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Eletroquímica de interface óleo/água : aplicações e estudos fundamentais de parâmetros cinéticos e termodinâmicosSilva, Rejane Maria Pereira da January 2018 (has links)
Orientador: Prof. Dr. Hugo Barbosa Suffredini / Tese (doutorado) - Universidade Federal do ABC, Programa de Pós-Graduação em Ciência e Tecnologia/Química, Santo André, 2018. / Este trabalho descreve a realizacao de estudos eletroquimicos fundamentais em interfaces do tipo liquido/liquido. Primeiramente, pretendeu-se compreender as diferencas na oxidacao de uma molecula modelo (ferroceno) por meio de estudos eletroquimicos relacionados a cinetica e termodinamica em diferentes situacoes. A primeira situacao enfoca a oxidacao direta do ferroceno em um eletrolito de suporte convencional aquoso e a segunda e relacionada ao ferroceno sendo adicionado diretamente em oleo mineral que quando em contato com o eletrolito de suporte aquoso, forma uma interface do tipo oleo/agua. Experimentos adicionais tambem foram conduzidos em uma emulsao, que foi constituida por ferroceno em oleo misturados com eletrolitos convencionais e cloreto de tetrabutilamonio (CTBA). Uma placa de diamante dopado com boro (DDB) foi usada como eletrodo de trabalho. Observou-se um deslocamento de aproximadamente 0,07 V quando a oxidacao do ferroceno foi conduzida na interface oleo/agua em comparacao com a oxidacao direta na fase aquosa convencional. Esta mudanca de potencial tambem foi calculada usando a Teoria do Funcional da Densidade (DFT) como ferramenta teorica. Uma comparacao adicional foi realizada em relacao a interface e as emulsoes, constatando que a forca ionica e um fator determinante nesses tipos de estudos. Finalmente, as curvas de Tafel indicaram que as coordenadas da reacao do ferroceno sao diferentes quando o eletrodo e colocado na interface versus diretamente na fase aquosa, sendo que a energia de ativacao obtida para o ferroceno na agua foi de 129 kJ mol L-1 e na interface igual a 53,0 kJ mol L-1.
Posteriormente, mostrou-se o uso da microextracao liquido-liquido dispersiva (DLLME) combinada com a eletroquimica de interface oleo/agua, utilizando ferroceno como molecula- modelo. Uma mistura de 150 ¿ÊL de etanol (solvente dispersante) e 50 ¿ÊL de 1-undecanol (solvente de extracao) foi injetada em 9 mL de uma solucao aquosa de ferroceno preparada em H2SO 4 1,0 x10 -3 mol L -1. Uma gota da fase organica contendo ferroceno foi inserida diretamente na superficie de um eletrodo de carbono impresso, e uma curva analitica foi obtida, ponto a ponto, com boa linearidade. O eletrodo de DDB foi utilizado para promover o calculo do coeficiente de particao, em que foi possivel calcular as concentracoes finais de ferroceno nas fases aquosa e organica como sendo iguais a 4,2 ~ 10 -4 mol L-1 e 0,15 mol L -1, respectivamente. Ao usar estes valores, o coeficiente de particao (log P) de 2,5 foi calculado.
Por fim, a eletroquimica de interface oleo/agua foi aplicada para estudar a influencia do acido naftenico na corrosao do aco API-5L-X70 a temperatura ambiente a partir de um sistema bifasico constituido por petroleo/solucao aquosa. Um estudo in-situ baseou-se na espectroscopia de impedancia eletroquimica (EIS), enquanto medidas localizadas de impedancia eletroquimica (LEIS) e microscopia eletroquimica de varredura (SECM) foram utilizadas para estudar o efeito da pre-exposicao do aco ao sistema bifasico. Os resultados de LEIS e SECM mostraram que a pre-exposicao ao petroleo com acido naftenico produz uma superficie mais ativa do que apenas a solucao de sulfato. A adicao de acido naftenico ao oleo provoca corrosao. A morfologia da corrosao e caracterizada por tres regioes: i) na fase de oleo; ii) na fase aquosa e iii) em torno da interface. A corrosao foi mais evidente em torno da interface. Propoe-se um mecanismo no qual as moleculas de acidos naftenicos se auto-organizam na interface oleo/agua, gerando acidificacao local no contato trifasico entre oleo / fase aquosa / metal. / This work describes the realization of fundamental electrochemical studies at a liquid / liquid interface. Firstly, it was intended to understand the differences in the oxidation of a model molecule (ferrocene) through electrochemical studies related to kinetics and thermodynamics in different situations. The first situation focuses the direct oxidation of ferrocene in an aqueous conventional support electrolyte and the second one is when ferrocene is directly placed in mineral oil, subsequently placed in contact with an aqueous support electrolyte thereby forming an oil/water interface. Additional experiments were also conducted in an emulsion, which was constituted by ferrocene in oil and mixed with conventional electrolytes and tetrabutylammonium chloride (TBAC). A Boron-Doped Diamond Electrode (BDD) was used as the working electrode. We observed an approximately 0.07 V shift when the ferrocene oxidation was conducted at the oil/water interface compared with the direct oxidation in the conventional aqueous phase. This potential shift was also calculated using the Density Functional Theory (DFT) as a theoretical tool. An additional comparison was conducted related to the interface and emulsions, finding that the ionic strength is determining factor in these types of studies. Finally, Tafel plots indicated that reaction coordinates of the ferrocene are different when the electrode is placed at the interface versus directly in the aqueous phase, in which the activation energy obtained for ferrocene in water was 129 kJ mol L-1 and at the interface equal to 53.0 kJ mol L-1.
Posteriorly, we showed the use of dispersive liquid-liquid microextraction (DLLME) combined with organic/water interface electrochemistry by using ferrocene as a model-molecule. A mixture of 150 ¿ÊL of ethanol (disperser solvent) and 50 ¿ÊL of 1-undecanol (extractant solvent) was injected into 9 mL of a ferrocene aqueous solution prepared in 1.0~10.3 mol L.1 H2SO4. Afterward, a drop of the organic phase containing ferrocene was directly inserted on a screen-printed carbon electrode and the analytical curve was obtained, point-to-point, with a good linearity. Besides that, a BDD electrode was used to promote the partition coefficient calculation, and it was possible to calculate the final concentrations of ferrocene in the aqueous and organic phases as being equal to 4.2~10.4 mol L.1 and 0.15 mol L.1, respectively. By using these values, the partition coefficient (log P) was calculated as 2.5.
Finally, the oil/water interface was applied to study the role of naphthenic acid in the API.5L.X70 steel corrosion at room temperature from a biphasic system consisting of petroleum/aqueous solution. An in-situ study was based on electrochemical impedance spectroscopy, while localized measures of electrochemical impedance (LEIS) and scanning electrochemical microscopy (SECM) were used for the effect of pre-exposure from steel to biphasic system. The results LEIS and SECM showed that the pre-exposure to oil with acid produces a more active surface than just sulfate medium. Corrosion morphology is characterized by three regions: i) in oil phase; ii) in the aqueous phase, and iii) around the interface. Naphthenic acid corrosion was restricted to the area around the interface. A mechanism is proposed in which naphthenic acids self-assemble at the oil/water interface, generating local acidification at the oil/aqueous phase/metal three-phase contact.
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Desenvolvimento de métodos quantitativos e sistema de screening para a determinação de tetraciclinas em medicamentos veterinários e alimentos de origem animal usando procedimentos de análise por injeção em fluxo / Development of quantitative methods and screening system for the determination of tetracyclines in veterinary pharmaceuticals and animal-derived food using flow injection analysis procedures / Desarrollo de métodos cuantitativos y sistema de screening para la determinación de tetraciclinas en medicamentos veterinarios y alimentos de origen animal utilizando procedimientos de análisis por injección en flujoPérez Rodríguez, Michael [UNESP] 26 August 2016 (has links)
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Previous issue date: 2016-08-26 / Pró-Reitoria de Pós-Graduação (PROPG UNESP) / Este trabalho descreve o desenvolvimento de métodos analíticos ambientalmente mais amigáveis utilizando sistemas de screening e procedimentos de análise por injeção em fluxo para a detecção e quantificação de antibióticos, da classe das tetraciclinas, em amostras de medicamentos veterinários e alimentos de origem animal como leite bovino e suplementos de ovos. Os métodos desenvolvidos foram baseados na reação de acoplamento diazo obtida entre as tetraciclinas e o ácido p-sulfanílico diazotado em meio básico, resultando na formação de azo compostos com máximos de absorção em torno de 435 nm, permitindo determinar esses antibióticos por espectrofotometria. As condições analíticas foram otimizadas através de análise multivariada utilizando planejamentos experimentais fatoriais e o desempenho dos métodos propostos foi avaliado através de parâmetros como linearidade, efeito matriz, precisão, exatidão, limite de detecção, limite de quantificação, recuperação e estudo de interferências. O primeiro trabalho desenvolvido fez uso de um procedimento de injeção em fluxo contínuo para a rápida determinação de tetraciclinas em formulações veterinárias comerciais, visando maior eficiência no controle de qualidade na indústria farmacêutica. Na sequência, foi desenvolvido um método de screening mediante análise por injeção em fluxo empregando uma cela capilar de longo caminho óptico (LWCC) para a detecção de resíduos de tetraciclinas em amostras de leite bovino, sem a necessidade de passos de extração dispendiosos e demorados ou complicados tratamentos de amostras. Finalmente, um novo método de microextração líquido-líquido dispersiva assistida por ultrassom (US-DLLME) foi desenvolvido para a simples, rápida e eficiente extração de resíduos de tetraciclinas a partir de amostras de suplemento de ovos e, posterior análise por injeção em fluxo baseada em uma cela capilar de longo caminho óptico (LWCC), empregando um banho de aquecimento com controle de temperatura. Os métodos descritos apresentaram importantes características como simplicidade operacional, possibilidade de automação, rapidez e baixo custo das análises. Além disso, estes métodos seguiram os princípios da química verde, de modo que permitiram realizar determinações ambientalmente mais limpas, através da redução considerável do consumo de reagentes e amostras, evitando ou minimizando o emprego de solventes tóxicos. Também, os métodos desenvolvidos para a análise de resíduos mostraram excelente desempenho para aplicação no controle de qualidade dos produtos alimentares estudados na indústria alimentícia, a fim de proteger os consumidores. / This work describes the development of environmentally friendly analytical methods using screening systems and flow injection procedures for detection and quantification of tetracycline antibiotics in veterinary pharmaceuticals and animal-derived foods such as bovine milk and egg-based protein supplements. The developed methods were based on the diazo coupling reaction between the tetracyclines and diazotized p-sulfanilic acid in basic medium, resulting in the formation of azo compounds that present maximum absorption around 435 nm, which allows determining these antibiotics by spectrophotometry. The analytical conditions were optimized by means of multivariate analysis using factorial experimental designs. Performance of the proposed methods was assessed through parameters such as linearity, selectivity, precision, accuracy, detection limit, quantification limit, matrix effect and recovery. The first developed work used a continuous flow injection procedure for the rapid determination of tetracyclines in commercial veterinary formulations, aiming greater efficiency in quality control in the pharmaceutical industry. Thereafter, it was developed a screening method by flow injection analysis using a liquid waveguide capillary cell (LWCC) for detecting tetracyclines residues in bovine milk samples, without the need for expensive extraction steps that are time-consuming or complicated sample treatments. Finally, a new ultrasound-assisted dispersive liquid-liquid microextraction (US-DLLME) method was developed for simple, rapid, and efficient extraction of tetracyclines residues from egg supplement samples, followed by flow injection analysis based on a liquid waveguide capillary cell (LWCC), using a controlled temperature heating bath. The described methods presented important features such as operational simplicity, possibility of automation, quickness and low cost of the analysis. Furthermore, these methods followed the principles of green chemistry, making possible to perform environmentally cleaner determinations, due to the considerable reduction of reagents and samples consumption, avoiding or minimizing the use of toxic solvents. Besides, the methods developed for residues analysis showed excellent performance for application in the food industry for quality control of the studied food products in order to protect consumers.
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Assessment of polycyclic aromatic hydrocarbon (PAHs) and heavy metals in the vicinity of coal power plants in South AfricaOkedeyi, Olumuyiwa Olakunle 12 November 2013 (has links)
The distribution and potential sources of 15 polycyclic aromatic hydrocarbons (PAHs) in soils and Digitaria eriantha in the vicinity of three South African coal-fired power plants, Matla, Lethabo and Rooiwal were determined by gas chromatography–mass spectrometry. An ultrasonic assisted dispersive liquid-liquid microextraction (UA-DLLME) method was developed for the extraction of polycyclic aromatic hydrocarbon in soil, followed by determination using gas chromatography mass spectrometry. The study showed that an extraction protocol based on acetonitrile as dispersive solvent and C2H2Cl2 as extracting solvent, gave extraction efficiencies comparable to conventional soxhlet extraction for soil samples. The extraction time using ultrasonication and the volume of the extraction solvent was also investigated. Using a certified reference material soil (CRM), the extraction efficiency of UA-DLLME ranged from 64 to 86% in comparison with the Soxhlet result of 73 to 95%. In comparison with the real sample, the CRM result did not show a significant difference at 95% C.I. The UA-DLLME proved to be a convenient, rapid, cost-effective and greener sample preparation approach for the determination of PAHs in soil samples. PAH compound ratios such as phenanthrene/phenanthrene + anthracene (Phen/ Phen + Anth) were used to provide a reliable estimation of emission sources. The total PAH concentration in the soils around three power plants ranged from 9.73 to 61.24 μg g−1, a range above the Agency for Toxic Substances and Disease Registry levels of 1.0 μg g−1 for a significantly contaminated site. Calculated values of the Phen/Phen + Anth ratio were 0.48±0.08, 0.44±0.05, and 0.38+0.04 for Matla, Lethabo and Rooiwal, respectively. The flouranthene/fluoranthene + pyrene (Flan/ Flan + Pyr) levels were found to be 0.49±0.03 for Matla, 0.44±0.05 for Lethabo, and 0.53±0.08 for Rooiwal. Such values indicate a
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pyrolytic source of PAHs. Higher molecular weight PAHs (five to six rings) were predominant, suggesting coal combustion sources. The carcinogenic potency B[a]P equivalent concentration (B[a] Peq) at the three power plants ranged from 3.61 to 25.25, indicating a high carcinogenic burden. The highest (B[a] Peq) was found in samples collected around Matla power station. It can, therefore, be concluded that the soils were contaminated with PAHs originating from coal-fired power stations.
Nine metals (Fe, Cu, Mn, Ni, Cd, Pb, Hg, Cr and Zn) were analysed in soil and the Digitaria eriantha plant around three coal power plants (Matla, Lethabo and Rooiwal), using ICP-OES and GFAAS. The total metal concentration in soil ranged from 0.05 ± 0.02 to 1835.70 ± 70 μg g-1, 0.08 ± 0.05 to 1743.90 ± 29 μg g-1 and 0.07 ± 0.04 to 1735.20 ± 91 μg g-1 at Matla, Lethabo and Rooiwal respectively. The total metal concentration in the plant (Digitaria eriantha) ranged from 0.005 ± 0.003 to 534.87 ± 43 μg g-1 at Matla, 0.002 ± 0.001 to 400.49 ± 269 μg g-1 at Lethabo and 0.002 ± 0.001 to 426.91 ± 201 μg g-1 at Rooiwal. The accumulation factor (A) of less than 1 (i.e. 0.003 to 0.37) at power plants indicates a low transfer of metal from soil to plant (excluder). The enrichment factor values obtained (2.4 – 5) indicate that the soils are moderately enriched, with the exception of Pb that had significant enrichment of 20. The Geo-accumulation Index values of metals indicate that the soils are moderately polluted (0.005 – 0.65), except for Pb that showed moderate to strong pollution (1.74 – 2.53). / Chemistry / D. Phil. (Chemistry)
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Assessment of polycyclic aromatic hydrocarbon (PAHs) and heavy metals in the vicinity of coal power plants in South AfricaOkedeyi, Olumuyiwa Olakunle 11 1900 (has links)
The distribution and potential sources of 15 polycyclic aromatic hydrocarbons (PAHs) in soils and Digitaria eriantha in the vicinity of three South African coal-fired power plants, Matla, Lethabo and Rooiwal were determined by gas chromatography–mass spectrometry. An ultrasonic assisted dispersive liquid-liquid microextraction (UA-DLLME) method was developed for the extraction of polycyclic aromatic hydrocarbon in soil, followed by determination using gas chromatography mass spectrometry. The study showed that an extraction protocol based on acetonitrile as dispersive solvent and C2H2Cl2 as extracting solvent, gave extraction efficiencies comparable to conventional soxhlet extraction for soil samples. The extraction time using ultrasonication and the volume of the extraction solvent was also investigated. Using a certified reference material soil (CRM), the extraction efficiency of UA-DLLME ranged from 64 to 86% in comparison with the Soxhlet result of 73 to 95%. In comparison with the real sample, the CRM result did not show a significant difference at 95% C.I. The UA-DLLME proved to be a convenient, rapid, cost-effective and greener sample preparation approach for the determination of PAHs in soil samples. PAH compound ratios such as phenanthrene/phenanthrene + anthracene (Phen/ Phen + Anth) were used to provide a reliable estimation of emission sources. The total PAH concentration in the soils around three power plants ranged from 9.73 to 61.24 μg g−1, a range above the Agency for Toxic Substances and Disease Registry levels of 1.0 μg g−1 for a significantly contaminated site. Calculated values of the Phen/Phen + Anth ratio were 0.48±0.08, 0.44±0.05, and 0.38+0.04 for Matla, Lethabo and Rooiwal, respectively. The flouranthene/fluoranthene + pyrene (Flan/ Flan + Pyr) levels were found to be 0.49±0.03 for Matla, 0.44±0.05 for Lethabo, and 0.53±0.08 for Rooiwal. Such values indicate a
xx
pyrolytic source of PAHs. Higher molecular weight PAHs (five to six rings) were predominant, suggesting coal combustion sources. The carcinogenic potency B[a]P equivalent concentration (B[a] Peq) at the three power plants ranged from 3.61 to 25.25, indicating a high carcinogenic burden. The highest (B[a] Peq) was found in samples collected around Matla power station. It can, therefore, be concluded that the soils were contaminated with PAHs originating from coal-fired power stations.
Nine metals (Fe, Cu, Mn, Ni, Cd, Pb, Hg, Cr and Zn) were analysed in soil and the Digitaria eriantha plant around three coal power plants (Matla, Lethabo and Rooiwal), using ICP-OES and GFAAS. The total metal concentration in soil ranged from 0.05 ± 0.02 to 1835.70 ± 70 μg g-1, 0.08 ± 0.05 to 1743.90 ± 29 μg g-1 and 0.07 ± 0.04 to 1735.20 ± 91 μg g-1 at Matla, Lethabo and Rooiwal respectively. The total metal concentration in the plant (Digitaria eriantha) ranged from 0.005 ± 0.003 to 534.87 ± 43 μg g-1 at Matla, 0.002 ± 0.001 to 400.49 ± 269 μg g-1 at Lethabo and 0.002 ± 0.001 to 426.91 ± 201 μg g-1 at Rooiwal. The accumulation factor (A) of less than 1 (i.e. 0.003 to 0.37) at power plants indicates a low transfer of metal from soil to plant (excluder). The enrichment factor values obtained (2.4 – 5) indicate that the soils are moderately enriched, with the exception of Pb that had significant enrichment of 20. The Geo-accumulation Index values of metals indicate that the soils are moderately polluted (0.005 – 0.65), except for Pb that showed moderate to strong pollution (1.74 – 2.53). / Chemistry / D. Phil. (Chemistry)
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Immunochemical and chromatographic methods for two anthropogenic markers of contamination in surface waters / caffeine and coprostanolCarvalho, Jose Joao 08 December 2011 (has links)
Koffein (1,3,7-Trimethylxanthin) und Coprostanol (5beta-cholestan-3beta-ol) wurden im Berliner Oberflächenwasser nachgewiesen. Ihre Konzentrationen korrelierten mit dem Verunreinigungsgrad der Proben, was nahelegt, dass sie sich als Marker für menschliche Aktivität eignen. Bemerkenswerterweise wurde Koffein in jeder einzelnen Oberflächenwasserprobe oberhalb der Bestimmungsgrenze von 0,025 µg/L gefunden. Um Oberflächenwasserproben in größeren Serien zu untersuchen, war die Entwicklung zweier neuer Methoden erforderlich: ein Immunoassay, basierend auf einem monoklonalen Antikörper für Koffein und eine dispersive flüssig-flüssig Mikroextraktionsmethode (DLLME), gefolgt von Flüssigkeitschromatographie gekoppelt mit Tandem-Massenspektrometrie (LC-MS/MS) für Coprostanol. Der entwickelte Koffein-Immunoassay zeigt die beste je erhaltene Nachweisgrenze für Koffein (0,001 µg/L), erlaubt Hochdurchsatz-Analysen und erfordert keine Probenvorbereitung. Der Assay wurde auch erfolgreich für die Messung von Koffein in Getränken, Haarwaschmitteln, Koffeintabletten und menschlichem Speichel angewendet. Antikörper gegen Coprostanol sind nicht kommerziell erhältlich. Eine neue Strategie Anti-Coprostanol-Antikörper zu generieren wurde erarbeitet, die eine analoge Verbindung – Isolithocholsäure (ILA) – als Hapten verwendet, mit der eine Gruppe von Mäusen immunisiert wurde. Ein polyklonales Anti-ILA-Serum wurde produziert, welches Coprostanol bindet, aber die niedrige Affinität erlaubte nicht den Aufbau eines Immunoassays, der die Messung von Umweltkonzentrationen des Anayten (im Bereich ng/L) zulässt. Spezifische Anti-ILA-Immunglobuline G wurden auch in den Faeces der Mäuse gefunden. Coprostanol wurde in den Wasserproben durch die Verwendung einer neuentwickelten LC-MS/MS-Methode unter APCI-Ionisation (atmospheric pressure chemical ionisation) gemessen. Konzentrationen oberhalb von 0,1 µg/L wurden nach Voranreicherung der Probe mittels DLLME bestimmt. / Caffeine (1,3,7-trimethylxanthine) and coprostanol (5beta-cholestan-3beta-ol) were detected in samples of Berlin’s surface water. Their concentrations correlated with the contamination status of the samples, suggesting their usefulness as markers of human activity. Remarkably, caffeine concentrations were always well above the limit of quantitation of 0.025 µg/L. In order to screen surface water samples in larger series, the development of two novel methods was required: a monoclonal antibody-based immunoassay for caffeine and a dispersive liquid-liquid microextraction (DLLME) method, followed by liquid chromatography tandem mass spectrometry (LC-MS/MS) for coprostanol. The caffeine immunoassay developed shows the best analytical limit of detection (LOD) obtained so far for caffeine (0.001 µg/L), allows high-throughput analysis, and does not require sample pre-treatment. The assay was also successfully employed to measure caffeine in beverages, shampoos, caffeine tab-lets, and human saliva. Antibodies to coprostanol are not commercially available. A new strategy to generate anti-coprostanol antibodies was elaborated using an analogous com-pound as hapten – isolithocholic acid (ILA) – and immunizing a group of mice. A polyclonal anti-ILA serum was produced, which binds coprostanol but the low affinity did not permit setting up an immunoassay to measure environmental concentrations of the analyte (in the range of ng/L). Specific anti-ILA immunoglobulin G were also found in the faeces of the immunized mice. Coprostanol was quantified in the water samples using a newly developed LC-MS/MS method using atmospheric pressure chemical ionisation (APCI). Concentrations above 0.1 µg/L were determined after sample preconcentration using DLLME. This extraction method also proved to be successful for enrichment of coprostanol-related compounds such as cholesterol, cholestanol, cholestanone, ergosterol, and stigmasterol.
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