891 resultados para POROUS ALUMINA


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O presente trabalho consistiu no estudo do uso do etilenoglicol como fonte de carbono visando o recobrimento de uma alumina comercial, produzindo uma alumina recoberta por carbono (ARC). Os materiais preparados foram utilizados como suporte de molibdénio e usados na reação modelo de HDS do tiofeno. De modo a avaliar a influência da fonte de carbono na atividade e seletividade dos catalisadores preparados, foi estudada a variação da temperatura de carbonização e a variação do número de monocamadas teóricas de carbono impregnadas na superfície da γ-alumina. Os diferentes suportes e catalisadores sintetizados foram caraterizados por análise da cor, difração de raios X (DRX), fisissorção de N2, espetroscopia Raman, espetroscopia de refletância difusa na região do IV com transformada de Fourier (DRIFTS), Dessorção a temperatura programada (TPHe) e avaliação catalítica. Os resultados mostraram que com uma monocamada teórica, e para temperaturas inferiores a 700 ºC, a carbonização da fonte de carbono foi incompleta e que apenas para a temperatura de 700 ºC se originou carbono amorfo. Porém, verificou-se ainda que uma monocamada teórica de carbono não foi suficiente para recobrir a superfície da alumina, o que originou a necessidade de estudar a variação do número de monocamadas teóricas. A variação do número de monocamadas teóricas de carbono permitiu concluir que com um número inferior a 3 monocamadas teóricas não se verificou qualquer alteração nas propriedades da alumina. A impregnação de 3, 4, ou 5 monocamadas teóricas foi suficiente apenas para diminuir a área específica, porém não foi possível recobrir totalmente a superfície do suporte. Estes resultados indicam que o motivo pelo qual não foi possível recobrir a superfície do suporte se deve provavelmente à natureza da fonte de carbono utilizado, o etilenoglicol.

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Evaporative cooling is a traditional strategy to improve summer comfort, which has gained renewed relevance in the context of the transition to a greener economy. Here, the potential for evaporative cooling of two common porous building materials, natural stone and ceramic brick, was evaluated. The work has relevance also to the protection of built heritage becauseevaporation underlies the problems of dampness and salt crystallization, which are so harmful and frequent in this heritage. It was observed that the drying rate of the materials is, in some cases, higher than the evaporation rate of a free water surface. Surface area measurements by a three-dimensional optical technique suggested, as probable cause of this behavior, that surface irregularity gives rise to a large effective surface of evaporation in the material. Surface temperature measurements by infrared were performed afterward during evaporation experiments outside during a hot summer day in Lisbon. Their results indicate that ordinary building materials can be very efficient evaporative media and, thus, may help in achieving higher energy efficiency while maintaining a simultaneous constructive or architectural function.

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Esta dissertação teve como objetivo o desenvolvimento de espumas porosas de hidroxiapatite (HA) baseadas em réplicas invertidas de cristais coloidais (ICC) para substituição óssea. Um ICC é uma estrutura tridimensional de elevada porosidade que apresenta uma rede interconectada de poros com elevada uniformidade de tamanhos. Este tipo de arquitetura possibilita uma proliferação celular homogénea e superiores propriedades mecânicas quando comparada com espumas de geometria não uniforme. O cristal coloidal (CC) - o molde da espuma - foi criado por empacotamento de microesferas de poliestireno (270 μm) produzidas por microfluídica e posterior tratamento térmico. O molde foi impregnado com um gel de hidroxiapatite produzido via sol-gel utilizando pentóxido de fósforo e nitrato de cálcio tetrahidratado como percursores de fósforo e cálcio, respectivamente. A espuma cerâmica foi obtida num único passo depois de um tratamento térmico a 1100oC que permitiu a solidificação do gel e a remoção do CC. A análise por espetroscopia de infravermelho por transformada de Fourier (FTIR) e difração de raios-X (XRD) revelou uma hidroxiapatite carbonatada tipo A com presença de fosfatos tricálcicos. As propriedades mecânicas foram avaliadas por testes de compressão. A biocompatibilidade in vitro foi demonstrada através de testes de adesão e proliferação celular de osteoblastos.

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A constante melhoria da eficiência energética dos processos industriais actuais é crucial para o contínuo desenvolvimento sustentável da espécie humana. O estudo das reacções de desidrogenação e hidrogenólise do ciclohexano, sobre catalisadores suportados, pode contribuir para um melhor entendimento acerca dos processos de formação e armazenamento de H2, uma das mais promissoras fontes de energia do futuro próximo, assim como para processos actuais tão importantes como a refinação ou o reforming catalítico do petróleo. Escolheu-se estudar as referidas reacções sobre catalisadores de Ni/α-Al2O3, preparados por três métodos distintos e submetidos a diferentes pré-tratamentos, de modo a realçar a dependência das reacções no que se refere às propriedades catalíticas. A maioria dos estudos anteriores sobre estas mesmas reacções recai sobre catalisadores com metais nobres, como a platina ou o paládio, bastante mais dispendiosos que o níquel para aplicações em larga escala. Os precursores e catalisadores previamente preparados foram submetidos à caracterização por diferentes técnicas: Termogravimetria (sob fluxo oxidativo e não oxidativo), Difracção de Raios-X e Quimissorção de H2. O estudo das reacções de desidrogenação e hidrogenólise do ciclohexano realizou-se recorrendo à análise por Cromatografia Gasosa, utilizando dois cromatógrafos distintos (HEWLETT PACKARD 5890 SERIES II, para GC, e 490 Micro GC Agilent, para Micro GC). Pôde concluir-se que o método de preparação dos catalisadores influenciou a actividade para ambas as reacções, assim como os diferentes pré-tratamentos aplicados. No geral, e na gama de temperaturas estudadas (entre 250 e 310º C), os catalisadores preparados pelo método com etilenodiamina evidenciaram maior actividade para a reacção de desidrogenação, sendo que os catalisadores preparados pelo método com etilenoglicol foram os mais activos para a reacção de hidrogenólise.

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Novel multifunctional porous films have been developed by the integration of magnetic CoFe2O4 (CFO) nanoparticles into poly(vinylidene fluoride)-Trifuoroethylene (P(VDF-TrFE)), taking advantage of the synergies of the magnetostrictive filler and the piezoelectric polymer. The porous films show a piezoelectric response with an effective d33 coefficient of -22 pC/N-1, a maximum magnetization of 12 emu.g-1 and a maximum magnetoelectric coefficient of 9 mV.cm-1.Oe-1. In this way, a multifunctional membrane has been developed suitable for advanced applications ranging from biomedical to water treatment.

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This paper presents a systematic study for the production of poly(vinylidene fluoride-hexafluoropropylene), P(VDF-HFP), porous films using solvent evaporation (SE) and non-solvent induced phase separation (NIPS) techniques. Parameters such as volume fraction of the copolymer solution, film thickness, time exposure to air, non-solvent and temperature of the coagulation bath were investigated on the morphology, crystallization and mechanical properties of the samples. Films with different porous morphologies including homogeneous pore sizes, macrovoids and spherulites were obtained depending on the processing conditions, which in turn affect the wettability and mechanical properties of the material. Knowing that the phase content of the films also depends on the processing conditions, this paper shows that P(VDF-HFP) films with tailored porous morphology, electroactive phase content, hydrophobicity, cristallinity and mechanical properties can be achieved for a specific application using the adequate SE and NIPS techniques conditions.

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A systematic study for the production of porous poly(vinylidene fluoride-trifluoroethylene), P(VDF-TrFE), films using solvent evaporation and non-solvent induced phase separation techniques is presented. Processing parameters such as copolymer volume fraction, solvent, preset exposure time to air before immersion, and non-solvent and temperature of the coagulation bath were varied and the corresponding sample morphology, hydrophobicity, thermal and mechanical properties were determined. Film morphologies including homogeneous pore distributions, micropores, microvoids, spherulites and non-porous films were obtained. The morphology variations strongly influence sample hydrophobicity and mechanical properties. All samples crystallize in the electroactive β-phase with a degree of crystallinity around 30 %.

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Aughinish Alumina Limited (AAL) have an obligation by terms of their Integrated Pollution Control Licence (IPCL) and Planning Permission to establish vegetation on the red mud stack at their plant at Aughinish, Co. Limerick. High pH and high exchangeable sodium percentage are the main known factors limiting the establishment of vegetation on red mud. Gypsum addition has been known to assist in alleviating these problems in other countries. However, there is no experience or published information on red mud rehabilitation under Irish conditions. Red mud with organic and inorganic waste-derived ameliorants as well as selected grassland species were examined under laboratory controlled environment conditions as well as in field plot trials. Also, in order that it would be economically achievable, the research utilised locally available waste products as the organic amendments. Screening trials found that physical constraints severely limit plant germination and growth in red mud. Gypsum addition effectively lowers pH, exchangeable sodium percentage and the availability of A1 and Fe in the mud. A strong relationship between pH, ESP and A1 levels was also found. Gypsum addition increased germination percentages and plant growth for all species investigated. Greenhouse trials demonstrated that organic wastes alone did not greatly improve conditions for plant growth but when used in conjunction with gypsum plant performances for all species investigated was significantly increased. There was a high mortality rate for grasses in non-gypsum treatments. An emerging trend of preferential iron uptake and calcium deficiency in non-gypsum treatments was found at pot screening stage. Species also displayed manganese and magnesium deficiencies.

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Electrokinetic transport, electrochromatography, electroosmotic flow, electrophoresis, concentration polarization, fixed beds, monoliths, dynamic NMR microscopy, quantitative confocal laser scanning microscopy, mathematical modelling, numerical analysis

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Bundle of capillaries, drying kinetics, continuous model, relative permeability, capillary pressure, control volume method

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Magdeburg, Univ., Diss., 2007 (Nicht für den Austausch)

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Magdeburg, Univ., Fak. für Maschinenbau, Diss., 2013

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We prove global well-posedness in the strong sense for stochastic generalized porous media equations driven by locally square integrable martingales with stationary independent increments.

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We present a novel hybrid (or multiphysics) algorithm, which couples pore-scale and Darcy descriptions of two-phase flow in porous media. The flow at the pore-scale is described by the Navier?Stokes equations, and the Volume of Fluid (VOF) method is used to model the evolution of the fluid?fluid interface. An extension of the Multiscale Finite Volume (MsFV) method is employed to construct the Darcy-scale problem. First, a set of local interpolators for pressure and velocity is constructed by solving the Navier?Stokes equations; then, a coarse mass-conservation problem is constructed by averaging the pore-scale velocity over the cells of a coarse grid, which act as control volumes; finally, a conservative pore-scale velocity field is reconstructed and used to advect the fluid?fluid interface. The method relies on the localization assumptions used to compute the interpolators (which are quite straightforward extensions of the standard MsFV) and on the postulate that the coarse-scale fluxes are proportional to the coarse-pressure differences. By numerical simulations of two-phase problems, we demonstrate that these assumptions provide hybrid solutions that are in good agreement with reference pore-scale solutions and are able to model the transition from stable to unstable flow regimes. Our hybrid method can naturally take advantage of several adaptive strategies and allows considering pore-scale fluxes only in some regions, while Darcy fluxes are used in the rest of the domain. Moreover, since the method relies on the assumption that the relationship between coarse-scale fluxes and pressure differences is local, it can be used as a numerical tool to investigate the limits of validity of Darcy's law and to understand the link between pore-scale quantities and their corresponding Darcy-scale variables.

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n this paper the iterative MSFV method is extended to include the sequential implicit simulation of time dependent problems involving the solution of a system of pressure-saturation equations. To control numerical errors in simulation results, an error estimate, based on the residual of the MSFV approximate pressure field, is introduced. In the initial time steps in simulation iterations are employed until a specified accuracy in pressure is achieved. This initial solution is then used to improve the localization assumption at later time steps. Additional iterations in pressure solution are employed only when the pressure residual becomes larger than a specified threshold value. Efficiency of the strategy and the error control criteria are numerically investigated. This paper also shows that it is possible to derive an a-priori estimate and control based on the allowed pressure-equation residual to guarantee the desired accuracy in saturation calculation.