186 resultados para sinérese de espuma


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The search for sustainable technologies that can contribute to reduce energy consumption is a great challenge in the field of insulation materials. In this context, composites manufactured from vegetal sources are an alternative technology. The principal objectives of this work are the development and characterization of a composite composed by the rigid polyurethane foam derived from castor oil (commercially available as RESPAN D40) and sisal fibers. The manufacture of the composite was done with expansion controlled inside a closed mold. The sisal fibers where used in the form of needlepunched nonwoven with a mean density of 1150 g/m2 and 1350 g/m2. The composite characterization was performed through the following tests: thermal conductivity, thermal behavior, thermo gravimetric analysis (TG/DTG), mechanical strength in compression and flexural, apparent density, water absorption in percentile, and the samples morphology was analyzed in a MEV. The density and humidity percentage of the sisal fiber were also determined. The thermal conductivity of the composites was higher than the pure polyurethane foam, the addition of nonwoven sisal fibers will become in a higher level of compact foam, reducing empty spaces (cells) of polyurethane, inducing an increase in k value. The apparent density of the composites was higher than pure polyurethane foam. In the results of water absorption tests, was seen a higher absorption percent of the composites, what is related to the presence of sisal fibers which are hygroscopic. From TG/DTG results, with the addition of sisal fibers reduced the strength to thermal degradation of the composites, a higher loss of mass was observed in the temperature band between 200 and 340 °C, related to urethane bonds decomposition and cellulose degradation and its derivatives. About mechanical behavior in compression and flexural, composites presented a better mechanical behavior than the rigid polyurethane foam. An increase in the amount of sisal fibers induces a higher rigidity of the composites. At the thermal behavior tests, the composites were more mechanically and thermally resistant than some materials commonly used for thermal insulation, they present the same or better results. The density of nonwoven sisal fiber had influence over the insulation grade; this means that, an increaser in sisal fiber density helped to retain the heat

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Pigeonpea protein concentrate was prepared from full-fat decorticated raw flour. The water holding capacity of pigeonpea flour of decorticated seeds is 75% and its oil absorption capacity a 30%. The water holding capacity of the protein concentrate is three times the dry weight. The oil absorption capacity of the concentrate was 1,29 mL oil/g protein. The whipping capacity of the pigeonpea flour and its protein concentrate were evaluated.

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There are several difficulties in the control of quick spreading and highly contagious poultry diseases such as avian influenza and Newcastle disease, which require large numbers of poultry to be rapidly killed inside the poultry houses in order to minimize human exposure and disease spreading. We have built and tested an equipment that uses a waterbased foam from high expansion fire detergent that induces poultry anoxia measured by sensorial signs, time to death, lethality and macro and microscopically lesions. Two hundred 78-weeks old hens were divided into ten groups and exposed to different times of death according to exposure to water-foam varying from 5min30s to 8min15s. All poultry died after six minutes of water-foam cover. Foam bubbles were observed in oral cavity and trachea of all poultry at each time of exposure to foam, revealing physical asphyxia. Macroscopically, congestion in oral cavity and in trachea mucosa was observed. Histopathology revealed diffuse and moderate hemorrhage in lungs and no lesion in trachea. The efficacy of water-foam procedure for poultry depopulation was demonstrated validating its recommendation in case of emergency.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The industrial development has created many environmental problems that can be observed through the changes in air, soil and water. The pollution of water bodies with compounds present in textile effluents cause beyond the visual pollution, changes in biological cycles, mainly by changing the process of photosynthesis. Due to these environmental implications it is necessary a treatment of livestock manure. The process of adsorption of the dye is a technique that has been successfully employed for effective removal of the color of the effluent. The purpose of this study was to investigate the application of a polyurethane foam plant of castor oil as an alternative adsorbent for removal of dyes in textile effluents. The study was conducted with the dye “luganil azul”, as adsorbent and the foam in a flexible manner and sprayed. It also investigated the influence of pH on the adsorption dye. The kinetic data were obtained, noting that the pH influence on adsorption. Adsorption isotherms of the dye in aqueous solution using the foam in a flexible manner also were determined experimentally.

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

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A produção de mudas é um dos pontos cruciais nos empreendimentos florestais e diversos trabalhos procuraram identificar o método mais adequado de produção. Neste estudo, avaliou-se o uso da espuma fenólica na substituição de recipientes e de substrato na produção de mudas clonais de eucalipto. Foram implantados quatro experimentos, sendo dois de viveiro (experimentos 1 e 2) e dois de campo (experimentos 3 e 4) em locais e períodos distintos. Todos os experimentos foram compostos por quatro tratamentos: 1 - tubete de 55 cm³ + substrato comercial; 2 - espuma pequena (60 cm³); 3 - espuma média (75 cm³); e 4 - espuma grande (90 cm³). Nos experimentos, avaliouse a mortalidade das mudas e a biomassa do sistema radicular e da parte aérea. No experimento 1, as mudas produzidas nas espumas pequenas obtiveram menor índice de mortalidade (1%), enquanto no sistema convencional foi de 15% e observou-se superioridade na produção de biomassa aérea das mudas produzidas na espuma grande. No experimento 2, as mudas produzidas na espuma apresentaram maior sensibilidade ao excesso de água durante a fase de enraizamento, sendo a mortalidade de 40 % para os tratamentos com a utilização da espuma que foi superior ao tratamento convencional (16%). No experimento 3, conduzido no campo, não foi observada mortalidade das mudas ou diferenças na produção de biomassa entre os tratamentos. No experimento 4, observou-se maior resistência ao déficit hídrico nos tratamentos com as espumas média e grande e maior produção de biomassa aérea no tratamento com a espuma grande.

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Este título parafrasea el trabajo del filósofo alemán Peter Sloterdijk con un doble propósito, propagar un modelo nuevo de producción social y denunciar la falta de atención que la industria cultural arquitectónica ha tenido sobre las experimentaciones y utopías de la arquitectura española Por lo menos, hay dos casos que son ejemplares dentro del periodo pre-democrático en España y que pueden constituir un precedente de las actuales “arquitecturas de espuma”. Uno de ellos es Emilio Pérez Piñero con los globos-esfera desplegables y el otro uno de nuestros arquitectos más activistas, José Miguel de Prada Poole y su experimentación con burbujas-espuma y globos hinchables. En este texto lo que he hecho es re-visitar la producción de estos arquitectos españoles desde la perspectiva que ofrecen las nuevas teorías del filósofo Peter Sloterdijk.

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