998 resultados para Materiais provisórios


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Os diversos materiais orgânicos e as proporções usadas como substratos na produção de mudas de goiabeira podem fazer a diferença na qualidade final, trazendo benefícios ao produtor e ao meio ambiente. O objetivo da pesquisa foi avaliar o efeito de fontes e as proporções de materiais orgânicos na germinação de sementes e no crescimento de plantas jovens de goiabeira. O experimento foi realizado no período de setembro de 2010 a março de 2011, na Fazenda Experimental do Instituto Federal de Educação, Ciência e Tecnologia da Paraíba, Câmpus Sousa, localizado no Perímetro Irrigado de São Gonçalo, Município de Sousa, Paraíba. O delineamento experimental foi em blocos completos casualizados, em esquema fatorial 3x4 (esterco bovino, esterco ovino e húmus de minhoca, nas seguintes proporções: 0;20; 40 e 60%), com quatro repetições e dez plantas por unidade experimental. As características avaliadas foram: comprimento da parte aérea, diâmetro do caule, massa seca da parte aérea, massa seca das raízes, massa seca total e os teores de macronutrientes (N, P, K, Ca, Mg e S) na massa seca da parte aérea. O esterco de ovino e o húmus de minhoca são as fontes orgânicas que proporcionam os mais altos valores médios para as características morfológicas avaliadas. A proporção de 40% do material orgânico, independentemente da fonte usada, favoreceu o crescimento das mudas de goiabeira. Proporções crescentes das fontes orgânicas no substrato provocam redução no teor de fósforo.

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Considerando a importância das moscas-das-frutas para a fruticultura e a importância da fruticultura de caroço para o Estado de São Paulo, foi instalado experimento em cultivo comercial no município de Jundiaí-SP, com o objetivo de avaliar a eficiência do ensacamento de ameixas em cultivo orgânico. Os tratamentos utilizados foram: testemunha (sem proteção), sacolas de papel branco impermeável, sacolas de tecido não tecido (TNT) branco, de diferentes dimensões, e sacolas de polipropileno microperfuradas transparentes. O ensacamento dos frutos foi efetuado em 30-09-2011, quando eles apresentavam cerca de um a dois centímetros de diâmetro, em pomar que não recebeu nenhum tratamento fitossanitário para controle de moscas. A colheita dos frutos foi realizada em 30-12-2011, e os frutos avaliados em relação à coloração e à perda pelo ataque de moscas, na colheita e na pós-colheita. Todos os tratamentos avaliados controlaram a mosca-das-frutas, destacando-se o TNT, com apenas 4% de infestação dos frutos, podendo-se concluir ser este material eficiente para redução de perdas, podendo viabilizar o cultivo orgânico da ameixa.

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As dependências energética e angular de diferentes materiais termoluminescentes foram estudadas com o objetivo de verificar que tipo de detector seria o mais adequado para a monitoração de trabalhadores envolvidos com a radiação beta. Três tipos de pastilhas de CaSO4:Dy + teflon foram estudados. A dependência energética foi verificada usando-se fontes padrões de radiação beta (147Pm, 204Tl e 90Sr+90Y). A dependência angular foi verificada irradiando-se as amostras com feixes de radiação beta, variando-se o ângulo de incidência entre 0° e 90°. Os dosímetros de CaSO4:Dy + teflon + 10% C mostram-se os mais adequados para uso na monitoração de trabalhadores expostos à radiação beta, em relação às características estudadas.

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A simple chemical method has been developed to quantify the silanol groups (º Si-OH) in silica as well as in coated chromatographic supports for use in packed - column Gas Chromatography. After adsorption of 10 mg/mL methylene blue, centrifuging action and filtration, the absorbance of the solution was inversely proportional to the silanol quantity. The difference between the absorbance of the pure solution and that of the solid - free filtrate was related to the silica weight, yielding a quantitative analysis of these groups.

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Several aspects of the Chemistry of Materials in Brazil will be focused using, as a data source, the activities of the Chemistry of Materials Division of the Brazilian Chemical Society. Evaluations, suggestions and prospectives are made on attempt to overcome challenges and difficulties of this emergent and important area of the chemical research.

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Little is known about the amount of water and ash in brazilian foodstuffs and plants. The relationships between fresh, dry and ash weight were determined in 40 different biological samples. It could be an important tool when one studies biological material containing low concentration of the chemical elements. This study address to determine these relationships and to provide the amount of biological material that one needs to collect. It aims to supply information that could be used to improve the detection limit, precision and accuracy of the analytical methodology utilized.

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Some aspects of electrochromism phenomena are presented in this review paper. A deep literature revision about the subject dealing with materials and device configurations developed in the last years, is presented. Great efforts of the scientific community have been done in this field. On the other hand, new electrochomic devices based on reversible deposition of metals are specially emphasized here. These devices present many advantages such as simple operation and construction and they have also shown high cycling rates. These factors make them suitable for application in display industry. In this way, many concepts used in the developement of electrodeposition baths are very useful for the improvement of these new devices; specially, all knowledge about the use of additives for modifying films microstructure and morfology.

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The Vashishta-Rahman effective interaction potential, based on the Pauling's concept of "ionic radii", has been successfully employed to investigate structural and dynamical properties of different classes of material. By celebrating Pauling's birth centenary, we review the building up of the Vashishta-Rahman potential and we present molecular-dynamics simulation results for structure and dynamics of superionic materials, chalcogenide glasses and metallic oxides.

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In this work, cathodes employed in secondary lithium batteries are reviewed. These cathodes have great technologic and scientific importance, specifically, materials for cathodes as electronic conductor polymers (ECP), transition metal oxides (TMO) and nanocomposites of ECP/TMO. The use of a specific cathodic material is based in some intrinsic characteristics that improve the performance of the battery. Thus, some vantages and disvantages of these insertion compounds are discussed, as lithium insertion capacity, energy density, and the ciclability of these materials.

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Materials obtained during the synthesis of octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX) were characterized by Fourier transform infrared (FTIR) transmission spectroscopy and/or Fourier transform infrared photoacoustic spectroscopy (FTIR-PAS). By these techniques the spectrometric alterations that occurred during the process were observed. The characterized species during the synthesis of HMX were alpha-HMX, beta-HMX, hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) and HMX/RDX mixtures. The FTIR-PAS was verified to be a promising technique of great usefulness of the characterization of highly energetic materials because it is fast, simple and requires no sample preparation unlike Fourier transform infrared transmission technique (KBr pellet). The FTIR-PAS analysis showed that with small sample quantity is possible to distinguish between thealpha-HMX and beta-HMX and to detect even in a qualitative way different HMX / RDX ratios.

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The use of sol-gel materials to develop new biosensors has received great attention due to its characteristics and versatility of sol-gel process. An overview is presented of the state-of-the-art of electrochemical biosensors employing sol-gel materials. Low-temperature, porous sol-gel ceramics represent a new class for the immobilization of biomolecules. The rational design of sol-gel sensing materials, based on the judicious choice of the starting alkoxide, encapsulated reagents, and preparation conditions, allows tailoring of material properties in a wide range, and offers great potential for the development of electrochemical biosensors.

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Communications on Chemistry of Materials topics were already presented in the first annual meetings of the Brazilian Chemical Society, dispersed throughout various meeting sections. The SBQ Materials Chemistry division was organized in 1993, attracting those members with an interest in the composition, structure and properties of materials, as related to their functions. This paper is an account of the development of Materials Chemistry research in Brazil, based on the SBQ annual meetings data.

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Today satellites propulsion is based on the use of monopropellant and/or bipropellant chemical systems. The maneuvering of satellite is based on the hydrazine decomposition micropropulsors catalyzed by metallic iridium supported on g-alumina. This reaction is a surface reaction and is strongly exothermic and implies that the operation of the micropropulsor is controlled by the mass and heat diffusions. For this reason and for the fact that the propulsor operation is frequently in pulsed regime, the catalyst should support high pressure and temperature variations within a short time period. The performance and the durability of the commercial catalyst are jeopardized by the low thermal conductivity of the alumina. The low thermal conductivity of the alumina support restricts the heat diffusion and leads to the formation of hot spots on the catalyst surface causing the metal sintering and/or fractures of the support, resulting in loss of the activity and catalyst destruction. This work presents the synthesis and characterization of new carbon composite support for the active element iridium, in substitution of the commercial catalysts alumina based support. These supports are constituted of carbon nanofibers (30 to 40 nm diameter) supported on a macroscopic carbon felt. These materials present high thermal conductivity and mechanical resistance, as well as the easiness to be shaped with different macroscopic shapes. The mechanical stability and the performance of the iridium supported on the carbon composite support, evaluated in a laboratory scale test in hydrazine decomposition reaction, are superior compared to the commercial catalyst.

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An overview about the role of alkoxides in the most recent uses of the sol-gel process in the synthesis of new materials is presented. Special attention is focused on the uses of silicon, aluminum, zirconium and titanium alkoxides. This review shows that the alkoxides enable the synthesis of new matrices with controlled surface area, acidity and porosity, as well as some unusual properties. The property associated with the solubility of metal alkoxides opens enormous possibilities of combining them for the synthesis films of powders with a very large range of metal compositions.

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Associating the well known advantages of hybrid materials to the wide potential of nanomaterials, the new and featuring class of polymer nanocomposites turned into one of the most intensively researched areas. This review highlights recent developments in the field of the synthesis of polymer based nanocomposites. Important issues related to the surface modification of fillers, in order to promote the compatibility between the inorganic/organic components, are also reported. The enhancement of the physical properties and the potential applications of polymer nanocomposites are considered in typical examples, given for each synthetic method described.