Use este identificador para citar ou linkar para este item: http://repositorio.ufla.br/jspui/handle/1/11718
Título: Caracterização mecânica do carvão vegetal de clones de Corymbia
Título(s) alternativo(s): Mechanic characterization of vegetal coal of Corymbia clones
Autores: Trugilho, Paulo Fernando
Lima, José Tarcísio
Vieira, Renato da Silva
Palavras-chave: Compressão paralela e perpendicular
Carvão - Temperatura
Produção de carvão vegetal
Parallel and perpendicular compression
Charcoal - Temperature
Charcoal production
Data do documento: 1-Set-2016
Editor: Universidade Federal de Lavras
Citação: COSTA, L. J. Caracterização mecânica do carvão vegetal de clones de Corymbia. 2016. 90 p. Dissertação (Mestrado em Ciência e Tecnologia da Madeira)-Universidade Federal de Lavras, Lavras, 2016.
Resumo: Steel industry is the largest consumer of charcoal in Brazil. However, one of the main issues faced by this sector is the heterogeneity presented by the charcoal, with physical, chemical and mechanic properties directly influenced by the final temperature of carbonization. For the physical and chemical properties, there are well-defined norms for analysis. However, there are no specific norms for evaluating the mechanical properties, and the tests currently used are not efficient to evaluate product quality. This work had the objective of mechanically evaluating the quality of charcoal of Corymbia clones produced at the carbonization temperatures of 350, 450, 550 and 700 o C. The influence of temperature over carbonization yield, as well as physical, chemical and energetic properties of the charcoal, were also evaluated. For this, seven clones of the Corymbia genus were collected from northern Minas Gerais, Brazil. Wood logs were removed from the trunk at a height of 1.3m, processed and carbonized. Subsequently, we prepared samples of the coal used in the compression trials, parallel and perpendicular to the coal fibers. With the results obtained, we verified that the final carbonization temperature significantly influenced carbonization yields, as well as the physical, chemical, energetic and mechanical properties of the charcoal. For the mechanical trials, we verified an increase in the characteristics of elasticity and resistance of the charcoal for parallel and perpendicular compression at a temperature of 700 o C, with the highest values verified for compression parallel to the fibers.
URI: http://repositorio.ufla.br/jspui/handle/1/11718
Aparece nas coleções:Ciência e Tecnologia da Madeira - Mestrado (Dissertações)

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