96 resultados para Microemulsão


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Adsorption is a process that has become indispensable due to pollution caused by industrial activity. More economically viable adsorbents are being tested to replace the high cost of materials used. The clays can be used as adsorbents and are low cost materials, natural properties feasible for the application in the adsorption process, structural modifications are performed with ease promoting selective adsorption in these materials. The objective of this study was to synthesize and characterize adsorbents used in the adsorption of organic compounds. The adsorbents were characterized by the techniques of XRD, SEM, FTIR and TG. The results show that the studied materials have affinity to organic compounds and can be applied as adsorbents. The materials studied are viable and can be applied in the treatment of effluents contaminated in industrial scale.

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OBJETIVO: Analisar se o pré-tratamento com sinvastatina em modelo experimental de sepse abdominal é benéfico em ratos diabéticos. MÉTODOS: Cinquenta e seis ratos Wistar foram aleatoriamente distribuídos em: grupo não diabético (n-28) e grupo diabetes induzido por estreptozotocina (n=28). Sepse abdominal por ligadura e punção do ceco foi induzida em 14 ratos diabéticos e em 14 não diabéticos. Os demais 28 animais foram alocados em grupo sham. Os grupos de ratos com sepse e os sham (cada com sete animais) foram tratados com microemulsão oral de simvastatina (20 mg kg-1 day-1) e solução salina 0,9%, respectivamente. Sangue periférico foi usado para dosagem de TNFα, IL-1β, IL-6, proteína C reativa, procalcitonina, contagem de leucócitos e neutrófilos em todos os animais. A análise estatística foi realizada pela ANOVA e teste de Tukey, com p<0,05. RESULTADOS: A sinvastatina reduziu a mortalidade nos ratos diabéticos. Os valores séricos de TNF-α, IL-1β, IL-6, proteína C reativa, procalcitonina, leucócitos e neutrófilos mostraram-se mais baixos nos ratos diabéticos e não diabéticos com sepse, tratados com sinvastatina, do que nos tratados com solução salina. CONCLUSÃO: A sinvastatina teve efeito antiinflamatório, que pode ter resultado em proteção contra a sepse em ratos diabéticos.

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O presente trabalho objetivou prolongar a conservação póscolheita de pêssegos, armazenando-os à temperatura ambiente. Inicialmente selecionou-se uma microemulsão à base de fécula de mandioca e cera de abelha. Posteriormente ela foi testada, aplicando-a na superfície dos frutos em comparação com "Fruit wax" (cera comercial), com o intuito de se verificar o efeito dos diferentes tratamentos na composição química, física e físico-química dos mesmos. Utilizaram-se pêssegos 'Biuti' colhidos manualmente em 14/01/1999, ao atingirem o ponto de maturação fisiológica. Do lote colhido foram selecionados 120 frutos sendo os mesmos analisados quanto a perda de massa fresca, taxa respiratória, textura, sólidos solúveis totais, acidez total titulável e pH, a cada 3 dias. Os frutos receberam os tratamentos: Testemunha, "Fruit Wax", Fécula e Microemulsão. Os tratamentos "Fruit Wax" e "Microemulsão" proporcionaram melhor eficiência em relação à perda de massa fresca que os frutos dos tratamentos Testemunha e Fécula. Quanto à taxa de respiração, verificou-se picos da ordem de 40mg de CO2.kg-1.h-1 . Quanto aos açúcares, verificou-se que a sacarose foi o açúcar encontrado em maior quantidade, com apenas traços de glicose e frutose em algumas amostras. Quanto aos teores de sólidos solúveis totais, os frutos tratados com "Fruit Wax" apresentaram valores inferiores aos do tratamento Testemunha. O efeito da Microemulsão mostrou-se similar ao da cera "Fruit Wax" em todos os atributos e, superior ao dos tratamentos Testemunha e Fécula na redução da perda de massa fresca.

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Amostras de óleo vegetal foram preparadas na forma de microemulsão de água em óleo (w/o) utilizando dodecil sulfato de sódio (SDS) como surfactante e um álcool como co-surfactante. As microemulsões foram caracterizadas através de medidas de viscosidade, índice de refração, condutividade elétrica, espalhamento de luz dinâmico e voltametria. Ensaios preliminares para a quantificação de analitos por análise direta foram realizados por voltametria linear e eletroforese capilar. As microemulsões de água em óleo de soja apresentaram gotículas de dimensões nanométricas e estabilidade termodinâmica dependente da temperatura, da concentração dos eletrólitos dissolvidos e da natureza do co-surfactante empregado. Por outro lado, o raio hidrodinâmico das gotículas (Rh) diminui com o aumento da temperatura. Quanto aos valores de condutividade, maiores do que os obtidos para o óleo de soja e para a água deionizada, aumentam com a temperatura, na faixa de 20 a 65 oC, e com o teor de água na microemulsão, entre 5 e 7,5 % de água. A maior estabilidade termodinâmica foi alcançada para uma microemulsão contendo 40,0 % de óleo, 43,2 % de pentanol, 10,8 % de SDS e 6,0 % de água, em massa, na razão 1:4 [SDS]:[álcool] Medidas voltamétricas com um ultramicroeletrodo de Pt em microemulsões contendo ferroceno ou ácido oléico dissolvidos evidenciaram a dependência linear das correntes limite anódica e catódica com a concentração da espécie eletroativa. Já a oxidação do ferroceno por voltametria cíclica, usando o mesmo ultramicroeletrodo, mostrou que a diminuição dos coeficientes de difusão nestes meios permite realizar medidas em estado transiente, empregando velocidades convencionais de varredura em potencial. Experimentos por cromatografia eletrocinética em microemulsão reversa (RMEEKC) com n-pentanol como fase contínua permitiram a separação de solutos neutros e aniônicos em amostras de óleo vegetal e gordura animal. Finalmente, foi desenvolvido um procedimento rápido para a separação e identificação dos biofenóis presentes em óleos, utilizando como eletrólito de corrida uma mistura de metanol e 1-propanol contendo KOH. Os resultados evidenciam a possibilidade de análise direta de óleos vegetais empregando métodos eletroanalíticos em microemulsões w/o, e métodos por eletroforese capilar, quer em microemulsões, quer em meio não aquoso.

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Analisar se o pré-tratamento com sinvastatina em modelo experimental de sepse abdominal é benéfico em ratos diabéticos. Métodos: Cinquenta e seis ratos Wistar foram aleatoriamente distribuídos em: grupo não diabético (n-28) e grupo diabetes induzido por estreptozotocina (n=28). Sepse abdominal por ligadura e punção do ceco foi induzida em 14 ratos diabéticos e em 14 não diabéticos. Os demais 28 animais foram alocados em grupo sham. Os grupos de ratos com sepse e os sham (cada com sete animais) foram tratados com microemulsão oral de simvastatina (20 mg kg-1 day-1) e solução salina 0,9%, respectivamente. Sangue periférico foi usado para dosagem de TNFa, IL-1b, IL-6, proteína C reativa, procalcitonina, contagem de leucócitos e neutrófilos em todos os animais. A análise estatística foi realizada pela ANOVA e teste de Tukey, com p<0,05. Resultados: A sinvastatina reduziu a mortalidade nos ratos diabéticos. Os valores séricos de TNF-a, IL-1b, IL-6, proteína C reativa, procalcitonina, leucócitos e neutrófilos mostraram-se mais baixos nos ratos diabéticos e não diabéticos com sepse, tratados com sinvastatina, do que nos tratados com solução salina. Conclusão: A sinvastatina teve efeito antiinflamatório, que pode ter resultado em proteção contra a sepse em ratos diabéticos

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In general, among the corrosion inhibitors surfactants are the most commonly used compounds, because they are significantly effective by forming protective films on anodic and cathodic areas. In this study, microemulsions containing he biodegradable saponified coconut oil as surfactant (SME-OCS) was used as green corrosion inhibitors. With this purpose, methanolic extracts of Ixora coccinea Linn (IC) and a polar fraction rich in alkaloids (FA) obtained from Croton cajucara Benth solubilized in the SME-OCS system were examined in the presence of AISI 1020 carbon steel, in saline solution (NaCl 3,5 %). The efficiency of corrosion inhibition of IC and FA were evaluated in the following microemulsions: SME-OCS-IC and SME-OCS-FA. The microemulsion system SME-OCS in the presence and absence of IC and FA was assessed by measurements of weight loss and the electrochemical method of polarization resistance, with variation in the concentration of IC and FA (50 - 400 ppm), showing significant results of corrosion inhibition (83,6 % SME-OCS; 92,2 % SME-OCS-FA; and 95,3 % SME-OCS-IC)

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The program PROBIODIESEL from the Ministry of Science and Technology has substantially increased glycerine, obtained as a sub-product of biodiesel production process, making it necessary to seek alternatives for the use of this co-product. On the other hand, herbicides although play a role of fundamental importance in the agricultural production system in force, have been under growing concern among the various segments of society because of their potential environmental risk. In this work, we used glycerin in microemulsion systems for application of herbicides, to improve efficiency and lower environmental pollution caused by the loss of those products to the environment. To obtain the systems of microemulsinados were used Unitol L90 NP and Renex 40 as surfactants, butanol as co-surfactant, coconut oil as oil phase and aqueous phase as we used solutions of glycerin + water. Through the determination of phase diagrams, the microemulsion region was found in the system E (L90 Unitol, coconut oil and glycerin + water 1:1). Three points were chosen to the aqueous phase rich in characterization and application in the solubilization of glyphosate and atrazine. Three experiments were performed in Horta, Department of Plant Sciences, Plant Science Sector, UFERSA, Mossoró-RN. The first experiment was conducted in randomized complete blocks with 20 treatments and four replications. The treatments consisted of five doses of the herbicide glyphosate (0.0, 0.45, 0.9, 1.35 and 1.8 L ha-1) diluted with four sauces: C1, C2, C3 (microemulsions) and C4 (water). The phytotoxicity of Brachiaria brizantha was measured at 7, 14, 28 and 60 DAA (days after application). At 60 DAA, we evaluated the biomass of plants. The second experiment was developed in randomized complete blocks with 20 treatments and four repetitions. The treatments consisted of five doses of the herbicide atrazine (0.0, 0.4, 0.8, 1.6 and 2.4 L ha-1) diluted with four sauces: C1, C2, C3 (microemulsions) and C4 (water). The phytotoxicity on Zea mays and Talinum paniculatum was evaluated at 2, 7, 20 DAA. The experiment III was developed in randomized complete blocks with 16 treatments and three repetitions. The treatments consisted of 16 combinations among the constituents of the microemulsion: Unitol L90 surfactant (0.0, 1.66, 5.0, 15 %) and glycerin (0.0, 4.44, 13.33 and 40.0 %). The phytotoxicity on Zea mays was evaluated at 1, 7 and 14 DAA. At 14 DAA, we evaluated the biomass of plants. The control plants using the microemulsions was lower than in the water due to the poisoning caused by the initial microemulsions in the leaves of the plants, a fact that hinders the absorption and translocation of the herbicide. There was no toxicity in Zea mays plants caused by the herbicide, however, were highly intoxicated by microemulsions. T. paniculatum was better controlled in spraying with the microemulsions, regardless of the dose of the herbicide. The glycerine did not cause plant damage. Higher poisoning the plants are caused by tensoactive Unitol L90 and higher rates occur with the use of higher concentrations of surfactant and glycerin, or microemulsion. The microemulsions used hampered the action of glyphosate in controlling B. brizantha and caused severe poisoning in corn, and these poisonings attributed mainly to the action of surfactant

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The produced water is a byproduct formed due to production of petroleum and carries with it a high amount of contaminants such as oil particles in suspension, organic compounds and metals. Thus, these latter pollutants are very difficult to treat because of its high solubility in water. The objective of this work is to use and evaluate a microemulsioned system to remove metals ( K , Mg , Ba , Ca , Cr , Mn , Li , Fe ) of synthetic produced water. For the extraction of metals, it was used a pseudoternary diagram containing the following phases: synthetic produced water as the aqueous phase (AP), hexane as organic phase (OP), and a cosurfactant/surfactant ratio equal to four (C/S = 4) as the third phase, where the OCS (saponified coconut oil) was used as surfactant and n-butanol as cosurfactant. The synthetic produced water was prepared in a bench scale and the region of interest in the diagram for the removal of metals was determined by experimental design called. Ten points located in the phase Winsor II were selected in an area with a large amount of water and small amounts of reagents. The samples were analyzed in atomic absorption spectrometer, and the results were evaluated through a statistical assesment, allowing the efficiency analysis of the effects and their interactions. The results showed percentages of extraction above 90% for the metals manganese, iron, chromium, calcium, barium and magnesium, and around 45% for metals lithium and potassium. The optimal point for the simultaneous removal of metals was calculated using statistical artifact multiple response function (MR). This calculation showed that the point of greatest extraction of metals occurs was the J point, with the composition [72% AP, 9% OP, 19% C/S], obtaining a global extraction percentage about 80%. Considering the aspects analyzed, the microemulsioned system has shown itself to be an effective alternative in the extraction of metals on synthetic produced water remediation

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Actually in the oil industry biotechnological approaches represent a challenge. In that, attention to metal structures affected by electrochemical corrosive processes, as well as by the interference of microorganisms (biocorrosion) which affect the kinetics of the environment / metal interface. Regarding to economical and environmental impacts reduction let to the use of natural products as an alternative to toxic synthetic inhibitors. This study aims the employment of green chemistry by evaluating the stem bark extracts (EHC, hydroalcoholic extract) and leaves (ECF, chloroform extract) of plant species Croton cajucara Benth as a corrosion inhibitor. In addition the effectiveness of corrosion inhibition of bioactive trans-clerodane dehydrocrotonin (DCTN) isolated from the stem bark of this Croton was also evaluated. For this purpose, carbon steel AISI 1020 was immersed in saline media (3,5 % NaCl) in the presence and absence of a microorganism recovered from a pipeline oil sample. Corrosion inhibition efficiency and its mechanisms were investigated by linear sweep voltammetry and electrochemical impedance. Culture-dependent and molecular biology techniques were used to characterize and identify bacterial species present in oil samples. The tested natural products EHC, ECF and DCTN (DMSO as solvent) in abiotic environment presented respectively, corrosion inhibition efficiencies of 57.6% (500 ppm), 86.1% (500 ppm) and 54.5% (62.5 ppm). Adsorption phenomena showed that EHC best fit Frumkin isotherm and ECF to Temkin isotherm. EHC extract (250 ppm) dissolved in a polar microemulsion system (MES-EHC) showed significant maximum inhibition efficiency (93.8%) fitting Langmuir isotherm. In the presence of the isolated Pseudomonas sp, EHC and ECF were able to form eco-compatible organic films with anti-corrosive properties

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Several pharmaceutical products have been developed in recent years aiming to enhance the treatment of diseases by increasing the effectiveness of drugs. Many of these new products are based on new drug delivery systems. Among these, microemulsions, which were first studied in 1943 by Hoar and Schulman, is of great interest. Microemulsion can be defined as a thermodynamically stable, isotropic, translucent and transparent system of two immiscible liquids stabilized by a surfactant film located in the oil / water interface. The aim os this work was the incorporation of Amphotericin B and Simvasatin to a microemulsion system and analyzes its physicochemical properties and their therapeutical activity when incorporated into this system. Some very promising results were achieved as the reduction of the toxicity and maintenance of the efficacy of the Amphotericin B incorpored into a microemulsion, which was demonstrated in the in vitro pharmacotoxicological study. As for the incorporation of Simvastatin in microemulsion, it was observed a significant improvement in the potential antiinflammatory and anti-infective properties when the system was use to treat infected wounds (simvastatin pleiotropic effects). Therefore, it can be concluded that the incorporation of these drugs into microemulsion system reveal the potential of microemulsions as a promising and novel dosage form, qualifying them for future trials in order to make them available in the pharmaceutical market

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Universidade Federal do Rio Grande do Norte