240 resultados para Separação sólido-líquido


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This work reports a review on the status and technical feasibility of the application of ethanol as fuel for Solid Oxide Fuel Cells (SOFC), presenting both external reform and cell with direct utilization of ethanol. Based on this survey, both experimental results and mathematical modeling indicated the technical feasibility of power generation by ethanol SOFC, with cell units producing 450 mW/cm², sufficient for scale up to large stationary plants. The quantitative assessments in the literature show this field to be promising for researchers and private sector investment as well being a strategic technology for government policy in the short and long term.

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The nature of the solid residue formed in beef tallow biodiesel from two commercial producers in Brazil was determined by comparative analytical techniques, namely, gas chromatography with flame ionization detector (GC-FID) and thermogravimetry (TG). Pure monopalmitin and monostearin were used as reference standards for both methodologies. Analyses were carried out before and after filtration of the solids formed, which allowed the observation that the formation of precipitate reduced the levels of monoglycerides in the beef tallow biodiesel. The chromatographic and thermogravimetric results confirmed the nature of the residue as saturated monoglycerides, predominantly monostearin and monopalmitin.

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This study optimized and validated the liquid-liquid extraction technique with partition at low temperature (LLE-PLT) for identification and quantification of four pesticides (chlorpyrifos, λ-cyhalothrin, permethrin, bifenthrin) in water samples. Analyses were performed by HPLC-UV. The technique was efficient for pesticide recovery with extraction exceeding 86%. Chromatographic response was linear for the four compounds in the 10-45 µg L-1 range, with correlation coefficients greater than 0.99. Limits of detection and quantitation were less than 3.5 µg L-1 and equal to 10 µg L-1, respectively. The proposed method was applied to 29 water samples from the Jaíba Project in northern Minas Gerais.

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The triplet excited state of xanthone was generated and characterized by laser flash photolysis in acetonitrile (λmax=620 nm; t=1.8 ms) and in ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate [bmim.PF6] (λmax=620 nm; t=3.0 ms). It reacts with phenols yielding the corresponding xanthone ketyl radical. Stern-Volmer plots for the reaction of triplet xanthone with phenols led to the determination of absolute rate constants for phenolic hydrogen abstraction in the order of ~10(9) Lmol-1s-1 in acetonitrile and ~10(8) Lmol-1s-1 in [bmim.PF6]. The lower diffusioncontrolled rate constant for [bmim.PF6] is responsible for the difference in the phenolic hydrogen abstraction rate constants in this solvent.

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In this study, a method for determination of hexavalent chromium in aqueous samples using liquid-liquid microextraction (LLME) and detection by Flame Atomic Absorption Spectrometry (F AAS) was developed. The LLME procedure was based on the extraction of Cr (VI) by acetone at a sample pH of 1.2. The use of saturated ammonium sulphate solution allowed effective separation of the aqueous and organic phases and acetone extracted chromium. The sample pH, acetone volume and stirring time were optimized by a full factorial design.

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Enzymatic conversion of gaseous substrates into products in aquo-restricted media, using enzymes or whole cells (free and immobilized) as biocatalysts, constitutes a promising technology for the development of clearer processes. Solid-gas systems offer high production rates for minimal plant sizes, allow important reduction of treated volumes, and permit simplified downstream processes. In this review article, principles and applications of solid-gas biocatalysis are discussed. Comparisons of its advantages and disadvantages with those of the organic- and aqueous-phase reactions are also presented herein.

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Filamentous fungi were cultured under solid state fermentation of soybean residues to produce lipases. Enzymes produced by Aspergillus niger esterified oleic and butyric acids in the presence of ethanol, while enzymes produced by Aspergillus fumigatus demonstrated no esterification activity toward lauric acid. In case of A. niger, direct lyophilization of fermented bran led to higher esterification activity. The esterification of oleic acid by enzymes of A. fumigatus was neither influenced by pH adjustment nor by the extraction process. Conversions to ethyl esters were higher after pH adjustment with lyophilized liquid extract of A. niger.

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In this work, a novel device based on polyacrylamide (PAAm) hydrogels and KL - DeOH - H2O lyotropic liquid crystal (LLC), with potential for application as Polymer Dispersed Liquid Crystals (PDLC), was proposed and its properties characterized. The confinement of LLC promoted significant changes in spectroscopic, morphological, optical, hydrophilic, structural and mechanical properties due to the interaction between the LLC-PAAm matrix and entropic parameter changes. The mechanical and structural properties can be controlled by adjusting AAm, temperature and presence of LLC, which can be useful for technological applications of these systems in optical devices.

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A complete analysis of oils and their fractions allows correlations to be defined between their composition and derivatives or related geological materials. This work focused on optimization and implementation of a method for separation and quantification of n-alkanes in Brazilian oil samples by urea adduction and GC-FID techniques. Ten samples with different ºAPI were analyzed in triplicate to quantify individual n-alkanes and cyclic/branched alkane fraction. For individual quantification of n-alkanes, internal standardization with deuterated n-tetracosane was used. The use of urea adduction for the separation and quantification of n-alkanes was highly effective, with recovery values of above 80%.

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The aim of this study was to produce membranes using the adapted cuprammonium method. The cellulose utilized was obtained from recycled agroindustrial residues: sugarcane bagasse, corn stover and soybean hulls. The levels of Cu (II) ions in regenerated cellulose membranes produced with cellulose from bagasse, corn stover and soybean hulls were 0.0236 wt%, 0.0255 wt% and 0.0268 wt%, respectively. These levels were approximately 15 times lower than those observed in previous studies (0.3634 wt%). Cellular viability data show that membranes produced from bagasse cellulose do not present toxicity to the cellular cultures studied. These results demonstrate an evolution in production of regenerated cellulose membranes from agroindustrial residues mainly due to a decrease in the Cu (II) ions level, showing the possibility of application of these systems with improved membranes processing.

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AbstractA device comprising a lab-made chamber with mechanical stirring and computer-controlled solenoid valves is proposed for the mechanization of liquid-liquid extractions. The performance was demonstrated by the extraction of ethanol from biodiesel as a model of the extraction of analytes from organic immiscible samples to an aqueous medium. The volumes of the sample and extractant were precisely defined by the flow-rates and switching times of the valves, while the mechanic stirring increased interaction between the phases. Stirring was stopped for phase separation, and a precise time-control also allowed a successful phase separation (i.e., the absence of the organic phase in the aqueous extract). In the model system, a linear response between the analytical response and the number of extractions was observed, indicating the potential for analyte preconcentration in the extract. The efficiency and reproducibility of the extractions were demonstrated by recoveries of ethanol spiked to biodiesel samples within 96% and 100% with coefficients of variation lower than 3.0%.

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Calus foram obtidos de tomateiro (Lycopersicon esculentum), cafeeiro (Coffea arabica), alfafa (Medicago sativa), orquídea (Dendrobium nobile), mostarda (Brassica rapa), batata doce (Ipomoea batatas), fumo (Nicotiana tabacum), cenoura (Daucus carota) e Crotalaria juncea em meio sólido de Murashige & Skoog (MS) seguido do cultivo em meio líquido MS em temperatura de 25-28 ºC. Após um mês, a suspensão foi passada em membrana Millipore 0,22 µm, obtendo-se, assim, o exsudato da cultura de células de cada planta testada. Ovos ou juvenis de segundo estádio (J2) de Meloidogyne incognita foram incubados nesses exsudatos e avaliadas as percentagens de eclosão, mobilidade e mortalidade dos J2. Com exceção dos ovos incubados em exsudato de orquídea, todos os demais inibiram a eclosão quando comparados com a incubação em água (testemunha). Entretanto, nos exsudatos de L. esculentum, cafeeiro e C. juncea a inibição foi mais drástica, semelhante ao aldicarb, mas significativamente diferente e menor do que em soluções contendo ingredientes do meio MS (1-5). Todos os exsudatos reduziram a mobilidade e aumentaram a mortalidade, com maior intensidade em 24 h de exposição. Porém, maior redução na mobilidade ocorreu nos exsudatos de tomateiro e alfafa, enquanto maior mortalidade no exsudato de tomateiro, seguido pelo de mostarda.

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Em lavouras de feijoeiro (Phaseolus vulgaris) da cultivar Carioca Comum, no município de Londrina, Estado do Paraná, foram encontradas plantas com sintomas de necrose da haste, mosaico clorótico leve e porte reduzido, semelhantes aos sintomas causados por infecção viral. Exames de microscopia eletrônica revelaram a presença de partículas isométricas. Em testes de imunodifusão dupla em gel de ágar os extratos foliares de plantas infetadas reagiram positivamente com anti-soro específico para o Southern bean mosaic virus (SBMV). O vírus foi purificado e a massa molecular de sua proteína capsidial foi estimada em 30 kDa, valor esperado para proteínas do capsídeo de vírus do gênero Sobemovirus. A gama de hospedeiras do SBMV isolado no Paraná foi restrita ao feijoeiro e a algumas cultivares de soja (Glycine max). A separação de dois vírus isométricos comuns em infecções mistas no feijoeiro foi possível através da reação de imunidade ao SBMV apresentada por Crotalaria sp, Chenopodium quinoa e Mucuna deeringiana, e da reação de susceptibilidade dessas mesmas hospedeiras ao Bean rugose mosaic virus (BRMV).

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Dez filtrados de culturas de actinomicetos causaram redução na motilidade e 100% de mortalidade de J2 de Meloidogyne javanica. A diluição de alguns causou redução de 75 a 85% de mortalidade. Contudo, o filtrado do isolado PIC 1 causou, mesmo em diluição, 100% de mortalidade. Alguns filtrados reduziram a motilidade sem causar mortalidade. Dos isolados que causaram mortalidade também reduziram eclosão de J2. Entretanto, a porcentagem de redução variou ao longo do período de crescimento do actinomiceto em meio líquido. Exsudatos obtidos de colônias de alguns isolados de actinomicetos crescidos em meio sólido causaram 100% de mortalidade e redução na motilidade de J2 de M. javanica. Os isolados de actinomicetos ALF 4 e QUI 4 produziram substâncias tóxicas a J2 tanto em filtrado quanto em exsudato de colônia.

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O chorume líquido de suínos (CLS) pode ser utilizado como fonte de nutrientes e de matéria orgânica para algumas culturas agrícolas e interferir na ocorrência de doenças de plantas, causadas por fitopatógenos habitantes do solo. Assim, foi estudado o efeito do CLS, sobre as doenças do feijoeiro (Phaseolus vulgaris) causadas por Sclerotium rolfsii. Em parcelas de 1 m², foi incorporado o CLS nas doses equivalentes a 0, 20, 40, 60 e 80 m³ ha-1. O solo foi infestado dois meses antes da aplicação do CLS, com 100 g do substrato (arroz em casca) colonizado pelo patógeno. A semeadura de 80 sementes de feijão por parcela foi efetuada em dois cultivos sucessivos, 1 dia e 45 dias após a aplicação do CLS. A intensidade da doença foi avaliada através da emergência, estande final de plântulas e severidade da doença, nos dois cultivos, sendo que a atividade microbiana, a concentração de amônia na camada superficial do solo e os níveis de fertilidade foram avaliados apenas no segundo cultivo. Com o aumento das doses de CLS foi verificada a redução da intensidade da doença e, entre as características avaliadas, o aumento da atividade microbiana, da concentração de amônia e dos níveis de cobre e zinco são os que melhor explicam essa redução.