963 resultados para ORGANISMOS INDIGENOS


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Industrial activities are the major sources of pollution in all environments. Depending on the type of industry, various levels of organic and inorganic pollutants are being continuously discharged into the environment. Although, several kinds of physical, chemical, biological or the combination of methods have been proposed and applied to minimize the impact of industrial effluents, few have proved to be totally effective in terms of removal rates of several contaminants, toxicity reduction or amelioration of physical and chemical properties. Hence, it is imperative to develop new and innovative methodologies for industrial wastewater treatment. In this context nanotechnology arises announcing the offer of new possibilities for the treatment of wastewaters mainly based on the enhanced physical and chemical proprieties of nanomaterials (NMs), which can remarkably increase their adsorption and oxidation potential. Although applications of NMs may bring benefits, their widespread use will also contribute for their introduction into the environment and concerns have been raised about the intentional use of these materials. Further, the same properties that make NMs so appealing can also be responsible for producing ecotoxicological effects. In a first stage, with the objective of selecting NMs for the treatment of organic and inorganic effluents we first assessed the potential toxicity of nanoparticles of nickel oxide (NiO) with two different sizes (100 and 10-20 nm), titanium dioxide (TiO2, < 25 nm) and iron oxide (Fe2O3, ≈ 85x425 nm). The ecotoxicological assessment was performed with a battery of assays using aquatic organisms from different trophic levels. Since TiO2 and Fe2O3 were the NMs that presented lower risks to the aquatic systems, they were selected for the second stage of this work. Thus, the two NMs pre-selected were tested for the treatment of olive mill wastewater (OMW). They were used as catalyst in photodegradation systems (TiO2/UV, Fe2O3/UV, TiO2/H2O2/UV and Fe2O3/H2O2/UV). The treatments with TiO2 or Fe2O3 combined with H2O2 were the most efficient in ameliorating some chemical properties of the effluent. Regarding the toxicity to V. fischeri the highest reduction was recorded for the H2O2/UV system, without NMs. Afterwards a sequential treatment using photocatalytic oxidation with NMs and degradation with white-rot fungi was applied to OMW. This new approach increased the reduction of chemical oxygen demand, phenolic content and ecotoxicity to V. fischeri. However, no reduction in color and aromatic compounds was achieved after 21 days of biological treatment. The photodegradation systems were also applied to treat the kraft pulp mill and mining effluents. For the organic effluent the combination NMs and H2O2 had the best performances in reduction the chemical parameters as well in terms of toxicity reduction. However, for the mine effluent the best (TiO2/UV and Fe2O3/UV) were only able to significantly remove three metals (Zn, Al and Cd). Nonetheless the treatments were able of reducing the toxicity of the effluent. As a final stage, the toxicity of solid wastes formed during wastewater treatment with NMs was assessed with Chironomus riparius larvae, a representative species of the sediment compartment. Certain solid wastes showed the potential to negatively affect C. riparius survival and growth, depending on the type of effluent treated. This work also brings new insights to the use of NMs for the treatment of industrial wastewaters. Although some potential applications have been announced, many evaluations have to be performed before the upscaling of the chemical treatments with NMs.

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Folleto y programa descriptivo de las Cátedras Extraordinarias . Semestre 2009-1

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Folleto y programa descriptivo de las Cátedras Extraordinarias . Semestre 2009-2

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Este estudo integra-se numa avaliação hidrodinâmica e monitorização microbiológica da qualidade da água da Ria Formosa. A monitorização foi implementada pela DRAOT Algarve com a colaboração da EST, da FCMA e do IST. A metodologia utilizada consiste na aplicação de um modelo matemático para simulação das variáveis hidrodinâmicas e da qualidade da água. Utilizam-se como traçadores os coliformes fecais (CF), considerados indicadores de contaminação fecal pelo Dec-Lei 236/98 de 1 de Agosto, relativo à qualidade de águas do litoral e salobras para fins aquícolas- águas conquícolas. As águas da ria são usadas para cultura de diversas espécies conquícolas de bivalves. Estes são organismos que filtram e retêm no seu interior material particulado existente em suspensão na água tais como os CF entre outros microorganismos presentes na água. Para avaliar a concentração de coliformes nos bivalves e gastrópodes foi desenvolvido um modelo que simula a bioacumulação desta propriedade por parte do bivalve. Da sua aplicação permite classificar a Ria em várias classes conforme o estabelecido no Dec. Lei nº 293/98 de 18 de Setembro.

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Dissertação de Mestrado, Biologia Marinha, Especialização em Aquacultura e Pescas, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2008

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Dissertação de Mestrado, Biologia Marinha, Especialização em Biotecnologia Marinha, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2008

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Dissertação de Mestrado, Biologia Marinha, Faculdade Ciências do Mar e do Ambiente, Universidade do Algarve, 2008

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Dissertação de Mestrado, Biologia Marinha, especialização em Pescas e Aquacultura, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2009

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Dissertação de Mestrado, Biologia Marinha, Especialização em Biotecnologia Marinha, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2008

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Dissertação mest., Culturas Árabe e Islâmica e o Mediterrâneo, Universidade do Algarve, 2010

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Tese dout., Ciências e Tecnologias do Ambiente, Universidade do Algarve, 2007

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Dissertação mest., Biotecnologia, Universidade do Algarve, 2008

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Tese de dout., Ciências do Mar, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2010

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Dissertação de mest., Biologia Marinha (Ecologia e Conservação Marinha), Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2010