238 resultados para Hidróxido de sódio


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This work aims to study the structural characteristics of silica gels obtained from the acid hydrolysis of tetraethoxysilane (TEOS) in water solutions with different concentrations of sodium dodecyl sulfate (SDS). The structural characteristics were studied in stages ranging from the wet gel to the dry stages of the gels (aerogels and xerogels). Aerogels were obtained by ambient pressure drying (APD) after silylation process using trimethylchlorosilane (TMCS) as silylating agent. Xerogels were obtained by conventional evaporating the liquid phase from non silylated gels. The samples were characterized by nitrogen adsorption and small angle X-ray scattering (SAXS). The structure of the wet gels and of the aerogels prepared with the surfactant exhibited characteristics of mass-fractal structures with fractal dimension D in the range 2.1-2.2 for the wet gels and 2.3-2.4 for the aerogels. The characteristic size  of the fractal domain reduces while the size a0 of the primary silica particle composing the fractal structure increases with the drying of the gels, in a process in which share of the porosity is eliminated. Aerogels exhibited typical values for the specific surface of 900 m2g-1 and of 3.5 cm3.g-1 for the total pore volume. These values are correspondingly comparable to those of the aerogels prepared by supercritical drying, since the silylation process replaces hydrophilic –OH groups by hydrophobic –Si-R3 ones, inhibiting the porosity elimination on drying. The silica particle size also increases lightly with the silylation because the attachment of the –Si-R3 groups on the silica surface. The pore size distribution curves of the aerogels are similar for all samples exhibiting a maximum in around 40 nm, independent the concentration of surfactant. This suggests that the characteristic size of 40 nm is due to the association of surfactant micelles... (Complete abstract click electronic access below)

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Polímeros são macromoléculas de alta massa molecular cada vez mais presentes nas atividades humanas. Estas moléculas são utilizadas com frequência para sintetizar plásticos, elastômeros e fibras. Os polímeros podem ser divididos em naturais e sintéticos. Os polímeros de origem natural são aqueles encontrados na natureza, como por exemplo: celulose, hemicelulose, glicogênio, proteínas, amido, lignina, entre outros. Os polímeros sintéticos são aqueles produzidos pela síntese química induzida pelo ser humano, como os diferentes tipos de plásticos. Contudo, alguns destes materiais sintéticos possuem alta durabilidade acarretando grande acúmulo de resíduos que contaminam o meio ambiente. O poliacrilato de sódio (PAS) é uma destas moléculas sintéticas que funciona como superabsorvente utilizado em grande escala nas fraldas descartáveis. A aplicação do PAS nas fraldas permitiu diminuir o volume deste material sem perda da eficácia. Cerca de 136 milhões de quilos de polímeros de poliacrilato são utilizados anualmente. Buscando diminuir a quantidade deste material no meio ambiente, são necessários estudos que viabilizem alternativas de sua decomposição. Dentre as opções viáveis está o processo de biodegradação, que é caracterizado pela ação de seres vivos, sobretudo os pertencentes ao grupo dos microrganismos (bactérias e fungos), que utilizam o material para retirar a energia para o seu desenvolvimento. Este projeto tem como objetivo avaliar a biodegradabilidade do poliacrilato de sódio (PAS) e modificar sua estrutura via degradação microbiana. Análises descritivas e comparativas são as bases para o estudo e compreensão da biodegradação do PAS. Para os testes de biodegradação serão utilizados microrganismos do solo e o fungo Aspergillus niger. Após 8 meses de biodegradação do composto enterrado pôde-se concluir através... (Resumo completo, clicar acesso eletrônico abaixo)

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Aortic regurgitation (AR) is still common in developing countries as secondary of rheumatic fever, and its incidence have increased in senile degenerative form. The AR develops severe myocardial hypertrophy. A common comorbidity associated with cardiovascular disease is depression. Among the most prescribed antidepressants in the world are the serotonin selective reuptake inhibitors (SSRIs). Central serotonergic pathways are involved with the inhibition of sodium intake and can be modify the excretion of this íon. Therefore, we investigated whether treatment with an antidepressants SSRI, the paroxetine, for four weeks can modfy the behavior of water and NaCl 0,3M intake, excretion of sodium and morphofunctional parameters of rats with AR induce. Wistar rats (280 - 300g) underwent surgery for AR (n=15) or control surgery (n=14). The AR was induced by retrograde puncture of valve leaflets. The animals were divided into 4 groups: AR + paroxetine (n=8), AR + control (n=7), control + paroxetine (n=7), control + control (n=7). From the 4th to the 8th week after inductuin of AR was administered paroxetine (10mg/kg pc) daily and subcutaneously. In the 4th and 8th week after induction of AR echocardiograms were performed to collect data morphofunctional. During the 4 weeks of treatment were analyzed intake of water and saline daily and once a week urine samples were collected for analysis by flame photometer of excretion of sodium and potassium. In the 10th week the animals were submitted to a challenge protocol hidromineral by combining furosemide (10 mg / kg bw) associated with the low dose of Captopril (5 mg / kg bw). During the challenged urine samples were collected for analysis by flame photometer of excretion of sodium and potassium at the time zero and after 2 hours of treatment. As a result we found that treatment with paroxetine in rats with AR determined an improvement in fractional shortening (shortening fraction: 52.7 ± 2.2% vs. RA ...

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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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)