106 resultados para Sábato, Ernesto R.


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A estrutura exerce grande importância no comportamento ag­cola do solo, pela sua influência em propriedades do solo. Assim, objetivou-se avaliar a estabilidade de agregados e relacioná-la com diferentes frações orgânicas de um ARGISSOLO Vermelho-amarelo dist³fico sob mata, seringueira, laranjeira e pastagem degradada. A amostragem foi realizada em trincheiras, de 0 a 10, 10 a 20 e 20 a 30 cm. Foram analisadas textura, argila dispersa em água, grau de floculação, densidade do solo, carbono orgânico total (COT), nitrogênio total (NT), ácidos fúlvicos (AF), húmicos (AH) e humina (HN), carbono da biomassa microbiana (C-Micr) e matéria orgânica leve (MOL). Foi determinada a estabilidade de agregados em água e calculados índices de estabilidade. Os resultados mostram diferenças de densidade do solo, seguindo a ordem mata < seringueira < laranjeira < pastagem. A estabilidade de agregados não se altera entre os usos nas profundidades de 0 a 10 e 10 a 20 cm, enquanto de 20 a 30 cm nota-se a ordem mata > seringueira > laranjeira > pastagem. No solo sob mata, seringueira e laranjeria a estabilidade de agregados está relacionada aos maiores teores de COT, NT,AF, AH, HN, C-Micr e MOL, enquanto na pastagem está relacionada principalmente a ciclos de umedecimento e secagem.

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Studies of the kinetics of electrocatalytic reactions on well oriented single crystal surfaces have demonstrated the influence of surface structure on the rate and mechanisms of many electrochemical processes. The preparation and characterization of these surfaces is the first step in this type of studies. In this paper, a methodology employed in order to ensure the quality and cleanliness of single crystals and their utilization as rotating electrodes is described.

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This paper describes in detail a technique employed to grow quasi-spherical single crystals of noble metals for electrochemical applications, using platinum as an example. The metal beads were formed by melting the extremity of a wire in an oxygen / butane flame. X-ray techniques were used to check the crystallization and to determine the orientation of the crystals. Treatment with a pure hydrogen flame followed by a cooling procedure in a hydrogen / argon atmosphere were used for conditioning the well-defined platinum single crystal surfaces. Finally, electrochemical characterization of the Pt(111), Pt(110) and Pt(100) surfaces was done in diluted sulfuric acid solution in the hydrogen adsorption / desorption potential region.

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This work considers mainly the problem of environmental pollution due to the production of energy by burning fossil fuels, particularly in urban vehicles. Electrochemical energy conversion is proposed as a partial solution to this problem, through the use of hydrogen in fuel cells. In both the production of hydrogen by electrolysis and in the electrochemical processes in fuel cells, the key factor is electrocatalysis. The concept of electrocatalysis, the production of catalysts and supported catalysts and their use in practical systems for the conversion of energy is discussed.

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A study of the kinetics of oxygen evolution in alkaline conditions from ceramic films of Mn2O3 supported on stainless steel was carried out. This study has been done through the determination of transfer coefficients, Tafel slopes and exchange currents using potentiodynamic and quasi-potentiostatic measurements. The activation energy was determined as a function of the overpotential and, additionally, the electrode active surface was estimated. The results are consistent with data already published for other electrodes, implying that the methods used in this work were reliable and precise.

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The concepts of dissipation and feedback are contained in the behavior of many natural dynamical systems. They have been used to predict the evolution of populations leading to the formulation of the quadratic logistic equation (QLE). More recently, the QLE has been used to provide a better understanding of physicochemical systems with promising results. Many physical, chemical and biological dynamic phenomena can be understood on the basis of the QLE and this work describes the main aspects of this equation and some recent applications, with emphasis on electrochemical systems. Also, it is illustrated the concept of potential energy as a convenient way of describing the stability of the fixed points of the QLE.

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Fuel cells are attracting much interest as efficient and clean energy conversion devices. The main components of low temperature fuel cells are the electrocatalysts used to promote the anodic and cathodic reactions, which are based on platinum and platinum alloys. These electrocatalysts are normally prepared in the form of metal nanoparticles supported on a conductive material, usually high surface area carbon, to improve catalyst utilization and reduce cost. This work presents and comments some methods used presently to produce these electrocatalysts. The performances of the produced electrocatalysts are compared to that of state-of-the-art commercial E-TEK electrocatalysts.

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There is presently much interest in the clean and efficient generation of energy by proton exchange membrane fuel cells (PEMFC), using hydrogen as fuel. The generation of hydrogen by the reforming of other fuels, anaerobic fermentation of residual waters and other methods, often produce contaminants that affect the performance of the cell. In this work, the effect of gaseous SO2 and NO2 on the performance of a H2/O2 single PEMFC is studied. The results show that SO2 decreases irreversibly the performance of the cell under operating conditions, while NO2 has a milder effect that allows the recovery of the system.

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It is investigated in the present contribution the oscillatory co-electrodeposition of CuSn on a polycrystalline gold surface in the presence of Triton X-100 surfactant and citric acid as additive, in acidic media. The experiments were conducted under potentiostatic control and the system dynamics characterized in terms of the morphology and stability of the current oscillations. Besides modulations in the frequency and amplitude of the current oscillations, several patterned states were observed, including relaxation-like and mixed mode oscillations. The oscillations were found to be very robust and some time series presented regular motions up to about two hours.

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We present in this work an experimental investigation of the effect of temperature (from 25 to 180 ºC) in the electro-oxidation of ethanol on platinum in two different phosphoric acid concentrations. We observed that the onset potential for ethanol electro-oxidation shifts to lower values and the reaction rates increase as temperature is increased for both electrolytes. The results were rationalized in terms of the effect of temperature on the adsorption of reaction intermediates, poisons, and anions. The formation of oxygenated species at high potentials, mainly in the more diluted electrolyte, also contributes to increase the electro-oxidation reaction rate.

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Silver containing heavy metal oxide glasses and glass ceramics of the system WO3-SbPO4-PbO-AgCl with different AgCl contents have been prepared and their thermal, structural and optical properties characterized. Glass ceramics containing metallic silver nanoparticles have been prepared by annealing glass samples at temperatures above the glass transition and analyzed by transmission electron microscopy and energy dispersive X-ray microanalysis. The presence of the metallic clusters has been also confirmed by the observation of a surface plasmon resonance band in the visible range. Cyclic voltammetric measurements indicated the presence of metallic silver into the glasses, even before to perform the thermal treatment.

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This work outlines the historic development of the concept and main theories of energy transfer, as well as the principal experiments carried out to confirm or refute the proposed theories. Energy transfer in coordination compounds is also discussed with a focus on rare earth systems.

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Salmonella serovars isolated from swine are of particular interest not only because of the pathogenic potential for this animal species, but also due to its relevance with regard to public health. On basis of the profile of resistance to antimicrobials, 13 Salmonella strains were selected which belonged to the serovars Muenster (7), Derby (4), Typhimurium (1), and Braenderup (1). They were isolated from healthy swine as well as from the abattoir environment in the state of Rio de Janeiro. All strains of Salmonella were subjected to bacterial conjugation, and the E. coli K12 Nal r Lac+ F standard strain was used as receptor, with the purpose to verify the ability to transfer the resistance marks. Gene transfer phenomenon was detected in seven strains, and except SalmonellaTyphimurium which transconjugated to Sm, Tc and Su, the remaining ones were characterized by transferring mark Su only. By plasmidial analysis of strains used and their respective transconjugants, 63 Kb plasmid was found, which was probably related to S. Typhimurium resistance.

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Luffa operculata é o nome botânico da buchinha-do-norte ou cabacinha, uma planta medicinal usada popularmente no tratamento das rinites e rinossinusites. Na Europa e nos EUA, está em medicamentos homeopáticos. No Brasil, a infusão (chá) do fruto seco de Luffa operculata é utilizada para inalação ou instilação nasal, resultando em liberação profusa de muco que alivia os sintomas nasossinusais, mas há relatos freqüentes de irritação nasal, epistaxe e anosmia. FORMA DE ESTUDO: Experimental. MATERIAL E MÉTODO: Avaliamos os efeitos da infusão de Luffa operculata em diferentes concentrações, no modelo experimental do palato isolado de £, examinando 46 palatos após imersão. Quatro grupos (n=10) foram testados com infusão feita em Ringer-£ (solução isotônica): controle; 60mg/l; 600mg/l e 1200mg/l. Um grupo foi testado em água (600mg/l H2O, n=6). Coletamos amostras do epitélio para estudo histológico à microscopia-de-luz e microscopia elet´nica de transmissão. RESULTADOS: Nos palatos tratados, os achados à microscopia-de-luz mostram lesões epiteliais de pad£o tóxico, dose-dependentes. Na microscopia elet´nica, aumento dos espaços intercelulares e ruptura de tight junctions apontam para anormalidade no transporte iônico e de fluidos. CONCLUSÕES: A infusão de Luffa operculata, nas concentrações utilizadas popularmente, promove alterações significantes na estrutura e ultraestrutura epitelial deste modelo ex vivo de mucosa respiratória.