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Título : | In situ laccase treatment enhances the fermentability of steam-exploded wheat straw in SSCF processes at high dry matter consistencies |
Autor : | Moreno, Antonio D. Tomás-Pejó, Elia Ibarra, David Ballesteros, Mercedes Olsson, Lisbeth |
Palabras clave : | Lignocellulose Bioethanol Simultaneous saccharification and co-fermentation In situ laccase detoxification S. cerevisiae F12 |
Fecha de publicación : | sep-2013 |
Editorial : | Elsevier Ltd |
Citación : | Moreno, A.D.; Tomás-Pejó, E.; Ibarra, D.; Ballesteros, M.; Olsson, L. In situ laccase treatment enhances the fermentability of steam-exploded wheat straw in SSCF processes at high dry matter consistencies. Bioresource Technology 2013, 143:337-343. https://doi.org/10.1016/j.biortech.2013.06.011 |
Resumen : | This work evaluates the in situ detoxification of inhibitory lignocellulosic broths by laccases to facilitate their fermentation by the xylose-consuming Saccharomyces cerevisiae F12. Treatment of wheat straw slurries with laccases prior to SSCF processes decreased the total phenolic content by 50–80%, reducing the lag phase and increasing the cell viability. After laccase treatment, a negative impact on enzymatic hydrolysis was observed. This effect, together with the low enzymatic hydrolysis yields when increasing consistency, resulted in a decrease in final ethanol yields. Furthermore, when using high substrate loading (20% DM (w/v)), high concentration of inhibitors prevailed in broths and the absence of an extra nitrogen source led to a total cell growth inhibition within the first 24 h in non-treated samples. This inhibition of growth at 20% DM (w/v) was overcome by laccase treatment with no addition of nitrogen, allowing S. cerevisiae F12 to produce more than 22 g/L of ethanol. |
URI : | http://documenta.ciemat.es/handle/123456789/2476 |
ISSN : | 0960-8524 |
Aparece en las colecciones: | Artículos de Energía
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