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Thermal behavior of cellulose acetate produced from homogeneous acetylation of bacterial cellulose
Authors:Hernane S. Barud, Adalberto M. de Araú  jo Jú  nior, Daniele B. Santos, Rosana M.N. de Assun    o, Carla S. Meireles, Daniel A. Cerqueira, Guimes Rodrigues Filho, Cl  vis A. Ribeiro, Younes Messaddeq,Sidney J.L. Ribeiro
Affiliation:

aState University of São Paulo (UNESP), Institute of chemistry, Department of Inorganic and General Chemistry, R: Francisco Degni, s/n, P.O. Box 355, 14801-970 Araraquara, SP, Brazil

bFederal University of Uberlândia, Institute of Chemistry, Av. João Naves de Avila 2121, P.O. Box 593, 38400-902 Uberlândia, MG, Brazil

Abstract:Cellulose acetate (CA) is one of the most important cellulose derivatives and its main applications are its use in membranes, films, fibers, plastics and filters. CAs are produced from cellulose sources such as: cotton, sugar cane bagasse, wood and others. One promissory source of cellulose is bacterial cellulose (BC). In this work, CA was produced from the homogeneous acetylation reaction of bacterial cellulose. Degree of substitution (DS) values can be controlled by the acetylation time. The characterization of CA samples showed the formation of a heterogeneous structure for CA samples submitted to a short acetylation time. A more homogeneous structure was produced for samples prepared with a long acetylation time. This fact changes the thermal behavior of the CA samples. Thermal characterization revealed that samples submitted to longer acetylation times display higher crystallinity and thermal stability than samples submitted to a short acetylation time. The observation of these characteristics is important for the production of cellulose acetate from this alternative source.
Keywords:Bacterial cellulose   Homogeneous acetylation   Cellulose acetate   Thermal properties
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