<b>Effect of inhibitors on ethanol production by <i>Pichia stipitis</i> in a complex culture media

  • Ana Karla de Souza Abud Universidade Federal de Sergipe
  • Antonio Martins de Oliveira Junior Universidade Federal de Sergipe
  • Augusto de Souza da Silva Universidade Federal de Sergipe
Keywords: biomass, xylose, ethanol, Pichia stipitis, inhibitors.

Abstract

Biomass from lignocellulosic material constitutes a promising energy alternative and without competing with food production. However, pretreatments are required for conversion into sugars which release hexoses, pentoses and other sugars, coupled to inhibitors. Current analysis focuses on ethanol production with the three major inhibitors of lignocellulosic biomass pretreatment, namely, acetic acid, furfural and 5-hydroxymetilfurfural (HMF), and investigates the influence of a mixture of these inhibitors on fermentation by Pichia stipits, using commercial xylose as the only carbon source, through a full factorial 23 + 3 design of experiments (DOE). Fermentations were conducted in a laboratory scale, at 150 rpm and 72h, in a complex culture media with xylose and different inhibitor concentrations, based on the experimental analysis of sugarcane bagasse and 2.107 cell mL-1 of initial concentration of the microorganism. Experimental results showed a significant influence of acetic acid concentration, which must be at the lowest possible level, with no influence of furfural and hydroxymethyl furfural respectively up to concentrations 2.25 and 0.75 g L-1.

 

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Author Biographies

Ana Karla de Souza Abud, Universidade Federal de Sergipe
Departamento de Tecnologia de Alimentos
Antonio Martins de Oliveira Junior, Universidade Federal de Sergipe
Departamento de Tecnologia de Alimentos
Augusto de Souza da Silva, Universidade Federal de Sergipe
Departamento de Tecnologia de Alimentos
Published
2017-05-15
How to Cite
Abud, A. K. de S., Oliveira Junior, A. M. de, & Silva, A. de S. da. (2017). <b>Effect of inhibitors on ethanol production by <i>Pichia stipitis</i&gt; in a complex culture media. Acta Scientiarum. Technology, 39(2), 223-229. https://doi.org/10.4025/actascitechnol.v39i2.29719
Section
Chemical Engineering

 

0.8
2019CiteScore
 
 
36th percentile
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0.8
2019CiteScore
 
 
36th percentile
Powered by  Scopus