989 resultados para Plasma Electrolytic Oxidation


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The dissertation is based on four articles dealing with recalcitrant lignin water purification. Lignin, a complicated substance and recalcitrant to most treatment technologies, inhibits seriously pulp and paper industry waste management. Therefore, lignin is studied, using WO as a process method for its degradation. A special attention is paid to the improvement in biodegradability and the reduction of lignin content, since they have special importance for any following biological treatment. In most cases wet oxidation is not used as a complete ' mineralization method but as a pre treatment in order to eliminate toxic components and to reduce the high level of organics produced. The combination of wet oxidation with a biological treatment can be a good option due to its effectiveness and its relatively low technology cost. The literature part gives an overview of Advanced Oxidation Processes (AOPs). A hot oxidation process, wet oxidation (WO), is investigated in detail and is the AOP process used in the research. The background and main principles of wet oxidation, its industrial applications, the combination of wet oxidation with other water treatment technologies, principal reactions in WO, and key aspects of modelling and reaction kinetics are presented. There is also given a wood composition and lignin characterization (chemical composition, structure and origin), lignin containing waters, lignin degradation and reuse possibilities, and purification practices for lignin containing waters. The aim of the research was to investigate the effect of the operating conditions of WO, such as temperature, partial pressure of oxygen, pH and initial concentration of wastewater, on the efficiency, and to enhance the process and estimate optimal conditions for WO of recalcitrant lignin waters. Two different waters are studied (a lignin water model solution and debarking water from paper industry) to give as appropriate conditions as possible. Due to the great importance of re using and minimizing the residues of industries, further research is carried out using residual ash of an Estonian power plant as a catalyst in wet oxidation of lignin-containing water. Developing a kinetic model that includes in the prediction such parameters as TOC gives the opportunity to estimate the amount of emerging inorganic substances (degradation rate of waste) and not only the decrease of COD and BOD. The degradation target compound, lignin is included into the model through its COD value (CODligning). Such a kinetic model can be valuable in developing WO treatment processes for lignin containing waters, or other wastewaters containing one or more target compounds. In the first article, wet oxidation of "pure" lignin water was investigated as a model case with the aim of degrading lignin and enhancing water biodegradability. The experiments were performed at various temperatures (110 -190°C), partial oxygen pressures (0.5 -1.5 MPa) and pH (5, 9 and 12). The experiments showed that increasing the temperature notably improved the processes efficiency. 75% lignin reduction was detected at the lowest temperature tested and lignin removal improved to 100% at 190°C. The effect of temperature on the COD removal rate was lower, but clearly detectable. 53% of organics were oxidized at 190°C. The effect of pH occurred mostly on lignin removal. Increasing the pH enhanced the lignin removal efficiency from 60% to nearly 100%. A good biodegradability ratio (over 0.5) was generally achieved. The aim of the second article was to develop a mathematical model for "pure" lignin wet oxidation using lumped characteristics of water (COD, BOD, TOC) and lignin concentration. The model agreed well with the experimental data (R2 = 0.93 at pH 5 and 12) and concentration changes during wet oxidation followed adequately the experimental results. The model also showed correctly the trend of biodegradability (BOD/COD) changes. In the third article, the purpose of the research was to estimate optimal conditions for wet oxidation (WO) of debarking water from the paper industry. The WO experiments were' performed at various temperatures, partial oxygen pressures and pH. The experiments showed that lignin degradation and organics removal are affected remarkably by temperature and pH. 78-97% lignin reduction was detected at different WO conditions. Initial pH 12 caused faster removal of tannins/lignin content; but initial pH 5 was more effective for removal of total organics, represented by COD and TOC. Most of the decrease in organic substances concentrations occurred in the first 60 minutes. The aim of the fourth article was to compare the behaviour of two reaction kinetic models, based on experiments of wet oxidation of industrial debarking water under different conditions. The simpler model took into account only the changes in COD, BOD and TOC; the advanced model was similar to the model used in the second article. Comparing the results of the models, the second model was found to be more suitable for describing the kinetics of wet oxidation of debarking water. The significance of the reactions involved was compared on the basis of the model: for instance, lignin degraded first to other chemically oxidizable compounds rather than directly to biodegradable products. Catalytic wet oxidation of lignin containing waters is briefly presented at the end of the dissertation. Two completely different catalysts were used: a commercial Pt catalyst and waste power plant ash. CWO showed good performance using 1 g/L of residual ash gave lignin removal of 86% and COD removal of 39% at 150°C (a lower temperature and pressure than with WO). It was noted that the ash catalyst caused a remarkable removal rate for lignin degradation already during the pre heating for `zero' time, 58% of lignin was degraded. In general, wet oxidation is not recommended for use as a complete mineralization method, but as a pre treatment phase to eliminate toxic or difficultly biodegradable components and to reduce the high level of organics. Biological treatment is an appropriate post treatment method since easily biodegradable organic matter remains after the WO process. The combination of wet oxidation with subsequent biological treatment can be an effective option for the treatment of lignin containing waters.

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Um sistema de injeção em fluxo envolvendo complexação com dietilditiofosfato de amônio e sorção de complexos metálicos em minicolunas de sílica gel modificada por grupos octadecil C18 é proposto para determinações multielementares em espectrometria de massa com plasma indutivamente acoplado. Influência da concentração de reagentes, natureza do ácido, tempo de reação, tempos de comutação, vazões e interferência de sódio foram investigadas. Água ou solução 2% v/v HNO3 podem ser utilizadas para lavar a coluna antes da eluição dos analitos com etanol. Amostras contendo 5000 mg Na L-1 e analisadas diretamente com o sistema proposto produzem uma concentração aparente de 63Cu de 0,45 µg L-1; por outro lado não foi observada interferência para As, Pb, Bi, Se, In, Tl, Cd, Hg e 65Cu. Para 0,25 % w/v NH4DTP e 3 mL de solução de amostra, curvas analíticas para Bi, Cu, Pb, As, Se, In, Tl, Cd, Hg no intervalo de 0,10 a 2,00 µg L-1 podem ser construídas com boas correlações (r2 > 0.998). A velocidade analítica e sensibilidade podem ser melhoradas pois dependem das condições de pré-concentração e eluição selecionadas. Com os parâmetros acima fixados, limites de detecção de 0.014 (Cu), 0.027 (As), 0.06 (Se), 0.02 (Cd), 0.029 (In), 0.043 (Hg), 0.02 (Tl), 0.06 (Pb) e 0.002 µg L-1 (Bi) foram obtidos.

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The electrochemical oxidation on platinum and platinum rhodium bimetallic electrodes was studied by Differential Electrochemical Mass Spectrometry for several ethanol concentrations in solution. It is found that increasing the ethanol concentration the production of the partially oxidized products (acetaldehyde) increases as the concentration increases. On the other hand, addition of 25% at. of rhodium increases the full oxidation to CO2. Another interesting result observed is a correlation between the intensity of the dehydrogenations peak at 0.3 V vs. RHE and the CO2 yield for the different ethanol concentration studied.

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The possibility of using thiocyanate to determine iron(II) and/or iron(III) in water-acetone mixture has been re-examined as part of a systematic and comparative study involving metallic complexes of pseudohalide ligands. Some parameters that affect the complete oxidation of the ferrous cations, their subsequent complexation and the system stability have been studied to optimize the experimental conditions. Our results show the viability and potentiality of this simply methodology as an alternative analytical procedure to determine iron cations with high sensitivity, precision and accuracy. Studies on the calibration, stability, precision, and effect of various different ions have been carried out by using absorbance values measured at 480 nm. The analytical curve for the total iron determination obeys Beer's law (r = 0.9993), showing a higher sensitivity (molar absorptivity of 2.10x10(4) L cm-1 mol-1) when compared with other traditional systems (ligands) or even with the "similar" azide ion [1.53x10(4) L cm-1 mol-1, for iron-III/azide complexes, in 70% (v/v) tetrahydrofuran/water, at 396 nm]. Under such optimized experimental conditions, it is possible to determine iron in the concentration range from 0.5 to 2 ppm (15-65% T for older equipments, quartz cells of 1.00 cm). Analytical applications have been tested for some different materials (iron ores), also including pharmaceutical products for anemia, and results were compared with atomic absorption determinations. Very good agreement was obtained with these two different techniques, showing the potential of the present experimental conditions for the total iron spectrophotometric determinations (errors < 5%). The possibility of iron speciation was made evident by using another specific and auxiliary method for iron(II) or (III).

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Direct leaching is an alternative to conventional roast-leach-electrowin (RLE) zinc production method. The basic reaction of direct leach method is the oxidation of sphalerite concentrate in acidic liquid by ferric iron. The reaction mechanism and kinetics, mass transfer and current modifications of zinc concentrate direct leaching process are considered. Particular attention is paid to the oxidation-reduction cycle of iron and its role in direct leaching of zinc concentrate, since it can be one of the limiting factors of the leaching process under certain conditions. The oxidation-reduction cycle of iron was experimentally studied with goal of gaining new knowledge for developing the direct leaching of zinc concentrate. In order to obtain this aim, ferrous iron oxidation experiments were carried out. Affect of such parameters as temperature, pressure, sulfuric acid concentration, ferrous iron and copper concentrations was studied. Based on the experimental results, mathematical model of the ferrous iron oxidation rate was developed. According to results obtained during the study, the reaction rate orders for ferrous iron concentration, oxygen concentration and copper concentration are 0.777, 0.652 and 0.0951 respectively. Values predicted by model were in good concordance with the experimental results. The reliability of estimated parameters was evaluated by MCMC analysis which showed good parameters reliability.

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The properties of the paper surface play a crucial role in ensuring suitable quality and runnability in various converting and finishing operations, such as printing. Plasma surface modification makes it possible to modify the surface chemistry of paper without altering the bulk material properties. This also makes it possible to investigate the role of the surface chemistry alone on printability without influencing the porous structure of the pigment-coated paper. Since the porous structure of a pigment coating controls both ink setting and optical properties, surface chemical changes created by a plasma modification have a potential to decouple these two effects and to permit a better optimization of them both. The aim of this work was to understand the effects of plasma surface modification on paper properties, and how it influences printability in the sheet-fed offset process. The objective was to broaden the fundamental understanding of the role of surface chemistry on offset printing. The effects of changing the hydrophilicity/ hydrophobicity and the surface chemical composition by plasma activation and plasma coatings on the properties of coated paper and on ink-paper interactions as well as on sheet-fed offset print quality were investigated. In addition, the durability of the plasma surface modification was studied. Nowadays, a typical sheet-fed offset press also contains units for surface finishing, for example UVvarnishing. The role of the surface chemistry on the UV-varnish absorption into highly permeable and porous pigment-coated paper was also investigated. With plasma activation it was possible to increase the surface energy and hydrophilicity of paper. Both polar and dispersion interactions were found to increase, although the change was greater in the polar interactions due to induced oxygen molecular groups. The results indicated that plasma activation takes place particularly in high molecular weight components such as the dispersion chemicals used to stabilize the pigment and latex particles. Surface composition, such as pigment and binder type, was found to influence the response to the plasma activation. The general trend was that pilot-scale treatment modified the surface chemistry without altering the physical coating structure, whereas excessive laboratory-scale treatment increased the surface roughness and reduced the surface strength, which led to micro-picking in printing. It was shown that pilot-scale plasma activation in combination with appropriate ink oils makes it possible to adjust the ink-setting rate. The ink-setting rate decreased with linseed-oil-based inks, probably due to increased acid-base interactions between the polar groups in the oil and the plasma-treated paper surface. With mineral-oil-based inks, the ink setting accelerated due to plasma activation. Hydrophobic plasma coatings were able to reduce or even prevent the absorption of dampening water into pigmentcoated paper, even when the dampening water was applied under the influence of nip pressure. A uniform hydrophobic plasma coating with sufficient chemical affinity with ink gave an improved print quality in terms of higher print density and lower print mottle. It was also shown that a fluorocarbon plasma coating reduced the free wetting of the UV-varnish into the highly permeable and porous pigment coating. However, when the UV-varnish was applied under the influence of nip pressure, which leads to forced wetting, the role of the surface chemical composition seems to be much less. A decay in surface energy and wettability occurred during the first weeks of storage after plasma activation, after which it leveled off. However, the oxygen/carbon elemental ratio did not decrease as a function of time, indicating that ageing could be caused by a re-orientation of polar groups or by a contamination of the surface. The plasma coatings appeared to be more stable when the hydrophobicity was higher, probably due to fewer interactions with oxygen and water vapor in the air.

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OBJETIVO: Estabelecer um método barato e eficiente de preparação do plasma rico em plaquetas e fatores de crescimento para utilização em cirurgia plástica. MÉTODO: Foram realizados 20 testes através de centrifugação de sangue, variando-se a força e o tempo de centrifugação, para determinarmos o melhor método que proporcione uma maior concentração plaquetária e mais 10 testes para comprovar a reprodutibilidade do método. RESULTADOS: A utilização de uma força de centrifugação de 300 g por 10 minutos na 1ª. centrifugação e de 640 g por 10 minutos na 2ª. centrifugação obtiveram as maiores concentrações plaquetárias, superiores a 4,5 vezes a concentração na amostra, e os testes foram reprodutíveis. CONCLUSÕES: Uma alta concentração plaquetária pode ser obtida por este protocolo de obtenção de plasma rico em plaquetas e fatores de crescimento e a formação do gel é possível através da utilização de trombina autóloga, também obtida pelo protocolo descrito, facilitando sua utilização em cirurgia plástica, onde vem mostrando bons resultados na cicatrização de feridas e na integração de enxertos ósseos e cutâneos.

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OBJETIVO: Definir qual a melhor potência a ser empregada de forma a atingir a profundidade necessária para ablação com o menor número de sintomas pós-procedimento. MÉTODO: Foram estudados 28 pacientes com esôfago de Barrett, após tratamento cirúrgico do refluxo ou em uso de bloqueadores de bomba de prótons, submetidos à ablação endoscópica, randomizados em dois grupos com potências diferentes - 50 ou 70W. Imediatamente após, foram realizadas biópsias endoscópicas das áreas fulguradas. A sintomatologia foi avaliada por questionário telefônico. RESULTADOS: Não houve diferença entre os grupos quanto a idade, a extensão do esôfago de Barrett, a porcentagem da circunferência esofagiana coagulada e a duração dos sintomas. A dor foi o sintoma predominante e a disfagia ocorreu de forma transitória. Houve correlação negativa moderada entre número de sintomas e potência (potência mais baixa com maior número de sintomas), porém sem diferença significativa. Em 40% dos casos em que se utilizou menor potência obteve-se fragmentos que atingiram apenas a porção superficial da mucosa, o que só ocorreu em 10% dos casos no grupo de 70W. Não foi observada diferença significativa entre a potência utilizada ou o acometimento da muscular da mucosa e o número de sintomas. CONCLUSÕES: A utilização de potência de 70W durante a coagulação do esôfago de Barrett com plasma de argônio sugere associação com menor incidência de metaplasia colunar especializada residual abaixo do epitélio escamoso neoformado.

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O plasma autólogo começou a ser estudado na década de 90, principalmente por suas propriedades adesivas, de angiogênese e pela presença de fatores de crescimento de origem plaquetária. Na verdade, o plasma pode ser isolado de modo autólogo, a partir do sangue do próprio paciente e obtido nas suas duas porções: uma com alta concentração de plaquetas (plasma rico em plaquetas- PRP) e outra com concentração baixa de plaquetas (plasma pobre em plaquetas- PPP). O presente estudo está em desenvolvimento no Hospital Universitário Clementino Fraga Filho, da Universidade Federal do Rio de Janeiro (HUCFF-UFRJ) e no Hospital Naval Marcílio Dias (HNMD), ambos no Rio de Janeiro. O objetivo é avaliar as propriedades do plasma pobre em plaquetas, principalmente a sua ação adesiva, em pacientes com indicação de dermolipectomia abdominal reparadora, de modo a reduzir as coleções no pós operatório, como hematoma e seroma, duas das principais complicações nesse tipo de cirurgia.

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OBJETIVO: avaliar a eficácia da complementação por coagulação com plasma de argônio para reduzir a taxa de neoplasia residual ou recorrente após ressecção endoscópica completa fragmentada de grandes adenomas sésseis colorretais. MÉTODOS: critérios de inclusão: pacientes com grandes adenomas colorretais sésseis, > 20mm, sem sinais morfológicos de infiltração profunda, submetidos à ressecção endoscópica completa fragmentada estudada com cromoendoscopia e magnificação de imagens. Os pacientes foram randomizados em dois grupos: grupo 1 - nenhum procedimento adicional e, grupo 2 - complementação por coagulação com plasma de argônio. O seguimento por colonoscopia foi realizado em três, seis e 12 meses de pós-operatório. Foi avaliada a taxa de neoplasia residual ou recidiva local. RESULTADOS: foram incluídos no estudo um total de 21 lesões. Onze lesões no grupo 1 e dez no grupo 2. Ocorreram duas neoplasias residuais ou recorrências locais em cada grupo, detectadas em três meses de acompanhamento. CONCLUSÃO: a complementação por coagulação com plasma de argônio após uma aparente ressecção endoscópica completa em fragmentos de grandes adenomas sésseis colorretais não parece reduzir a ocorrência de lesão adenomatosa residual ou recidiva local.

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OBJETIVO: avaliar um novo método de determinação do sexo fetal pela análise de DNA obtido do plasma materno. MÉTODOS: sangue periférico (10 mL) foi coletado de mulheres grávidas em diferentes idades gestacionais. O plasma foi separado e o DNA isolado do mesmo foi submetido à reação em cadeia da polimerase (PCR) com oligonucleotídeos iniciadores derivados do gene DYS14 específico do cromossomo Y. RESULTADOS: foram analisadas amostras de 212 pacientes. O resultado da PCR foi comparado ao sexo determinado pela ultra-sonografia e/ou do nascimento. Houve concordância em 209 das 212 pacientes. Nos 3 casos discordantes a PCR apontou resultado feminino, sendo as três amostras coletadas antes da 8ª semana de gravidez. CONCLUSÃO: o método de PCR desenvolvido para a determinação do sexo fetal possui excelente sensibilidade e especificidade, permitindo seu uso rotineiro. O resultado de sexo masculino possui maior confiabilidade que o feminino, principalmente em idade gestacional precoce. Novas aplicações para o DNA fetal no plasma materno estão sendo pesquisadas, permitindo no futuro o diagnóstico não invasivo de uma série de doenças.

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OBJETIVO: avaliar a possibilidade do diagnóstico precoce do sexo fetal no plasma materno pela técnica da reação em cadeia da polimerase em tempo real (PCR em tempo real) a partir da 5ª semana de gestação. MÉTODOS: nesse estudo prospectivo foi coletado sangue periférico de gestantes com feto único a partir da 5ª semana de gestação. Após centrifugação do sangue, 0,4 mL de plasma foi separado para extração de DNA fetal. O DNA foi analisado em duplicata por PCR em tempo real para duas regiões genômicas (uma do cromossomo Y e outra comum a ambos os sexos) pelo método de TaqMan®, o qual utiliza um par de primers e uma sonda fluorescente. Foram excluídos da amostragem os casos que evoluíram para aborto. Para o cálculo da sensibilidade e especificidade, usamos o método de comparação com padrão-ouro, que foi o sexo ao nascimento. RESULTADOS: foram realizados 79 exames de DNA fetal no plasma materno de 52 gestantes. O resultado dos exames foi comparado com o sexo da criança após o parto. O índice de acerto conforme a idade gestacional foi de 92,6% (25 de 27 casos) na 5ª semana, conferindo sensibilidade de 87% e 95,6% (22 de 23 casos) na 6ª semana, com sensibilidade de 92%. A partir da 7ª semana de gestação o acerto foi em 100% (29 de 29 casos). A especificidade foi de 100% independente da idade gestacional. CONCLUSÕES: a técnica de PCR em tempo real para detecção do sexo fetal a partir da 5ª semana no plasma materno possui boa sensibilidade e excelente especificidade. Houve concordância do resultado em 100% dos casos em que o diagnóstico foi masculino, independente da idade gestacional, e no caso de feminino, a partir da 7ª semana de gestação.

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Oxidized starch is a key component in the paper industry, where it is used as both surfacing sizer and filler. Large quantities are annually used for this purpose; however, the methods for the oxidation are not environmentally friendly. In our research, we have studied the possibility to replace the harmful oxidation agents, such as hypochlorite or iodates and transition metal catalysts, with a more environmentally friendly oxidant, hydrogen peroxide (H2O2), and a special metal complex catalyst (FePcS), of which only a small amount is needed. The work comprised batch and semi-batch studies by H2O2, ultrasound studies of starch particles, determination of low-molecular by-products and determination of the decomposition kinetics of H2O2 in the presence of starch and the catalyst. This resulted in a waste-free oxidation method, which only produces water and oxygen as side products. The starch oxidation was studied in both semi-batch and batch modes in respective to the oxidant (H2O2) addition. The semi-batch mode proved to yield a sufficient degree of substitution (COOH groups) for industrial purposes. Treatment of starch granules by ultrasound was found to improve the reactivity of starch. The kinetic results were found out to have a rather complex pattern – several oxidation phases were observed, apparently due to the fact that the oxidation reaction in the beginning only took place on the surface, whereas after a prolonged reaction time, partial degradation of the solid starch granules allowed further reaction in the interior parts. Batch-mode experiments enabled a more detailed study of the mechanisms of starch in the presence of H2O2 and the catalyst, but yielded less oxidized starch due to rapid decomposition of H2O2 due to its high concentrations. The effect of the solid-liquid (S/L) ratio in the reaction system was studied in batch experiments. These studies revealed that the presence of the catalyst and the starch enhance the H2O2 decomposition.