4 resultados para Alternative supplementary cementitious material

em Biblioteca Digital da Produção Intelectual da Universidade de São Paulo


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The worldwide production of bamboo generates large volumes of leaf wastes, which are deposited in landfills or burned in an uncontrolled manner, with negative effects in the environment. The ash obtained by calcining of the bamboo leaf waste, shows good qualities as supplementary cementing material for the production of blended cements. The current paper shows a detailed scientific study of a Brazilian bamboo leaf ash (BLA) calcined at 600 degrees C in small scale condition, by using different techniques (XRF, XRD, SEM/EDX, FT-IR, TG/DTG) and technical study in order. to analyse the behaviour of this ash in blended cements elaborated with 10% and 20% by mass of BLA. The results stated that this ash shows a very high pozzolanic activity, with a reaction rate constant K of the order of 10(-1)/h and type I CSH gel was the main hydrated phase obtained from pozzolanic reaction. The BLA blended cements (10% and 20%) complied with the physical and mechanical requirements of the existing European standards. (c) 2012 Elsevier Ltd. All rights reserved.

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Cementitious pastes prepared with air-entraining admixtures (AEA) are very sensitive to mix procedures and environmental conditions. Some of the effects of AEA on the properties of cementitious material are discussed in literature, although for the most part, only in the hardened state. However, the impact temperature has on air-incorporation during the early age stages and on consolidation has been little investigated and as such, is the objective of this work. Thus, pastes formulated with Portland cement and air-entraining admixtures are evaluated in this work with a focus on the role temperature plays in the early age behavior. The results show that air-incorporation was affected by environmental conditions which caused changes in the kinematic viscosity and rate of consolidation.

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Neste estudo foram analisados os programas de fomento florestal das empresas do segmento de celulose. O objetivo é identificar a participação do fomento florestal no suprimento de madeira e as dimensões definidas nos contratos desses programas. Para o estudo utilizou-se o referencial teórico da nova economia institucional, particularmente a teoria dos contratos incompletos de longo prazo e dos custos de transação. Utilizou-se a abordagem qualitativa da pesquisa exploratória e descritiva. Para isso, após estudo documental sobre o ambiente regulatório e institucional do setor florestal, realizou-se a coleta de dados primários por meio de questionário semiestruturado, encaminhado por meio eletrônico a dirigentes e técnicos de onze empresas produtoras de celulose escolhidas intencionalmente. Os resultados mostram que o fomento florestal ocupa a segunda posição na matriz de suprimento de madeira para processamento da indústria de celulose como mecanismo de substituição da integração vertical, pela coordenação vertical por meio de contratos de longo prazo. Indicam, também, que a participação dos programas de fomento florestal e do mercado no suprimento de madeira para processamento está crescendo. O fomento visa a facilitar o acesso a recursos, associados ao cultivo florestal, reduzindo os custos associados à imobilização em terras, fomentando o aumento da oferta de madeira para processamento. As empresas estruturam modalidades diferentes dos programas de fomento para adequar os incentivos aos produtores de acordo com o porte de suas propriedades. Excetuando-se o fomento de extensão, os demais programas de fomento usam a opção de compra da produção.

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The deep bedding is a swine alternative production, especially in the finishing phase, whose byproduct can be recycled, reducing the environmental impact. The objectives of this study were to characterize the ash coming from the controlled burning of the swine deep bedding (SDBA) based on rice husk, and to evaluate their performance in composites as a partial substitute for Portland cement (PC). To measure the differences between SDBA and rice husk ash (RHA) as a reference, we have characterized: particle size distribution, real specific density, x-ray diffraction, electrical conductivity, scanning electron microscopy, chemical analysis and loss on ignition. Samples were prepared for two experimental series: control, and another one with the partial replacement of 30% of SDBA in relation to the mass of the Portland cement. According to the results obtained for physical and mechanical characterization, the composites with SDBA can be used as a constructive element in the rural construction.