940 resultados para Toxicidade do alumínio
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Ethanol production has gained great prominence in the investment new renewable energy sources and Brazil is among the leaders of production. However, this activity generates large amounts of waste being the largest volume of the sugar cane bagasse. For this reason looking up ways to use this material as burning for energy production and composition of forage in the diet of ruminants, however there are difficulties to use this production for this last one. This paper proposes a microbiological treatment with Lentinula edodes and Pleurotus ostreatus in order to enable the bagasse in ruminant feed composition in order to be used more noble than their burning. After treatment with the fungus, tests were performed for quantifying crude protein by the method of Kjeldhal. It was verified that the protein content in the pure bagasse was 1.0% after fermentation the protein content was 4.2% with L.edodes and 4.9% with P. ostreatus. To evaluate the protein quality of the product fermented by L. edodes and P. ostreatus was applied microbiological method for growth of Enterococcus zimogenes verifying that after fermentation the protein quality was 76 and 27.4% with L. edodes and P.ostreatus, respectively, compared with casein. The quantification of amino acids showed significant improvement of protein with altered amino acid profile with treatments of fungos. About of DQO and BOD were also found considerable improvement besides considerable drop in toxicity as measured by acute toxicity test with Daphinia similis
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The project aims to develop ceramic compounds with gradients of the mechanical properties, using the molding technique with commercial starches. To understand the process of interaction between starch and ceramic powders, the proposed methodology involves viscometry tests (up to 200 °C). Viscometric assays were carried out with slurries of alumina, titania and aluminum titanate with potato starch, cassava and corn. The specimens were tested for dilatometry, thermomechanical, thermal shock, mechanical and characterization by SEM. The ceramic powders and starches were analyzed using the optical microscope to measure the size of these. It was made of th kinetics of starch gelatinization and titania with the cornstarch in theoptical microscope to observe how the grains of starch behaved in welling
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It is very important to study the macrostructure of a material in the crude state of solidification due to influence the mechanical properties, as well as the study of their cooling curve. In the present work was to study the alloy AA 356, its macrostructure and its cooling curve. The material was cast in two different molds, a sand and other metallic. In this paper we study the differences in its macrostructure and its cooling curves. In macrostructure can observe the absence of the three zones of solidification and the presence of large pores because of moisture in the sand. In the sample taken from the metal mold can observe the three zones of solidification: a coquilhada, columnar and equiaxed
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Agronomia (Genética e Melhoramento de Plantas) - FCAV
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Pós-graduação em Ciências Ambientais - Sorocaba
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Este trabalho apresenta o uso de energia solar, para o aquecimento de água, através da análise de aquecedores solares industrial e os construídos com garrafas PET com canos condutores de água de cobre, alumínio e PVC, instalados no Centro de Energias Renováveis - CER, do Campus de Engenharia Guaratinguetá. A análise foi realizada com a ajuda de sensores Termopar, software - Contemp View Simple, para obtenção de dados, software Teamviewer para acesso remoto. Sendo feitas as medições concluiu-se qual é o aquecedor mais eficiente a ser utilizado, sempre tendo como objetivo o aproveitamento da energia renovável usando a radiação solar
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This work approaches the main methods of plastic deformation of metals, with a focus on the deep drawing process. The mechanical properties were evaluated with the tension tests. It is presented the aluminum alloys designation, followed by applying heat treatments and the designation of tempers. The manufacture of aluminum beverage cans is described step by step, in general terms. The main objective is to analyze how different cans background geometries have great influence on the dome reversal. To be able to achieve the goal it was necessary to use cans of different manufacturers, which were used in buckle tests to obtain the reversal pressures, tensile tests and geometric analysis. Finally empirical equations were obtained correlating these variables, and it was observed that the conformation of reforming change significantly it's behavior
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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This work will address the study of fatigue conditions with constant load in an alloy of aluminum analysis 7475 - T761, so we can better understand the conditions of the aircrafts which contain this alloy in their structures. A literature review, which was discussed the concepts of fracture mechanics, fatigue, aeronautical components, chemical analysis of aluminum alloys, fatigue problems that appears in the aircrafts, metallographic analysis, and testing of optical microscopy tensile, fatigue and microhardness, surface analysis (MEV) study of the chemical composition of the alloy in question, the main causes of crashes, was performed, completing the work, analysis of data from tensile test, hardness and fatigue together with the interpretation of images of optical microscopy and scanning electron was taken. The data indicated the high mechanical strength of the alloy, along with its microstructure indicating elongated grains and high surface contour, which shows such resistance by hindering the movement of dislocations. The grooves are clearly shown in the MEV images as well as the classic with increased fatigue loading and subsequent reduction of the number of cycles to rupture behavior shown in the graphs. Therefore we observed the optimal behavior is supported by the league when subjected to fatigue loadings
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A inflamação é basicamente uma resposta de proteção tissular cuja função é proteger o organismo de micro-organismos e toxinas que promovem a lesão celular. A resposta inflamatória gera o aparecimento dos quatro sinais cardinais dor, edema, calor e rubor podendo posteriormente ocorrer a perda de função do tecido ou órgão. Os anti-inflamatórios não esteroides (AINEs) promovem sua atividade alterando a atividade de prostaglandinas (PGs), por inibição das isoformas de ciclo-oxigenases constitutivas (COX1) e induzidas (COX2). A inibição não seletiva destas enzimas (por AINEs clássicos) gera reações adversas graves, como as reações gastrointestinais, em pacientes pré-dispostos e/ou que as utilizam por um período prolongado. Os AINEs de segunda geração (inibidores seletivos de COX2), também se mostraram tóxicos, podendo causar alterações cardiovasculares. Neste sentido, o planejamento de novos compostos com atividade anti-inflamatória e destituídos de toxicidade ainda é um desafio para a química farmacêutica e medicinal. Dois derivados de ibuprofeno (AINE clássico) foram obtidos anteriormente no Lapdesf por Castro (2008) e Vizioli (2006), demonstrando atividade anti-inflamatória em modelo de inflamação aguda (edema de pata) e crônica (colite ulcerativa), destituídos de gastroulceração (VIZIOLI, 2009). Diante destes resultados o presente estudo visou à preparação dos compostos e o estudo pré-clínico de toxicidade em dose única (aguda) e em doses repetidas em camundongos, bem como as análises comportamentais, histopatológicas dos órgãos e ensaios bioquímicos. Os achados comportamentais, bioquímicos e histopatológicos permitem concluir que não foi observada toxicidade nos modelos estudados, exceto para o grupo de administração dose única de 2000 mg/kg via intraperitoneal do composto Lapdesf ibu-tau.
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Pós-graduação em Engenharia Mecânica - FEB
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Pós-graduação em Ciência e Tecnologia Animal - FEIS
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Pós-graduação em Cirurgia Veterinária - FCAV