Por favor, use este identificador para citar o enlazar este ítem: http://repositorio.ufc.br/handle/riufc/54435
Tipo: Artigo de Evento
Título : A simple approach for hydrolysis of heterogeneous substrates using lipase
Título en inglés: A simple approach for hydrolysis of heterogeneous substrates using lipase
Autor : Cavalcante, Francisco Thálysson Tavares
Feitosa, Maria Rafaele Costa
Gomes, Pedro Henrique de Lima
Porto, Claudio Henrique Victor
Sengo, Suzana Aldina
Braz, Ana Kátia de Sousa
Fonseca, Aluísio Marques da
Santos, José Cleiton Sousa dos
Souza, Maria Cristiane Martins de
Palabras clave : Hidrólise;Reações químicas;Lipase;Novozym 435 (CALB);Óleo de coco
Fecha de publicación : 2017
Citación : CAVALCANTE, F. T. T.; FEITOSA, M. R. C.; GOMES, Pedro H. L.; PORTO, Cláudio H. V.; SENGO, S.; BRAZ, Ana Kátia de Sousa; FONSECA, A. M. da; SANTOS, J. C. S. dos; SOUZA, M. C. M. de. A simple approach for hydrolysis of heterogeneous substrates using lipase. In: SIMPÓSIO NACIONAL DE BIOPROCESSOS, XXI; SIMPÓSIO DE HIDRÓLISE ENZIMÁTICA DE BIOMASSA, XII., 3 a 6 de set. 2017, Aracaju, Sergipe, Brasil. Anais [...] Aracaju, Sergipe, 2017.
Abstract: A simple approach for the hydrolysis of heterogeneous substrates using lipase is proposed. The hydrolysis of coconut oil was evaluated as a model substrate, and Novozym 435 (CALB) was used as biocatalysts. Reaction parameters were optimized, three variables were identified: temperature, molar ratio and the enzyme amount on the hydrolysis yield. The mixture of coconut oil, water and lipase were monitored each hour to verify the conversion in fatty acids. Results showed that, the optimum condition for the reaction at 48 oC, 10% of the enzyme relative to oil mass and 1:9 coconut oil: water molar ratio giving a conversion of 19.43%. These results are initial studies, which should be further investigated. The simple procedure might be a useful technology for reactions including full modification of heterogeneous substrates.
URI : http://www.repositorio.ufc.br/handle/riufc/54435
ISSN : 2447 2816
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