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Provedor de dados:  CIGR Journal
País:  China
Título:  Simultaneous co-Saccharification and Fermentation of Sago Hampas for Bioethanol Production
Autores:  Vincent, Micky A
Data:  2015-06-23
Ano:  2015
Palavras-chave:  Biofuel Biorenewable Resources Technology Bioethanol
Sago hampas
Simultaneous co-Saccharification and Fermentation (Sc-SF)
Amylase
Cellulase
Saccharomyces cerevisiae
HPLC.
Resumo:  Abundance of lignocellulosic biomass provides a good solution to the demands of energy crops in producing biofuel like biodiesel and bioethanol. In this study, bioethanol was produced from sago hampas via the Simultaneous co-Saccharification and Fermentation (Sc-SF) process, at 2.5% and 5.0% (w/v) solid loadings. The processing step in Sc-SF is virtually similar to that of Simultaneous Saccharification and Fermentation (SSF). However, during Sc-SF, two enzymes, amylase and cellulase, were added for the co-saccharification of sago starch and fiber. In addition, Saccharomyces cerevisiae was used to ferment the sugars in the hydrolysates. The Sc-SF samples were analyzed for carbohydrate residues, ethanol and acetic acid using the dinitrosalicylic (DNS) acid assay and High Performance Liquid Chromatography (HPLC). Results showed that the Sc-SF of the sago hampas showed high efficiencies of hydrolysis and ethanol production within the first 6 hours of fermentation. Highest  glucose production was at 37.86 g/l for the 5.0% sago hampas load and 17.47 g/l for 2.5% sago hampas load. The highest ethanol production was observed in the broth with 5.0% sago hampas, with the theoretical yield of 80.50%. Meanwhile, the highest bioethanol yield in the sample with 2.5% sago hampas was 73.19%. This study indicated that there is feasibility of bioethanol production via Sc-SF from starch rich agricultural residues such as sago hampas.
Tipo:  Info:eu-repo/semantics/article
Idioma:  Inglês
Identificador:  http://www.cigrjournal.org/index.php/Ejounral/article/view/2921
Editor:  International Commission of Agricultural and Biosystems Engineering
Relação:  http://www.cigrjournal.org/index.php/Ejounral/article/view/2921/2131
http://www.cigrjournal.org/index.php/Ejounral/article/downloadSuppFile/2921/972
Formato:  application/pdf
Fonte:  Agricultural Engineering International: CIGR Journal; Vol 17, No 2 (2015): CIGR Journal

1682-1130
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