poder calorífico do carvão vegetal, o teor de carbono elementar e a relação C/H correlacionaram-se positivamente entre si e negativamente com o teor de materiais voláteis (TMV). O teor de lignina correlacionou-se positivamente com o rendimento gravimétrico em carvão (RGC) e negativamente com o TCF.
Resumo:
DUTRA, Ricardo Peixoto Suassuna ; SILVA, Jaquelígia Brito da ; MORAES, Márcio Luiz Varela Nogueira de ; NASCIMENTO, R. M. ; GOMES, Uilame Umbelino ; PASKOCIMAS, Carlos Alberto . Avaliação da potencialidade de argilas do Rio Grande do Norte. Cerâmica Industrial, v. 13, p. 47-50, 2008.
Resumo:
The natural gas is an alternative source of energy which is found underground in porous and permeable rocks and being associated or not to the oil. Its basic composition includes methane, other hydrocarbon and compounds such as carbon dioxide, nitrogen, sulphidric gas, mercaptans, water and solid particles. In this work, the dolomite mineral, a double carbonate of calcium and magnesium whose the chemical formula is CaMg(CO3)2, was evaluated as adsorbent material. The material was characterized by granulometric analysis, X-ray fluorescence, X-ray diffraction, thermogravimetric analysis, differential thermal analysis, specific surface area, porosity, scanning electronic microscopy and infrared spectroscopy. Then the material was functionalized with diethanolamine (dolomite+diethanolamine) and diisopropylamine (dolomite+diisopropylamine). The results indicated that the adsorbents presented appropriate physiochemical characteristics for H2S adsorption. The adsorption tests were accomplished in a system coupled to a gas chromatograph and the H2S monitoring in the output of the system was accomplished by a pulsed flame photometric detector (PFPD). The adsorbents presented a significant adsorption capacity. Among the analyzed adsorbents, the dolomite+diethanolamine presented the best capacity of adsorption. The breakthrough curves obtained proved the efficiency of this process
Resumo:
Brazil is a great ceramic raw materials productor because of the its big number of clay deposits, in various areas of the ceramic industry. Although, the majority of the natural reservations are unknown or not studied yet, so there is no scientific technical dates that can guide their usage and industrial application, as well as the racional and optimazed way of usage by the industrial sector. The state of Maranhão has a gigant mineral wealth as esmectite, bentonite, kaolin, clays, feldspates, marine salt, iron and others, but produce only products with small agregated value compared to the porcelanato, one of the most expensives ceramic cover tiles, the reason for that is the low water absorption (lower than 0,5%), beside present amazing tecnicals features, like mechanical resistence. The main objective of the work is to do the characterization of four clays, with the finallity of find an application by the results and develop formulations to produce porcelanato using these raw materials from Timon-MA. For this were made the raw materials characterization using X ray fluorecence; X ray diffraction; Differencial thermal analysis; Dilatometric analysis and Tecnological properties, planing three formulations that were sinterized at six different temperatures: 1150, 1170, 1190, 1210, 1230 and 1250ºC for 7 minutes. After the sinteratization, the samples were submitted to tension resistance analysis. Were attained two formulations with the requested properties to produce porcelanato
Resumo:
The ceramics industry in Piauí is nowadays with 55 industries where 11 are in Teresina which is the mainstream of the state, producing 55 million shingles; in which 10 % is of this production is wasted being sometimes thrown on the margins of rivers, roads and highways provoking an environmental degradation. The main goal of this work is to verify the potential of producing semi porous ceramic using grog of shingles, on the first part of this work bodies-of-proof were produced from a basic formula of an industry, doping it with 5 %, 10 %, 15 % and 20 % in mass and in the second part of this work some bodies-of-proof were produced from a formula where one raw material was substituted by 50 % of grog and another substituting it all by grog, bodies-of-proof made of a basic formula previously announced was used for experiment control.The grog and the raw materials were characterized by: particle size analysis , thermal differential analysis, X ray diffraction , X ray fluorescence, an thermal gravimetric analysis and rational analyses. The bodies-of-proof were sintetisized in an industrial oven obeying the normal cycle adopted by an industry, with peak temperatures of 1135 oC and a fast burning cycle of 25 minutes having as energetic fuel liquefied petroleum gas . The pieces that were obtained by this were submersed in rehearsed physics of: water absorption of, apparent specific mass, apparent porosity, lineal retraction, rupture tension to the flexural and dilatometry; mineralogical analysis for X ray diffraction; and microstructural for electronic microscope of sweeping. For all the formulas with addition of grog, superior priorities to the requested by the requirements for semi porous and for the formula to F2-2,5 superior priorities to standard formulas which justifies the incorporation of the shingles in mass for the semi porous ceramic
Resumo:
The clay mineral attapulgite is a group of hormitas, which has its structures formed by microchannels, which give superior technological properties classified the industrial clays, clays of this group has a very versatile range of applications, ranging from the drilling fluid for wells oil has applications in the pharmaceutical industry. Such properties can be improved by activating acid and / or thermal activation. The attapulgite when activated can improve by up to 5-8 times some of its properties. The clay was characterized by X-ray diffraction, fluorescence, thermogravimetric analysis, differential thermal analysis, scanning electron microscopy and transmission electron microscopy before and after chemical activation. It can be seen through the results the efficiency of chemical treatment, which modified the clay without damaging its structure, as well as production of polymer matrix composites with particles dispersed atapugita
Resumo:
The present work has as objective the development of ceramic pigments based in iron oxides and cobalt through the polymeric precursor method, as well as study their characteristics and properties using methods of physical, chemical, morphological and optical characterizations.In this work was used iron nitrate, and cobalt citrate as precursor and nanometer silica as a matrix. The synthesis was based on dissolving the citric acid as complexing agent, addition of metal oxides, such as chromophores ions and polymerization with ethylene glycol. The powder obtained has undergone pre-ignition, breakdown and thermal treatments at different calcination temperatures (700 °C, 800 °C, 900 °C, 1000 °C and 1100 °C). Thermogravimetric analyzes were performed (BT) and Differential Thermal Analysis (DTA), in order to evaluate the term decomposition of samples, beyond characterization by techniques such as BET, which classified as microporous materials samples calcined at 700 ° C, 800 º C and 900 º C and non-porous when annealed at 1000 ° C and 1100 º C, X-ray diffraction (XRD), which identified the formation of two crystalline phases, the Cobalt Ferrite (CoFe2O4) and Cristobalite (SiO2), Scanning Electron Microscopy (SEM) revealed the formation of agglomerates of particles slightly rounded;and Analysis of Colorimetry, temperature of 700 °C, 800 °C and 900 °C showed a brown color and 1000 °C and 1100 °C violet
Resumo:
The mining industry is responsible for the generation of waste from their natural process of extraction. The mining impacts in urban areas are of special importance due to the high urban occupation, which are exacerbated due to the proximity of the mined areas and populated areas. Some solutions to wastedisposal have the potential to significantly reduce the environmental risks and liabilities, but represent higher costs in the stages of deployment and operation. The addition of mining waste as raw material in the development of commercial products reduces the environmental impacts, transforming the waste into a positive element in the generation of employment and income. This thesis studies the incorporation of waste iron ore in two clays, one from the ceramic industry of the City of Natal and the other from the ceramic industry of the Seridó Region, both in the State of Rio Grande do Norte, Brazil. Percentages of iron ore waste of 5%, 10% , 15%, 20%, 25% and 30% were used in the tested ceramic matrix. The two clays and the iron ore waste used as part of this investigation were characterized by X-ray diffraction tests, X-ray fluorescence tests, differential thermal analysis, thermogravimetric analysis and dilatometric analysis. The samples were sintered under temperatures of 850 °C, 950 °C and 1050°C at a heating rate of 5 °C/min with isotherms of two hours. The following tests were performed with the samples: linear shrinkage, water absorption, apparent porosity, apparent density, mass loss in fire and bending resistance in order to obtain their physical and mechanical properties. An amount of 5% of waste iron ore in the matrix clay at a temperature of 850 0C resulted in na increase of about 65% in the tensile strength of the clay samples from the Natal ceramic industry. A linear shrinkage of only 0.12% was observed for the samples, which indicates that the physical properties of the final product were not influenced by the addition of the waste
Resumo:
The dielectric porcelain is usually obtained by mixing various raw materials proportions and is used in the production of electronic equipment for various applications, from capacitors of high and low Power to insulators for low, medium, high and extra high voltage, which are used in distribution lines and transmission of electricity.This work was directed to the s tudy of technological properties of technic porcelain, made from raw materials extracted from pegmatites found in the regions of Seridó and the Alto Oeste of Rio Grande do Norte, which are made of kaolin, quartz and feldspar, abundant and high quality in these regions. The technic ceramics were obtained by mixing in appropriate levels, kaolin, feldspar, quartz and clay, the last item from a pottery in the city of Sao Gonçalo do Amarante, Rio Grande do Norte. During the development the following characterizations correlated to raw materials were made: laser particle sizing, x-ray diffraction, DTA and TG. The compositions studied were formed by uniaxial pressing at a pressure of 50 MPa and sintered at temperatures ranging from 1150 to 1350ºC and levels (times) of sintering between 30, 60, 90 and 120 minutes. The characterization of the samples were taken from the analysis of weight loss, linear shrinkage, porosity, stoneware curve, bulk density, flexural strength of three points, SEM and X-ray diffraction, TMA, Dielectric and cross Resistivity. The studied materials can be employed in producing the objects used in electrical engineering such as: insulators for low, medium and high-voltage electrical systems, command devices, bushing insulation for transformers, power capacitors, spark plugs, receptacles for fluorescent and incandescent light bulbs and others
Resumo:
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.