249 resultados para brometo de metila


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Currently the search for new materials with properties suitable for specific applications has increased the number of researches that aim to address market needs. The poly (methyl methacrylate) (PMMA) is one of the most important polymers of the family of polyacrylates and polymethacrylates, especially for its unique optical properties and weathering resistance, and exceptional hardness and gloss. The development of polymer composites by the addition of inorganic fillers to the PMMA matrix increases the potential use of this polymer in various fields of application. The most commonly used inorganic fillers are particles of silica (SiO2), modified clays, graphite and carbon nanotubes. The main objective of this work is the development of PMMA/SiO2 composites at different concentrations of SiO2, for new applications as engineering plastics. The composites were produced by extrusion of tubular film, and obtained via solution for application to commercial PMMA plates, and also by injection molding, for improved the abrasion and scratch resistance of PMMA without compromising transparency. The effects of the addition of silica particles in the polymer matrix properties were evaluated by the maximum tensile strength, hardness, abrasion and scratch resistance, in addition to preliminary characterization by torque rheometry and melt flow rate. The results indicated that it is possible to use silica particles in a PMMA matrix, and a higher silica concentration produced an increase of the abrasion and scratch resistance, hardness, and reduced tensile strength

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Studies indicate that a variation in the degree of crystallinity of the components of a polymer blend influences the mechanical properties. This variation can be obtained by subjecting the blend to heat treatments that lead to changes in the spherulitic structure. The aim of this work is to analyze the influence of different heat treatments on the variation of the degree of crystallinity and to establish a relationship between this variation and the mechanical behavior of poly(methyl methacrylate)/poly(ethylene terephthalate) recycled (PMMA / PETrec) with and without the use of compatibilizer agent poly(methyl methacrylate-al-glycidyl methacrylate-al-ethyl acrylate) (MMAGMA- EA). All compositions were subjected to two heat treatments. T1 heat treatment the samples were treated at 130 ° C for 30 minutes and cooled in air. In T2, the samples were treated at 230 ° C for 5 minutes and cooled to approximately -10 ° C. The variation of the degree of crystallinity was determined by the proportional relationship between crystallinity and density, with the density measured by pycnometry. The mechanical behavior was verified by tensile tests with and without the presence of notches and pre-cracks, and by method of fracture toughness in plane strain (KIC). We used the scanning electron microscopy (SEM) to analyze the fracture surface of the samples. The compositions subjected to heat treatment T1, in general, showed an increase in the degree of crystallinity in tensile strength and a tendency to decrease in toughness, while compositions undergoing treatment T2 showed that the opposite behavior. Therefore, this work showed that heat treatment can give a polymer blend further diversity of its properties, this being caused by changes in the crystal structure

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This work studied the immiscible blend of elastomeric poly(methyl methacrylate) (PMMA) with poly(ethylene terephthalate) (PET) bottle grade with and without the use of compatibilizer agent, poly(methyl methacrylate-co-glycidyl methacrylate - co-ethyl acrylate) (MGE). The characterizations of torque rheometry, melt flow index measurement (MFI), measuring the density and the degree of cristallinity by pycnometry, tensile testing, method of work essential fracture (EWF), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were performed in pure polymer and blends PMMA/PET. The rheological results showed evidence of signs of chemical reaction between the epoxy group MGE with the end groups of the PET chains and also to the elastomeric phase of PMMA. The increase in the concentration of PET reduced torque and adding MGE increased the torque of the blend of PMMA/PET. The results of the MFI also show that elastomeric PMMA showed lower flow and thus higher viscosity than PET. In the results of picnometry observed that increasing the percentage of PET resulted in an increase in density and degree crystallinity of the blends PMMA/PET. The tensile test showed that increasing the percentage of PET resulted in an increase in ultimate strength and elastic modulus and decrease in elongation at break. However, in the phase inversion, where the blend showed evidence of a co-continuous morphology and also, with 30% PET dispersed phase and compatibilized with 5% MGE, there were significant results elongation at break compared to elastomeric PMMA. The applicability of the method of essential work of fracture was shown to be possible for most formulations. And it was observed that with increasing elastomeric PMMA in the formulations of the blends there was an improvement in specific amounts of essential work of fracture (We) and a decrease in the values of specific non-essential work of fracture (βWp)

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The development of new materials to fill the demand of technological advances is a challenge for many researchers around the world. Strategies such as making blends and composites are promising alternatives to produce materials with different properties from those found in conventional polymers. The objective of this study is to evaluate the effect of adding the copolymer poly(ethylene methyl acrylate) (EMA) and cotton linter fibers (LB) on the properties of recycled poly(ethylene terephthalate) (PETrec) by the development of PETrec/EMA blend and PETrec/EMA/LB blend composite. In order to improve the properties of these materials were added as compatibilizers: Ethylene - methyl acrylate - glycidyl methacrylate terpolymer (EMA-GMA) and maleic anhydride grafted polyethylene (PE-g-MA). The samples were produced using a single screw extruder and then injection molded. The obtained materials were characterized by thermogravimetry (TG), melt flow index (MFI) mensurements, torque rheometry, pycnometry to determinate the density, tensile testing and scanning electron microscopy (SEM). The rheological results showed that the addition of the EMA copolymer increased the viscosity of the blend and LB reduces the viscosity of the blend composite. SEM analysis of the binary blend showed poor interfacial adhesion between the PETrec matrix and the EMA dispersed phase, as well as the blend composite of PETrec/EMA/LB also observed low adhesion with the LB fiber. The tensile tests showed that the increase of EMA percentage decreased the tensile strength and the Young s modulus, also lower EMA percentage samples had increased the elongation at break. The blend composite showed an increase in the tensile strength and in the Young`s modulus, and a decrease in the elongation at break. The blend formulations with lower EMA percentages showed better mechanical properties that agree with the particle size analysis which showed that these formulations presented a smaller diameter of the dispersed phase. The blend composite mechanical tests showed that this material is stronger and stiffer than the blend PETrec/EMA, whose properties have been reduced due to the presence of EMA rubbery phase. The use of EMA-GMA was effective in reducing the particle size of the EMA dispersed phase in the PETrec/EMA blend and PE-g-MA showed evidences of reaction with LB and physical mixture with the EMA

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Nacomposites of polymers and lamellar clayminerals, has generated high scientific and technological interest, for having mechanical properties and gas barriers differentiated of polymers and conventional composites. In this work, it was developed nanocomposites by single screw extruder and injection, utilizing commercial raw material, with the goal to investigate the quality of new developed materials. It was evaluated the influence of the content and the kind of clay in the structure and in the nanocomposites properties. It was used regular and elastomeric poly (methyl methacrylate) (Acrigel LEP 100 and Acrigel ECP800) and six montmorillonites (Cloisite 10A, 11B, 15A, 20A, 25A e 30B) at the concentration of 1% e 3% in weight. The nanocomposites were characterized by X-ray diffraction (XRD), thermal gravimetric analysis (TGA), transmission electron microscopy (TEM), colorimetric, optical transparency, flexural and tensile tests, Rockwell hardness and esclerometry. It was founded that is possible to obtain intercalated and exfoliated nanocomposites PMMA/MMT, and the top results was obtained in the materials with 1%in clay weight organophilizated with 2M2HT (Cloisite 15A and 20A) presented intercalate and hybrid morphology (exfoliated and flocullated). The ones that was produced with organophilizated clay with 2MHTL8 (Cloisite 30B) had excellent visual quality, but the majority presented hybrid morphology. In the materials processed with organophilizated clay with MT2ETOH (Cloisite 30B), there were color change and loss of transparency. It occurs improvement in a few mechanical properties, mainly in the materials produced with PMMA elastomeric (Acrigel ECP800), being more significant, the increase in the resistance to stripping in those nanocomposites

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Among the heterogeneous catalysts materials made from niobium show up as an alternative to meet the demand of catalysts for biodiesel production. This study aims to evaluate the potential of a heterogeneous catalyst derived from a complex of niobium in the reaction of methyl esterification of oleic acid. The catalyst was synthesized after calcination at different temperatures of a niobium complex ((NH4)3[NbO(C2O4)3].H2O) generating a niobium oxide nanostructure with a different commercial niobium oxide used to synthesize the complex. The commercial niobium oxide, the complex niobium and niobium catalyst were characterized by thermogravimetry (TG and DTA), surface area analysis (BET), scanning electron microscopy (SEM) and X-ray diffraction (XRD), showing the catalyst has researched morphological and crystallographic indicating a catalytic potential higher than that of commercial niobium oxide characteristics. Factorial with central composite design point, with three factors (calcination temperature, molar ratio of alcohol/oleic acid and mass percentage of catalyst) was performed. Noting that the optimal experimental point was given by the complex calcination temperature of 600°C, a molar ratio alcohol/oleic acid of 3.007/1 and the catalyst mass percentage of 7.998%, with a conversion of 22.44% oleic acid in methyl oleate to 60 min of reaction. We performed a composite linear and quadratic regression to determine an optimal statistical point of the reaction, the temperature of calcination of the complex at 450°C, the molar ratio of alcohol/oleic acid 3.3408/1 and mass percentage of catalyst of 7.6833% . Kinetic modeling to estimate parameters for heterogeneous catalysis it set well the experimental results with a final conversion of 85.01% with 42.38% of catalyst and without catalyst at 240 min reaction was performed. Allowing to evaluate the catalyst catalytic studied has the potential to be used in biodiesel production

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Background and Objectives - Successful cadaver kidney transplantation relies on a fast procedure. Patients with chronic renal failure may present with a delayed gastric emptying making it critical a fast tracheal intubation and airway maintenance. Rocuronium a recently introduced nondepolarizing neuromuscular blocker with a fast onset. The aim of this study was to evaluate onset time and duration of rocuronium effects in patients undergoing renal transplantation. Methods - Sixty patients were allocated into two groups of 30: Group R (GR) = patients undergoing renal transplantation and Group N (GN) = patients with normal renal function. All patients were premedicated with oral midazolam (15 mg) and anesthesia was induced with 30 μg.kg-1 alfentanil, 0.3 mg.kg-1 etomidate and 0.6 mg.kg-1 rocuronium injected through a central venous catheter. neuromuscular block was monitored by acceleromyography in the ulnar nerve pathway. The following parameters were evaluated: time between administration of rocuronium and first twitch reduction to 5% after supra-maximal stimulation (T1) (onset time = OT); time for first twitch to return to 25% (clinical duration = R25); time elapsed between 25% and 75% recovery of first twitch (relaxation recovery time = R25-75). Heart rate (HR) and mean blood pressure (MBP) were recorded in 6 moments. Results - Median OT was 31 sec. in GR and 47 sec. in GN. Median R25 was 51.5 min in GR and 33.5 min in GN. Median R25-75 was 28 min in GR and 20 min in GN. MBP and HR were higher in GR. Tracheal intubation conditions were excellent for most patients in both groups. Conclusions - These results open the possibility of 0.6 mg.kg-1 rocuronium being injected through a central venous catheter when a faster onset is needed. Due to wide differences in individual responses, monitoring of neuromuscular block is recommended.

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Pós-graduação em Biofísica Molecular - IBILCE

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Pós-graduação em Biologia Animal - IBILCE

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Nos dias atuais, cresce cada vez mais o uso de polímeros no nosso cotidiano. Esse crescimento deve-se essencialmente à sua aplicabilidade com grande eficácia na substituição de materiais clássicos como madeira, metais, vidros e até mesmo papel. Além disso, propriedades especiais de polímeros, como condutividade elétrica, fotoluminescência e difusividade térmica, tem sido objeto de interesse da comunidade cientifica básica e aplicada. Algumas dessas propriedades podem, dependendo da necessidade a qual se destina ser modificadas a partir da inserção de outras substancias em suas matrizes. O interesse cientifico por óleos vegetais vem se tornando cada vez mais frequente, um desses óleos conhecido como Óleo de Buriti (mauritia flexuosa), tem em sua composição um alto teor de acido oleico e pró-vitamina A (conhecida como β-caroteno), tais substancias apresentam propriedades interessantes que já foram reportadas por vários pesquisadores em periódicos científicos. Apresentamos nessa dissertação o estudo de algumas propriedades físicas de amostras de dois polímeros comerciais de uso rotineiro: Poliestireno (OS) e Poli (metacrilato de metila) (PMAM) que foram dopadas com Óleo de Buriti (OB) em diferentes concentrações, a saber, 8.08%, 14.96%, 34.55% e 46.81%. outras concentrações de óleo foram tentadas, mas sem êxito, pois o óleo não conseguiu se fixar na matriz polimérica. Observamos que as amostras incorporaram de forma intersticial o óleo, alterando sua transparência natural e incorporando uma coloração de cor variável entre o amarelo claro ao alaranjado, dependendo da concentração. A partir de medidas ópticas percebemos que os polímeros passaram a apresentar propriedades semelhantes as do óleo como o fenômeno de emissão a partir da excitação por ultravioleta, confirmando assim a sua presença no interior dos plásticos. Caracterizamos os compósitos também através da constante dielétrica e difusividade térmica em função da temperatura. Essas medidas revelaram o comportamento do sistema formado pelo óleo + polímero e identificamos a mudança de estado físico (líquido ↔ sólido) sofrida pelas micro-gotas de óleo dentro da matriz.

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Bentonitas são argilas que tem como seu principal constituinte argilominerais do grupo da esmectita, predominantemente montmorillonita. De acordo com o cátion predominante no espaço intercamada da esmectita, a bentonita pode ser classificada como sódica, cálcica ou magnesiana. Essas argilas possuem vasta aplicação industrial, como fluidos de perfuração, pelotização, moldes de fundição, dentre outros. Para algumas aplicações mais específicas e que agregam maior valor ao produto final, como na síntese de nanocompósitos polímero/argila, faz-se necessário à intercalação de íons orgânicos na intercamada do argilomineral. No Brasil, a produção industrial de argilas organofílicas é pequena e voltada para os mercados de tintas, graxas e resinas de poliéster. Empresas do setor de bentonitas, que ainda não estão produzindo esse tipo de material, vêm mostrando crescente interesse nesta aplicação. Dentro desse contexto, este trabalho buscou avaliar o potencial da Bentonita Formosa, uma Mg-bentonita recentemente descrita e relativamente abundante no nordeste do Brasil, na produção de argilas organofílicas e sua aplicação em síntese de nanocompósitos polímero/argila. Para isso, foram realizadas sínteses variando a concentração dos íons surfactantes hexadeciltrimetilamônio (HDTMA+) e dodeciltrimetilamônio (DTMA+) em 0,7, 1,0 e 1,5 vezes o valor de CEC, com tempo de reação de 12 horas e variação de temperatura de 25 ºC e 80 ºC. A Mg-Bentonita in natura e ativada com carbonato de sódio foi utilizada como material de partida. Tanto o material de partida como as argilas organofílicas obtidas foram caracterizadas por DRX, DTA/TG e IV. As argilas que apresentaram melhores resultados de intercalação foram utilizadas nas proporções de 1%, 3% e 10% para a síntese de nanocompósitos poli(metacrilato de metila) (PMMA)/argila. As análises de DRX confirmaram a intercalação dos íons orgânicos no espaço intercamada da Mg-esmectita com e sem ativação. Com os resultados de IV foi possível observar que a razão de confôrmeros gauche/trans diminui com o aumento do espaçamento basal. Os resultados de DTA/TG confirmaram a estabilidade térmica das argilas organofílicas à temperatura máxima de 200 °C, o que possibilita a utilização desse material em síntese de nanocompósitos polímero/argila obtidos por processo de fusão. A análise de DRX confirmou a intercalação do PMMA no espaço intercamada da Mg-esmectita em todos os nanocompósitos produzidos. Com as análises de DSC foi possível observar o aumento da temperatura de transição vítrea para todos os nanocompósitos, quando comparados com PMMA puro. Com isso, é possível concluir que a Mg-Bentonita pode ser intercalada com íons alquilamônio, sem a necessidade prévia de ativação sódica, formando argilas organofílicas, assim como sua utilização em síntese de nanocompósitos. Essa possibilidade de utilização da Mg-bentonita in natura pode representar uma importante diferença em termos de custos de processo, na comparação com as bentonitas cálcicas existentes no Brasil, ou mesmo as importadas, que precisam ser ativadas durante o beneficiamento. Finalmente, acredita-se que a pesquisa deve avançar com a avaliação das propriedades mecânicas dos nanocompósitos produzidos neste trabalho, visando as diferentes possibilidades de aplicações desses materiais.

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Este estudo avalia a intercalação de esmectita dioctahédrica do Estado Acre com o sal quaternário de amônio brometo de hexadeciltrimetilamônio (HDTMA) em concentrações compreendidas entre 1 a 5 vezes ao valor de CTC da argila original e sua aplicabilidade na adsorção de fenol e benzeno em fase líquida. Os materiais foram caracterizados por microanálises de difração de raios X, microscopia eletrônica de varredura/espectroscopia com dispersão de energia e espectroscopia na região do infravermelho. Os processos de adsorção foram realizados em sistemas simples e as medidas das concentrações do fenol e benzeno foram efetuadas por espectrofotometria na região ultravioleta. Os resultados indicaram que a intercalação da esmectita com HDTMA propiciou cerca de 78,8% de expansão (variação de d001: 1,47 nm para 1,91 nm) e decréscimo acentuado dos elementos das posições interlamelares, como Na, Ca, Mg e K, acompanhado pela delaminação/esfoliação da argila original. Nos processos de adsorção do fenol e benzeno em HDTMA-arg 5 foram obtidos os seguintes resultados: qMax= 4,44 e 35,8 mg.g-1; KL= 0,076 e 0,115 L.g-1; ΔGº = -16,85 e -18,38 kJ.mol-1, respectivamente. Estes dados indicaram que os processos de adsorção do benzeno e fenol em fase líquida na organoargila HDTMA-arg 5 foram favoráveis, espontâneos e com interações físicas.

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Desde o conhecimento da radiação e seus efeitos a necessidade de mensurá-la intriga os cientistas. Os detectores de radiação mais difundidos atualmente fazem o uso de cristais semicondutores. Porém, esses detectores tem uma temperatura ótima de funcionamento que acaba sendo ultrapassada, já que o processo gera calor. Por isso, o resfriamento acaba sendo uma necessidade. O desenvolvimento de detectores de radiação com cristal semicondutor que opere a temperatura ambiente é tema de muitos estudos, já que evitaria o processo de resfriamento, trabalhoso e de alto custo. No Centro de Tecnologia das Radiações (CTR) do Instituto de Pesquisas Energéticas e Nucleares (IPEN) o sal de Brometo de Tálio (TlBr) é estudado para esta finalidade. Até ser um cristal semicondutor este sal deve passar por vários processos, entre eles o de purificação e o de cristalização. A técnica utilizada para purificar este cristal é a de Refino zonal. Após ser purificado por esta técnica o sal estará apto a ser cristalizado e consequentemente integrar um equipamento de detecção de radiação. Portanto, esta monografia teve como objetivo realizar a análise da segregação das impurezas do sal de TlBr através da técnica de espectroscopia de massa em fonte de plasma induzido (ICP-MS) e espectroscopia de emissão atômica (ICP-AES). Determinando assim se o mesmo está apto a ser cristalizado e vir a compor um detector de radiação

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Objective: The aim of this study was to evaluate the action of methyl salicylate in dissolving Resilon and gutta-percha. Material and method: Ten discs of Resilon, Alpha gutta-percha and ProTaper gutta-percha were prepared (10 mm diameter × 1 mm thick) and kept at 37 °C for 48 hours. Each sample was weighed in a balance of accuracy determining the initial mass. The specimens were immersed in methyl salicylate or xylene (control) for 5  minutes, rinsed in water for 30 minutes, dried and subsequently weighed in 24 hours intervals until the stabilization of weight (final mass). The solvent capacity was expressed by the difference between the final and initial mass. The data were analyzed by using ANOVA and Tukey test with significance level of 5%. Result: The results showed that the methyl salicylate was more effective on Resilon than on gutta-percha (p < 0.05). Methyl salicylate and xylene had similar solvent action on Resilon (p > 0.05). The xylene showed better performance on gutta-percha than methyl salicylate (p < 0.05). Conclusion: It was concluded that methyl salicylate did not show solvent action on gutta-percha, however it showed effectiveness in dissolution of Resilon. Thus methyl salicylate can be a possible alternative to the use of xylene during endodontic retreatment of teeth obturated with Resilon.