1000 resultados para polimerização em suspensão


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A hospitalização é uma experiência complexa, sendo agravada no caso de necessidade de intervenção cirúrgica, principalmente quando o paciente é criança. Quando a cirurgia é suspensa, paciente e seus familiares podem apresentar sentimentos de insegurança, angústia e ansiedade. Este estudo teve como objetivo identificar e descrever a percepção de quinze mães e/ou responsáveis por crianças de 0 a 18 anos, internadas em um hospital, após receberem a notícia de que a cirurgia de seu filho foi suspensa. É um estudo descritivo, qualitativo, que utilizou o referencial teórico da Comunicação Interpessoal e o metodológico da Análise de Conteúdo. Os resultados evidenciaram que as suspensões de cirurgias pediátricas são fatos presentes na instituição, que trazem repercussões ao paciente e familiares, e à organização institucional; que a comunicação entre profissionais da saúde, pacientes e familiares é inadequada; que a atuação do enfermeiro na notícia da suspensão da cirurgia precisa ser efetiva.

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A análise granulométrica do solo é realizada em três etapas: aplicação de pré-tratamentos para remoção de agentes cimentantes e floculantes, dispersão da amostra de solo e quantificação das frações do solo. Para quantificar as frações do solo, há necessidade de separá-las previamente. Dependendo do tamanho, utiliza-se o peneiramento, para as frações areia grossa e areia fina, e a sedimentação, para as frações silte e argila. Algumas propostas metodológicas calculam a proporção da fração silte no sistema por subtração das outras frações em relação à amostra original. No Laboratório de Física do Solo da Universidade Federal de Viçosa, realiza-se a coleta adicional da suspensão (fração silte + fração argila), o que incrementa a exatidão do resultado. As determinações que não levam em consideração esta coleta superestimam a proporção da fração silte, acumulando nesta fração a totalidade dos erros da determinação. Pode-se concluir que a coleta da suspensão (fração silte + fração argila) e a seqüência de cálculos decorrentes desta coleta levam a resultados mais adequados na análise granulométrica do solo, distribuindo o erro experimental nas quatro frações granulométricas.

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Altos custos de produção geralmente limitam o uso comercial da micropropagação. O uso de meios de cultura líquidos é considerado uma solução para a automação e redução de custos. Entretanto, dependendo da cultivar de bananeira, esse processo pode mostrar diferentes níveis de dificuldade, e adaptações nos protocolos são necessárias. Neste estudo, experimentos de diferenciação celular e regeneração de plantas foram desenvolvidos em células em suspensão de banana pela avaliação da densidade inicial de células, meios de cultura e sistemas de imersão temporária. Para tanto, uma sequência de três experimentos foi realizada: o primeiro avaliou os efeitos da densidade celular (0,5; 1 e 2 mL), meios de cultura (M1: 1/2MS, 0,1 g.L-1 de ácido ascórbico, 0,1 g.L-1 de L-prolina, 30 g.L-1 de sacarose e 10 µM de 2iP; M2: MS, 30 g.L-1 de sacarose, 2,2 µM de BAP e 11,4 µM de AIA) e períodos de diferenciação celular (40 e 130 dias); o segundo experimento analisou o efeito do tamanho dos propágulos diferenciados em meio líquido (aprox. 2,5; 5 e 10 mm em diâmetro) na formação de embriões somáticos ou na regeneração de plantas; finalmente, um terceiro experimento avaliou o efeito de sistemas de cultivo com papel-filtro cobrindo o meio de cultura semissólido e sistemas de imersão temporários na diferenciação dos propágulos e na regeneração de plantas. Não foram observadas diferenças significativas entre os meios de diferenciação, porém as melhores diluições de células para a diferenciação foram de 1 e 2 mL/30mL de meio de cultura, enquanto diluições de 0,5 mL/30 mL de meio aumentaram a oxidação celular. A extensão do período de diferenciação de 40 para 130 dias foi importante para produzir maior número de calos/propágulos uniformes e com pelo menos de 10 mm de diâmetro, que puderam ser usados em sistemas de imersão temporária (biorreatores) para a diferenciação de embriões somáticos e regeneração de plantas. Considerando todos os sistemas de regeneração, verificou-se que o uso de meios de regeneração de consistência semissólida com papel-filtro na superfície do meio é o mais responsivo para a diferenciação de embriões somáticos e regeneração de plantas.

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The initiation step of the light-induced polymerization kinetics of vinyl monomers using dye-sensitized photoinitiators to generate active radicals is discussed. The photoredox processes of basic dyes with amines and sulfinates are described as photochemical systems capable of starting free-radical polymerization of vinyl monomers in homogeneous and microheterogeneous media. Photophysical techniques like laser flash photolysis and time-correlated single photon counting are used to investigate the excited-state kinetics of the dyes.

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This work aims at the study of the air quality determination regarding the total suspended particles (TSP) and the associated metals in the counties of Charqueadas and Sapucaia do Sul at the state of Rio Grande do Sul. The TSP samples were collected using high volume samplers and the analysis of the metallic elements was accomplished through ICP-AES. The results revealed that the TSP concentrations, found in the two studied regions, have exceded the current air quality patterns established by the Brazilian Legislation. They also revealed high levels of several of the elements being attributed to the presence of anthropogenic sources. The correlation between meteorological data (speed and wind direction) and TSP concentrations were significant and revealed strong influence in particle dispersion.

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Adsorption of cationic dyes on clays can be used as a model for the interactions between organic compounds and these minerals. Cationic dyes like methylene blue are used to study these interactions because of the spectroscopic changes observed when their molecules are adsorbed on clay surfaces. Depending on the structure and layer charge of the clay particles several processes may occur, like adsorption of dye monomers and aggregates on the external and internal surfaces of the clay tactoids, migration towards internal surfaces, protonation, etc. Under certain conditions the deaggregation-aggregation of the clay particles are accelerated trapping dye species during these processes. A general scheme is proposed for the processes occurring between clays and dyes in aqueous suspensions, which can be used to explain the behaviour of specific systems.

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In order to demonstrate the feasibility of slurry sampling for environmental studies, different methodologies were developed for Cu and Zn in antarctic limpets and Ni in river sediment with FAAS detection. Studies focusing particle size, acid concentration, slurry stability, selectivity, among others were carried out in order to define the better conditions for slurry analysis. A study related to the depth profile for Ni in the Atibaia River sediment was made after optimization conditions for this element. For accuracy check, certified reference material was used as well as decomposition with microwave oven.

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This paper presents an automatic procedure employing a reagent in the form of a slurry in a flow-injection system. The feasibility of the proposal is demonstrated by sulphate determination in water using the Barium Chloranilate method, which is based on the precipitation of barium sulphate. The release of a stoichiometric amount of highly colored chloranilic ions is monitored at 528 nm. The reaction is carried out in alcoholic medium in order to reduce the solubility of the reagent. A considerable improvement in the sensitivity is attained by adding ferric ions to the released chloranilic ions. An on-line filtration step to separate the excess reagent from the released chloranilic ions was necessary. In addition, a column containing a cation exchange resin was included in the manifold to remove potentially interfering ions. The proposed procedure is suitable for 30 determinations per hour and the relative standard deviation is less than 2%. The analytical curve is linear between 0.0 and 40 mg L-1 and the determination limit is about 2.0 mg L-1SO4(2-). Accuracy was confirmed by running several samples already analysed by a standard turbidimetric procedure.

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In this work we report the synthesis of some organolanthanide compounds which were identified as LnCl2Cp(PzA)2, Ln = Nd, Sm, Eu and Tb, Cp = cyclopentadienyl and PzA = pirazinamide, by elemental analyses, complexometric titration with EDTA, thermal analyses and IR spectra. Thermal analysis and infrared spectra indicated that the coordination of the pyrazinamide to the lanthanide ions was made by the O atom of the carbonyl group and by one or both N atoms of the pyrazinamide ring. This class of compound showed catalytic activity of ca. 4.0 to 6.4 kgPE molLn-1 h-1 bar-1, in ethylene polymerization, using methylaluminoxane as cocatalyst. The resulting polyethylene presented low crystallinity (20%).

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Nowadays the catalyst systems based on neodymium are the ones most used in the high cis polybutadiene production. These systems contain a neodymium compound (catalyst), an alkylaluminium compound (cocatalyst) and a halogen compound (halogenating agent). The microstructure, molecular weight characteristics and the reaction activity are influenced by the nature and concentration of catalyst system components. Those characteristics are also affected by the polymerization conditions. This paper presents a brief review on 1,4-cis-butadiene polymerization on neodymium catalysts.

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In an attempt to improve the performance of organolanthanide catalysts we investigated the use of the industrially important cocatalyst methylaluminoxane (MAO) to activate organolanthanide compounds in olefin polymerization. The catalytic systems LnBrCp2(THF)2/MAO (Cp=cyclopentadienyl) and LnBrCp*2THF/MAO (Cp*= pentamethylcyclopentadienyl), Ln=Pr and Yb, were active in styrene polymerization but inactive in ethylene and propylene polymerization. These systems produced atactic polystyrene with conversions of up to 8.2% (PrBrCp*2THF, Al/Ln=200, T=80ºC, t=4 h) in toluene. In the absence of solvent, the conversion is 26.0% (1.5 h) and the molar mass of the atactic polystyrene is almost ten times higher (43 kg/mol).

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The determination of the airborne particulate matter (PTS) mass and trace metals concentrations were performed in three sites in Ouro Preto, MG, Brazil. It was evaluated 288 samples. The legal limit of annual geometric average (60 µg m-3) to PTS concentrations didn't exceed, but the legal limit for 24 h (240 µg m-3) did in three measurements. Seven metals (Al, Cr, Cu, Fe, Mn, Ni, Pb) analysed by ICP-AES were quantified in 18 samples. Aluminum and iron showed the highest concentrations, indicating the contribution of the soil and of one aluminum plant. The high nickel concentration is probably due to vehicular emissions and industrial combustion processes.

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In this work, it is proposed a simple experiment in polymer science for undergraduates, involving the glycerol polymerization catalyzed by H2SO4 to produce different materials, e.g. from oligomers to crosslinked polymer. The students can investigate the reaction conditions such as time, temperature and catalyst concentration, thus controlling the extent of polymerization and its kinetics. This experiment stimulates students to see polymer science in a broader context, involving diverse topics, such as biodiesel, and processing of a co-product of low value in polymeric materials with potential industrial application.

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A reversed-phase HPLC method was developed and validated to separate and simultaneously quantify the association of betamethasone sodium phosphate (BP) and betamethasone dipropionate (BD) in injectable suspensions. Chromatographic conditions were ternary gradient elution at 1.6 mL/min on a C18 column with 254 nm. The linearity of the method was established in the range 120 to 280 mg/mL BD, and 48 to 112 mg/mL BP. The RSD of intermediate precision of the method was <1% and recoveries were 99-101% for both drugs. The method proved selective, linear, precise, accurate and robust for quantifying BP and BD in commercial injectable suspensions.

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Sulfasalazine is a prodrug used in the treatment of the Chron's disease and rheumatoid arthritis. Two analytical methods for analysis of sulfasalazine in oral suspension were validated using Spectrophotometric and HPLC. There is not any pharmacopoeic method to assay sulfasalazine in oral suspension. The methods are insurance and fast execution for the quality control. Both, suspension and tablets 500 mg (Azulfin®) had been analyzed by methods using UV/VIS and HPLC and the results were satisfactory.