62 resultados para Geração numerica de malhas (Analise numerica)


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In the present paper, a historical view from spontaneous generation of life to Oparin-Haldane hypothesis was discussed. It was also showed what is the main concern of the field of prebiotic chemistry. Several aspects of prebiotic chemistry such as synthesis of biomolecules and biopolymers, primitive metabolism and genetic code, and the importance of the adsorption for the origin of life were discussed.

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Electrocatalytic hydrogenation (HEC) may be compared to catalytic hydrogenation (HC). The difference between these methods is the hydrogen source: HC needs a hydrogen gas supply; HEC needs a source of protons (solvent) to be reduced at a cathode surface. HEC has presented interesting advances in the last decades due to investigation of the influence of the supporting electrolyte, co-solvent, surfactant, presence of inert gas and the composition of the electrode on the reaction. Several classes of organic compounds have been hydrogenated through HEC: olefins, ketones, aldehydes, aromatics, polyaromatics and nitro-compounds. This paper shows some details about the HEC which may be regarded as a promising technique for the hydrogenation of organic compounds both in industrial processes and in laboratories.

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Technological innovation connects competitiveness and knowledge. In Brazil, knowledge is mainly concentrated in the universities which undertake R&D. This article aims to show the importance of Brazilian university extension activities, which transfer knowledge to society, contributing, in the case of the chemical sector, to a reduction in the country's total trade deficit of around US$8.5 billion, which is result of the importation of innumerable products. On the other hand, developed countries are resorting to technical barriers, which impose documentation and regulations based on testing products for conformity with standards. This demands a technical and scientific infrastructure, concentrated in the universities.

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This work describes the mechanism of action of some reactive oxygen species (ROS) and reactive nitrogen species (RNS) in the oxidative stress of the human body, and their consequences on damage to DNA, RNA, proteins and lipids. It also illustrates the defense system of our organism against these ROS and RNS species. The action of nonenzymatic protection systems is reported, with emphasis on micromolecules like Q10 coenzyme, vitamin C, alpha-tocopherol, carotenoids and flavonoids. The importance of flavonoids is also emphasized, and their body protection mechanism is detailed.

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In recent years, several studies have been developed in Brazil to produce biodegradable materials. A particular family of bacterial polymers, the polyhydroxyalkanoates (PHA), has received special attention. PHAs are thermoplastic, biodegradable, biocompatible, are synthesised from renewable resources and can substitute petrochemical plastics in some applications. Different aspects have been focused to increase productivity and to reduce the cost of PHA production: bacterial improvement, use of industrial by-products as raw material, bioreactor design, process operation strategies, downstream process, mathematical modelling, polymer characterisation, application and biodegradability of blends. A production process was transferred to industry and studies to produce new PHA by controlling monomer composition are in progress. All these aspects are presented in this review.

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The removal study was conducted using 1.00 g of the rice husk ash (RHA) and 20.0 mL solution with concentrations in the range of 10-1000 mg/L of Zn(II). The influence of contact time, initial metal concentration, agitation and pH of the removal process was investigated. Superior removals to 95% were obtained at the end of 24 h of contact. The agitation increased in 20% the removal of Zn(II), being needed only 5 min to reach the equilibrium. The adsorption process was studied by the models of isotherms of Langmuir, Freundlich and BET, obtaining results of R L and 1/n for a process favorable of adsorption. BET isotherm best represents the equilibrium adsorption. The results showed that the RHA has the largest capacity and affinity for the removal of Zn(II).

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From the environmental point of view, the textile sector is outstanding for the generation of large amounts of biorecalcitrant effluents. In this paper the textile effluent biodegradability, both before and after its treatment with Fenton's Reagent, were compared by means of biologic tests. These tests showed that the Fenton treatment lowered the biodegradabilty of practically all tested effluents, except one specific effluent from a scouring bath of polyester fibers, which achieved a 93% COD removal. This removal was due to a significant phase separation (oil/water).

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Mercury is a toxic metal used in a variety of substances over the course history. One of its more dubious uses is in dental amalgam restorations. It is possible to measure very small concentrations of this metal in the urine of exposed subjects by the cold vapor atomic absorption technique. The present work features the validation as an essential tool to confirm the suitability of the analytical method chosen to accomplish such determination. An initial analysis will be carried out in order to evaluate the environmental and occupational levels of exposure to mercury in 39 members of the auxiliary dental staff at public consulting rooms in the city of Araguaína (TO).

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Antifouling agents have been used on vessels and boats since ancient civilizations. Thus, a brief history on the three generations of antifouling paints was provided in the present review. Additionally, information about physic-chemical properties, environmental levels, toxicology and analytical methods was discussed for the 16 "new" booster biocides used as third-generation antifouling paints. The main problems, limitations and future trends related to this subject were also presented. Finally, actions were suggested in order to appraise the current status of the environmental impact caused by these compounds in South America.

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A sugar cane mill is at the present moment a modest biorefinery producing few products such as sugar, ethanol and polyhydroxybutyrate (PHB). In the near future, this mill can expand its production using several renewable feedstock's to produce biofuels and high value biobased chemicals. However, the choice of appropriate products for addition to the portfolio is challenged by a lack of broad-based conversion technology coupled with a plethora of potential targets. The intent of this revision was to catalyze research efforts to expand the list of products and to present an updated evaluation of potential target structures for chemical production.

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Developing mesoporosity in HZSM-5 zeolites is an alternative for improving their catalytic performance on chemical reactions. In this work, alkaline and thermal treatments were used to produce mesoporosity. These treatments increased mesoporous area and volume. They also influenced the acid properties of the samples. Concerning catalytic performance, treatments modified reaction product distribution. Whereas alkaline treatment favored formation of olefins and increased propene ratio in the beginning of the reaction, thermal treatment resulted in formation of only ethylene due to the low acidity of the sample.

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This work reports the development of GDE for electrogeneration of H2O2 and their application in the degradation process of Reactive Blue 19 dye. GDE produced by carbon black with 20% polytetrafluoroethylene generated up to 500 mg L-1 of H2O2 through the electrolysis of acidic medium at -0.8 V vs Ag/AgCl. Reactive Blue 19 dye was degraded most efficiently with H2O2 electrogenerated in the presence of Fe(II) ions, leading to removal of 95% of the original color and 39% of TOC at -0.8 V vs Ag/AgCl.

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A determinação de selênio utilizando a geração de hidretos acoplada às técnicas atômicas vêm sendo utilizada com sucesso em amostras de urina. Devido a necessidade de se dispor de um método analítico capaz de determinar pequenas quantidades de selênio; é proposto o sistema de fluxo, por zonas coalescentes, utilizando a técnica de geração de hidretos, seguida da detecção por espectrometria de absorção atômica para a determinação de selênio em amostras de urina. O limite de detecção obtido é 0,3 ng mL-1, correspondendo a 30 pg de selênio e a freqüência analítica de 140 determinações por hora. A precisão (d.p.r.) do método foi de 2,0% para 1,0 ng mL-1. A quantidade de reagente (0,5 mg de NaBH4 para cada determinação) e de resíduo químico gerado no laboratório (170 mL h-1) é mínima. A aplicação do método proposto para análises de amostras de urina evidenciou a presença média de 4,0 ng mL-1 de selênio para pacientes que não ingeriram nenhum medicamento contendo selênio. Para pacientes que ingeriram uma dose única de medicamento contendo selênio, o teor encontrado nas amostras de urina analisadas variaram de 5,0 a 16,0 ng mL-1. Estudos de recuperação mostraram valores de 90,0% e 103,0% para 1,0 e 10,0 ng mL-1 de selênio adicionado, respectivamente, nas amostras de urina. A certificação do método foi avaliada para análises de material de referência de urina SRM 2670 (valor certificado: 30,0±8,0 ng mL-1 e valor obtido: 27,0±2,0 ng mL-1).

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O uso do ácido nitroso para determinação de paracetamol (acetoaminofenol) em formulações sólidas e líquidas empregando um sistema de análise por injeção em fluxo é descrito. A determinação da droga foi realizada pela reação do paracetamol com ácido nitroso gerado em linha e o produto dessa reação foi monitorado em 430 nm em meio alcalino. A curva analítica apresentou uma faixa de concentração de paracetamol variando entre 9,7x10-5 a 6,2x10-3 mol L-1 com um limite de detecção de 2,5x10-5 mol L-1. Os desvios padrão relativos foram menores que 2% para soluções contendo 1,2x10-4 e 2,8x10-4 mol L-1 de paracetamol (n=10) e uma freqüência de amostragem de 60 determinações por hora foram obtidos. Os resultados da determinação de paracetamol nas formulações farmacêuticas obtidas pelo procedimento em fluxo proposto estão em boa concordância com os resultados obtidos utilizando-se o procedimento da Farmacopéia Americana a um nível de confiança de 95% e dentro de uma faixa aceitável de erro.

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No presente trabalho descreve-se uma metodologia de otimização do corte ou traçamento de árvores para obtenção de multiprodutos em nível de fustes individuais. A geração dos padrões ótimos de corte foi realizada através de dois módulos: 1) um algoritmo heurístico que identifica os cortes potenciais (números úteis), que devem ser avaliados ao longo do fuste; e 2) um algoritmo com base na programação dinâmica (PD), que determina a combinação ótima de toras de cada tipo de comprimento a serem retiradas do fuste, visando maximizar o seu comprimento utilizado. Um exemplo da obtenção dos padrões ótimos de corte para um conjunto de 25 fustes é apresentado. O traçamento ótimo e o traçamento real obtido pelo motosserrista foram comparados. O resíduo de madeira deixado na floresta foi reduzido de 16 para 5% através dos padrões de corte ótimos.