916 resultados para Química do estado sólido


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La asignatura de “Química del Estado Sólido” se imparte actualmente en los Másteres de “Ciencia de Materiales” e “Interuniversitario de Nanociencia y Nanotecnología Molecular”. El programa de esta asignatura en ambos Másteres es ligeramente distinto, ya que en principio así se pensó atendiendo a las particularidades de los objetivos de aprendizaje en cada Máster. Después de la experiencia adquirida tras unos años de funcionamiento de esta asignatura, y dado que la asignatura tiene en ambos Másteres el carácter de “básica”, los autores creen que es posible proceder a una homogeneización curricular con el fin del aprovechamiento de recursos (no sólo humanos, sino también de espacio y tiempo). Esto permite que la asignatura pudiese ser impartida con los mismos objetivos de enseñanza-aprendizaje en ambos Másteres y de manera simultánea. En este trabajos e aborda una propuesta de metodología docente según un enfoque didáctico que cubre las necesidades de formación en ambos Másteres.

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La creciente preocupación por reducir las emisiones de CO2, responsable entre otros del efecto invernadero, ha promovido el desarrollo de vehículos de bajo consumo de combustible, como son los vehículos ligeros, híbridos y vehículos con motores diésel. Los motores diésel tienen varias ventajas sobre los motores de gasolina: menor consumo de combustible (menor producción de CO2), mayor par motor y mayor durabilidad. Sin embargo, la efectividad de los catalizadores de estos vehículos a la hora de eliminar los NOx producidos durante la combustión es limitada, por lo que se buscan nuevas alternativas a los catalizadores clásicos, que puedan eliminar en mayor medida estos compuestos, como la tecnología SCR. Los catalizadores estudiados para esta tecnología son zeolitas intercambiadas con metales de transición, como son el Cu o el Fe, puesto que presentan una muy buena relación entre conversión de los NOx y estabilidad a altas temperaturas.

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The thermoelectric energy conversion can be performed directly on generators without moving parts, using the principle of SEEBECK effect, obtained in junctions of drivers' thermocouples and most recently in semiconductor junctions type p-n which have increased efficiency of conversion. When termogenerators are exposed to the temperature difference (thermal gradient) eletromotriz a force is generated inducing the appearance of an electric current in the circuit. Thus, it is possible to convert the heat of combustion of a gas through a burner in power, being a thermoelectric generator. The development of infrared burners, using porous ceramic plate, is possible to improve the efficiency of heating, and reduce harmful emissions such as CO, CO2, NOx, etc.. In recent years the meliorate of thermoelectric modules semiconductor (TEG's) has stimulated the development of devices generating and recovery of thermal irreversibility of thermal machines and processes, improving energy efficiency and exergy these systems, especially processes that enable the cogeneration of energy. This work is based on the construction and evaluation of a prototype in a pilot scale, for energy generation to specific applications. The unit uses a fuel gas (LPG) as a primary energy source. The prototype consists of a porous plate burner infrared, an adapter to the module generator, a set of semiconductor modules purchased from Hi-Z Inc. and a heat exchanger to be used as cold source. The prototype was mounted on a test bench, using a system of acquisition of temperature, a system of application of load and instrumentation to assess its functioning and performance. The prototype had an efficiency of chemical conversion of 0.31% for electrical and heat recovery for cogeneration of about 33.2%, resulting in an overall efficiency of 33.51%. The efficiency of energy exergy next shows that the use of primary energy to useful fuel was satisfactory, although the proposed mechanism has also has a low performance due to underuse of the area heated by the small number of modules, as well as a thermal gradient below the ideal informed by the manufacturer, and other factors. The test methodology adopted proved to be suitable for evaluating the prototype

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Pectinolytic enzymes, or simply pectinases, are complex enzymes that degrade pectic polymers. They have many uses, such as fruit juice extraction and purification, textile fiber treatment and vegetal oil extraction. The aim of this work was to study the kinetics of pectinases production by solid-state fermentation, using dry cashew apple residue as substrate and the microorganism Aspergillus niger CCT 0916. The influence of the initial medium moisture and medium supplementation with a source of nitrogen and phosphorus was evaluated using the factorial experimental planning and response surface methodology. Ammonia sulphate and potassium phosphate were used as nitrogen and phosphorus source, respectively. The variables time of contact (T) and ratio volume solvent/fermented medium (RZ), in systems with and without agitation, were evaluated in order to study the best extraction condition of the produced enzyme. Washed and unwashed cashew apple residues were tested as the growth medium. The unwashed residue was obtained by drying the residue after the extraction of the juice, while the washed residue was obtained by water washing 5 times using the proportion of 1 kg pulp/2 liters of water. Samples were taken every 12 hours for moisture content, pH, protein, reducing sugars, polygalacturonase activity (PG) and viscosity reduction. The physical-chemical composition of the residues had different sugar and pectin levels. For the unwashed residue, the peak activity was reached with 40% of initial moisture content, 1% of nitrogen supplementation without phosphorus addition after 30 hours of process. These conditions led to 16 U/g of PG activity and 82% of viscosity reduction. The calculated models reached similar values to the experimental ones in the same process conditions: 15.55 U/g of PG and 79.57% of viscosity eduction. Similarly, the greatest enzyme production for washed residue was reached with 40% initial moisture content, 1% nitrogen supplementation without phosphorus addition after 22 hours of cultivation. In this condition it was obtained polygalacturonase activity of 9.84 U/g and viscosity reduction of 81.36%. These values are close to experimental values that were of 10.1 U/g and 81%, respectively. The conditions that led to the best PG activity results was the agitated one and the best extraction condition was obtained with 100 minutes of solvent/medium contact and RZ of 5 (mL/g)

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In the present work, the thermal decomposition step of some lanthanides and yttrium compounds involving different ligand phenyl-substituted derivatives of benzylidenepyruvate was appraised by thermogravimetry (TG). A correlation about the metal ions content was made by comparison of the results obtained by TG and EDTA complexometry.

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Pós-graduação em Microbiologia - IBILCE

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)