477 resultados para Poliestireno - Reaproveitamento


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

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Pós-graduação em Engenharia Mecânica - FEG

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Pós-graduação em Engenharia Civil - FEIS

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O Projeto de Extensão foi desenvolvido na Farmácia-Escola Prof. Dr. Antônio Alonso Martinez, que faz parte do NAC (Núcleo de Atendimento à Comunidade), pertencente à Faculdade de Ciências Farmacêuticas da UNESP. Desenvolveu-se um Sistema de Gestão Interno para o controle das amostras grátis e medicamentos que são destinados à doação para a população de Araraquara e região. Realizou-se a orientação e conscientização da população sobre o reaproveitamento de medicamentos e amostras grátis que não seriam mais utilizados e que estavam dentro do prazo de validade. A divulgação foi efetuada com folder explicativo que foi distribuído na Farmácia-Escola, em consultórios médicos e nas faculdades da UNESP do Câmpus de Araraquara. Além disso, houve divulgação na Semana de Atenção Farmacêutica Estudantil (SAFE) e no site e jornal da EPTV. O prazo de validade de cada produto foi verificado e a dispensação desses medicamentos foi feita mediante a apresentação de prescrição médica. Além disso, realizou-se a Assistência Farmacêutica ao informar ao paciente os detalhes da posologia e possíveis interações medicamentosas, de modo a esclarecer eventuais dúvidas dos pacientes. Os medicamentos mais doados foram anti-hipertensivos e hormônios, refletindo no maior número de formas farmacêuticas doadas como sendo comprimidos e cápsulas. O objetivo da divulgação foi alcançado com o aumento de doações realizadas nos meses subsequentes ao início da mesma e com o aumento de 61,9 % em relação ao ano de 2012

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Pós-graduação em Engenharia Civil - FEIS

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Pós-graduação em Engenharia de Produção - FEB

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Pós-graduação em Engenharia Mecânica - FEIS

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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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The aim of this study was to evaluate the fracture resistance of simulated immature teeth after different intra-radicular treatments. Crowns and roots of bovine incisors were cut transversally and removed to simulate immature teeth. Root canal preparation and flaring were performed using a bur in crown-apex and apex-crown direction. The samples were distributed into 5 groups (n=10): Positive control (PoC) - no root canal flaring or filling; Negative control (NeC) - teeth were sectioned and their root canals were flared; Direct anatomical glass fiber post (RaP) - #2 Reforpost main glass fiber post relined with composite resin; Double tapered conical glass fiber posts (ExP) - #3 Exacto glass fiber post; and #2 Reforpost main glass fiber + Reforpin accessory glass fiber posts (RrP). In RaP, ExP and RrP, 4.0-mm apical plugs were done with MTA Angelus. The specimens were embedded in polystyrene resin inside cylinders and the periodontal ligament was simulated with a polyether-based impression material. The specimens were submitted to compressive fracture strength test (0.5 mm/min at 135° relative to the long axis of the tooth) in a servo-hydraulic mechanical testing machine MTS 810. Data were subjected to one-way ANOVA and Dunnett's C or Tukey's tests (α=0.05). The control groups (PoC and NeC) showed lower fracture strength than the experimental groups. NeC presented the lowest resistance and ExP presented the highest resistance among the experimental groups. The flaring procedures produced a detrimental effect on the fracture resistance of the bovine teeth. Glass fiber intra-radicular posts increased significantly the fracture resistance of simulated immature teeth.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)