874 resultados para Caracterização fisico-quimica
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Engenharia e Ciência de Alimentos - IBILCE
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Ciência Florestal - FCA
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Pós-graduação em Biotecnologia - IQ
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Pós-graduação em Química - IQ
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Pós-graduação em Biotecnologia - IQ
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O trabalho que será aqui apresentado teve como finalidade reunir os resultados obtidos dentro do Laboratório de Organometálicos II em relação aos estudos realizados acerca da interação de íons metálicos com ligantes orgânicos naturais. Os dados apresentados foram obtidos pela autora deste trabalho, e também pelos professores Francisco Otávio Cintra Ferrarini, José Roberto Stefanelli Junior e pela aluna de Iniciação Científica Angélica Romão Carvalho. Hidrolisado proteico de soro de leite bovino e torta de linhaça foram os materiais obtidos, após uma série de operações que envolveram filtração com caulim, diálise, hidrólise enzimática, liofilização, etc., após as quais foram utilizados neste trabalho como ligantes de origem natural. Os metais de transição cobre, ferro, cobalto, zinco, paládio, platina e prata foram utilizados nas reações de complexação com os hidrolisados para obtenção de complexos metálicos, através do uso de diferentes rotas sintéticas (convencional, micro-ondas, hidrotérmica, difusão) e parâmetros experimentais (pH, solvente, natureza do precursor, etc.). A escolha dos íons metálicos baseou-se no interesse em preparar compostos que apresentassem ao mesmo tempo alta biodisponibilidade, baixa citotoxicidade e diversas aplicações biológicas. O uso do cobalto deveu-se à reconhecida propriedade que os micro-organismos do sistema digestório dos ruminantes apresenta de sintetizar a vitamina B12 e, portanto, os compostos desse metal podem ser usados em rações visando um melhor desenvolvimento do animal. O ferro, conhecidamente, é um importante metal para os seres humanos, estando presente na hemoglobina, sendo assim, também consiste em uma substância nutracêutica de relevado interesse. À propósito, cabe salientar que os compostos de ferro (III) obtidos nesse trabalho serão objeto de avaliação do uso como suplemento alimentar, em colaboração com o Departamento de...
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O trabalho que será aqui apresentado teve como finalidade reunir os resultados obtidos dentro do Laboratório de Organometálicos II em relação aos estudos realizados acerca da interação de íons metálicos com ligantes orgânicos naturais. Os dados apresentados foram obtidos pela autora deste trabalho, e também pelos professores Francisco Otávio Cintra Ferrarini, José Roberto Stefanelli Junior e pela aluna de Iniciação Científica Angélica Romão Carvalho. Hidrolisado proteico de soro de leite bovino e torta de linhaça foram os materiais obtidos, após uma série de operações que envolveram filtração com caulim, diálise, hidrólise enzimática, liofilização, etc., após as quais foram utilizados neste trabalho como ligantes de origem natural. Os metais de transição cobre, ferro, cobalto, zinco, paládio, platina e prata foram utilizados nas reações de complexação com os hidrolisados para obtenção de complexos metálicos, através do uso de diferentes rotas sintéticas (convencional, micro-ondas, hidrotérmica, difusão) e parâmetros experimentais (pH, solvente, natureza do precursor, etc.). A escolha dos íons metálicos baseou-se no interesse em preparar compostos que apresentassem ao mesmo tempo alta biodisponibilidade, baixa citotoxicidade e diversas aplicações biológicas. O uso do cobalto deveu-se à reconhecida propriedade que os micro-organismos do sistema digestório dos ruminantes apresenta de sintetizar a vitamina B12 e, portanto, os compostos desse metal podem ser usados em rações visando um melhor desenvolvimento do animal. O ferro, conhecidamente, é um importante metal para os seres humanos, estando presente na hemoglobina, sendo assim, também consiste em uma substância nutracêutica de relevado interesse. À propósito, cabe salientar que os compostos de ferro (III) obtidos nesse trabalho serão objeto de avaliação do uso como suplemento alimentar, em colaboração com o Departamento de...
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The mesoporous materials has been an special attention, among them was discovered in the 1990´s the mesoporous molecular sieve of SBA-15 type. The good features of the SBA- 15 makes this material very promising in catalysis, however, due to the absence of native active sites, it has low catalytic activity. In this way, different metals and oxides have been included in this molecular sieve as a means of introducing active sites and increase its catalytic activity. Among the oxides that are being researched, there is the niobium oxide, which presents strong acid sites and exists in abundance. Brazil is the largest producer of the mineral. On the other hand, the production of biofuels has been desired, but it requires the development of new catalysts for this purpose. The aim of this work was to develop silicate of niobium by impregnation and by new synthesis method for application in the cracking of moringa oil. The methodology consisted of inserting the niobium oxide either by postsynthesis process using wet impregnation and direct insertion. For direct insert a new method was developed for pH adjustment, being tested different pH, and the pH 2.2 was used different ratios of Si/Nb. The materials were characterized by different techniques such as: XRD, N2 adsorption, SEM, EDS, UV-visible, TG/DTG, DSC, TEM, acidity by thermodesorption of n-butilamine and FTIR. After this part of the catalysts developed by the two methods were tested in the thermocatalytic cracking of moringa oil, being used a simple distillation. All silicates of Niobium obtained showed a highly ordered structure, having high specific areas, good distribution of pore diameters, beyond present a morphology in the form of fibers. In the catalysts after synthesis was observed that the niobium inserted has so as octahedrally and tetrahedrally coordinated, demonstrating that there were also oxides formed on the external surface of SBA-15. The materials obtained in the direct synthesis are only tetrahedrally coordinated. The new synthesis method of pH adjusting by using the buffer solution for it, proved to be very efficient for the production of such materials, because the materials obtained showed characteristics and structures similar to the molecular sieve of SBA-15 type. Among the pH tested the material that presented better characteristics was synthesized at pH 2.2. The application of these materials in catalytic cracking showed a higher formation of organic liquids when compared to thermal cracking, in addition to significantly reducing the acidity and residues formed, demonstrating that the use of silicates of Niobium increases both the conversion and the selectivity of the products.
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Polyelectrolyte complexes (PECs) nanoparticles were prepared using chitosan and sodium polymethacrylate. The complex formation was investigated using turbidimetry, conductometry, viscometry, and dynamic light scattering. The presence of excess positive charges was evidenced by zeta potential measurements. The particle diameter was characterized by dynamic light scattering and the morphology by atomic force microscopy. In all experiments an abrupt change in behavior was observed at a carboxyl:amino molar ratio around 0.7−0.8. Those changes in behavior were related to a proposed mechanism of complex formation based on the decrease of macromolecular dimensions of soluble polyelectrolyte complex clusters, followed by phase segregation
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The process of adsorption and micellization of the surfactants sodium dodecyl sulfate, dodecylammonium chloride and hexaethylene glycol mono-n-dodecyl ether in water-air interface has been studied using measurements of surface tension in aqueous media and NaCl 0.1 mol/L in temperatures of 25, 33 and 40 °C. From these data, critical micelle concentrations and thermodynamic parameters of micellization and adsorption were determined in order to elucidate the behaviors of micellization and adsorption for these surfactants in the proposed medium. For the determination of the thermodynamic parameters of adsorption we utilized the equations of isotherms of Langmuir and Gibbs. Γmáx values determined by the different equations were correlated to the explanation of results. Temperature and salinity were analyzed in terms of their influence on the micellization and adsorption process, and the results were explained based on intermolecular interactions. The values of Gmic have confirmed that the micelle formation for the surfactants studied occurs spontaneously
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The main objective of the present work is to contribute to the development of the coordination chemistry of macromolecules such as resorcinarene with the synthesis and characterization of new copper complexes with chloride, vanillin and resorcinarene binders, all coordinated to phenanthroline, a biologically active molecule with important properties in biological systems. The complex [(Cu(phen))4(resvan)], was synthesized from the direct reaction of the metals with resorcinarene and generates several possibilities for coordination, which hinders its characterization. Therefore, in order to limit the coordination sites of the ligand, the complex [(Cu(phen))4(resvan)]Cl4 was formed from a new synthetic methodology. The complex cis-[Cu(phen)Cl2], cis-[Cu(phen)(van)]Cl, [(Cu(phen))4(resvan)] and [(Cu(phen))4(resvan)]Cl4 were characterized by spectroscopic techniques such as IR, UV-vis and EPR. By using infrared it has been possible to demonstrate the presence of the phenanthroline ligand in the synthesized complexes, and vanillin in the complex cis- [Cu(phen)(van)]Cl and resvan ligand in the complex [(Cu(phen))4(resvan)], besides this indicating the formation of resorcinarene in the complex [(Cu(phen))4(resvan)]Cl4. The electronic spectra of these coordination compounds indicated the presence of the phenanthroline ligand, by its intense bands in the ultraviolet region. For the complex cis- [Cu(phen)(van)]Cl it still indicated the presence of the ligand vanillin based on intraligand bands of vanillin and charge transfer, LMCT. Furthermore, the spectra showed d-d bands, confirming the formation of metal compounds. The amount of copper atoms present in the complex [(Cu(phen))4(resvan)]Cl4 was estimated from a comparative analysis of the absorbances of solutions of the same concentration of [(Cu(phen))4(resvan)]Cl4 and cis- [Cu(phen)(van)]Cl, which indicates that these compounds have copper atoms in the ratio 4:1. The EPR spectra of the complex cis-[Cu(phen)Cl2], cis-[Cu(phen)(van)]Cl and [(Cu(phen))4(resvan)]Cl4 showed axial profiles, while the complex [(Cu(phen))4(resvan)] showed of axial and rhombic profiles, indicating a change in the symmetry of the Cu (II) to this complex environment. The binders vanillin and resvan underwent biological assays with satisfactory results, both exhibited antioxidant activity and low toxicity, as well vanillin present antitoxoplásmico character.