999 resultados para Resíduo de Petróleo, Degradação Fotoquímica, Fotocatálise Heterogênea,Hidrocarbonetos


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A indústria cimenteira é um dos sectores que mais contribui para um elevado impacto ambiental. O processo de produção de cimento requer a utilização de grandes quantidades de recursos naturais, é energeticamente intensivo e emite elevadas taxas de dióxido de carbono para a atmosfera. Com o presente estudo pretendeu-se contribuir para a mitigação do impacto ambiental provocado pelo processo de fabrico do cimento estudando a viabilidade da substituição parcial de cimento por um material com propriedades cimentícias. O material cimentício estudado foi um resíduo da indústria da refinação de petróleo, em concreto, o catalisador exausto produzido na unidade de “craking” catalítico (FCC) da refinaria da Petrogal, em Sines. Na prossecução do objectivo deste trabalho prepararam-se misturas de cimento com teores de incorporação catalisador exausto de FCC de 5, 10, 15, 20, 25 e 30%, em massa, para avaliar o efeito do teor do resíduo incorporado em propriedades reológicas e mecânicas de argamassas, em função do tempo de hidratação. Pretendeu-se, ainda, avaliar se as misturas de cimento com incorporação do resíduo correspondem às especificações requeridas pela norma europeia em vigor (NP EN 19 -1:2001). Numa segunda fase do trabalho estudou-se ternária composta por cimento, resíduo de catalisador exausto de FCC e resíduo de pedra natural. Em função da sua composição, foram produzidas quatro séries diferentes de argamassas: - Argamassas de referência que incluem na sua composição cimento, areia e água (de acordo com a NP EN 196-1:2006); - Argamassas com substituição parcial de cimento por resíduo de catalisador exausto de FCC tal como foi recebido da refinaria (misturas binárias); - Argamassas com substituição parcial de cimento por resíduo de catalisador exausto de FCC moído (misturas binárias); e, - Argamassas com substituição parcial de cimento por catalisador exausto de FCC e resíduo de pedra natural (misturas ternárias). Todas estas argamassas foram elaboradas adoptando um procedimento experimental que se baseia no descrito na norma NP EN 196-1:2006. Ao longo da campanha experimental, as argamassas foram sujeitas a ensaios no estado fresco e ensaios no estado endurecido, em diferentes tempos de hidratação, para determinar algumas propriedades físicas e mecânicas, respectivamente. As argamassas de referência e as misturas binárias foram ensaiadas aos 2, 7, 28, 56 e 90 dias e as misturas binárias foram ensaiadas aos 2, 7 e 28 dias. No estado fresco realizaram-se ensaios de determinação da consistência por espalhamento, determinação da massa volúmica e ensaios de teor em ar. No estado endurecido foram determinadas as resistências à flexão e à flexão. Da análise dos resultados pod inferir que o resíduo de catalisador exausto de FCC apresenta actividade pozolânica, de tal forma que, argamassas conteores de substituição de cimento por este resíduo até 15% (com adição de superplastificante) estão conforme a norma NP EN 197-1:2001 no que respeita à resistência à compressão, em todos os tempos de hidratação especificados. Relativamente às misturas ternárias, verificou-se que conforme a norma NP EN 197-1:2001, o cimento pode ser substituído pelos dois resíduos em simultâneo até 20%. Verificou-se ainda que utilizando qualquer um dos resíduos com superplastificante, este teor poderia aumentar até 30%.

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A contaminação constitui uma das principais causas de degradação do solo e encontra-se consagrada na Estratégia Temática de Protecção do Solo da Comissão das Comunidades Europeias. Segundo a Agência Europeia do Ambiente (AEA), actualmente, aproximadamente 250000 locais dos 32 países membros da AEA, encontram-se contaminados. As actividades de produção industrial e de serviços, juntamente com a indústria petrolífera constituem, a nível europeu, as principais fontes de contaminação de solos, atingindo 53% das actividades geradoras de contaminação. Para minimizar os impactes ambientais associados à contaminação de solos, as abordagens de avaliação e remediação têm evoluído no sentido de desenvolver ferramentas para a avaliação do risco de contaminação e técnicas de remediação com maior relação custo-benefício. Procura-se, por um lado, uma abordagem de gestão do risco face ao tipo de ocupação do solo, principalmente e, por outro lado, soluções de remediação com valorização económica do local. Neste trabalho pretende-se analisar a problemática da contaminação de solos por hidrocarbonetos, quer na fase de avaliação, quer na de remediação. Para tal, é apresentado o caso de estudo de uma contaminação do solo numa instalação de armazenagem de lubrificantes da empresa Total Portugal Petróleos SA, onde é analisada a fase de avaliação e remediação adoptada. Neste caso de estudo foi identificada uma contaminação no solo por hidrocarbonetos de cadeias longas (predominantes em lubrificantes), que se propagou para além dos limites da instalação de armazenagem. Foi seguida uma das abordagens do referencial de Ontario “Guideline for Use at Contaminated Sites in Ontario”, a de avaliação de risco específica para o local. De acordo com a aplicação desta abordagem, conclui-se que a zona contaminada, para um uso industrial, não apresenta um risco inaceitável para o solo e águas subterrâneas. Contudo, a zona mais afectada foi removida (96,7 t) e, posteriormente, encaminhada como resíduo para destino adequado, em função da sua tipologia. Foi, ainda, aplicado um oxidante (Reactivo Fenton) nas paredes da zona escavada para favorecer a degradação dos hidrocarbonetos remanescentes no solo. A zona escavada foi preenchida com outro solo, onde foi garantida a isenção de contaminantes, em particular hidrocarbonetos.

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Este trabalho tem como propósito monitorar a degradação do fármaco amoxicilina na presença e ausência de β-ciclodextrina através de técnicas espectroscópicas. Para isto, foi acompanhada a hidrólise do fármaco protegido da luz por cerca de 400 horas. Os resultados obtidos indicam que, inicialmente, a ciclodextrina não altera a hidrólise da amoxicilina, entretanto, após 250 horas de monitoramento há um aumento acentuado na hidrólise da amoxicilina quando presente a ciclodextrina. Ao irradiar a amostra com radiação UV, verificamos que as soluções contendo β-ciclodextrina sofrem uma fototransformação mais lenta (26,8%) que as soluções sem β-ciclodextrina.

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Em vista da eficiência comprovada da biorremediação na degradação de compostos tóxicos ao ser humano, como o benzeno, tolueno, etilbenzeno e xilenos (BTEX), diversas empresas, principalmente as relacionadas com consultorias e remediação ambiental, têm despertado grandes interesses pela implantação da biorremediação como opção para a reabilitação de áreas contaminadas. Em países desenvolvidos, como os Estados Unidos, Canadá e vários países da Europa, a técnica bioquímica de remediação vem sendo amplamente utilizada em trabalhos que se baseiam, por exemplo, no tratamento de solos contaminados por hidrocarbonetos de petróleo. Porém, ao contrário do que se tem notado nesses países, no Brasil, os projetos de biorremediação ainda estão no campo da teoria, com poucos casos práticos, embora exista uma probabilidade real de expansão. A esse despeito, uma das maiores pertinências dessa revisão é elucidar as vantagens que essa técnica pode oferecer quando é utilizada para a degradação de compostos, como os BTEX, em solos tipicamente brasileiros, cujas características físico-químicas contribuem, em muito, para a degradação desses contaminantes. Nessa conjuntura, pesquisas revelam que os fatores ambientais (como teores de umidade e oxigênio) e a disponibilidade de nutrientes nos solos, além das condições climáticas do Brasil, são bastante adequadas para o emprego dessa técnica. Isso pode trazer como vantagens, ótima relação custo-benefício e maior eficiência na degradação de compostos tóxicos e recalcitrantes frente à maioria das técnicas convencionais de remediação. Em síntese, a presente revisão busca enfocar o estado da arte das técnicas de biorremediação de contaminantes em solos, apresentando as mais atuais e recentes aplicações e inovações, tanto no âmbito nacional quanto no internacional.

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The development of activities the of oil and gas sector have promoted the search for suitable materials for cementing oil wells. In the state of the Rio Grande do Norte, the integrity of the cement sheath tends to be impaired during steam injection, a procedure necessary to increase oil recovery in reservoirs with low-viscosity oil. The geopolymer is a material that can be used as alternative cement, since it has been used in the production of fire-resistant components, building structures, and for the control of toxic or radioactive residues. Geopolymers result from condensation polymer alkali aluminosilicates and silicates resulting three-dimensional polymeric structures. They are produced in a manner different from that of Portland cement, which is made an activating solution that is mixed with geopolymer precursor. Among the few works studied allowed us to conclude that the pastes prepared with metakaolin as precursor showed better performance of its properties. Several studies show the addition of waste clay as a means of reducing cost and improving end of the folder properties. On this basis, the goal is to study the influence of the addition of ceramic waste in geopolymer paste. To develop the study of rheology tests were carried out, filtered, thickening time, compressive strength, free water, specific gravity and permeability, according to the American Pretoleum Institute (API). The results for all formulations studied show that the folders have high mechanical strength to a light paste; low filtrate volume, absence of free water, very low permeability, slurry, consistent with a light paste, and thickening time low that can be corrected with the use of a retardant handle. For morphological characterization, microstructural, physical, chemical and thermal tests were carried out by XRD, MEV, DTA, TG, FTIR. In the trial of XRD, it was found that geopolymer is an amorphous material, with a peak of crystalline kaolinite. In tests of TG / DTA, revealed the presence of a significant event, which represents the mass loss related to water, and also observed the reduction of weight loss by increasing the concentration of ceramic waste. In the trial of MEV, we found a uniform matrix without the presence of other phases. In the trial of FT-IR, we observed the presence of the band related to water. From all results it was determined that the optimum concentration range of use is between 2.5 and 5% of waste ceramic

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One of the major challenges faced nowadays by oil companies is the exploration of pre-salt basins. Thick salt layers were formed in remote ages as a consequence of the evaporation of sea water containing high concentrations of NaCl and KCl. Deep reservoirs can be found below salt formations that prevent the outflow of oil, thus improving the success in oil prospection. The slurries used in the cement operations of salt layers must be adequate to the properties of those specific formations. At the same time, their resulting properties are highly affected by the contamination of salt in the fresh state. It is t herefore important to address the effects of the presence of salt in the cement slurries in order to assure that the well sheath is able to fulfill its main role to provide zonal isolation and mechanical stability. In this scenario, the objective of the present thesis work was to evaluate the effect of the presence of NaCl and KCl premixed with cement and 40% silica flour on the behavior of cement slurries. Their effect in the presence of CO2 was also investigated. The rheological behavior of slurries containing NaCl and KCl was evaluated along with their mechanical strength. Thermal and microstructural tests were also carried out. The results revealed that the presence of NaCl and KCl affected the pozzolanic activity of silica flour, reducing the strength of the hardened slurries containing salt. Friedel´s salt was formed as a result of the bonding between free Cl- and tricalcium aluminate. The presence of CO2 also contributed to the degradation of the slurries as a result of a process of carbonation/bicarbonataion

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Steam injection is the most used thermal recovery method of oil nowadays because of the high degree of development of the technique that allows high recovery factors. However, injection of superheated steam into the reservoir affects the entire structure of the well, including the cemented layer that presents a retrogression of compressive strength and increases the permeability due to formation of more crystalline and denser phases at temperatures above 110 °C. These changes result in failures in the cement that favor the entrance of formation fluids into the annulus space resulting in unsafe operations and restrictions in the economic life of the well. But the strength retrogression can be prevented by partial replacement of cement by silica-based materials that reduce the CaO/SiO2 ratio of cement slurries changing the trajectory of the reactions, converting those deleterious phases in phases with satisfactory mechanical strength and permeability. The aim of this study was to evaluate the behavior of a ceramic waste material rich in silica in partial and total substitution of a mineral additive used to fight the strength retrogression of cement slurries subjected to high temperatures. The evaluation was made by compression, X-ray diffraction (XRD) and thermogravimetry (TG/DTG). The samples were submitted to a cycle of low temperature (38 °C) for 28 days and a cycle of low temperature followed by exposure to 280 ºC and 1000 psi by 3 days. The results showed that slurries with additions of up to 30% of the waste material are not enough to prevent the strength retrogression, while slurries with additions of the waste material combined with silica flour in various proportions produced hydrated products of low Ca/Si ratios that maintained the compressive strength at satisfactory levels

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In this study, was used a very promising technique called of pyrolysis, which can be used for obtaining products with higher added value. From oils and residues, since the contribution of heavier oils and residues has intensified to the world refining industry, due to the growing demand for fuel, for example, liquid hydrocarbons in the range of gasoline and diesel. The catalytic pyrolysis of vacuum residues was performed with the use of a mesoporous material belonging the M41S family, which was discovered in the early 90s by researchers Mobil Oil Corporation, allowing new perspectives in the field of catalysis. One of the most important members of this family is the MCM-41, which has a hexagonal arrangement of mesopores with pore diameters between 2 and 10 nm and a high specific surface area, making it very promising for use as a catalyst in petroleum refining for catalytic cracking, and their mesopores facilitate the access of large hydrocarbon molecules. The addition of aluminum in the structure of MCM-41 increases the acidity of the material, making it more positive for application in the petrochemical industry. The mesoporous material of the type Al-MCM41 (ratio Si / Al = 50) was synthesized by hydrothermal method starting from the silica gel, NaOH and distilled water added to the gel pseudobohemita synthesis. Driver was used as structural CTMABr. Removal of organic driver (CTMABr) was observed by TG / DTG and FTIR, but this material was characterized by XRD, which was observed the formation of the main peaks characteristic of mesoporous materials. The analysis of adsorption / desorption of nitrogen this material textural parameters were determined. The vacuum residues (VR's) that are products of the bottom of the vacuum distillation tower used in this study are different from oil fields (regions of Ceará and Rio de Janeiro). Previously characterized by various techniques such as FTIR, viscosity, density, SARA, elemental analysis and thermogravimetry, which was performed by thermal and catalytic degradation of vacuum residues. The effect of AlMCM-41 was satisfactory, since promoted a decrease in certain ranges of temperature required in the process of conversion of hydrocarbons, but also promoted a decrease in energy required in the process. Thus enabling lower costs related to energy expenditure from degradation during processing of the waste

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Petroleum evaluation is analyze it using different methodologies, following international standards to know their chemical and physicochemical properties, contaminant levels, composition and especially their ability to generate derivatives. Many of these analyzes consuming a lot of time, large amount of samples , supplies and need an organized transportation logistics, schedule and professionals involved. Looking for alternatives that optimize the evaluation and enable the use of new technologies, seven samples of different centrifuged Brazilian oils previously characterized by Petrobras were analyzed by thermogravimetry in 25-900° C range using heating rates of 05, 10 and 20ºC per minute. With experimental data obtained, characterizations correlations were performed and provided: generation of true boiling point curves (TBP) simulated; comparing fractions generated with appropriate cut standard in temperature ranges; an approach to obtain Watson characterization factor; and compare micro carbon residue formed. The results showed a good chance of reproducing simulated TBP curve from thermogravimetry taking into account the composition, density and other oil properties. Proposed correlations for experimental characterization factor and carbon residue followed Petrobras characterizations, showing that thermogravimetry can be used as a tool on oil evaluation, because your quick analysis, accuracy, and requires a minimum number of samples and consumables

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Knowledge of the native prokaryotes in hazardous locations favors the application of biotechnology for bioremediation. Independent strategies for cultivation and metagenomics contribute to further microbiological knowledge, enabling studies with non-cultivable about the "native microbiological status and its potential role in bioremediation, for example, of polycyclic aromatic hydrocarbons (HPA's). Considering the biome mangrove interface fragile and critical bordering the ocean, this study characterizes the native microbiota mangrove potential biodegradability of HPA's using a biomarker for molecular detection and assessment of bacterial diversity by PCR in areas under the influence of oil companies in the Basin Petroleum Geology Potiguar (BPP). We chose PcaF, a metabolic enzyme, to be the molecular biomarker in a PCR-DGGE detection of prokaryotes that degrade HPA s. The PCR-DGGE fingerprints obtained from Paracuru-CE, Fortim-CE and Areia Branca-RN samples revealed the occurrence of fluctuations of microbial communities according to the sampling periods and in response to the impact of oil. In the analysis of microbial communities interference of the oil industry, in Areia Branca-RN and Paracuru-CE was observed that oil is a determinant of microbial diversity. Fortim-CE probably has no direct influence with the oil activity. In order to obtain data for better understanding the transport and biodegradation of HPA's, there were conducted in silico studies with modeling and simulation from obtaining 3-D models of proteins involved in the degradation of phenanthrene in the transport of HPA's and also getting the 3-D model of the enzyme PcaF used as molecular marker in this study. Were realized docking studies with substrates and products to a better understanding about the transport mechanism and catalysis of HPA s

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Increasing concern with the environment, in addition to strict laws, has induced the industries to find altenatives to the treatment of their wastes. Actually, the oil industry has sought solutions to overcome a big environmental problem, i.e., oil field produced water being discharged to the sea. These effluents have organic compounds dissolved, such as polycyclic aromatic hydrocarbons, phenols, benzene, toluene, ethylbenzene and xylenes (BTEX). These compounds are difficult to be removed and have high toxicity. The advanced oxidation processes - AOP are effective to degradation of these organic compounds, because they generate hydroxyl radicals with high potential of oxidation. This work includes the reactor photochemical development applied in the photodegradation treatment (by photo-Fenton process) of wastewaters containing organic compounds dissolved, aiming at treatment and recovery the oil field produced water. The studied reactor allowed the evaluation of two ultraviolet radiation sources that is the main factor to describe the feasibility of the photo¬Fenton treatment, i.e., sun and black light fluorescent lamps, and other relevant variables the process: concentration of reagents, irradiated area and also various reactor configurations to maximize the use of radiation. The organic matter degradation was verified with samples collected during the experimental and analyzed with a total organic carbon analyzer (TOC), which expressed the results in terms of mgC/L. The solar radiation was more effective than radiation from the lamps. it's an important factor for the operation costs cutting. Preliminary experiments applied to oil field produced water treatment have showed satisfactory results, reducing up to 76 % of organic matter

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Increasing concern with the environment, in addition to strict laws, has induced the industries to find alternatives to the treatment of their wastes. Actually, the oil industry has sought solutions to overcome a big environmental problem, i.e., oil field produced water being discharged to the sea. These effluents have organic compounds dissolved, such as polycyclic aromatic hydrocarbons, phenols, benzene, toluene, ethylbenzene and xylenes (BTEX). These compounds are difficult to be removed and have high toxicity. The advanced oxidation processes - AOP are effective to degradation of these organic compounds, because they generate hydroxyl radicals with high potential of oxidation. This work includes the reactor photochemical development applied in the photodegradation treatment (by photo-Fenton process) of wastewaters containing organic compounds dissolved, aiming at treatment and recovery the oil field produced water. The studied reactor allowed the evaluation of two ultraviolet radiation sources that is the main factor to describe the feasibility of the photo- Fenton treatment, i.e., sun and black light fluorescent lamps, and other relevant variables the process: concentration of reagents, irradiated area and also various reactor configurations to maximize the use of radiation. The organic matter degradation was verified with samples collected during the experimental and analyzed with a total organic carbon analyzer (TOC), which expressed the results in terms of mgC/L. The solar radiation was more effective than radiation from the lamps. It's an important factor for the operation costs cutting. Preliminary experiments applied to oil field produced water treatment have showed satisfactory results, reducing up to 76 % of organic matter

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The mesoporous nanostructured materials have been studied for application in the oil industry, in particular Al-MCM-41, due to the surface area around 800 to 1.000 m2 g-1 and, pore diameters ranging from 2 to 10 nm, suitable for catalysis to large molecules such as heavy oil. The MCM-41 has been synthesized by hydrothermal method, on which aluminum was added, in the ratio Si/Al equal to 50, to increase the generation of active acid sites in the nanotubes. The catalyst was characterized by X-ray diffraction (XRD), surface area by the BET method and, the average pore volume BJH method using the N2 adsorption, absorption spectroscopy in the infrared Fourier Transform (FT-IR) and determination of surface acidity with application of a probe molecule - n-butylamine. The catalyst showed well-defined structural properties and consistent with the literature. The overall objective was to test the Al-MCM-41 as catalyst and thermogravimetric perform tests, using two samples of heavy oil with API º equal to 14.0 and 18.5. Assays were performed using a temperature range of 30-900 ° C and heating ratios (β) ranging from 5, 10 and 20 °C min-1.The aim was to verify the thermogravimetric profiles of these oils when subjected to the action of the catalyst Al- MCM-41. Therefore, the percentage ranged catalyst applied 1, 3, 5, 10 and 20 wt%, and from the TG data were applied two different kinetic models: Ozawa-Flynn-Wall (OFW) and Kissinger-Akahrira-Sunose (KAS).The apparent activation energies found for both models had similar values and were lower for the second event of mass loss known as cracking zone, indicating a more effective performance of Al-MCM-41 in that area. Furthermore, there was a more pronounced reduction in the value of activation energy for between 10 and 20% by weight of the oil-catalyst mixture. It was concluded that the Al-MCM-41 catalyst has applicability in heavy oils to reduce the apparent activation energy of a catalyst-oil system, and the best result with 20% by weight of Al-MCM-41