487 resultados para Biossorção de metais


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Pós-graduação em Ciências Ambientais - Sorocaba

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Heavy metals are found naturally in soils at low concentrations, but their content may be increased by human activity, making them one of the barriers in management of tropical soils. These chemical elements can be found in the composition of organic and inorganic fertilizers, insecticides, fungicides, mine tailings, and urban waste, and may cause serious damage to the environment and human health. Thus, adsorption studies are essential in assessing the behavior of heavy metals in the soil. The objective of this study was to evaluate the influence of soil chemical, particle size, and mineralogical properties on adsorption of cadmium (Cd), evaluated by Langmuir and Freundlich models, in Latossolos (Oxisols) with or without human activity. Soil samples were collected from the surface layer, 0.00-0.20 m, and chemical, particle size, and mineralogical analyzes were performed. In the adsorption study, concentrations of 0, 5, 25, 50, 100, 200, 300, and 400 mu g L-1 of Cd were used in the form of Cd(NO3)(2). The empirical mathematical models of Langmuir and Freundlich were used for construction of adsorption isotherms. Data were analyzed by means of multivariate statistical techniques, Cluster Analysis and Principal Component Analysis. The data from the adsorption experiment showed a good fit to the Langmuir and Freundlich models. Soils with a lower goethite/hematite ratio and greater cation exchange capacity and pH, showed higher maximum adsorption capacity of Cd.

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O cádmio (Cd) é um metal tóxico considerado não essencial nos organismos. As principais vias de exposição e contaminação pelo metal vem de atividades antrópicas. Há evidências suficientes de que o Cd e seus compostos são carcinogênicos, tendo como principais órgãos afetados: rins, ossos, pulmões e próstata. No citosol o Cd pode estar na forma livre (genericamente, como complexos inorgânicos lábeis) ou ligado com metalotioneinas (genericamente, ligado a proteínas). A relação do Cd (livre ou lábil) com patogenicidades faz com que seja de grande importância a elaboração de métodos para especiação do metal. Este projeto teve como objetivo propor um método para determinação seletiva do Cd lábil em baixas concentrações (μg L-1) utilizando um substrato biológico como material sorvente (S. cerevisiae). A utilização da S. cerevisiae tem sido recomendada para pré-concentração e especiação de metais em água e materiais biológicos. No entanto, estes métodos não proporcionam limites de detecção (LD) suficientes para determinação seletiva de Cd lábil em algumas situações, particularmente quando se procura estabelecer uma relação desta fração do metal com algumas patogenicidades. O método desenvolvido consiste, basicamente, em amostrar o Cd lábil no citosol pela levedura. Depois de digestão ácida em sistema pressurizado (micro-ondas) e/ou da eluição, a espécie retida pela levedura foi determinada por ICP-MS. O uso da ICP-MS permitiu atingir LD suficientes para detecção de Cd, sendo para retenção 0,004 μg L-1 e para a eluição 0,003 μg L-1

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Usually organic polymeric diodes are made with a semiconductor layer placed between two electrodes in a sandwich-like architecture, where the electrodes are deposited on the surfaces of a polymeric semiconductor film. This methodology leads to two main problems: i) the polymeric film top surface is rough and irregular, resulting in non-uniform electric field into the device; ii) during the deposition of metallic electrode in the top surface polymeric film, by thermal evaporation, occurs the diffusion of metal atoms into the polymeric film, changing the material electronic structure. Thus, the metal-semiconductor junction is not well defined, which is essential for the production of good quality Schottky diode, which exhibits ideality factor close to the unity and low turn-on voltage. In order to avoid these two problems, in the present research was proposed to manufacture an organic diode with the semiconductor polymeric layer deposited over bimetallic (gold and aluminum) interdigitated electrodes. The doping of the active layer was performed by immersing the device in hydrochloric acid solution with pH 2 during different times in order to promote different doping levels of the semiconductor polymer. Was verified that the proposed diode, which exhibits well-defined metal-semiconductor junction, operates as a Schottky diode, with good ideality factor, 10 ± 3, and low turn-on voltage, 1,2 ± 0,2 V, in comparison with conventional organic polymeric diodes. Contrasting with the ideality factor and turn-on voltage, the diode rectification ratio was obtained as 7, a value lower than the expected for a good organic diode. Was also showed that the diode characteristics were dependent on the semiconductor polymer doping level, and that the diode characteristics were optimized with doping promoted by immersion in the acid solution for times longer than 50 s. Furthermore, as was showed that the diodes properties are dependent on the semiconductor...

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Pós-graduação em Engenharia Mecânica - FEG

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

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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Pós-graduação em Engenharia Civil e Ambiental - FEB

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)