97 resultados para Cátodo oco


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uma avaliação do impacto das espécies do nitrogênio e do fósforo foi conduzida nas águas do Rio São Francisco Falso, afluente do Reservatório de Itaipu. Os resultados de quatro campanhas revelam que o estado trófico destas águas oscila de oligotróficas a mesotróficos, sendo que o ultimo estado foi observado em campanhas sobre influência de chuvas. Das espécies do nitrogênio, o NO2 apresentou valores acima dos recomendados pela agência ambiental canadense, representando um risco à vida aquática. Em comparação ao Rio Ocoí, outro afluente do Reservatório de Itaipu, as águas do Rio São Francisco Falso apresentam melhor qualidade.

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Introduction. In utero, l’infection des membranes maternelles et fœtales, la chorioamniotite, passe souvent inaperçue et, en particulier lorsque associée à une acidémie, due à l’occlusion du cordon ombilical (OCO), comme il se produirait au cours du travail, peut entrainer des lésions cérébrales et avoir des répercussions neurologiques péri - et postnatales à long terme chez le fœtus. Il n'existe actuellement aucun moyen de détecter précocement ces conditions pathologiques in utéro afin de prévenir ou de limiter ces atteintes. Hypothèses. 1)l’électroencéphalogramme (EEG) fœtal obtenu du scalp fœtal pourrait servir d’outil auxiliaire à la surveillance électronique fœtale du rythme cardiaque fœtal (RCF) pour la détection précoce d'acidémie fœtale et d'agression neurologique; 2) la fréquence d’échantillonnage de l’ECG fœtal (ECGf) a un impact important sur le monitoring continu de la Variabilité du Rythme Cardiaque (VRCf) dans la prédiction de l’acidémie fœtale ; 3) les patrons de la corrélation de la VRCf aux cytokines pro-inflammatoires refléteront les états de réponses spontanées versus inflammatoires de la Voie Cholinergique Anti-inflammatoire (VCA); 4) grâce au développement d’un modèle de prédictions mathématiques, la prédiction du pH et de l’excès de base (EB) à la naissance sera possible avec seulement une heure de monitoring d’ECGf. Méthodes. Dans une série d’études fondamentales et cliniques, en utilisant respectivement le mouton et une cohorte de femmes en travail comme modèle expérimental et clinique , nous avons modélisé 1) une situation d’hypoxie cérébrale résultant de séquences d’occlusion du cordon ombilical de sévérité croissante jusqu’à atteindre un pH critique limite de 7.00 comme méthode expérimentale analogue au travail humain pour tester les première et deuxième hypothèses 2) un inflammation fœtale modérée en administrant le LPS à une autre cohorte animale pour vérifier la troisième hypothèse et 3) un modèle mathématique de prédictions à partir de paramètres et mesures validés cliniquement qui permettraient de déterminer les facteurs de prédiction d’une détresse fœtale pour tester la dernière hypothèse. Résultats. Les séries d’OCO répétitives se sont soldés par une acidose marquée (pH artériel 7.35±0.01 à 7.00±0.01), une diminution des amplitudes à l'électroencéphalogramme( EEG) synchronisé avec les décélérations du RCF induites par les OCO accompagnées d'une baisse pathologique de la pression artérielle (PA) et une augmentation marquée de VRCf avec hypoxie-acidémie aggravante à 1000 Hz, mais pas à 4 Hz, fréquence d’échantillonnage utilisée en clinique. L’administration du LPS entraîne une inflammation systémique chez le fœtus avec les IL-6 atteignant un pic 3 h après et des modifications de la VRCf retraçant précisément ce profil temporel des cytokines. En clinique, avec nos cohortes originale et de validation, un modèle statistique basée sur une matrice de 103 mesures de VRCf (R2 = 0,90, P < 0,001) permettent de prédire le pH mais pas l’EB, avec une heure d’enregistrement du RCF avant la poussée. Conclusions. La diminution de l'amplitude à l'EEG suggère un mécanisme d'arrêt adaptatif neuroprotecteur du cerveau et suggère que l'EEG fœtal puisse être un complément utile à la surveillance du RCF pendant le travail à haut risque chez la femme. La VRCf étant capable de détecter une hypoxie-acidémie aggravante tôt chez le fœtus à 1000Hz vs 4 Hz évoque qu’un mode d'acquisition d’ECG fœtal plus sensible pourrait constituer une solution. Des profils distinctifs de mesures de la VRCf, identifiés en corrélation avec les niveaux de l'inflammation, ouvre une nouvelle voie pour caractériser le profil inflammatoire de la réponse fœtale à l’infection. En clinique, un monitoring de chevet de prédiction du pH et EB à la naissance, à partir de mesures de VRCf permettrait des interprétations visuelles plus explicites pour des prises de décision plus exactes en obstétrique au cours du travail.

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We have developed an ensemble Kalman Filter (EnKF) to estimate 8-day regional surface fluxes of CO2 from space-borne CO2 dry-air mole fraction observations (XCO2) and evaluate the approach using a series of synthetic experiments, in preparation for data from the NASA Orbiting Carbon Observatory (OCO). The 32-day duty cycle of OCO alternates every 16 days between nadir and glint measurements of backscattered solar radiation at short-wave infrared wavelengths. The EnKF uses an ensemble of states to represent the error covariances to estimate 8-day CO2 surface fluxes over 144 geographical regions. We use a 12×8-day lag window, recognising that XCO2 measurements include surface flux information from prior time windows. The observation operator that relates surface CO2 fluxes to atmospheric distributions of XCO2 includes: a) the GEOS-Chem transport model that relates surface fluxes to global 3-D distributions of CO2 concentrations, which are sampled at the time and location of OCO measurements that are cloud-free and have aerosol optical depths <0.3; and b) scene-dependent averaging kernels that relate the CO2 profiles to XCO2, accounting for differences between nadir and glint measurements, and the associated scene-dependent observation errors. We show that OCO XCO2 measurements significantly reduce the uncertainties of surface CO2 flux estimates. Glint measurements are generally better at constraining ocean CO2 flux estimates. Nadir XCO2 measurements over the terrestrial tropics are sparse throughout the year because of either clouds or smoke. Glint measurements provide the most effective constraint for estimating tropical terrestrial CO2 fluxes by accurately sampling fresh continental outflow over neighbouring oceans. We also present results from sensitivity experiments that investigate how flux estimates change with 1) bias and unbiased errors, 2) alternative duty cycles, 3) measurement density and correlations, 4) the spatial resolution of estimated flux estimates, and 5) reducing the length of the lag window and the size of the ensemble. At the revision stage of this manuscript, the OCO instrument failed to reach its orbit after it was launched on 24 February 2009. The EnKF formulation presented here is also applicable to GOSAT measurements of CO2 and CH4.

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The 2e reduced anion [Mn(CO)3(iPr-DAB)]− (DAB = 1,4- diazabuta-1,3-diene, iPr = isopropyl) was shown to convert in the presence of CO2 and a small amount of water to the unstable complex [Mn(CO)3(iPr-DAB)(η1-OCO2H)] (OCO2H− = unidentate bicarbonate) that was further reductively transformed to give a stable catalytic intermediate denoted as X2, showing νs(OCO) 1672 and 1646 (sh) cm−1. The subsequent cathodic shift by ca. 650 mV in comparison to the single 2e cathodic wave of the parent [Mn(CO)3(iPr-DAB)Br] triggers the reduction of intermediate X2 and catalytic activity converting CO2 to CO. Infrared spectroelectrochemistry has revealed that the high excess of CO generated at the cathode leads to the conversion of [Mn(CO)3(iPr-DAB)]− to inactive [Mn(CO)5]−. In contrast, the five-coordinate anion [Mn(CO)3(pTol-DAB)]−(pTol = 4-tolyl) is completely inert toward both CO2 and H2O (solvolysis). This detailed spectroelectrochemical study is a further contribution to the development of sustainable electro- and photoelectrocatalysts of CO2 reduction based on abundant first-row transition metals, in particular manganese.

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No Brasil nao e raro a criação de Programas pelas autoridades governamentais, para atender. determina da situação conjuntural ou para direcionar os esforços de pro . .' dução a uma atividade específica. Ocorre, porém, na maioria das vezes que não se criam -- simultaneamente ã formulação-instr~ mentos efetivos para sua avaliação e assim, os programas se agigantam e -introdu~em seus próprios mecanismos de de fesa para sua autopreservação. Este trabalho objetiva avaliar um deles --- o PROAGRO - Programa de Garantia da Atividade Agropecuá - ria --- através de uma confrontação entre a visão de seus for muladores e,a dos diversos agentes que atuam na operaciona lização do programa, em uma microrregião homogênea do LB.G. E., constituída pelos segu~ntes municípios: Carazinho, Chap! da, Coronel Bicaco, Palmeira das Missões, Passo Fundo e Santo Augusto, todos situados no Estado do Rio Grande do Sul. Com ênfase nos aspectos de formulação de políticas públicas, este trabalho foi desenvolvido dentro de uma sistemática, cuj as idé"'ias básicas discriminamos a seguir: descrição da importância do PROAGRO e, em virtude dele estar intimamente vinculado ao Sistema Nacional de Crédito Rural, dos objetivos, do desempenho e das disfunções desse Sistema. Como corolário, constata-se que pou cos agricultores têm acesso ao crédito rural institucio na1izado e entre seus beneficiários há uma concentração excessiva dos recursos; - registros dos antecedentes da implantação do seguro agrícola no Brasil, inclusive a experiência frustrada da Companhia Nacional de Seguro Agrícola (1954-1966); - análise do conteúdo formal da política e do desempenho em termos financeiros. ao longo dos se'is primeiros anos de atuação. Em decorrência emerge o fato' de que o programa vem sofrendo constantes déficits e há uma concentração excessiva na utilização de recursos por um tipo de cultura· (trigo) em uma determinada região (Sul); divulgação do resultado da pesquisa-junto aos vários a gentes que atuam no programa e dentre outras conclusões, ·1. constatam-se~indfcios de que o objetivo de auxílio na utilização de tecnologia moderna -- apregoada pelas suas normas -- nãR vem sendo atingido, oco~rendo, em alguns casos, o inverso, ou seja, a acomodação dos agricultores; - descrição dos modelos de seguro agrícola de três ses, Estados Unidos, México e Japão, para fornecer sub sídios ã análise do programa. t marcante a preocupa - ção do governo desses países em manter o programa dentro de critérios exclusivamente técnicos, lastreados em cálculos atuariais para definição dos percentuais de prêmios a serem cobrados; - comparação entre as duas visões descritas e as suges - tões dos modelos de outros países citados. Conclui-se pela necessidade de assegurar ao programa um maior rigor técnico na condução das operações de seguro e com ênfase apenas na forma de administração, propõe-se duas altern~tivas para consolidação do seguro agrícola no Brasil, a saber: 1) o aperfeiçoamento do programa; 2) a transferência gradativa para esfera do Sistema de Seguro Rural, com a vigilância e aporte financeiro do Governo Federal.

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Nesta dissertação foi realizada a modelização numérica das camadas de não-equilíbrio junto aos cátodos e ânodos em descargas de arco de alta pressão. Ao contrário de trabalhos anteriores, a modelização é uni cada, i.e., baseia-se num único conjunto de equações escritas sem suposições simpli cativas tais como equilíbrio térmico, equilíbrio de ionização (Saha) e quaseneutralidade, e não utiliza uma divisão a priori do domínio de cálculo em sub- camadas com propriedades físicas diferentes. Processos de transporte de iões e electrões são descritos no âmbito do modelo de difusão. Foi também desenvolvida uma teoria da camada de ionização junto ao cátodo no âmbito do modelo multi uido. Os resultados obtidos são comparados com dados experimentais. Os resultados da tese elucidam a física de transferência de corrente através das camadas junto aos eléctrodos em descargas de arco de alta pressão, e servem para melhor compreen- der os fenómenos que ocorrem em vários dispositivos industriais, como as lâmpadas de descarga de muito alta pressão e as tochas de plasma.

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Nesta dissertação apresento um estudo detalhado de vários aspectos da interacção entre um plasma de arco de alta pressão e cátodos refractários. Um modelo da camada de plasma junto ao cátodo num plasma sujeito a uma pressão da ordem de uma ou várias atmosferas é reconsiderado com base em recentes resultados teóricos. A física da camada de plasma junto ao cátodo é analisada para valores da queda de tensão na camada de plasma junto ao cátodo até 50V, de acordo com recentes resultados experimentais que mostram que a queda de tensão na camada de plasma junto ao cátodo numa descarga de arco de alta pressão pode atingir valores tão elevados. São identificados os mecanismos que originam a não monotonia da dependência da densidade de fluxo de energia (proveniente do plasma para a superfície do cátodo) em relação à temperatura da superfície do cátodo, para um valor fixo da queda de tensão junto ao cátodo. Uma descrição fechada da interacção plasma-cátodo é obtida por meio da resolução numérica do problema não linear com condições de fronteira para a distribuição da temperatura no interior do corpo do cátodo. São apresentados resultados da modelação numérica da descarga difusa nas condições de funcionamento de uma lâmpada de descarga experimental, sendo bom o acordo entre os resultados numéricos e os dados experimentais. Manchas solitárias num cátodo plano infinito e modos difuso e mancha axialmente simétricos em cátodos finitos de descargas de arco de alta pressão são estudados num grande intervalo de corrente. São analisados aspectos gerais e apresentados resultados numéricos referentes a cátodos de tungsténio planos e de forma cilíndrica a operar num plasma de argon à pressão atmosférica para correntes de arco até 100 kA. Émostrado, em particular, que a temperatura da superfície do cátodo no interior de uma mancha solitária varia relativamente pouco, podendo ser estimada com uma precisão de cerca de 200 − 300K sem ser necesário resolver a equação da condução térmica no corpo do cátodo. O comportamento assimptótico das soluções para um cátodo finito no caso limite de altas correntes é encontrado e confirmado pelos resultados numéricos. É confirmado um padrão geral das características tensão-corrente de vários modos de transferência de corrente em cátodos finitos sugerido previamente com base numa análise de bifurcações. É estudada a transição de modos mancha num cátodo finito no limite de cátodos de grandes dimensões para o modo mancha solitária num cátodo plano infinito. É estabelecido que o modo mancha solitária representa uma forma limite do modo mancha de alta tensão num cátodo finito. É considerada a questão da distinção entre modo difuso e modo mancha num cátodo finito. É desenvolvida uma abordagem para o cálculo de pontos de bifurcação nos quais soluções mancha tridimensionais bifurcam-se a partir de soluções que descrevem o modo difuso e modos mancha axialmente simétricos. Em particular, é calculado o primeiro ponto de bifurcação posicionado na solução que descreve o modo difuso e, por conseguinte, o seu limite de estabilidade, isto é, a corrente abaixo da qual o modo difuso torna-se instável. São apresentados os resultados da modelação numérica efectuada para o caso de um cátodo de tungsténio de forma cilíndrica a operar num plasma de alta pressão. É estudado o efeito produzido no limite de estabilidade pelas variações dos parâmetros de controle (dimensões do cátodo, função de trabalho do material do cátodo, tipo e pressão do gás que produz o plasma). Foi encontrado que o comportamento do limite de estabilidade sujeito a estas variações está em conformidade com as tendências observadas experimentalmente. Foi encontrado que o limite de estabilidade é muito mais sensível às variações dos parâmetros de controle do que as características tensão-corrente do modo difuso, sendo o efeito mais forte produzido pelas variações das dimensões do cátodo e da função de trabalho do material do cátodo. Este resultado está em conformidade com o facto experimental de que a transição difuso-mancha é de difícil reprodução.

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The present work deals with the synthesis of materials with perovskite structure with the intention of using them as cathodes in fuel cells SOFC type. The perovskite type materials were obtained by chemical synthesis method, using gelatin as the substituent of citric acid and ethylene glycol, and polymerizing acting as chelating agent. The materials were characterized by X-ray diffraction, thermal analysis, spectroscopy Fourier transform infrared, scanning electron microscopy with EDS, surface area determination by the BET method and Term Reduction Program, TPR. The compounds were also characterized by electrical conductivity for the purpose of observing the possible application of this material as a cathode for fuel cells, solid oxide SOFC. The method using gelatin and polymerizing chelating agent for the preparation of materials with the perovskite structure allows the synthesis of crystalline materials and homogeneous. The results demonstrate that the route adopted to obtain materials were effective. The distorted perovskite structure have obtained the type orthorhombic and rhombohedral; important for fuel cell cathodes. The presentation material properties required of a candidate cathode materials for fuel cells. XRD analysis contacted by the distortion of the structures of the synthesized materials. The analyzes show that the electrical conductivity obtained materials have the potential to act as a cell to the cathode of solid oxide fuel, allowing to infer an order of values for the electrical conductivities of perovskites where LaFeO3 < LaNiO3 < LaNi0,5Fe0,5O3. It can be concluded that the activity of these perovskites is due to the presence of structural defects generated that depend on the method of synthesis and the subsequent heat treatment

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Alternative and clean energy generation research has been intensified in last decades. Among the alternatives, fuel cells are one of the most important. There are different types of fuel cells, among which stands out intermediate temperature solid oxide fuel cell (IT-SOFC) matter of the present work. For application as cathode on this type of devices, the ceramic Ba0.5Sr0.5C0.8Fe0.2O3-δ doped with rare earth ions (Nd, Sm) have been quite promising because they show good ionic conductivity and operate at relatively low temperatures (500 - 800°C). In this work, Ba0.5Sr0.5Co0.8Fe0.2O3-δ, (BaSr)0.5Sm0.5Co0.8Fe0.2O3-δ and (BaSr)0.5Nd0.5C0.8Fe0.2O3-δ were obtained by modified Pechini method, making use of gelatin as polymerizing agent. The powders were characterized by X-Ray Diffraction (XRD), Temperature Programmed Reduction (TPR) and Scanning Electron Microscopy (SEM). The perovskite phase was observed in all X-ray patterns for the materials Ba0.5Sr0.5C0.8Fe0.2O3-δ doped with rare earth ions (Nd, Sm). The SEM images showed that the materials have a characteristics porous, with very uniform pore distribution, which are favorable for application as cathodes. Subsequently, screen-printed assymmetrical cells were studied by impedance spectroscopy, to assess the kinetics of the cathode for the reduction reaction of oxygen. The best resistance to the specific area was found for the cathode BSSCF sintered at 1050 °C for 4 hours with around 0.15 Ω.cm2 at 750 °C as well as cathodes BSNCF and BSCF obtained resistances specific area of 0.2 and 0.73 Ω.cm2, respectively, for the same conditions. The polarization curves showed similar behavior to the best cathodes BSSCF and BSNCF, such combination of properties indicates that the film potentially depict good performance as IT-SOFC cathodes

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The production of water has become one of the most important wastes in the petroleum industry, specifically in the up stream segment. The treatment of this kind of effluents is complex and normally requires high costs. In this context, the electrochemical treatment emerges as an alternative methodology for treating the wastewaters. It employs electrochemical reactions to increase the capability and efficiency of the traditional chemical treatments for associated produced water. The use of electrochemical reactors can be effective with small changes in traditional treatments, generally not representing a significant additional surface area for new equipments (due to the high cost of square meter on offshore platforms) and also it can use almost the same equipments, in continuous or batch flow, without others high costs investments. Electrochemical treatment causes low environmental impact, because the process uses electrons as reagent and generates small amount of wastes. In this work, it was studied two types of electrochemical reactors: eletroflocculation and eletroflotation, with the aim of removing of Cu2+, Zn2+, phenol and BTEX mixture of produced water. In eletroflocculation, an electrical potential was applied to an aqueous solution containing NaCl. For this, it was used iron electrodes, which promote the dissolution of metal ions, generating Fe2+ and gases which, in appropriate pH, promote also clotting-flocculation reactions, removing Cu2+ and Zn2+. In eletroflotation, a carbon steel cathode and a DSA type anode (Ti/TiO2-RuO2-SnO2) were used in a NaCl solution. It was applied an electrical current, producing strong oxidant agents as Cl2 and HOCl, increasing the degradation rate of BTEX and phenol. Under different flow rates, the Zn2+ was removed by electrodeposition or by ZnOH formation, due the increasing of pH during the reaction. To better understand the electrochemical process, a statistical protocol factor (22) with central point was conducted to analyze the sensitivity of operating parameters on removing Zn2+ by eletroflotation, confirming that the current density affected the process negatively and the flow rate positively. For economical viability of these two electrochemical treatments, the energy consumption was calculated, taking in account the kWh given by ANEEL. The treatment cost obtained were quite attractive in comparison with the current treatments used in Rio Grande do Norte state. In addition, it could still be reduced for the case of using other alternative energy source such as solar, wind or gas generated directly from the Petrochemical Plant or offshore platforms

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In this study, it has been investigated the influence of silver film deposition onto 100% polyester woven and non-woven, on the survival of Escherichia coli and Staphylococcus aureus in contact with these surfaces. The treatment was performedin a chamber containing the working gas at low pressure (~ 10-2 mbar). Some process parameters such as as voltage: 470 V; pressure: 10-2 mbar; current : 0.40 A and gas flow: 6 and 10 cm3/min were kept constant. For the treatments with purêargon plasma using a flow of 6 and 10 cm3/min, different treatment times were evaluated, such as, 10 , 20, 30, 40, 50 and 60 minutes. Contact angle (sessile drop), measurements were used to determine the surface tension of the treated fabrics and its influence on the bacteria grow as weel as the possibilities of a biofilm formation. The formation of a silver film, as well as the amount of this element was verified byEDX technique. The topography was observed through scanning electron microscopy (SEM) to determine the size of silver grains formed on the surfaces of the fabric and assess homogeneity of treatment. The X-ray diffraction (XRD) was used to analyze the structure of silver film deposition. The woven fabric treatments enabled the formation of silver particulate films with particle size larger than the non-woven fabrics. With respect to bacterial growth, all fabrics were shown to be bactericidal for Staphylococcus aureus (S. aureus), while for the Escherichia coli (E. coli), the best results were found for the non-woven fabric (TNT) treated with a flow of 10 cm3/min to both bacteria

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The processing of materials through plasma has been growing enough in the last times in several technological applications, more specifically in surfaces treatment. That growth is due, mainly, to the great applicability of plasmas as energy source, where it assumes behavior thermal, chemical and/or physical. On the other hand, the multiplicity of simultaneous physical effects (thermal, chemical and physical interactions) present in plasmas increases the complexity for understanding their interaction with solids. In that sense, as an initial step for the development of that subject, the present work treats of the computational simulation of the heating and cooling processes of steel and copper samples immersed in a plasma atmosphere, by considering two experimental geometric configurations: hollow and plane cathode. In order to reach such goal, three computational models were developed in Fortran 90 language: an one-dimensional transient model (1D, t), a two-dimensional transient model (2D, t) and a two-dimensional transient model (2D, t) which take into account the presence of a sample holder in the experimental assembly. The models were developed based on the finite volume method and, for the two-dimensional configurations, the effect of hollow cathode on the sample was considered as a lateral external heat source. The main results obtained with the three computational models, as temperature distribution and thermal gradients in the samples and in the holder, were compared with those developed by the Laboratory of Plasma, LabPlasma/UFRN, and with experiments available in the literature. The behavior showed indicates the validity of the developed codes and illustrate the need of the use of such computational tool in that process type, due to the great easiness of obtaining thermal information of interest

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Use of natural fibres as a reinforcement material in the manufacture of composites show a series of advantages: availability, biodegradability, low weight and regeneration in relation to synthetic fibres, thus justifying its utilization. In the present research work, composites were developed with chicken feathers (KF), using unsaturated polyester resin as matrix, for diversified applications, mainly in the furniture/timber industry.At present, in Brazil the chicken feathers are used as part of the animal feed, even though this material possesses low aggregated value. The chicken feathers are hollow, light and resistant. After washing with water at room temperature, a part of the chicken feathers were treated with 2% NaOH. Composites were manufactured using treated and untreated chicken feathers with unsaturated orthothalic polyester resin and 1% peroxide as catalyser, obtained in the commerce. Samples with size 150x25x3 mm for mechanical tests were cut by laser in the composite plate. Mechanical analyses were carried out in the Laboratório de Metais e Ensaios Mecânicos UFRN. All the analyses were in accordance with ASTM standards. SEM analyses were also carried out on the samples.In the analyses of the results obtained, it was observed that the composites made with untreated chicken feathers showed better results (Traction 11.406 MPa and 9.107 MPa Bending 34.947 and 20.918 MPa for samples with and without treatment respectively) compared to the composite with treated feathers. Very low values of the water absorption results, evidenced the impermeability characteristic of the feathers. From the SEM images, the structure, fracture and the fibre/matrix adsorption can be evidenced. In the flammability test, it was observed that despite the feathers having sulfur as a constituent, natural inhibitor of flame, no burning support of the composites, because the manufacturing process of the composite

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Perovskite-like ceramic materials present the general formula ABO3, where A is a rare earth element or an alkaline metal element, and B is a transition metal. These materials are strong candidates to assume the position of cathode in Solid Oxide Fuel Cells (SOFC), because they present thermal stability at elevated temperatures and interesting chemical and physical properties, such as superconductivity, dieletricity, magnetic resistivity, piezoelectricity, catalytic activity and electrocatalytic and optical properties. In this work the cathodes of Solid Oxide Fuel Cells with the perovskite structure of La1-xSrxMnO3 (x = 0.15, 0.22, 0.30) and the electrolyte composed of zirconia-stabilized-yttria were synthesized by the Pechini method. The obtained resins were thermal treatment at 300 ºC for 2h and the obtained precursors were characterized by thermal analysis by DTA and TG / DTG. The powder precursors were calcined at temperatures from 450 to 1350ºC and were analyzed using XRD, FTIR, laser granulometry, XRF, surface area measurement by BET and SEM methods. The pellets were sintered from the powder to the study of bulk density and thermal expansion

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This work studied the degradation of dipyrone, via electrochemical processes and via electro-Fenton reaction using a 4% CeO2/C gas diffusion electrode (GDE) prepared via modified polymeric precursor method. This material was used to electrochemically generate H2O2 through oxygen reduction. The mean crystallite sizes estimated by the Scherrer equation for 4% CeO2/C were 4 nm for CeO2-x (0 4 4) and 5 nm for CeO2 (1 1 1) while using transmission electron microscopy (TEM) the mean nanoparticle size was 5.4 nm. X-ray photoelectron spectroscopy (XPS) measurements revealed nearly equal concentrations of Ce(III) and Ce(IV) species on carbon, which contained high oxygenated acid species like CO and OCO. Electrochemical degradation using Vulcan XC 72R carbon showed that the dipyrone was not removed during the two hour electrolysis in all applied potentials by electro-degradation. Besides, when the Fenton process was employed the degradation was much similar when using cerium catalysts but the mineralization reaches just to 50% at -1.1 V. However, using the CeO2/C GDE, in 20 min all of the dipyrone was degraded with 26% mineralization at -1.3 V and when the Fenton process was employed, all of the dipyrone was removed after 5 min with 57% mineralization at -1.1 V. Relative to Vulcan XC72R, ceria acts as an oxygen buffer leading to an increase in the local oxygen concentration, facilitating H2O2 formation and consequently improving the dipyrone degradation © 2013 Elsevier B.V. All rights reserved.