923 resultados para Resíduo na carcaça


Relevância:

20.00% 20.00%

Publicador:

Resumo:

A areia de moldagem descartada é o principal resíduo da indústria de fundição. Esse resíduo é regenerado e recirculado no processo produtivo, até o momento que deve ser descartado. O emprego em materiais da construção civil tem sido indicado como a principal possibilidade de utilização segura das areias descartadas. Assim, o objetivo deste trabalho foi analisar, com base em estudos de laboratório e industriais, os aspectos tecnológicos e ambientais do reúso da areia de fundição na produção de blocos cerâmicos. A areia verde foi obtida de uma típica indústria de produção de ferro fundido, localizada no município de Erechim, RS, Brasil, que utiliza os processos de moldagem em areia verde e cold box. Em laboratório foram caracterizados as argilas e o resíduo através de análises químicas, mineralógicas e granulométricas. Foram avaliadas as características dos corpos-de-prova produzidos com adições de 0, 5, 10 e 20% do resíduo na massa cerâmica. Estudou-se também o efeito de diferentes temperaturas de queima. As propriedades avaliadas foram retração linear, absorção de água, resistência à flexão em quatro pontos, composição química, periculosidade (conforme a NBR 10004/2004) e emissões gasosas. Os estudos em planta industrial foram realizados na produção de lotes de blocos cerâmicos de 6 furos sem e com 10% de areia de fundição. . Avaliaram-se as propriedades geométricas, absorção de água, resistência à compressão, periculosidade (conforme a NBR 10004) e emissões gasosas. Segundo a NBR 10004, o resíduo é classificado como Não Perigosos – Classe II A - Não Inertes. Os estudos em laboratório demonstraram que os melhores resultados de resistência mecânica foram obtidos com dosagens de 5 e 10% de areia de fundição e temperatura de queima de 900oC. Através dos resultados da indústria comprovou-se a similaridade e conformidade dos blocos cerâmicos, de acordo com a norma vigente, produzidos com 10% de areia de fundição em termos de geometria, absorção de água e resistência mecânica, permitindo a sua comercialização. Esta dosagem de areia verde não elevou a concentração de poluentes nas emissões gasosas e contribuiu para a redução da emissão de CO. Por fim, pode-se concluir que a reciclagem do resíduo sólido de fundição - areia verde mostrou-se perfeitamente possível para fabricação de produtos de cerâmica vermelha para construção civil.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

Foram utilizados cento sessenta e dois animais, avaliados em dois anos para determinar a acurácia do ultra-som em estimar a espessura de gordura subcutânea (EGSC) e a área do músculo longissimus (AOLC) no sítio anatômico entre a 12ª e 13ª costelas. Dentro de vinte quatro horas antes do abate, foi medida por ultra-som a espessura de gordura subcutânea (EGSUS) e a área de músculo longissimus (AOLUS) utilizando uma eco câmera da Marca Aloka SSD 500V equipado com um transdutor de 17,2cm e 3,5MHz, no primeiro ano e de um Pie Medical Falcon 100 com transdutor de 18 cm e 3,5MHz no segundo ano. Os coeficientes de correlação simples entre as características medidas por ultra-som e a espessura de gordura subcutânea e área do músculo longissimus da carcaça foram de 0,95 e 0,96, respectivamente, considerando todos os animais. Correlações para EGSUS e EGSC foram iguais (0,95) entre os anos, enquanto as relações entre AOLUS e AOLC foram estreitamente relacionadas, de 0,96 no ano 1 e de 0,97, no ano 2. Diferenças entre medidas ultra-sônicas e da carcaça foram expressas em base atual (EDIFF e ADIFF) e em base absoluta (EDEV e ADEV). As médias da EDIFF e ADIFF indicaram que o ultra-som superestima a EGSC em 0,16mm e subestima a AOLC em 0,26cm² considerando ambos os anos. As médias globais da EDEV e ADEV, que são indicações da taxa média de erro, foram 0,34mm e 1,28cm², respectivamente.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

A crescente preocupação com o meio ambiente, associada com o aumento da população e conseqüentemente da geração de resíduos, induz pesquisas no sentido de viabilizar o aproveitamento de resíduos como matéria-prima para a produção de materiais. O resíduo sólido gerado no processo de acabamento de peças de zamac é, devido às suas características iniciais, uma fonte potencialmente interessante de matéria-prima para a obtenção de produtos cerâmicos. Este trabalho apresenta um estudo de obtenção de materiais cerâmicos utilizando o resíduo sólido gerado no acabamento de peças de zamac como matéria-prima. Para tanto, foi realizada a caracterização do resíduo através de análise química, mineralógica, morfológica, termogravimétrica, granulométrica, determinação do teor de umidade, perda ao fogo, área superficial, bem como a caracterização quanto aos riscos ao meio ambiente. Para comprovar o potencial de utilização do resíduo como matéria-prima para a produção de materiais cerâmicos foram confeccionados corpos-de-prova utilizando somente o resíduo. Estes corpos-de-prova foram caracterizados quanto as suas propriedades físicas e mecânicas Devido ao fato dos corpos-de-prova confeccionados somente com o resíduo apresentarem alta porosidade e conseqüentemente baixa resistência mecânica, foram confeccionados corpos-de-prova com diferentes formulações de vidro adicionado ao resíduo. O vidro utilizado foi caracterizado quanto a sua distribuição granulométrica e composição química. Estes corpos-de-prova foram caracterizados quanto as suas propriedades físicas, mecânicas, mineralógicas, microestruturais. Também foi avaliada a compatibilidade ambiental do processo de queima de corpos-de-prova, através da determinação das emissões gasosas geradas no processo. Os resultados obtidos demonstram que o material cerâmico produzido pode ser utilizado como placas cerâmicas para revestimento.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

Curso de Tecnologia Sucroalcooleira. Disciplina de Tecnologia de Produção de Açúcar. Ilustração. Dimensão: 1146x1474. Tamanho: 129Kb.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

VARELA, M. L. et al. Influência da adição de resíduo de caulim nas propriedades tecnológicas de uma massa padrão de porcelanato produzido em escala industrial. Cerâmica, v.55, n.334 p.209-215. 2009.ISSN 0366-6913.Disponível em: . Acesso em: 06 out. 2010.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

FORMIGA, Felipe Lira et al. Avaliação da Potencialidade de Uso do Resíduo Proveniente da Indústria de Beneficiamento do Caulim na Produção de Piso Cerâmico. Cerâmica Industrial, v. 14, p. 41-45, 2009.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

Although already to exist alternative technique and economically viable for destination of used tires, quantitative data on properties of constructive elements that use the rubber waste as aggregate still are restricted. In the present work, the waste proceeding from industry of retreading as material for manufacture of composite destined to the production of constructive elements was considered. Mechanical and thermal properties of mortar had been analyzed Portland cement with addition of waste without treatment, in the ratios of 10%, 20% and 30% in mass in relation to the mass of the cement, substituting the aggregate in the trace in mortar 1:5 mass cement and sand. The size of the used residue varied between 0,30mm and 4,8mm (passing in the bolter 4,8mm and being restrained in the one of 0,30mm), being it in the formats fibers and granular. The influences of the size and the percentage of residue added to the mortar (in substitution to the aggregate) in the thermal and mechanical properties had been considered. Assays of body-of-test in thestates had been become fullfilled cool (consistency index) and hardened (absorption of water for capillarity, strength the compression, traction and strength flexural). The work is centralized in the problem of the relation thermal performance /strength mechanics of used constructive systems in regions of low latitudes (Been of the Piauí), characterized for raised indices of solar radiation.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

Population growth experienced in major cities, allied to society s need of infra-structure, especially ones related to habitational demands, increases the consumption of construction materials. As a consequence, consumption of natural resources itself. Thus, due to this process, concrete is one of the most produced materials in civil construction. This is also due to the great diversity of its application, easiness in its execution and adequate mechanical performance, as well as low production costs. Following the same tendencies in construction development, the ceramic industry has intensified the production of porcelain ceramic tiles and floors. These are achieved by a fine finishing and receive polishing at the end of the fabrication process. This work researched the use of porcelain residues in polishing for the production of concrete. All of which; due to economical and environmental issues. This process aims to prove adequate destiny for this type of residue, due to environmental issues, incorporating it to the concrete itself; all of which provides economy in consumption of the materials that constitute concrete. Thus, the main characteristics of concrete were investigated through the inclusion of different concentration of the porcelain residue as additional trait element. The residue rates incorporated to the trait varied from 10% to 50% in relation to the cement mass, in the traits with plastic additives and without plastic additives. It is observed that the inclusion of porcelain residue produced a meaningful alteration in the consistency of fresh concrete. This residue has a fine granulometry and it considerably absorbed the water used in the concrete spreading, influencing the way this material is dealt with. Thus, the value of cement striking decreases with the increase of residues present in trait. The maximal incorporation of the residue was of 50%, massively, for the same factor water/initial cement. The use of residues in concrete results in an 40% increase in the compression resistance. It is also proportional to residue concentration of porcelain in the trait. The microstructure was also favored once porosity and concrete absorption decreases with the use of this residue. The parameters demonstrate the quality and durability of the concrete produced with this residue. The use of porcelain residue in concrete composition has not produced meaningful thermal behavior changes. Thermal conductivity, heat capacity and thermal diffusivity have been maintained basically constant

Relevância:

20.00% 20.00%

Publicador:

Resumo:

This research is about the use of the coconut´s endocarp (nucifera linn) and the waste of derivatives of wood and furniture as raw material to technological use. In that sense, the lignocellulosic waste is used for manufacture of homogeneous wood sheet agglomerate (LHWS) and lignocellulosic load which take part of a polymeric composite with fiber glass E (GFRP-WC). In the manufacturing of the homogeneous wood sheet agglomerate (LHWS), it was used mamona´s resin as waste s agglutinating element. The plates were taken up in a hydraulic press engine, heated, with temperature control, where they were manufactured for different percentage of waste wood and coconuts nucífera linn. Physical tests were conducted to determine the absorption of water, density, damp grade (in two hours and twenty-four hours), swelling thickness (in two hours and twenty-four hours), and mechanical tests to evaluate the parallel tensile strength (internal stick) and bending and the static (steady) flexural. The physical test´s results indicate that the LHWS can be classified as bonded wood plate of high-density and with highly water resistant. In the mechanical tests it was possible to establish that LHWS presents different characteristics when submitted to uniaxial tensile and to the static (steady) flexural, since brittle and elasticity module had a variation according to the amount of dry endocarp used to manufacture each trace of LHWS. The GFRP-WC was industrially manufactured by a hand-lay-up process where the fiber glass E was used as reinforcement the lignocellulósic´s waste as load. The matrix was made with ortofitalic unsaturated polyester resin. Physical and mechanical tests were performed in presence of saturated humidity and dry. The results indicated good performance of the GFRP-WC, as traction as in flexion in three points. The presence of water influenced the modules obtained in the flexural and tensile but there were no significant alteration in the properties analyzed. As for the fracture, the analysis showed that the effects are more harmful in the presence of damp, under the action of loading tested, but despite this, the fracture was well defined starting in the external parts and spreading to the internal regions when one when it reaches the hybrid load

Relevância:

20.00% 20.00%

Publicador:

Resumo:

This work addresses the production of lightweight concrete building elements, such as plates, prefabricated slabs for pre-molded and panels of fencing, presenting a singular concrete: the Lightweight Concrete, with special properties such low density and good strength, by means of the joint use of industrial waste of thermosetting unsaturated polyesters and biodegradable foaming agent, named Polymeric Lightweight Concrete. This study covered various features of the materials used in the composition of the Polymeric Lightweight Concrete, using a planning of factorial design 23, aiming at studying of the strength, production, dosage processes, characterization of mechanical properties and microstructural analysis of the transition zone between the light artificial aggregate and the matrix of cement. The results of the mechanical strength tests were analyzed using a computational statistics tool (Statistica software) to understand the behavior and obtain the ideal quantity of each material used in the formula of the Polymeric Lightweight Concrete. The definition of the ideal formula has the purpose of obtaining a material with the lowest possible dry density and resistance to compression in accordance with NBR 12.646/92 (≥ 2.5 MPa after 28 days). In the microstructural characterization by scanning electron microscopy it was observed an influence of the materials in the process of cement hydration, showing good interaction between the wrinkled face of the residue of unsaturated polyesters thermosetting and putty and, consequently, the final strength. The attaining of an ideal formula, given the Brazilian standards, the experimental results obtained in the characterization and comparison of these results with conventional materials, confirmed that the developed Polymeric Lightweight Concrete is suitable for the production of building elements that are advantageous for construction

Relevância:

20.00% 20.00%

Publicador:

Resumo:

The Potiguar basin has large fields of viscous oil where the used method for recovering is based on vapor injection; this operation is carried out by injecting vapor in the oilwell directly, without the protection of a revetment through thermal insulation, what causes its dilation and, consequently, cracks in the cement placed on the annular, and lost of hydraulic insulation; this crack is occasioned by the phenomenon of retrogression of the compressive resistance due to the conversion of the hydrated calcium silicate in phases calcium-rich, caused by the high temperatures in the wells, subjected to thermal recuperation. This work has evaluated the application of composite pastes with addition of residue of biomass of ground sugar-cane bagasse as anti-retrogression mineral admixture for cementation of oil-wells subjected to thermal recuperation. The addition of the mineral residue was carried out considering a relative amount of 10, 20, 30, 40 and 59% in relation to cement mass, trying to improve the microstructure of the paste, still being developed a reference paste only with cement and a paste with addition of 40% of silica flour - renowned material in the oil industry as anti-retrogression additive. Pozzolanic activity of the ash was evaluated through XRD, TG/DTG, as the resistance to compression, and it was also determined the physical and mechanical behavior of the pastes when submitted to cure at low temperatures (22 and 38º C); besides it was evaluated the behavior of the pastes when submitted to two cycles of cure at high temperature (280ºC) and pressure (7 MPa). It was verified that the ash of the sugar-cane biomass presents pozzolanic reaction and has great efficiency in decrease the permeability of the paste by filler effect, as well as that addition of ash in a relative amount of 10, 20 e 30% increases cured compressive resistance at low temperatures. It was also showed that the ash in a relative amount of 40% and 59% has very significant efficiency as anti-retrogression additive, since it prevents the decrease of compressive resistance and forms hydrated calcium silicate type xenotlita and tobermorita which have more resistance and stability in high temperatures

Relevância:

20.00% 20.00%

Publicador:

Resumo:

The mining industry is responsible for the generation of waste from their natural process of extraction. The mining impacts in urban areas are of special importance due to the high urban occupation, which are exacerbated due to the proximity of the mined areas and populated areas. Some solutions to wastedisposal have the potential to significantly reduce the environmental risks and liabilities, but represent higher costs in the stages of deployment and operation. The addition of mining waste as raw material in the development of commercial products reduces the environmental impacts, transforming the waste into a positive element in the generation of employment and income. This thesis studies the incorporation of waste iron ore in two clays, one from the ceramic industry of the City of Natal and the other from the ceramic industry of the Seridó Region, both in the State of Rio Grande do Norte, Brazil. Percentages of iron ore waste of 5%, 10% , 15%, 20%, 25% and 30% were used in the tested ceramic matrix. The two clays and the iron ore waste used as part of this investigation were characterized by X-ray diffraction tests, X-ray fluorescence tests, differential thermal analysis, thermogravimetric analysis and dilatometric analysis. The samples were sintered under temperatures of 850 °C, 950 °C and 1050°C at a heating rate of 5 °C/min with isotherms of two hours. The following tests were performed with the samples: linear shrinkage, water absorption, apparent porosity, apparent density, mass loss in fire and bending resistance in order to obtain their physical and mechanical properties. An amount of 5% of waste iron ore in the matrix clay at a temperature of 850 0C resulted in na increase of about 65% in the tensile strength of the clay samples from the Natal ceramic industry. A linear shrinkage of only 0.12% was observed for the samples, which indicates that the physical properties of the final product were not influenced by the addition of the waste