Publications des scientifiques de l'IRD

Gonzalez-Bautista E., Alarcon-Gutierrez E., Dupuy N., Perraud Gaime Isabelle, Ziarelli F., Foli L., Farnet-Da-Silva A. M. (2020). Preparation of a sugarcane bagasse-based substrate for second-generation ethanol : effect of pasteurisation conditions on dephenolisation. Renewable Energy, 157, 859-866. ISSN 0960-1481.

Titre du document
Preparation of a sugarcane bagasse-based substrate for second-generation ethanol : effect of pasteurisation conditions on dephenolisation
Année de publication
2020
Type de document
Article référencé dans le Web of Science WOS:000541747100069
Auteurs
Gonzalez-Bautista E., Alarcon-Gutierrez E., Dupuy N., Perraud Gaime Isabelle, Ziarelli F., Foli L., Farnet-Da-Silva A. M.
Source
Renewable Energy, 2020, 157, 859-866 ISSN 0960-1481
Second-generation ethanol process uses lignocellulose, but a pre-treatment is required to degrade lignin before saccharification. Biological pre-treatment, using phenoloxidases, represents a cheap and eco-friendly option. Mould contamination can be overcome by heat pre-conditioning of substrates. Pasteurisation can be a mild and sustainable option. A 5-level response-surface experimental design was performed to test the effect of different time and temperatures on lignocellulolytic activities and substrate dephenolisation. Substrate microbial communities were characterised via catabolic profiles to determine functional diversity changes after pasteurisation. Temperatures ranging from 70 to 75 degrees C and time from 5 to 10 h led to the highest laccase activities and 30% of substrate dephenolisation was achieved while avoiding mould contamination. The per cent of O-Alkyl (polysaccharides) did not vary significantly, meaning that polysaccharides were not extensively consumed. Microbial communities were less catabolically diversified (H' = 1.2) but more active (AWCD = 0.9) and could degrade polysaccharides.
Plan de classement
Biotechnologies [084]
Localisation
Fonds IRD [F B010079133]
Identifiant IRD
fdi:010079133
Contact