Please use this identifier to cite or link to this item: http://repositorio.ufla.br/jspui/handle/1/43282
metadata.artigo.dc.title: Anatomy of charcoal and carbonization effect under eucalyptus fibers’ dimensions
metadata.artigo.dc.creator: Arantes, Marina Donária Chaves
Trugilho, Paulo Fernando
Moulin, Jordão Cabral
Goulart, Selma Lopes
Baraúna, Edy Eime Pereira
Neto, Raul de Abreu
metadata.artigo.dc.subject: Thermal wood degradation
Scanning electron microscopy
Pores and fibers of charcoal
Degradação térmica da madeira
Microscopia eletrônica de varredura
Poros e fibras de carvão vegetal
metadata.artigo.dc.publisher: Instituto de Florestas da Universidade Federal Rural do Rio de Janeiro
metadata.artigo.dc.date.issued: 2020
metadata.artigo.dc.identifier.citation: ARANTES, M. D. C. et al. Anatomy of charcoal and carbonization effect under eucalyptus fibers’ dimensions. Floresta e Ambiente, Seropédica, v. 27, n. 1, e20170643, 2020. DOI: https://doi.org/10.1590/2179-8087.064317 .
metadata.artigo.dc.description.abstract: The anatomy of wood and charcoal was analyzed by scanning electron microscopy in three radial positions of E. urophylla and E. Grandis in different diameter classes at six years. The carbonization process was given in the muffle with an average rate of 0.5 °C increment per minute, using initial temperature of 150 °C and maximum of 450 °C. It was observed that the pore diameter presented higher values in the samples obtained in the internal position. The diameter classes of the trees almost did not influence the characteristics of the fibers. In the external position (close to the shell) fibers with higher values of cell wall thickness and smaller values of lumen diameter and width were identified. The fiber lumen diameter was not affected by the wood carbonization process, whereas the cell wall thickness and fiber width were reduced.
metadata.artigo.dc.identifier.uri: http://repositorio.ufla.br/jspui/handle/1/43282
metadata.artigo.dc.language: en_US
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