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Valorization of exhausted sugar beet cossettes by successive hydrolysis and two fermentations for the production of bio-products

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논문

Valorization of exhausted sugar beet cossettes by successive hydrolysis and two fermentations for the production of bio-products

학술지

Bioresource technology : biomass, bioenergy, biowastes, conversion technologies, biotransformations, production technologies

저자명

Dí az, A.B.; Marzo, C.; Caro, I.; de Ory, I.; Blandino, A.

초록

<P><B>Abstract</B></P> <P>Exhausted sugar beet cossettes (ESBC) show an enormous potential as a source of sugars for the production of bio-products. Enzyme hydrolysis with the combined effect of mainly cellulases, xylanases and pectinases, turned out to be very efficient, obtaining almost double the concentration of sugars measured with the sole action of Celluclast&reg; and &beta;-glucosidase, and increasing 5 times the hydrolysis rate. As the sole pretreatment, ESBC soaked in the hydrolysis buffer were autoclaved, avoiding the application of severe conventional biomass pretreatments. Moreover, a promising alternative for the complete utilization of glucose, xylose, arabinose, mannose and maltose contained in ESBC is proposed in this paper. It consists of sequential fermentation of sugars released in the hydrolysis step to produce bioethanol and lactic acid as main bio-products. Compared to separate fermentations, with this strategy glucose and hemicellulose derived sugars were completely consumed and the 44% of pectin derived sugars.</P> <P><B>Highlights</B></P> <P> <UL> <LI> High potential of ESBC as a source of sugars for the production of bio-products. </LI> <LI> Autoclave treatment of ESBC avoid the application of severe pretreatment. </LI> <LI> Promising alternative for complete utilization of sugars contained in ESBC. </LI> <LI> High sugars consumption with sequential fermentation of hydrolysis released sugars. </LI> </UL> </P>

발행연도

2017

발행기관

Elsevier

ISSN

0960-8524

225

페이지

pp.225-233

주제어

Bioethanol; Lactic acid; Sugar beet cossettes; Enzyme hydrolysis; Fermentation

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2 2023-12-11
3 2023-12-11

논문; 2017-02-01

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