2 resultados para Building material industry

em Repositório Institucional da Universidade de Aveiro - Portugal


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O presente trabalho tem como objectivo contribuir para o aprofundamento de estudos vocacionados para a evolução do mundo material enquanto factor determinante para o futuro do Planeta, do Homem e dos seus artifícios. Sendo o tema central da investigação o Design Industrial enquanto mediador incontornável dessa relação, os conceitos de Design Biónico, de Design Natural, de Biodesign e de Design Simbiótico, assim como as metodologias a si inerentes, assumem-se como protagonistas do estudo desenvolvido. A tese é composta por um primeiro capítulo introdutório onde se define o seu objecto de estudo e se apresentam as linhas condutoras da investigação. O segundo capítulo é dedicado ao enquadramento teórico dos temas a abordar, nomeadamente o conceito de “artifício” considerando os seus tradicionais e novos significados e aplicações e a História do Design Industrial numa perspectiva que considera a evolução da indústria e da disciplina nesse contexto. No terceiro capítulo desenvolve-se a análise das propostas conceptuais e metodológicas dos designers Victor Papanek, Luigi Colani e Paulo Parra, por recurso específico, respectivamente, aos pressupostos inscritos em Design Biónico, Design Natural, Biodesign e Design Simbiótico, perseguindo-se como objectivo a sua sistematização em conteúdos passíveis de contribuírem para novas investigações/aplicações, nomeadamente no âmbito daquilo que a autora designa como Inovação Tecnológica na Concepção e EcoBio-Inovação.

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This thesis reports in detail studies of industrial solid wastes valorization as alternative raw materials. All tested wastes are classified as non-hazardous and are generated in the pulp and paper process, including primary sludge, dregs, grits, lime mud and bottom ash (this generated in a process that occurs in parallel to the production of cellulose, whose aim is the production of energy to supply the plant through the combustion of forest biomass in fluidized bed). A detailed general characterization was performed at each waste and according to their characteristics, they were selected some applications in materials with potential use, specifically in Fibercement, Bituminous Mixture for regularization layer and industrial mortars (rendering mortars and cementitious-adhesive). After decided to application each waste was specifically tested to proceed the setting up of formulations containing different content of waste in replacement of the raw conventional material. As an isolated case, the bottom ash was tested not only as an alternative raw material for construction materials, but also it was tested for its use in fluidized bed in which the waste is generated as raw material. Both dregs and bottom ash had undergone special treatment to make possible to obtain a better quality of waste in order do not compromise the final product characteristics and process. The dregs were tested in bituminous mixtures as received and also washed (on the laboratory scale to remove soluble salts) and bottom ash were washed and screened in industrial scale (for removal of soluble salts, especially chlorides and coarse fraction particles elimination - particles larger than 1 mm size). The remaining residues form used in such as received avoiding additional costs. The results indicated potential and some limitations for each application to the use of these wastes as alternative raw material, but in some cases, the benefits in relation to valorization overlap with its limitations in both aspects, environmental and economic.