152 resultados para reator


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Radiopharmaceuticals are substances marked with radionuclides that can be used for detection and treatment of cancer, infections and inflammatory diseases. They emit several types of radiation through different decay routes, each radioisotope with its specific properties and uses. They can usually be produced from several different materials, by bombardment with particle beams in a nuclear research reactor or cyclotron, depending on their characteristics. Brazil has four public institutions which produce - or import - and distribute radiopharmaceuticals to hospitals and clinics throughout its territory. The largest such institution, Ipen, distributes 97% of radiopharmaceuticals used in the country. Some radiopharmaceuticals decay very quickly, meaning they must be produced and quickly administered to the patient in the same location, presenting a logistical challenge. Nuclear medicine in Brazil is a promising field and has been steadily growing, although rigid laws and a lack of qualified work force hinder Research and Development efforts for new radiopharmaceuticals. The construction of a new nuclear research reactor, in 2016, should generate self-sufficiency and economy in radiopharmaceutical production and avoid a future crisis in the supply of technetium-99m, the most important radioisotope, used in over 80% of procedures with radiopharmaceuticals.

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This study aimed to develop, implement and evaluate the performance of a new type of bioreactor for anaerobic treatment of wastewater using different filling materials like trickling filters post-reactor. This bioreactor has mixed characteristics of the UASB reactors and horizontal flow from the point of view of removal of BOD (Biochemical Oxygen Demand) ssed (settled solids), TS (Total Solids), SS (Suspended Solid), SD (Dissolved Solids) and turbidity. The experimental model consists of a bioreactor with a volume of 12 m³, 2/3 filled by fluidized bed and 1/3 for fixed. The fluidized bed is made of polystyrene plates used as a system percolation and compartmentalized trickling filters, where each compartment was filled with a support medium with different characteristics (gravel number 4, plastic rings of polystyrene, PET and HDPE) . In addition, the output of a filter system was installed three entries filled with activated carbon. The bioreactor was installed in private residence in the city of Igarapava-SP (20° 02'40.18"S and 47° 45'01.36" W). The system was highly efficient as the removal of organic contaminant load 92% on average reducing the BOD, a significant result when compared to other anaerobic systems. For the other parameters, the mean reduction was 96% for turbidity, 99% ssed, 67.5% ST, 57% SD and 88% of SS. As for its operation the system was capable of operating in continuous flow without the need for maintenance during the entire period of evaluation and without energy, as it operates taking advantage of the natural slope of the terrain where it is installed. The environmental impacts were minimized due to the preservation of local vegetation allowing the ecosystem to remain unchanged beyond the prototype was completely sealed preventing exhalation of odors and therefore not causing inconvenience to neighboring populations. Given these facts it was concluded that the prototype is shown to be highly feasible deployed as a new alternative for treatment of sewage in rural and urban settings (individual homes, condos, farms, ranches, etc.) Due to ease of design and operability, and sustainability at all stages of execution.

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Pós-graduação em Microbiologia Agropecuária - FCAV

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Pós-graduação em Microbiologia Agropecuária - FCAV

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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

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O presente trabalho foi desenvolvido no Centro de Raízes e Amidos Tropicais – CERAT, Na UNESP em Botucatu, estado de São Paulo onde foram realizados ensaios de fermentação alcoólica com hidrolisado de amido de mandioca. A fécula de mandioca foi utilizada como fonte de carboidrato para obtenção dos açúcares redutores consumidos no processo. Em um reator agitado foi produzido 12Kg de hidrolisado a partir de suspensão de fécula a 30% (p/p) utilizando enzimas alfa amilase na primeira etapa, seguida de amiloglucosidase na etapa posterior. As dosagens em unidades enzimáticas foram 2KNU.g-1 de amido e 2AGU.g-1 de amido respectivamente. O planejamento experimental considerou a realização de três ensaios de hidrolisados e três ensaios de fermentação a partir do mosto produzido; a) mosto aerado; b) com microaeração; c) em meio anaeróbio. Os ensaios foram realizados em erlenmeyers com 2,5 Kg de hidrolisado, ajustado a concentração de glicose a 100g.L-1 sendo inoculada a levedura do gênero Saccharomyces cerevisiae à taxa de 1,5% (p/p). Todos os erlenmeyers foram colocados sob agitação orbital e temperatura controlada de 30ºC sendo acompanhado o processo de fermentação através de coleta de amostras do mosto a cada hora. A aeração nos frascos erlenmeyers foi realizada através de mangueira coletora de válvula que regulava a vazão de ar. De acordo com os dados obtidos pode se concluir que o sistema anaeróbio em 32h foi o mais eficiente para a produção de etanol. Também foi possível observar que enquanto ocorre aeração no meio não se observa alteração significativa na concentração de etanol e quando cessa a aeração o meio torna se anaeróbio e tem início a produção de etanol. Quando aumenta a concentração de etanol no meio, o crescimento celular do sistema anaeróbio cai e etanol inibe a levedura, parando o crescimento celular.

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Aiming to get the best economic advantage in ethanol production from cassava roots, this study presented a physiochemical characterization from two different types of solid waste in two types of processing of the raw materials in manufacturing ethanol. The processing of cassava roots begins with the disintegration and washing the roots with the addition of 20% more water to obtain a pulp which was treated and stirred in the reactor while adding enzyme α-amylase at a temperature of 90°C for 2 hours. Then we performed a pH adjustment while lowering the temperature to 60 ° C with the addition of the enzyme amiloglucosidase and then stirring for 14 hours. The hydrolyzate obtained was the source of two types of waste which are: i) Solid residue obtained after filtration of the hydrolyatze and ii) Solid waste obtained from filtering wine after alcoholic fermentation of the hydrolyzate with the addition of a dried yeast strain Y-940 manufactured by MAURI OF BRAZIL SA (2%) at a temperature of 25º C. The results of the laboratory analysis showed that the byproducts derived from the hydrolysis and fermentation showed very similar chemical compositions. With levels between 39 and 41% fiber, 0.5% lipids, 20 and 30% carbohydrates, protein 0.5 and 1.50, 6 and 8% acidity, and 20 and 30% soluble solids.

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Este estudo avalia o emprego de um respirômetro automatizado com reator hermético rotacional para a avaliação dos parâmetros de O2 e CO2 e as demais variáveis obtidas durante a compostagem de resíduos de lodo de esgoto com podas de grama. O emprego do processo de compostagem tradicional apresenta um alto grau de empirismo utilizado no controle e avaliação do processo, que consiste na leitura diária de temperatura. Neste método os parâmetros de degradação são medidos na fase gasosa do processo de compostagem, determinando a evolução temporal de consumo de O2 e geração de CO2, tendo como vantagens uma maior representatividade, precisão e confiabilidade.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)