146 resultados para Oxido nitrico


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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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O processo de hidroesterificação (hidrolise seguida de esterificação) se constitui como uma alternativa ao processo convencional de produção de biodiesel, pois permite o uso de matérias-primas de qualquer teor de água e de ácidos graxos. O biodiesel foi gerado a partir da esterificação do óleo de andiroba com alto teor de ácidos graxos sendo utilizado o oxido de nióbio em pó da CBMM (HY-340) como catalisador. Para execução dos experimentos foi utilizado um reator autoclave (batelada). A reação de hidrolise foi conduzida na temperatura de 300°C, ~1200psi e razão molar água/óleo de 20. Nas reações de esterificação foram observados os efeitos da razão molar metanol/acido graxo (1,2; 2,1 e 3,0), da temperatura (150, 175 e 200oC) e da concentração de catalisador (0, 10 e 20% m/m) tendo como resposta a conversão e a taxa inicial da reação. Os dados foram conduzidos segundo um planejamento experimental (fatorial com 23 e adição de 3 pontos centrais) analisado pelo programa Statistica. A conversão das reações de esterificação foi monitorada a partir de medidas titulometricas de acidez das alíquotas, retiradas nos tempos de 5, 10, 15, 20, 25, 30, 45 e 60 min. Nos experimentos de esterificação a maior conversão obtida foi 96,1% com temperatura de 200oC, 20% m/m de catalisador e razão molar metanol/acido igual a 3,0. Eliminando o catalisador e considerando os mesmos niveis para as outras duas variáveis analisadas (temperatura e razão molar), foi obtida uma conversão de 95,3%, porem foi observada uma taxa de conversão menor tendo-se um aumento de 35 minutos no tempo de reação comparando com a reação catalisada.

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Pós-graduação em Microbiologia Agropecuária - FCAV

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Pós-graduação em Zootecnia - FMVZ

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Engenharia Mecânica - FEG

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The Sanding is a complex process involving many variables that affect the quality of the part produced, working mainly in the timber industry in the production of panels (MDF, MDP, HDF, etc...) and furniture. However, these industries use the sanding process empirically, not optimizing it. The aim of this study was to compare the behavior of sandpaper white aluminum oxide (OA-white) and Black silicon carbide (SiC-black), analyzing variables in the process as: strength, power, emission, vibration, wear particle size of sanding, and its consequences on the surface finish of the workpiece. Made the process of plane grinding samples of Pinus elliottii, processed in parallel to the fibers, which were sanded with sandpaper grain OA white and black 3-SiC abrasive conditions (new, moderately eroded and severely eroded) grain sizes in 3 (80, 100, and 120 mesh). 6 replicates was performed for each condition tested. Each trial was captured output variables of the sanding process: strength, power, emission and vibration. With two stages totaling 108 trials. After the sanded samples, it has the same surface quality by raising the surface roughness Ra. Through experiment, it can be concluded that abrasives OA-white tended to have higher strength, power, emissions and less vibration in the sanding process, compared to the SiC-black. However, surface finish exhibited similar to the particle size of 80 to 100 mesh, worn abrasive conditions. However, the particle size of 120 mesh, obtained by the roughness of sandpaper OA-bank was higher compared to SiC-black to all conditions of sandpaper due to its toughness

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In this work, the influence of modifications of the cp-Ti and Ti 6Al 4V alloy, by treating the surface with NaOH and depositing titanium oxide and hydroxyapatite by sol-gel method, on their biocompatibility was studied. The coatings were characterized by scanning electron microscopy and X-ray diffraction which showed that the coatings on Ti 6Al 4V are better than on cp-Ti. Adhesion tests showed that adhesion strength of the coatings on cp-Ti substrate is less than on Ti 6Al 4V as well as cytotoxicity for L929 fibroblast cells is higher

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The research involving new materials has always been considered as a differential in the development of a technology company. This occurred naturally since ancient times, often motivated by reasons of a certain age, where the most common material used was also the name of your time and may be cited as an example the Bronze Age, and later was the Iron. Currently, the use of firearms are they used in resolving conflicts between countries, or a more equivocal, as an instrument of social banditry make innovations in the area of shielding welcome, whether for personal use, in the form of vests or vehicle such as cars, tanks and even aircraft. In this context, is a Silicon Carbide Ceramic, with low density and high hardness. Thus, the aim of this study is the evaluation and comparison of these materials, seeking to improve their properties by means of additives such as boron and silicon metal and amorphous YAG. For this work, the specimens were pre-shaped by means of uniaxial later to be referred for isostatic pressing and sintering. The maximum percentage for each additive was 5%, except for the YAG whose percentage was 8.2% (mass percentage). All compositions were subjected to the same tests (x-ray diffraction, apparent density, optical microscopy, Vickers hardness, scanning electron Microscopita), so that one could draw a comparison between the materials under study, samples that showed better mechanical properties and micro structural, related here by hardness testing and microscopy (optical and SEM) were the silicon carbide doped with YAG and alumina samples, demonstrating the potential of these materials for ballistic protection. Other compositions have high porosity, which is highly undesirable, since in order to harmful influences on the mechanical properties discussed below

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The main objective of the presented study is the design of a analog multiplier-divider as integrant part of the type-reducer circuit of type-2 fuzzy controller chip. The proposed circuit is a multiplier/divider which operates in current mode, in the CMOS technology with a supply voltage of 1.8 V.The circuit simulation was performed in PSPICE software with simulation model provided by AMS (Austria Mikro Systems International) in CMOS technology 0.35μm