165 resultados para Destilação
Resumo:
Vegetable oils are characterized as important raw materials in the supplying of natural substances of interest pharmaceutical, food and cosmetic industry. Sunflower oil stands out for its important composition present in unsaturated fatty acids such as oleic acid (C18:1) and linoleic (C18:2), responsible for many health benefits. The main objective of this study is obtain enriched fractions in unsaturated compounds from refined sunflower oil. The oil used in this study was characterized by the determination of some properties, like iodine number, acid number and viscosity. A transesterification was done to transform the triglycerides into their corresponding methyl esters of fatty acids. These was submitted the molecular distillation process, for present as an efficient alternative to separation and purification of these substances, using high vacuum and low temperatures. Of the esters fractions that was obtained, were analyzed by gas chromatography. The experimental design technique was used to evaluate the influence of the temperature variation of evaporation and condensation system on the percentage obtained residue. The evaporator temperature proved to be the most influential variable on the studied response. The optimized conditions for the answer was studied at 100 °C for evaporator temperature and 10 °C for the condenser temperature. The graph of "split ratio" showed that for the lowest flow feed (1 mL/min) and higher evaporator temperature (110 °C) was obtained in the largest fraction of distillate. It also used the study of the influence of evaporator temperature on the concentration of unsaturated compounds. The best operating conditions for temperature was 90 °C reached 82.21 % of unsaturated compounds. Elimination curves of the unsaturated compounds present in the distillate stream were obtained. The simulation results of the molecular distillation process of sunflower oil showed the concentration profiles for three different feed flow rates. The speed, temperature and thickness profiles of the liquid film were obtained. The speed of the film increases as the fluid flows through the walls of the evaporator, reaching a maximum on length of 0.075 m. The film thickness decreases on the route, since many compounds are volatilized. The result of the temperature profile had to be consistent with the literature reproduced, being constant after reaching the maximum operating temperature in the length of 0.15 m. This study allowed characterizing and focusing, through experimental analysis, unsaturated compounds and observing the sunflower oil´s behavior through process simulation.
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Vegetable oils are characterized as important raw materials in the supplying of natural substances of interest pharmaceutical, food and cosmetic industry. Sunflower oil stands out for its important composition present in unsaturated fatty acids such as oleic acid (C18:1) and linoleic (C18:2), responsible for many health benefits. The main objective of this study is obtain enriched fractions in unsaturated compounds from refined sunflower oil. The oil used in this study was characterized by the determination of some properties, like iodine number, acid number and viscosity. A transesterification was done to transform the triglycerides into their corresponding methyl esters of fatty acids. These was submitted the molecular distillation process, for present as an efficient alternative to separation and purification of these substances, using high vacuum and low temperatures. Of the esters fractions that was obtained, were analyzed by gas chromatography. The experimental design technique was used to evaluate the influence of the temperature variation of evaporation and condensation system on the percentage obtained residue. The evaporator temperature proved to be the most influential variable on the studied response. The optimized conditions for the answer was studied at 100 °C for evaporator temperature and 10 °C for the condenser temperature. The graph of "split ratio" showed that for the lowest flow feed (1 mL/min) and higher evaporator temperature (110 °C) was obtained in the largest fraction of distillate. It also used the study of the influence of evaporator temperature on the concentration of unsaturated compounds. The best operating conditions for temperature was 90 °C reached 82.21 % of unsaturated compounds. Elimination curves of the unsaturated compounds present in the distillate stream were obtained. The simulation results of the molecular distillation process of sunflower oil showed the concentration profiles for three different feed flow rates. The speed, temperature and thickness profiles of the liquid film were obtained. The speed of the film increases as the fluid flows through the walls of the evaporator, reaching a maximum on length of 0.075 m. The film thickness decreases on the route, since many compounds are volatilized. The result of the temperature profile had to be consistent with the literature reproduced, being constant after reaching the maximum operating temperature in the length of 0.15 m. This study allowed characterizing and focusing, through experimental analysis, unsaturated compounds and observing the sunflower oil´s behavior through process simulation.
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The worldwide concern regarding the use of sustainable energy and preserving the environment are determining factors in the search for resources and alternative sources of energy and therefore fuel less aggressive nature. In response to these difficulties Biodiesel has emerged as a good solution because it is produced from renewable sources, produces burns cleaner and is easily reproducible. This work was synthesized with biodiesel oil, sunflower via homogeneous catalysis in the presence of KOH, with and without the use of BHT and subsequently added to the blends BX (a proportion of biodiesel X = 5, 10, 15 and 20 %). Atmospheric distillation of the analysis, performed in blends with and without BHT were collected residue generated by each sample and performed a study heat from the thermogravimetric analysis at a heating rate of 10 °C*min-1, nitrogen atmosphere and heating to 600 °C. According to the specifications of Resolution N 7/2008 for biodiesel, it was found that the synthesized material was in accordance with the specifications. For blends showed that the samples are in accordance with the Resolution of ANP N 42/2009. From the TG / DTG curves of the samples of biodiesel, blends and waste can be seen that these show a single loss of thermal decomposition concerning constituents present in each sample. The blends without BHT with ratios of 5%, 10% and 15% biodiesel showed a lower amount of waste (1,07%; 1,09% e 1,10%) to mineral diesel (1,15%). Therefore, it is concluded that the addition of biodiesel with diesel mineral can improve some physico-chemical parameters, but also, depending on the added amount, decreasing the amount of waste generated. This fact is of great importance because the carbonaceous residue can cause problems in mechanical equipment and parts for vehicles, causing more frequent maintenance, and this is not desirable
Estudo térmico dos resíduos gerados da destilação atmosférica das misturas diesel/biodiesel de dendê
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The growing world demand for energy supplied by fossil fuels, a major contributor to the emission of pollutants into the atmosphere and causing environmental problems, has been encouraging governments and international organizations to reflect and encourage the use of alternative renewable sources. Among these new possibilities deserves attention biodiesel, fuel cleaner and easy to reproduce. The study of new technologies involving that source is necessary. From this context, the paper aims at analyzing the thermal stability by thermogravimetric analysis, of the waste generated from atmospheric distillation of mixtures with ratios of 5, 10, 15 and 20% palm biodiesel in diesel with and without addition of BHT antioxidant. It was synthesized biodiesel through palm oil, via homogeneous catalysis in the presence of KOH, with and without the use of BHT and subsequently added to the diesel common indoor type (S1800) from a gas station BR. The diesel was already added with 5% biodiesel, and thus the proportions used for these blends were subtracted from the existing ratio in diesel fuel, resulting in the following proportions palm oil biodiesel: 0% (B5), 5% (B10), 10 % (B15) and 15% (B20). From atmospheric distillation analysis, performed in mixtures with and without BHT were collected residue generated by each sample and performed a thermal study from the thermogravimetric analysis at a heating rate of 10 °C.min-1, nitrogen atmosphere and heating to 600 ° C. According to the specifications of Resolution No. 7/2008 for biodiesel, it was found that the material was synthesized in accordance with the specifications. For mixtures, it was noted that the samples were in accordance with the ANP Resolution No. 42/2009. Given the TG / DTG curves of the samples of waste mixtures with and without BHT antioxidant was able to observe that they showed a single stage of thermal decomposition attributed to decomposition of heavy hydrocarbons and esters and other heavier constituents of the waste sample weighed. The thermal behavior of residues from atmospheric distillation of mixtures of diesel / biodiesel is very important to understand how this affects the proper functioning of the engine. A large amount of waste can generate a high content of particulate material, coke formation and carbonaceous deposits in engine valves, compromising their performance
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Os danos causados pelos processos corrosivos em equipamentos presentes nas refinarias de petróleo, durante as destilações, foram descritos inicialmente em 1920. Inúmeras são as referências reportando estudos de processos corrosivos envolvendo tanto os ácidos naftênicos como os compostos sulfurados; em contrapartida, raras são as fontes de estudo envolvendo simultaneamente ambos. Neste trabalho, escolheram-se dois tipos de óleos: um óleo A - com alto teor de enxofre e um petróleo B com elevada acidez. Fez-se então um blend 50/50 em volume obtendo assim o óleo C para verificar a influência tanto da acidez quanto dos teores de enxofre nos processos corrosivos pelos cortes destes óleos. Após a destilação das três amostras, os derivados obtidos foram caracterizados e submetidos aos testes laboratoriais de corrosão. Os cortes do petróleo A apresentaram teores de enxofre e taxas de corrosão crescentes em função do aumento da temperatura final dos derivados, apresentando uma corrosão máxima de 1,66 mm/ano e produtos de corrosão como troilita (FeS) e pirrota (Fe1-xS). As frações de B apresentaram altos valores de NAT na faixa de temperatura de 220-400 °C, enquanto as taxas de corrosão foram de 0,83 mm/ano para esta faixa de temperatura; os produtos de corrosão encontrados foram o óxido de ferro (Fe2O3) e goetite (α-FeOOH). Por fim, os derivados do blend C, apresentaram propriedades intermediárias aos cortes anteriores o que corroborou para taxas de corrosão menores de 0,50 mm/ano até uma temperatura de 300 °C, expondo assim, a eficiência em utilizar a técnica de misturas de petróleos para o refino.
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O estabelecimento de cultura in vitro de Polygala paniculata L. permitiu a propagação rápida de matéria-prima vegetal sob condições assépticas e padronizadas. As plantas in vitro foram submetidas à extração e destilação simultâneas (EDS) e a composição química do óleo essencial foi analisada por CG/DIC e CG/EM. Foram avaliados os efeitos de BAP (6-benzilaminopurina) sobre o desenvolvimento in vitro e produção de voláteis em P. paniculata. A principal característica do óleo essencial consistiu na presença marcante de salicilato de metila. Plantas cultivadas em meio controle MS (Murashige & Skoog) produziram mais do que 80% de salicilato, enquanto o uso de BAP, reduziu a produção de salicilato de metila a 71% e 21% para as concentrações de 2 e 4 mg L-1, respectivamente. A cultura de tecidos de P. paniculata pode ser indicada como fonte de salicilato de metila.
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Este trabalho visou a comparar o potencial energético de resíduos produzidos no beneficiamento de grãos de café (Coffea canephora var. Conilon) e no processo de fresamento da madeira, sugerindo seu uso em substituição ao da lenha de eucalipto, no processo de secagem de grãos de café. O uso destes resíduos agrícola e florestal pode contribuir para a redução de problemas ambientais relacionados com a contaminação do solo, ar e água, devidos a seu descarte inadequado, e para reduzir os custos de produção e, ou, beneficiamento do café. Os subprodutos da destilação seca e o carvão vegetal dessas matérias-primas foram quantificados e comparados. De acordo com os resultados, pôde-se verificar que os resíduos de casca de café proporcionaram uma boa produção de carvão vegetal, visto que seu rendimento gravimétrico em carvão foi estatisticamente superior ao da lenha. Considerando a produtividade e qualidade do carvão vegetal, o melhor resultado foi obtido pela carbonização da casca de café nas temperaturas de 350 ºC a 550 ºC e dos resíduos da fresa de madeira a 550 °C, principalmente, graças aos rendimentos médios em carbono fixo, que, nesses casos, superaram aqueles apresentados pelos carvões derivados de lenha do eucalipto. Em se tratando do poder calorífico superior, verificou-se que os resíduos da fresa de madeira e os resíduos de casca de café poderão ser utilizados para secagem de grãos de café, visto que apresentaram valores de poder calorífico superior (PCS) muito próximo aos de lenha de eucalipto. Graças aos bons rendimentos gravimétricos e rendimentos em carbono fixo, os carvões vegetais derivados dos resíduos produzidos no beneficiamento de grãos de café e no processo de fresamento da madeira apresentaram potencial considerável para serem utilizados como insumo energético.
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Mestrado em Engenharia Química
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Mestrado em Engenharia Química. Ramo optimização energética na indústria química
Produção de bioetanol a partir de um resíduo orgânico proveniente da central de compostagem da LIPOR
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Mestrado em Engenharia Química
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O trabalho tem como objectivo a simulação e verificação do funcionamento de 3 colunas de destilação, a T-0303, a T-0306 e a T-0307, integrantes do processo de produção de p-xileno, baseado nos dados relativos ao ano de 2008, existente na refinaria da Galp no Porto. A abordagem consistiu em utilizar o AspenPlus quer para a simulação quer para a optimização, sendo esta última complementada com um planeamento experimental e optimização no Minitab15. O critério de optimização foi estabelecido a partir de uma análise ao processo actual, na qual se averiguou que se poderia, no limite: produzir mais 15,30ton.ano-1 de p-xileno no conjunto de colunas T-0306 e T-0307; remover mais 1,36ton.ano-1 de dessorvente na coluna T-0303 e diminuir a energia necessária para o processo. Da optimização à coluna T-0303, obteve-se uma melhoria de remoção de 0,34ton.ano-1 de dessorvente, e uma diminuição na energia necessária para 333,24.106kWh por ano. Para obter esta optimização houve necessidade de ultrapassar em 109,852kW a potência da bomba P0306A/S e alterou-se a razão de refluxo na base para 46,1. A optimização conjunta das colunas T-0306 e T-0307 apenas possibilita uma melhoria de p-xileno de 3,4ton.ano-1. De uma optimização individual da coluna T-0307, mantendo a coluna T-0306 nas condições actuais, obteve-se uma melhoria na produção de p-xileno de 14,62ton.ano-1. Neste ensaio as potências do condensador E-0314, do reebulidor E-0306 e da bomba P0314A/S excedem, as actuais em, respectivamente, 35,71kW, 35,74kW e 0,12kW. Enquanto para a situação actual o custo de p-xileno equivale a 722,17€.ton-1, para a optimização simultânea da coluna T-0303 e T-0307, é de 723,39€.ton-1 e para a optimização de apenas da coluna T-0307 é de 722,81€.ton-1. Perante um preço de venda actual de pxileno de 749,10€.ton-1 todas as situações são favoráveis. Em suma, é possível uma optimização processual mas o custo por tonelada de pxileno fica superior ao actual.
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Química
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do grau de Mestre em Engenharia Química e Bioquímica
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Dissertação apresentada à Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia, para a obtenção do grau de Mestre em Energia e Bioenergia
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Dissertação para obtenção do Grau de Mestre em Engenharia Química e Bioquímica