927 resultados para Polymers and plastics


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

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Os óleos vegetais vêm sendo estudados, por alguns anos, de forma intensiva. Entretanto o estudo dessas substâncias apresenta certa dificuldade pelo fato destes óleos apresentarem composições químicas muito complexas. Neste estudo apresentado em forma de dissertação, apresentaremos algumas das formas variadas do espectro Raman do Beta-caroteno e do óleo de buriti em diferentes concentrações e em diferentes meios. O óleo de buriti é uma substância que possui muitas propriedades, entre elas propriedades ópticas e medicinais. É formado por uma composição de várias substâncias graxas e não graxas. Duas das substâncias encontradas no OB também fazem parte de nosso estudo que são o beta-caroteno e o ácido oleico. O beta-caroteno é um carotenoide precursor da vitamina A, muito encontrado em frutos e verduras que apresentam coloração vermelho-alaranjado. O ácido oleico é um ácido graxo muito importante e está presente, quase sempre em grande concentração, na maioria dos óleos vegetais. Com o intuito de estudarmos os espectros Raman desses materiais foram dissolvidos 6,1 mg de beta-caroteno em 50 ml de ácido oléico chamado de solução base. A partir dessa solução, foram misturadas diferentes quantidades de ácido oleico a fim de obtermos soluções mais diluídas, gerando assim soluções de concentrações menores que a solução base, até ser atingido uma concentração próxima a 0% de beta-caroteno. Todas as soluções foram submetidas a agitação mecânica. Uma em especial foi submetida a agitação tanto mecânica quanto ao Ultra-Som. As blendas de PMMA modificados com óleo de buriti foram fabricadas no Laboratório de Químico Física da UNB, numa parceria do Grupo de Polímeros da UNB e do Grupo de Física de Materiais da Amazônia da UFPA. Os resultados mostram que as intensidades Raman aumentam ou diminuem, conforme a concentração de beta-caroteno na solução e de óleo de buriti na blenda. Mostra que em 1656 cm-1 aparece um pico referente a presença de óleo de buriti na blenda e o deslocamento de alguns modos em algumas regiões do espectro da blenda. Com relação ao espectro da solução foi identificado mudança na solução submetida ao ultra-som com o desaparecimento de alguns modos refrentes ao ácido oleico e ao beta caroteno.

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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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The biodegradability properties of poly(epsilon-caprolactone) (PCL) and modified adipate-starch (AS) blends, using Edenol-3203 (E) as a starch plasticizer, were investigated in laboratory by burial tests of the samples in previously analyzed agricultural soil. The biodegradation process was carried out using the respirometric test according to ASTM D 5988-96, and the mineralization was followed by both variables such as carbon dioxide evolution and mass loss. The results indicated that the presence of AS-E accelerated the biodegradation rate as expected.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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This work intends to investigate the biodegradation of the polymers and blend films of polypropylene (PP) and poly(hidroxybutirate-valerate) (PHBV), after UV radiation to facilitate the PP degradation, which is a polymer with long chains difficult to degrade by biological agents present in the environment. This polymer is outstanding by its mechanical properties and versatility of industrial and commercial use and the PHBV by its quick biodegradability in the environment. Blends of these materials could to present a commitment between mechanical properties and biodegradability to execute its function and after the discard to have lesser lifetime in the garbage landfills. Another aspect of this work is the controlling effect of PP on PHBV, influencing its degradation time

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Ciência dos Materiais - FEIS

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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This study investigated the main methods of separation of components of lignocellulosic biomass, with an emphasis on obtaining lignin and its application. The work was developed based on the concept of Biorefinery proposing full use of renewable raw materials and / or the use of lignocellulosic agricultural residues by biochemical or biotechnological conversion in obtaining high value added products with minimal environmental impact. From this premise, a literature review was performed in refereed journal articles and theses in order to gather enough material for critical analysis of usual and alternative methods in the literature. When researching methods that add value to lignin, it was found that with the technology found today, the cost required to have a degree of competitiveness is still too high, preventing much of the process. However, the isolated lignin can be used as raw material in the production of numerous types of biocomposites and polymers and other products such as phenols, benzene, dispersants, vanillin, emulsifying agents, antioxidants, pesticides, fertilizers, charcoal, concrete additives, among others. As an industrial production level is necessary, because the consumption of biomass will only grow over the years, it is necessary that new methods or technologies to be created in order to facilitate the extensive use of lignocellulosic biomass

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This study investigated the main methods of separation of components of lignocellulosic biomass, with an emphasis on obtaining lignin and its application. The work was developed based on the concept of Biorefinery proposing full use of renewable raw materials and / or the use of lignocellulosic agricultural residues by biochemical or biotechnological conversion in obtaining high value added products with minimal environmental impact. From this premise, a literature review was performed in refereed journal articles and theses in order to gather enough material for critical analysis of usual and alternative methods in the literature. When researching methods that add value to lignin, it was found that with the technology found today, the cost required to have a degree of competitiveness is still too high, preventing much of the process. However, the isolated lignin can be used as raw material in the production of numerous types of biocomposites and polymers and other products such as phenols, benzene, dispersants, vanillin, emulsifying agents, antioxidants, pesticides, fertilizers, charcoal, concrete additives, among others. As an industrial production level is necessary, because the consumption of biomass will only grow over the years, it is necessary that new methods or technologies to be created in order to facilitate the extensive use of lignocellulosic biomass

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Low liquid-solid ratio (LSR) can be used to obtain high-content xylo-oligosaccharide (XOS) spend liquor by hot water pretreatment. Developing a technology based on low LSR results in more efficient water usage in the system and thus in lower capital and operating costs. Xylans from xylan rich agro-industrial waste are abundant hemicellulosic polymers with enormous potential for industrial applications. Currently, freeze-dried xylo-oligosaccharides are used as bio-based polymers and hydrolysates containing high xylose contents are converted to several chemical products. In this study, sugarcane bagasse was treated with water at low LSRs and mild temperatures in order to assess the effects of varying the pretreatment conditions on the xylo-oligosaccharide and xylose concentrations, and use a central composite experimental design to optimize the process parameters. The pretreatments were performed in the ranges temperature: 143.3-176.7 degrees C, time: 20-70 min and LSR: 1 : 1 to 11 : 1 (g g(-1)). The maximum concentrations of xylose and xylan were 13.76 and 36.18 g L-1 (equivalent to 48.29 g L-1 of xylan), respectively, which were achieved by treating bagasse at 170 degrees C for 60 min, with LSR of 3 g g(-1). The amount of xylan removed under these conditions was almost 57%. The soluble xylan consisted mainly of xylo-oligosaccharides (74 wt% of the identified compound in the spent liquor).

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Ring Opening Metathesis Polymerization (ROMP) of cyclic olefins is a powerful transition metal-catalyzed reaction for syntheses of polymers and copolymers. The key feature of this reaction is the [2+2]-cycloaddition mechanism, with retention of the olefinic unsaturation in the polymer chain and occurrence of living polymerization. With the development of metal-carbene type catalysts for this process, many addressed polymeric materials have been successfully prepared to be employed in several fields of the science and technology. This review summarizes recent examples of syntheses of polymers with amphiphilic features such as block, graft, brush or star copolymers; as well syntheses of biomaterials, dendronized architectures, photoactive polymers, cross-linked or self-healing materials, and polymers from renewed supplies.