1000 resultados para resíduo amiláceo


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Este trabalho foi desenvolvido com o intuito de avaliar nutricionalmente variedades agrícolas regionais madeirenses e açorianas de Ipomoea batatas L. (batata-doce). No total 18 amostras foram analisadas, entre as quais 11 são variedades provindas da Madeira e outras 7 provindas dos Açores. O maior objectivo deste estudo foi comparar a composição nutricional e mineral de um conjunto de variedades de batata-doce, valorizando assim os recursos agrícolas da Madeira e Açores. A caracterização nutricional e mineral dos rizomas, produzidos nestas regiões, proporcionou informação relevante para a valorização destes recursos. Sendo um rizoma tropical consumido habitualmente pela população e disponível todo o ano, torna essencial a sua avaliação. A análise laboratorial dos rizomas permitiu determinar um conjunto de características nutricionais. De um modo geral, os valores nutricionais médios detectados em rizomas de batata-doce destas duas regiões são de 93,64 g/100g de MS para o resíduo seco, 3,01 g/100g de MS para cinzas, 3,19 g/100g de MS para fibra (ADF), 1,21 g/100g de MS para gordura bruta, 3,20 g/100g de MS para proteína, 14,00 g/100g de MS para açúcares solúveis e 59,72 g/100g de MS para o amido. A análise mineral incluiu a determinação de fósforo, potássio, cálcio, magnésio, ferro, cobre, zinco, manganês e boro. Na variedade “De cenoura” (ISOP 1028), foi quantificado o nível de pro-vitamina A pela técnica de HPLC, que foi verificado ser 12,48 mg/100g em MS de β-caroteno. Os dados obtidos na análise nutricional foram usados para construir uma base de dados no NIRS (Near Infra-Red Spectroscopy) de modo a construir um modelo de previsão que possa predizer o valor nutritivo de um grande número de amostras em tempo reduzido, com um mínimo de impacto ambiental. Posteriormente, os dados obtidos através das análises nutricionais e minerais foram introduzidos no software estatístico SPSS 19.0 para determinar correlações e similaridades.

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Esta dissertação foi desenvolvida tendo como objetivo principal quantificar e qualificar a produção dos Resíduos de Construção e Demolição (RCD) na Região Autónoma da Madeira (RAM). Estes resíduos são provenientes de atividades de construção civil, nomeadamente de obras de construção, reconstrução, ampliação, alteração, conservação e demolição e da derrocada de edificações. Os RCD devem ser, sempre que possível, reduzidos, reutilizados e/ou reciclados (3 R’s). Caso não seja exequível a aplicação direta em obra de um dos 3 R’s, estes deverão ser encaminhados para um operador de gestão licenciado com o intuito de os valorizar e/ou eliminar. Uma das opções mais usuais de eliminação de resíduos na RAM é a deposição legal em aterro. No entanto, ainda há resíduos que têm como destino a deposição não controlada, causando a degradação geral do ambiente da Região. Neste trabalho foram identificados os vários operadores de gestão de resíduos presentes na Região Autónoma da Madeira e quais os destinos finais de cada resíduo, classificado por código de acordo com a Lista Europeia de Resíduos (LER), segundo a Portaria n.º209/2004, de 3 de março. A informação da quantidade dos resíduos encaminhados para os operadores licenciados é transmitida, anualmente, à Direção Regional do Ordenamento do Território e Ambiente (DROTA), sendo possível determinar a tipologia e a quantidade de resíduos recebidos com respetivo destino final. Foi analisada bibliografia nacional e internacional sobre RCD com o objetivo de selecionar indicadores, em kg/m2 (quantidade de resíduos produzidos por área bruta de construção/demolição), mais ajustados às caraterísticas do edificado regional e respetivos processos construtivos. Da comparação entre os valores estimados de RCD produzidos com a quantidade de resíduos recebidos pelos operadores licenciados na RAM, foi possível estimar as quantidades recicladas e reutilizadas em obra e/ou depositadas ilegalmente. O resíduo estudado mais produzido foi o referente ao código LER 170107. Foi ainda, estimado um intervalo de produção total de RCD para a RAM, situado entre 93 e 507 kg/ano/habitante.

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Como é de conhecimento geral as argamassas de revestimento antigas diferem das argamassas atuais, tanto na sua produção, como nos seus constituintes e até na sua resistência e durabilidade. O presente trabalho surge com o principal intuito de dissertar sobre a caraterização de algumas argamassas de revestimento e de enchimento antigas na Região Autónoma da Madeira. Desta forma foram realizados vários ensaios como a difração de raios X, a análise termogravimétrica, a determinação da percentagem do resíduo insolúvel com ataque àcido e a análise granulométrica, podendo assim ficar-se com uma ideia dos seus minerais, a quantidade de carbonato de cálcio utilizada, a quantidade de material insolúvel no ácido clorídrico e a granulometria (tamanho/dimensões) das areias. A escolha das amostras baseou-se nos critérios de maior longevidade dos edifícios, a não reabilitação destes e a possibilidade da realização do estudo dessas habitações (i.e. acessibilidade física e legal). Quanto aos ensaios efetuados, a opção de os ter utilizado prende-se com as técnicas disponíveis no Laboratório Regional de Engenharia Civil (LREC).

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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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The WTP produce many kinds of residue on your treatment stages, but the sludge is the more problematic from the final disposition point view. The actual rate of residue production deriving from technological evolution and the crescent population needs prevents the subtle equilibrium generation between consumption and recycling/reuse, creating problems of pollution resulting from inappropriate management of residues. Thus, is necessary achieve a new equilibrium between the grow from raw materials and energy and the residue generation. This equilibrium should be achieved by technical and economic feasibility of environmental supported models through recycling and reuse. The red ceramic industry stand out in residue absorption question as raw material due their clay mass heterogeneity, constituted by clay minerals and non-clay minerals with wide mineralogical variation, allowing residue inclusion which act like plastic or non-plastic materials, contributing to retain heavy metals contained in residues in the vitreous mass formed during the burning of the ceramic bodies. This work propose the study of the influence of incorporation of 25 wt.% sludge from wastewater treatment plant, according preliminary results, in the mass to produce ceramic bodies. The raw materials was characterized through chemical composition analyses by XRF, mineralogical analyses by XRD, thermal analyses by TG and DTA, Atterberg limits and thermodilatometry. Subsequently was composed the mass with 75 wt.% of clay and 25 wt.% of dried wastewater sludge from UFRN WWTP. Samples with 6,0 x 2,0 x 0,5 cm was produced with unidirectional compacting under pressure of 20MPa and burned in temperatures between 950 and 1,200ºC. After fired, the ceramic bodies have been submitted to physical and mechanical analyses through the measure of firing shrinkage, water absorption, density, apparent porosity and flexural strength; crystallographic analyses through XRD and microstructure analyses by SEM. The technological properties obtained was satisfactory to production of roof tiles with 25 wt.% at 1,200 ºC, but the production of others products at lower temperatures was not feasible

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One of waste produced on large scale during the well drilling is the gravel drilling. There are techniques for the treatment of the same, but there isn t consensus on what are the best in terms of economic and environmental. One alternative for disposal of this waste and objective of this paper is the incorporation and immobilization of gravel clay matrix to assess their technological properties. The Raw Materials used were characterized by the following techniques: Chemical Analysis by X-ray fluorescence (XRF), mineralogical analysis by X-ray Diffraction (XRD), Grain Size Analysis (FA) and Thermal Analysis by Thermogravimetry (TG) and thermodiferential (DTA). After characterizing, samples were formulated in the following percentages: 0, 5, 10, 15, 25, 50, 75, 100% (weight) of gravel drilling, then the pieces were pressed, dried (110 ° C) and sintered at temperatures of 850, 950 and 1050 ° C. After sintering, samples were tested for water absorption, linear shrinkage, flexural strength, porosity, density, XRD and test color. The results concluded that the incorporation of gravel drilling is a viable possibility for solid masonry bricks and ceramic blocks manufacture at concentrations and firing temperature described here. Residue incorporation reduces an environmental problem, the cost of raw materials for manufacture of ceramic products

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The present work is to study the characteristics and technological properties of soil-cement bricks made from binary and ternary mixtures of Portland cement, sand, water, with or without addition of gravel from the drilling of oil wells, which could be used by industry, aiming to improve its performance and reduce cost by using the residue and, consequently, increasing its useful life. The soil-cement bricks are one of the alternatives to masonry construction. These elements, after a short curing period, provide compressive strength similar to that of solid bricks and ceramic blocks, and the higher the resistance the higher the amount of cement used. We used the soil from the city of São José do Mipibu / RN, the banks of the River Baldun, cement CPIIZ-32 and residue of drill cuttings from oil wells drilling onshore wells in the town of Mossley, RN, provided Petrobras. To determine the optimum mix, we studied the inclusion of different residues (100%, 80%, 70%, 60% and 50%) where 15 bodies were made of the test piece. The assessment was made of bricks made from simple compression tests, mass loss by immersion and water absorption. The experimental results proved the efficiency and high utilization of the waste from the drilling of oil wells, making the brick-cement-soil residue with a higher strength and lower water absorption. The best result in terms of mechanical strength and water absorption for the ternary mixture was 10% soil, 14% cement and 80% residue. In terms of binary mixtures, we obtained the best result for the mix-cement residue, which was 14% cement incorporated in the residue

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Current environmental concerns include the excessive consumption and inefficient use of non-renewable natural resources. The construction industry is considered one of the largest consumers of natural raw materials, significantly contributing to the environmental degradation of the planet. The use of calcareous quarry (RPPC) and porcelain tile polishing residues (RPP) as partial replacements of the cement in mortars is an interesting alternative to minimize the exploration of considerably large amounts of natural resources. The present study aimed at investigating the properties of fresh and hardened mortars produced using residues to replace cement. The residues used were fully characterized to determine their specific mass, unitary mass, particle size distribution and morphology, and composition. The performance of the mortars was compared to that of reference compositions, prepared without residues. A total of 18 compositions were prepared, 16 using residues and 2 reference ones. The mortars were prepared using Portland CP II F 32 cement, CH I hydrated lime, river sand and tap water. The compositions of the mortars were 1:1:6 and 1:0.5:4.5 (vol%), and water to cement ratios of 1.87 and 1.45 were used, respectively. The mortars in the fresh state were evaluated by consistency index, water retention, density of mass and incorporated air content tests. In their hardened state, the mortars were evaluated by apparent mass density, modulus of elasticity, flexural tensile strength, compressive strength and water absorption by capillarity. The mortars were also analyzed by scanning electron microscopy, energy dispersive spectroscopy, X-ray diffraction and fluorescence. Finally, they were classified according to NBR 13281 standards. The mortars prepared using residues partially replacing the cement exhibited lower modulus of elasticity compared to the reference compositions, thus improving the performance in their intended use. On the downside, the water absorption by capillarity was affected by the presence of residues and both the tensile and compressive strength were reduced. However, from the overall standpoint, the replacement of cement by calcareous quarry or porcelain tile polishing residues did not result in significant changes in the properties of the mortars. Therefore, compositions containing these residues can be used in the construction industry

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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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Structural changes in waste for zeolites synthesis are subject of many studies carried out in the synthesis of molecular sieves. These materials are named molecular sieves because they have well defined pore sizes and they have the capacity of select molecules by its size. In this work, it was studied the synthesis processes of two types of molecular sieves: pillared acid clays using as starting material one natural montmorillonite clay and the synthesis of zeolites from a silico-aluminous residue. This residue is a byproduct of the extraction of lithium -spodumene. The preparation of pillared acid clays was performed in two steps: 1° acid treatment of clay samples (time and temperature studies) and 2°pilarization of them with Al13 (Keggin ion). The temperature and acid concentration affect the removal of cations in the structure and porosity of the material obtained. The analysis of X-ray diffraction (XRD) and infrared spectroscopy (IR), showed that increasing the severity of the acid treatment compromises the structural material. Also the pore size distribution is approximately uniform. Despite presenting a structural disorganization, the samples were pillared. As evidenced by XRD increasing the basal spacing, specific area and uniform porosity by adsorption of N2. Regarding the microporous molecular sieves were synthesized zeolites A and NaP1 from a silico-aluminous residue, a byproduct of extracting lithium. The temperature and time of agitation during the synthesis were the most important factors for obtaining zeolite A. The aging of the gel and the highest crystallization time promoted the formation of zeolite NaP1 using a Si / Al ratio = 3.2