999 resultados para Resíduos - Construção


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Tese apresentada ao Programa de Pós-Graduação em Administração da Universidade Municipal de São Caetano do Sul para a obtenção do título de Doutor em Administração

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Dissertação de Natureza Científica para obtenção do grau de Mestre em Engenharia Civil Perfil de Edificações

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Serines proteinases inhibitors (PIs) are widely distributed in nature and are able to inhibit both in vitro and in vivo enzymatic activites. Seed PIs in than leguminous are classified in seven families, Bowman-Birk and Kunitz type families that most studied representing an important role in the first line of defense toward insects pests. Some Kunitz type inhibitors possess activities serine and cysteine for proteinases named bifunctional inhibitor, as ApTKI the inhibitor isolate from seed of Adenanthera pavonina. The A. pavonina inhibitor presenting the uncommon property and was used for interaction studies between proteinases serine (trypsin) and cysteine (papain). In order to determinate the in vitro interaction of ApTKI against enzymes inhibitor purification was carried cut by using chromatographic techniques and inhibition assays. The 3D model of the bifunctional inhibitor ApTKI was constructed SWISS-MODEL program by homology modeling using soybean trypsin inhibitor (STI, pdb:1ba7), as template which presented 40% of identity to A. pavonina inhibitor. Model quality was evaluated by PROCHECK program. Moreover in silico analyzes of formed complex between the enzymes and ApTKI was evaluated by HEX 4.5 program. In vitro results confirmed the inhibitory assays, where the inhibitor presented the ability to simultaneously inhibit trypsin and papain. The residues encountered in the inhibitor model of folder structural three-dimensional that make contact to enzymes target coud explain the specificity pattern against serine and cysteine proteinases

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The rapid population growth is the great motivator for the development of the construction industry and the increased demand for drinking water, resulting in a gradual increase in the generation of solid waste. Thus, this work was carried out in order to recycle industrial and municipal wastes incorporating them into materials for civil construction. The composite produced from water treatment sludge and marble polishing mud, applying lime production waste as a binder, was evaluated for its mechanical performance and its morphological structure. The raw materials were characterized for their chemical composition, mineralogy, morphology, particle size and also the moisture content. With the featured materials nine compositions have been developed varying the content of the water treatment sludge between 25 to 50%, marble polishing mud between 35 to 50% and the lime production waste between 10 to 30%. The composites were subjected to mechanical strength tests, water absorption, chemical and mineralogical composition and morphology. The developed materials presented, on the 3rd day of hydration, maximum strength value of 4.65 MPa, the 7th day 6.36 MPa, on the 14th day 6.74 MPa, the 28th day 5.98 MPa, on the 60th day 8.52 MPa at 90th day 11.75 MPa and 180th day 12.06 MPa. The water absorption values after 28 days of hydration ranged from 16.27% to 26.32% and after 90 days, from 13.57% to 23.56%.

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The Industry of the Civil Construction has been one of the sectors that most contribute to the pollution of the environment, due to the great amount of residues generated by the construction, demolition and the extraction of raw material. As a way of minimizing the environmental impacts generated by this industry, some governmental organizations have elaborated laws and measures about the disposal of residues from the building construction (CONAMA - resolution 307). This work has as objective the reutilization of residues compound of sand, concrete, cement, red bricks and blocks of cement and mortar for the production of red ceramic, with the objective of minimizing costs and environmental impacts. The investigated samples contained 0% to 50% of residues in weight, and they were sintered at temperatures of 950°C, 1000°C, 1050°C, 1100°C and 1150°C. After the sinterization, the samples were submitted to tests of absorption of water, linear retraction, resistance to bending, apparent porosity, specific density, XRD and SEM. Satisfactory results were obtained in all studied compositions, with the possible incorporation of up to 50% of residues in ceramic mass without great losses in the mechanical strength, giving better results to the incorporation of 30% of residues in the fabrication of ceramic parts, such as roofing tiles, bricks masonry and pierced bricks

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O setor de construção civil enfrenta sérios problemas quanto à disposição de resíduos, uma vez que gera grandes quantidades ao longo do processo de execução das obras ou devido ao desmonte de construções já existentes. A disposição inadequada desses resíduos pode provocar sérios danos ambientais, tais como degradação do solo e recursos hídricos. Uma opção interessante pode ser seu uso agrícola, entretanto existem poucos estudos sobre o tema. Assim, o presente estudo visou caracterizar resíduos da construção civil e avaliar seu efeito sobre alguns atributos do solo. Para tal, foram realizadas análises de pH, teor de macro e micronutrientes e de elementos potencialmente tóxicos. Os resultados indicaram que os resíduos não poderiam ser utilizados como fonte de nutrientes e que também não apresentavam limitações quanto à presença de elementos potencialmente tóxicos. Os altos valores de pH encontrados indicaram potencial dos resíduos em alcalinizar do solo, o que foi confirmado no ensaio em vasos. Também se constatou que os resíduos provocaram aumento da CTC. Assim, concluiu-se que é viável utilizar esses resíduos da construção civil em solos agrícolas, embora mais avaliações ainda devam ser realizadas.

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In building, during the implementation process of major or even minor works, there is a considerable waste of plaster in the steps of coating, making it is a negative factor because of the loss of these processes constructive remains incorporated into buildings, as component, whose final dimensions are higher than those projected. Another negative factor is the disposal of waste gypsum in inappropriate places, thus contributing to the degradation of environmental quality, due to the leaching of this waste and may trigger the formation of sulfuric acid. Therefore, based on this picture, processing and reuse of waste coating, combined with the ceramics industry, which is a strong potential in the reuse of certain types of waste, promote mutual benefits. Thus the overall objective of this work is to conduct a search with scientific and technological aspects, to determine the effect of the incorporation of the residue of plaster for coating, from the building, the formulation of bodies for red ceramic. The residue of plaster coating was collected and characterized. They were also selected raw materials of two ceramic poles of the state of Rio Grande do Norte and formulations have been made with the intention of obtaining those with the best physical and mechanical properties, the residue was added the percentage of 5%, 10%, 15%, 20%, 25% and 30%, in the best formulation of ceramic industry 1 and, according the properties analyses, 5%, 10% and 15% as the best results of ceramic industry 2. The samples were sintered at temperatures of 850 ºC, 950 °C and 1050 °C, the heating rate of 5 ºC / min with isotherm of two hours. They were submitted to testing technology, such as lineal shrinkage, water absorption, apparent porosity, apparent density and bending resistence. The residue incorporation best results in the formulations of mass in red ceramic, were observed between the temperatures of 850 ºC and 950 ºC, in those formulations that have illite clays and medium plastic in their composition, in the range of 0% to 15% residue incorporated

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Among the industries, those that produce ceramic porcelain for use in construction industry and oil, during the exploration and production period, play an important role in the production of waste. Much research has been carried out both by academia and the productive sector, sometimes reintroducing them in the same production line that generated them, sometimes in areas unrelated to their generation, as in the production of concrete and mortar for the construction, for example, but each one in an isolated way. In this research, the aim is to study the combined incorporation of the waste drill cuttings of oil well and the residue of the polishing of porcelain, generated in the final stage of finishing of this product in a clay matrix, for the production of red pottery, specifically bricks, ceramic blocks and tiles. The clay comes from the municipality of São Gonçalo, RN, the drilling waste is from the Natal basin, in Rio Grande do Norte, and the residue of the polishing proceeds from a ceramic porcelain of the State of Paraíba. For this purpose, we used a mixture of a plastic clay with a non-plastic, in a ratio of 50% each, settling formulations with the addition of these two residues in this clay matrix. In the formulations, both residues were incorporated with a minimum percentage of 2.5% and maximum of 12.5%, varying from 2.5% each, in each formulation, which the sum of the waste be no more than 15%. It should be noted that the residue of the polishing of ceramic porcelain is a IIa class (not inert). The materials were characterized by XRF, XRD, TG, DTA, laser granulometry and the plasticity index. The technological properties of water absorption, apparent porosity, linear shrinkage of burning, flexural tensile strength and bulk density were evaluated after the sintering of the pieces to 850 °C, 950 °C and 1050 °C, with a burning time of 3 hr, 3 hr and 30 minutes, and 3 hr and 50 minutes, respectively, with a heating rate of 10 °C/minute, for all formulations and landing of 30 minutes. To better understand the influence of each residue and temperature on the evaluated properties, we used the factorial planning and its surfaces of response for the interpretation of the results. It was found that the temperature has no statistical significance at a 95% of reliability level in flexural tensile strength and that it decreases the water absorption and the porosity, but increases the shrinkage and the bulk density. The results showed the feasibility of the desired incorporation, but adjusting the temperature to each product and formulation, and that the temperatures of 850 °C and 950 °C were the one that responded to the largest number of formulations

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As atividades de extensão realizadas no curso superior de tecnologia em agroecologia do IFAM tem o objetivo gerar um aprendizado em via de mão dupla, por meio do diálogo de saberes entre populações tradicionais do Amazonas e acadêmicos do curso de tecnologia em agroecologia do Instituto Federal do Amazonas. Para Isso, foram realizadas oficinas de reaproveitamento de alimentos na comunidade Lago do limão, município do Iranduba; e oficina de Plantas Alimentícias Não Convencionais na comunidade São João do Araçá, no município de Itacoatiara. Foram demonstradas as possibilidades de reaproveitar para alimentação, resíduos orgânicos e espécies alimentícias não convencionais. As duas atividades tiveram participação efetiva dos comunitários e permitiram aos acadêmicos a convivência com a realidade amazônica e a interação com os agricultores familiares e suas dificuldades e perspectivas de vida, contribuindo assim, para a formação com visão sistêmica, conforme preconiza a agroecologia.

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Tese (doutorado)—Universidade de Brasília, Faculdade de Educação, Programa de Pós-Graduação em Educação, 2016.

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As questões ambientais têm assumido cada vez mais um papel importante e principalmente de reflexão no setor da construção civil e no público em geral. Consequentemente é notória a crescente consciencialização em questões ambientais desde a década de 60. O sector da construção civil gera grandes impactes ambientais, assim, surgiu a necessidade de pensar e desenvolver medidas e ações de modo a melhorar o seu desempenho. É essencial que o Dono da Obra e o Empreiteiro adotem medidas de prevenção ambiental, apostando na promoção da gestão ambiental, de acordo com a legislação em vigor garantindo o seu cumprimento e tornando o seu desempenho ambiental mais eficiente. Este projeto propõe uma abordagem à valorização da gestão ambiental na construção civil, abordando questões de sustentabilidade e planos de minimização e mitigação dos impactes ambientais gerados neste sector, apresentando-se como guia de procedimentos em obra, estabelecendo diretrizes e instruções a este nível. No desenvolvimento deste projeto, no enquadramento das questões ambientais e dos impactes gerados no sector da construção civil, aborda-se com maior pormenor os aspetos da gestão ambiental, efetuando-se um levantamento ao nível dos requisitos legais e boas práticas ambientais em relação à gestão dos resíduos, substâncias perigosas, águas residuais, emissões difusas, ruído e situações de emergência. Como caso prático, efetuou-se o acompanhamento ao nível da gestão ambiental a uma obra, por forma aplicar e demonstrar os conhecimentos adquiridos, no período compreendido entre setembro e março do ano atual, na qual foram identificados os impactes ambientais da empreitada, as medidas que foram implementadas, o controlo e monitorização, a análise dos dados constatados e as propostas de melhoria ao desempenho ambiental observado.

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Na atualidade, lixo é considerado como um dos problemas de ordem mundial. Uma vez que crescimento populacional tem estabelecido uma relação direta com a geração deste tipo de. A normatização quanto ao seu manuseio é tarefa árdua para o setor público, pois exige o envolvimento de diferentes setores dentro da administração. Apesar desse desafio o Brasil conseguiu caminhar na construção de uma política nacional específica para os resíduos sólidos. Dentro dessa política existe parte específica tratando dos resíduos de saúde, com normas, leis e portarias que regulamentam sua gestão de maneira adequada. O plano de gerenciamento de resíduos sólidos em saúde (PGRSS) é um instrumento de uso obrigatório nos estabelecimentos de saúde, mas ainda são poucos os que possuem tal documento. Ao compreender a importância da implementação deste plano este trabalho adotou como objeto a proposição de um Plano de Gerenciamento de Resíduos Sólidos Saúde para a Unidade de Saúde Nossa Senhora Aparecida, localizada em São Gonçalo do Sapucaí, Minas Gerais.

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The behaviour of Nafion® polymeric membranes containing acid-base dyes, bromothymol blue (BB) and methyl violet (MV), were studied aiming at constructing an optical sensor for pH measurement. BB revealed to be inadequate for developing sensing phases due to the electrostatic repulsion between negative groups of their molecules and the negative charge of the sulfonate group of the Nafion®, which causes leaching of the dye from the membrane. On the other hand, MV showed to be suitable due to the presence of positive groups in its structure. The membrane prepared from a methanolic solution whose Nafion®/dye molar ratio was 20 presented the best analytical properties, changing its color from green to violet in the pH range from 0.6 to 3.0. The membrane can be prepared with good reproducibility, presenting durability of ca. 6 months and response time of 22 s, making possible its use for pH determination in flow analysis systems.

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The high cost of sensitivity commercial calorimeters may represent an obstacle for many calorimetric research groups. This work describes the construction and calibration of a batch differential heat conduction calorimeter with sample cells volumes of about 400 μL. The calorimeter was built using two small high sensibility square Peltier thermoelectric sensors and the total cost was estimated to be about US$ 500. The calorimeter was used to study the excess enthalpy of solution of binary mixtures of liquids, as a function of composition, for the following binary systems of solvents: water + 1,4-dioxane or + dimethylsulfoxide at 298,2 ± 0,5 K.