999 resultados para Calorimetria exploratória diferencial


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Pós-graduação em Química - IQ

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Pós-graduação em Engenharia e Ciência de Alimentos - IBILCE

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Pós-graduação em Química - IQ

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The PSFC (Pr0.5Sr0.5Fe1-xCuxO3-δ) is a new mixed oxide perovskite and has been studied and evaluated the cathode materials for intermediate temperature solid oxide fuel cells (IT-SOFCs), mainly due to its good compatibility with the electrolyte (CGO) and its high ionic conductivity and electronic in intermediate temperature. In this work, PSFC powders with two different compositions (Pr0,5Sr0,5Fe0,8Cu0,2O3- PSFC5582 and Pr0,5Sr0,5Fe0,6Cu0,4O3-PSFC5564) were synthesized by the citrate method using a new route. The powders obtained were characterized by thermal analysis (Differential Scanning Calorimetry and Thermogravimetry), and the material calcined at 800, 900 and 1000 °C for 5h were analyzed by X-ray diffractometry (XRD), with the Rietveld refinement of the diffraction data and dilatometry. PSFC5582 composite films were obtained by screen printing of powder calcined at 1000 °C. The films were deposited on substrate ceria doped with gadolinia (CGO) and then sintered at 1050 °C for 2h. The electrochemical performance of the electrodes was evaluated by impedance spectroscopy and the interface electrode/electrolyte was observed by scanning electron microscopy (SEM). The specific resistance area (ASR) was 0.44 Ω.cm² at 800 °C, slightly lower than those reported in the literature for cathodes containing cobalt. The thermal expansion coefficients of both the PSFC compositions were obtained and varied between 13 and 15 x 10-6 °C-1 , in a temperature range of 200 to 650 °C, demonstrating the good thermal compatibility of cathodes with Ce0,9Gd0,1O1,95 electrolytes (CET = 12 x 10-6 °C).

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Composite NiO-C0.9Gd0.1O1.95 (NiO-GDC), one of the materials most used for the manufacture of anodes of Cells Solid Oxide Fuel (SOFC) currently, were obtained by a chemical route which consists in mixing the precursor solution of NiO and CGO phases obtained previously by the Pechini method. The nanopowders as-obtained were characterized by thermal analysis techniques (thermogravimetry and Differential Scanning Calorimetry) and calcined materials were evaluated by X-ray diffraction (XRD). Samples sintered between 1400 and 1500 ° C for 4 h were characterized by Archimedes method. The effects of the composition on the microstructure and electrical properties (conductivity and activation energy) of the composites sintered at 1500 ° C were investigated by electron microscopy and impedance spectroscopy (between 300 and 650 ° C in air). The refinement of the XRD data indicated that the powders are ultrafine and the crystallite size of the CGO phase decreases with increasing content of NiO. Similarly, the crystallite of the NiO phase tends to decrease with increasing concentration of CGO, especially above 50 wt % CGO. Analysis by Archimedes shows a variation in relative density due to the NiO content. Densities above 95% were obtained in samples containing from 50 wt % NiO and sintered between 1450 and 1500 °C. The results of microscopy and impedance spectroscopy indicate that from 30-40 wt.% NiO there is an increase in the number of contacts NiO - NiO, activating the electronic conduction mechanism which governs the process of conducting at low temperatures (300 - 500 °C). On the other hand, with increasing the measuring temperature the mobility of oxygen vacancies becomes larger than that of the electronic holes of NiO, as a result, the high temperature conductivity (500-650 ° C) in composites containing up to 30-40 wt.% of NiO is lower than that of CGO. Variations in activation energy confirm change of conduction mechanism with the increase of the NiO content. The composite containing 50 wt. % of each phase shows conductivity of 19 mS/cm at 650 °C (slightly higher than 13 mS/cm found for CGO) and activation energy of 0.49 eV.

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The study aimed at the treatment of attapulgite for the development and characterization of composite recycled low density polyethylene - PEBD_rec embedded with natural attapulgite - ATP_NAT, sifted - ATP_PN and attapulgite treated with sulfuric acid - ATP_TR in different compositions (1, 3 and 5%) and compared with the PEBD_rec. The atapulgitas, natural, screened and treated, were characterized by X-ray diffraction (XRD), X-ray fluorescence (XRF), particle size analysis, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and determining the area specific surface (BET). The composites were characterized by thermogravimetry (TG), differential scanning calorimetry (DSC), Xray diffraction (XRD), torque rheometry, scanning electron microscopy (SEM) and traction. The composite PEBD_rec / ATP (natural, sieved and treated) were produced by mixing in the molten state in a single screw extruder matrix wire with subsequent reprocessing matrix tape. It was found that the screening of attapulgite not reduce the quantity of quartz and the acid treatment completely extracted dolomite aggregate impurities of the channels attapulgite, and increase their surface area. The addition of attapulgite in PEBD_rec acts as a catalyst, reducing the thermal stability of the polymer. The increased concentration of attapulgite, increases resistance and reduces the elongation at break and modulus of elasticity of the composite PEBD_rec / attapulgite

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The high cost of sensitivity commercial calorimeters may represent an obstacle for many calorimetric research groups. This work describes the construction and calibration of a batch differential heat conduction calorimeter with sample cells volumes of about 400 μL. The calorimeter was built using two small high sensibility square Peltier thermoelectric sensors and the total cost was estimated to be about US$ 500. The calorimeter was used to study the excess enthalpy of solution of binary mixtures of liquids, as a function of composition, for the following binary systems of solvents: water + 1,4-dioxane or + dimethylsulfoxide at 298,2 ± 0,5 K.

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This manuscript aims to show the basic concepts and practical application of Principal Component Analysis (PCA) as a tutorial, using Matlab or Octave computing environment for beginners, undergraduate and graduate students. As a practical example it is shown the exploratory analysis of edible vegetable oils by mid infrared spectroscopy.

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This work presents the development of low cost microprocessor-based equipment for generation of differential GPS correction signal, in real time, and configuration and supervision of the GPS base. The developed equipment contains a dedicated microcontroller connected to the GPS receiver, alphanumeric display and multifunction keyboard for configuration and operation of the system and communication interfaces. The electronic circuit has the function of receiving the information from GPS base; interpret them, converting the sentence in the RTCM SC-104 protocol. The microcontroller software makes the conversion of the signal received by the GPS base from the specific format to RTCM SC-104 protocol. The processing main board has two serials RS-232C standard interfaces. One of them is used for configuration and receiving the information generated by the GPS base. The other operates as output, sending the differential correction signal for the transmission system. The development of microprocessor-based equipment showed that it is possible the construction of a low cost private station for real time generation of differential GPS correction signal.

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The aim of this work was to study the effect of the hydrolysis degree (HD) and the concentration (C PVA) of two types of poly (vinyl alcohol) (PVA) and the effect of the type and the concentration of plasticizers on the phase properties of biodegradable films based on blends of gelatin and PVA, using a response-surface methodology. The films were made by casting and the studied properties were their glass (Tg) and melting (Tm) transition temperatures, which were determined by diferential scanning calorimetry (DSC). For the data obtained on the first scan, the fitting of the linear model was statistically significant and predictive only for the second melting temperature. In this case, the most important effect on the second Tm of the first scan was due to the HD of the PVA. In relation to the second scan, the linear model could be fit to Tg data with only two statistically significant parameters. Both the PVA and plasticizer concentrations had an important effect on Tg. Concerning the second Tm of the second scan, the linear model was fit to data with two statistically significant parameters, namely the HD and the plasticizer concentration. But, the most important effect was provoked by the HD of the PVA.

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A configuração glótica varia durante a fonação, mesmo em indivíduos sem queixas vocais e sem alterações ao exame, de acordo com a idade, o sexo, o registro vocal, a freqüência fundamental, a tensão e as lesões. Observa-se junção completa ou incompleta da borda livre da prega vocal; quando incompleta, formam-se fendas de formatos variados. OBJETIVO: Nosso objetivo é encontrar no modo de coaptação glótica, durante a fonação sustentada da vogal /épsilon/ em crianças com alteração estrutural mínima, elementos que permitam diferenciá-lo dos indivíduos com nódulo vocal ou de indivíduos sem queixas vocais. MATERIAL E MÉTODO: Estudo retrospectivo de dados de crianças atendidas no período de 1996 a 2001. A amostra constou de imagens de laringes de crianças que apresentaram diagnóstico de alteração estrutural mínima, nódulo vocal e também de crianças sem queixas vocais, estes denominados normais. Destas imagens foi analisada a configuração glótica durante a fonação da vogal /épsilon/ e realizada análise estatística para a comparação entre os três grupos. RESULTADOS: As fendas triangulares são encontradas nos três grupos, enquanto que a fenda fusiforme só ocorreu nas alterações estruturais mínimas. CONCLUSÕES: A utilização do modo de coaptação glótica em crianças, como critério diagnóstico para diferenciar alteração estrutural mínima de nódulo vocal e de laringe normal, é relevante quando se observa fenda fusiforme, condição encontrada somente nas alterações estruturais mínimas; as fendas triangulares não se mostraram significantes para diferenciar alteração estrutural mínima de nódulo vocal e laringe normal.

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OBJETIVOS: O objetivo deste estudo é determinar a especificidade, sensibilidade e a acurácia da ultra-sonografia (USG) intra-oral e transcutânea no diagnóstico de celulite e abscesso periamigdalianos. FORMA DE ESTUDO: Clínico Prospectivo. MATERIAL E MÉTODO: Trinta e nove pacientes foram atendidos no pronto-socorro de otorrinolaringologia do Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo com diagnóstico clínico de celulite ou abscesso periamigdaliano. Em todos os pacientes, após a avaliação inicial, foram realizadas ultra-sonografias intra-oral e transcutânea. RESULTADOS: O USG intra-oral foi realizado em 35 casos e demonstrou sensibilidade de 95,2%, especificidade de 78,5% e a acurácia de 86,9%. A USG transcutânea foi factível em todos os 39 pacientes e diagnosticou abscesso periamigdaliano em 53,8% dos pacientes. A sensibilidade foi de 80%, a especificidade de 92,8% e a acurácia de 84,5%. CONCLUSÕES: O USG intra-oral foi bastante sensível no diagnóstico de abscessos periamigdalianos. O USG transcutâneo obteve especificidade superior ao intra-oral. Porém, quando o USG transcutâneo foi realizado em pacientes com trismo, este diagnosticou todos os abscessos periamigdalianos, já que se tratava de coleções grandes, comuns em pacientes com trismo. Estes exames tiveram acurácia semelhantes.