843 resultados para Espectroscopia de emissão óptica


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In this work was used a plasma torch of non transferred arc with argon as work gas, using a power supply with maximum DC current of 250 A and voltage of 30 V to activate the plasma and keep it switched on. The flame temperature was characterized by optical emission spectroscopy, through Boltzmann-plot-method. The torch has been used like igniter in the aluminothermic reduction of the mixture tantalum oxide and aluminum, seeking to obtain metallic tantalum. In heating of the reagents only one particle will be considered to study interactions between plasma-particle, seeking to determinate its fusion and residence time. The early powders were characterized by laser granulometry, scanning electron microscopy (SEM) and X-ray diffraction analysis. The final product of this reaction was characterized by SEM and X-ray diffraction. Crystallite size was calculated by the Scherrer equation and microdeformation was determined using Willamsom-Hall graph. With Rietveld method was possible to quantify the percentile in weight of the products obtained in the aluminothermic reaction. Semi-quantitative chemical analysis (EDS) confirmed the presence of metallic tantalum and Al2O3 as products of the reduction. As was waited the particle size of the metallic tantalum produced, presents values in nanometric scale due the short cooling time of those particles during the process

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Pós-graduação em Agronomia (Ciência do Solo) - FCAV

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The study of sediment in water bodies presents great environmental importance, because of its ability to adsorb the pollutants, they may facilitate the understanding of the history of the current quality of the water system. Depending on how it is done the collection, analysis can show both a recent contamination as old. The detailed characterization of the sediment may reveal details that can understand how each type of pollutant interacts with the material given its composition. In this work it has developed a systematic methodology to characterize samples of sediment, with the aim to understand how a series of metal is distributed in different size fractions of the sediment. This study was conducted in five samples of sediment (P1, P2, P3a, P3B and P3c) collected in Jundiaí river, one of the most important tributaries of the river Potengi in the region of Macaíba, RN. The characterization was made with the samples previously sieved into meshes with different granulometries (+8#, -8+16#, -16+65# - 65+100#,-100+200#,-200+250# and -250#), using the following techniques: Analysis of specific surface area by BET method, determining the levels of organic matter (OM%) and humidity through the gravimetry and Analysis Thermogravimetric (TG), Infrared Spectroscopy in a Fourier transform (FTIR ), Analysis of X ray diffraction (XRD), analysis of heavy metals by optical emission spectrometry with the Argon Plasma (ICP-OES). The analyzed elements were Al, Cd, Cr, Cu, Fe, Mn, Ni, Zn and P. In addition to the techniques of characterization above, was also made the rebuilding of the samples P1, P2 and P3B in relation to the levels of organic matter and concentration of heavy metals. Then, the results of the recomposed samples were compared with those obtained in crude samples, showing great consistency. The gravimetry, used in determining the levels of organic matter, was not considered an appropriate method because the clay minerals present in the sediment samples analyzed fall apart in the same range of temperature (550-600 0C) used in roasting (600 0C). The results also showed the trend of organic matter and heavy metals to focus on the thin fractions, although the largest concentrations of metals are in intermediate fractions

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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In a combustion process involving fossil fuels, there is the formation of species Chemiluminescent, especially CH*, C2* and OH*, whose spontaneous emission can be used as a diagnostic tool. In the present work, mapping and determination of the rotational temperature of the species CH* produced in flames on a burner fueled by Liquefied Petroleum Gas (LPG) was carried out. This study is part of a project involving the characterization of supersonic combustion in scramjets engines, whose study has been conducted in the hypersonic shock tunnel IEAv laboratories. The technique used was the natural emission spectroscopy, which has as main advantage of being non-intrusive. The rotational temperature determination was made using the Boltzmann method, whose principle is to relate the emission intensity of the species to the temperature by means of spectroscopic constants established.The temperature values were determined from the analysis of electronic bands AX and BX of the radical CH*. In order to confirm the results of flame temperatures obtained by the natural emission technique, was also used the technique of line reversal sodium. The results of both techniques showed that the temperature of the flames investigated is about 2500K a 2700K

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Pós-graduação em Ciência dos Materiais - FEIS

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Pós-graduação em Química - IQ

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Nesta tese são apresentados os resultados de um estudo sistemático à respeito da formação e evolução térmica de nanocavidades de He em Si cristalino. O efeito da formação de nanocavidades de He no aprisionamento de impurezas em Si foi estudado inicialmente em distintas condições de fluência, temperatura e direção de implantação. Após as implantações, as amostras foram tratadas termicamente a 800°C e analisadas por espectroscopia de retroespalhamento Rutherford em condição de canalização (RBS/C), análise de detecção por recuo elástico (ERDA), espectroscopia por emissão de íons secundários (SIMS) e microscopia eletrônica de transmissão (TEM). Os resultados experimentais mostraram que implantações de He a temperatura ambiente (Ti=Tamb) levam à formação de defeitos numa região intermediária entre a superfície e a camada onde as bolhas se formam (Rp/2), sendo 5x1015He+cm-2 a fluência mínima para a observação do fenômeno. Sua origem foi atribuída à formação de pequenas cavidades nesta região. O mesmo não é observado em implantações a Ti=350°C devido ao efeito do recozimento dinâmico dos defeitos. Estes resultados mostraram a necessidade de um estudo mais profundo a respeito dos efeitos da temperatura de implantação (Ti) na formação de bolhas em Si. Este estudo foi feito a partir de implantações de He no intervalo de temperatura entre -196°C e 350°C, sendo a fluência e a energia de implantação de 2x1016He+cm-2 e 40keV respectivamente. O efeito da proximidade à superfície foi estudado com implantações a 15keV. As amostras foram analisadas pelas mesmas técnicas referidas anteriormente. Para o caso de implantações feitas a 40keV com Tide um sistema de cavidades esféricas cujas características são dependentes dos estágios iniciais de implantação. No intervalo onde Ti>Tamb pequenas bolhas são formadas durante a implantação juntamente com defeitos estendidos do tipo {311}. A formação destes defeitos é atribuida ao mecanismo de formação das bolhas baseado na emissão de átomos auto-intersticiais de Si. Distintos regimes são observados após recozimento entre 400°C e 800°C por 600s. Para Ti≤250°C observa-se a dissolução do sistema de cavidades e defeitos devido à interação mutua entre os sistemas. Para Ti>250°C cavidades esféricas e anéis de discordância são observados após recozimentos a 800°C. Finalmente, se observou que a energia de implantação (15keV) não afeta a morfologia do sistema de bolhas e defeitos formados. Porém a perda de He é cinco vezes menor que no caso de amostras implantadas a 40 keV na mesma fluência. Um mecanismo baseado na difusão aumentada por danos de irradiação é sugerido neste trabalho.

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Introdução: As doenças mitocondriais apresentam características heterogêneas devido à própria natureza e função da mitocôndria, que possui o seu próprio DNA (mtDNA). A disfunção mitocondrial pode afetar um único órgão ou ser uma doença multissistêmica, de manifestação na infância ou na vida adulta, podendo ter um padrão de herança materna ou mendeliana. O diagnóstico é complexo e requer uma investigação criteriosa, passo-a-passo, com atenção a história clínica, exames laboratoriais, neuroimagem e, muitas vezes, a biópsia muscular para análise histoquímica, bioquímica e genética. A análise molecular é fundamental na definição do diagnóstico e os protocolos propostos até o momento são, geralmente, direcionados para um grupo de pacientes com características clínicas homogêneas. Objetivos: os objetivos deste trabalho foram: a) propor um protocolo combinando dados clínicos e laboratoriais para indicar a melhor forma de investigação molecular de pacientes com suspeita clínica de doença do DNA mitocondrial, b) Comparar os achados clínicos e laboratoriais nos pacientes com e sem mutação no mtDNA, c) avaliar quais são os fatores clínicos preditivos de mutação no mtDNA que podem ser utilizados como sinalizadores para o médico decidir quando deve ser realizado um procedimento diagnóstico invasivo e de alto custo, c) estimar a proporção de mtDNA mutado, através da técnica PCR em tempo real em um grupo de pacientes com deleção, correlacionando com a idade de início dos sintomas e gravidade de manifestações clínicas, d) relatar achados de RNM com espectroscopia por emissão de prótons em pacientes com deleção no mtDNA. Pacientes, material e métodos: Foram selecionados, no ambulatório de doenças mitocondriais do HCPA, 43 pacientes com suspeita clínica de doença mitocondrial. Esse pacientes foram submetidos à análise, por etapas, de 5 mutações de ponto no mtDNA de leucócitos, de deleção no mtDNA de músculo e ao sequenciamento do tRNAleu e tRNAlys. Os pacientes com resultados positivos e negativos para mutações do mtDNA foram então comparados em relação às suas características clínicas e laboratoriais. Foram selecionados 11 pacientes para a determinação da percentagem relativa de deleção do mtDNA no tecido muscular e 3 pacientes para a descrição da RNM com espectroscopia. Resultados – Foram encontradas mutações no mtDNA em 17 pacientes (39.9%) distribuídas da seguinte forma: 4 pacientes com MELAS (A3243G), 1 paciente com síndrome de Leigh (T8993C) e 12 pacientes com deleções no mtDNA. As características significativamente mais freqüentes no grupo de pacientes com mutação no mtDNA comparados com os demais foram: miopatia (p=0,032), retinopatia pigmentar (p=0,007), oftalmoplegia e ptose (p=0,002), baixa estatura (p=0,04), hipotrofismo (p=0,033) e acidose lática (p=0,006). A quantificação do mtDNA pela técnica de PCR em tempo real foi realizada em 11 amostras de músculo de pacientes com deleção no mtDNA e com diferentes manifestações clínicas. Não houve correlação entre a percentagem relativa de deleção no mtDNA com os fenótipos clínicos (PEO, KSS e encefalomiopatia associado à doença multissistêmica), bem como com a idade de início das manifestações clínicas. A RNM com espectroscopia por emissão de prótons realizada em três pacientes com deleção no mtDNA associada a um quadro clínico não clássico mostrou achados distintos para cada paciente, sendo comum a todos as lesões cerebrais e a presença do pico invertido de lactato. Conclusões - A criteriosa seleção clínica e laboratorial se mostrou apropriada e o protocolo empregado se mostrou eficiente, uma vez que a mutação no mtDNA pode ser detectada em 17 dos 43 pacientes com suspeita de doença mitocondrial. Os pacientes positivos para deleção no mtDNA apresentaram algumas características clínicas preditivas para doença do mtDNA, o que pode ser importante na indicação de um procedimento invasivo (biópsia muscular) e de alto custo. A técnica e PCR em tempo real pode ser utilizado para quantificar a percentagem relativa de mtDNA deletado, porém para o diagnóstico das deleções, essa técnica deve ser realizada de forma complementar à técnica tradicional (Southern blot). O número amostral ainda é pequeno para correlacionar a quantidade relativa de mtDNA deletado com as síndromes mitocondriais clássicas e não clássicas. A RNM com espectroscopia por emissão de prótons, por possibilitar a detecção do lactato cerebral, parece ter utilidade na avaliação clínica de pacientes com suspeita clínica de doença mitocondrial, mesmo quando o quadro não é clássico.

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Chitosan membranes have been modified by plasma, utilizing the following gases: nitrogen (N2), methane (CH4), argon (Ar), oxygen (O2) and hydrogen. The modified membranes by plasma were compared to the unmodified ones. The membranes were characterized by absorption assay, contact angle, atomic force microscopy (AFM). Also, permeability assay of sodium sulfamerazine from such membranes were carried out. Through the absorption assay and contact angle it was possible to obtain information of the wettability of the membranes and what changes the plasma treatment can promote in relation to it. The plasma treatment using oxygen promoted increase of the wetability and swelling while the samples treated with methane decrease of the wetability and swelling. Through the Optical Emission Spectroscopy (OES) it was possible to identify which species were present in the plasma during the treatment. And through the AFM analysis it was possible to observe the changes nanotopography occurred on the surface of the samples. Permeability assay were archived for all treated membranes and compared to no treated ones. Due to that assay it was possible verify which the plasma treatment increased the permeability spectrum of the membranes which has varied from 1,4548 *10-5cm2.min-1 to 2,7713*10-5cm2.min-1. Chitosan membranes with permeability varied are importance in systems drug delivery, to liberate a wide variety of drugs

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This work reports the influence of the poly (ethylene terephthalate) textile and films surface modification by plasmas of O2 and mixtures (N2 + O2), on their physical and chemical properties. The plasma surface polymeric modification has been used for many researchs, because it does not affect the environment with toxic agents, the alterations remains only at nanometric layers and this technique shows expressive results. Then, due to its good acceptance, the treatment was carried out in a vacuum chamber. Some parameters remained constant during all treatment, such as: Voltage 470 V; Pressure 1,250 Mbar; Current: 0, 10 A and gas flow: 10 cm3/min, using oxygen plasma alternating the treatment time 10 to 60 min with an increase of 10 min to each subsequent treatment. Also, the samples were treated with a gas mixture (nitrogen + oxygen) which was varied only the gas composition from 0 to 100% leaving the treatment time remaining constant to all treatment (10 min). The plasma treatment was characterized in-situ with Optics Emission Spectroscopy (OES), and the samples was characterized by contact angle, surface tension, Through Capillary tests, Raman spectroscopy, Infrared attenuated total reflection (IR-ATR) and atomic force microscopy, scanning electronic Microscopy (SEM) and X-ray Photoelectron Spectroscopy (XPS). The results showed that oxygen treated fabrics presented high wettability, due to the hydrophilic groups incorporation onto the surface formed through spputering of carbon atoms. For the nitrogen atmosphere, there is the a film deposition of amine groups. Treatment with small oxygen concentration in the mixture with nitrogen has a higher spputered species of the samples

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Metal substrates were coated by thermal spraying plasma torch, they were positioned at a distance of 4 and 5 cm from the nozzle exit of the plasma jet. The starting materials were used for deposition of tantalum oxide powder and aluminium. These two materials were mixed and ground into high-energy mill, then immersed in the torch for the production of alumina coating infused with particles of tantalum with nano and micrometric size. The spraying equipment used is a plasma torch arc not transferred, which operating in the range of 250 A and 80 V, was able to produce enough heat to ignite aluminothermic between Ta2O5 and aluminum. Upon reaching the plasma jet, the mixing powders react with the heat of the blaze, which provides sufficient energy for melting aluminum particles. This energy is transferred through mechanisms of self-propagating to the oxide, beginning a reduction reaction, which then hits on the surface of the substrate and forms a coating on which a composite is formed by a junction metal - ceramic (Ta +Al2O3). The phases and quantification of each were obtained respectively by X-ray diffraction and the Rietveld method. Morphology by scanning electron microscopy and chemical analysis by energy dispersive spectroscopy EDS. It was also performed measurements of the substrate roughness, Vickers microhardness measurements in sprays and determination of the electron temperature of the plasma jet by optical emission spectroscopy EEO. The results confirmed the expectation generated around the end product of spraying the mixture Ta2O5 + Al, both in the formation of nano-sized particles and in their final form. The electron excitation temperature was consistent with the purpose of work, in addition, the thermodynamic temperature was efficient for the reduction process of Ta2O5. The electron excitation temperature showed values of 3000, 4500 and 8000 K for flows10, 20 and 30 l / min respectively, these values were taken at the nozzle exit of the plasma jet. The thermodynamic temperature around 1200 ° C, was effective in the reduction process of Ta2O5

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Today a major responsibility for the contamination of soil and groundwater and surface water are establishments known as gas stations of fuel which has attracted increasing attention from both the general population as the state agencies of environmental control due to leaks in storage tanks and mainly to disruption of pipe corrosion of tanks and pumping. Other services, like oil changes and car wash are also causes for concern in this type of establishment. These leaks can cause or waste produced, and the contamination of aquifers, serious health problems and public safety, since most of these stations located in urban areas. Based on this, the work was to evaluate soil contamination of a particular service station and fuel sales in the city of Natal, through the quantification of heavy metals like Cd, Cu, Cr, Ni, Pb, Zn of total organic carbon (TOC) and organic matter using different techniques such as optical emission spectrometry with inductively coupled plasma source (ICP OES), Total Organic Carbon analyzer and gravimetric analysis respectively. And also to characterize the soil through particle size analysis. Samples were taken in 21 georeferenced points and collected in the same period. The soils sampled in sampling stations P3, P5, P6, P10, P11, P12, P13, P14, P15, P17, P18 and P20 showed the smallest size fractions ranging from fine sand to medium sand. The other study sites ranged from fine sand to medium sand, except the point P8 showed that only the type size medium sand and P19, indicating a particle size of the coarse type. The small correlation of organic matter with the elements studied in this work suggests that these are not of anthropogenic origin but geochemical support

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The 100% cotton fabric (CO)* treated with plasma of methane CH4 has direct application in all areas that needs of aqueous solutions repellent material like coatings and uniforms applied biomedical, aeronautics, and automobile between others. 100% cotton fabric (CO) samples were treated by plasma with two differents atmosphere: Methane gas (CH4), treatment time was varied in 10 in 10 min. until 60 min., and mixture methane/argon (CH4/Ar), it was varied the proportion 1:9, 2:8, 3:7, 4:6, 5:5, 6:4, 7:3, 8:2 e 9:1, with treatment time of 30 minutes. In both, the fluxe was 5 sccm (second cubic centimeter), pressure 6 mbar, voltage 490 V and current 0,15A. The objective of work was measure the superficial tension of 100% CO then it treated with plasma, using contact angle measures of water and glycerol with the surface. The samples were tested after treatment, with 8 and 12 months to verify the superficial modification effects. It was verified an increase of hydrophobility with the Sessile drop values varied between 116,69º to 137,85º and it carried on after 12 months. The no treated samples shows contact angle equal 0º. OES analysis and Raman spectroscopy were accomplished. In the SEM analysis was verified oligomers. The plasma treatment is correct environmental, It turning greater than conventional treatments