Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/164227
Título: Xylitol Production by Debaryomyces hansenii in Extracted Olive Pomace Dilute-Acid Hydrolysate
Autor: Morais, Ana Rita C.
Duarte, Luís C.
Lourenço, Pedro
Torrado, Ivone
Brás, Teresa
Neves, Luísa A.
Carvalheiro, Florbela
Palavras-chave: Debaryomyces hansenii
detoxification
extracted olive pomace
pentose-rich hydrolysate
supplementation
Food Science
Biochemistry, Genetics and Molecular Biology (miscellaneous)
Plant Science
Data: 14-Dez-2023
Resumo: The extracted olive pomace (EOP) is an industrial lignocellulosic by-product of olive pomace oil extraction, currently mainly used for energy production through combustion. In this work, the hemicellulosic fraction of EOP was selectively hydrolyzed by diluted acid hydrolysis to obtain pentose-rich hydrolysates that can potentially be upgraded by Debaryomyces hansenii, targeting xylitol production. The monosaccharides and degradation by-products released along the pre-treatment were quantified and several detoxification methods for the removal of potentially toxic compounds were evaluated, including pH adjustment to 5.5, the use of anion-exchange resins, adsorption into activated charcoal, concentration by evaporation, and membrane techniques, i.e., nanofiltration. The latter approach was shown to be the best method allowing the full removal of furfural, 41% of 5-hydroxymethylfurfural, 54% of acetic acid, and 67% of the phenolic compounds present in the hydrolysate. The effects of the supplementation of both non-detoxified and detoxified hydrolysates were also assessed. The non-detoxified hydrolysate, under aerobic conditions, supported the yeast growth and xylitol production at low levels. Supplementation with the low-cost corn steep liquor of the nanofiltration detoxified hydrolysate showed a higher xylitol yield (0.57 g/g) compared to the non-detoxified hydrolysate. The highest xylitol productivity was found in hydrolysate detoxified with anionic resins (0.30 g/L·h), which was 80% higher than in the non-detoxified culture medium. Overall, the results showed that EOP dilute acid hydrolysates can efficiently be used for xylitol production by D. hansenii if detoxification, and supplementation, even with low-cost supplements, are performed.
Descrição: This work has been supported by QREN project FCOMP-01-0202-FEDER-005450. This work was partially carried out at the Biomass and Bioenergy Research Infrastructure (BBRI-LISBOA-01–0145-FEDER-022059), which is supported by the Operational Programme for Competitiveness and Internationalization (PORTUGAL2020), by the Lisbon Portugal Regional Operational Programme (Lisboa 2020) and by the North Portugal Regional Operational Programme (Norte2020) under the Portugal 2020 Partnership Agreement, through the European Regional Development Fund (ERDF). Publisher Copyright: © 2023 by the authors.
Peer review: yes
URI: http://hdl.handle.net/10362/164227
DOI: https://doi.org/10.3390/fermentation9121020
ISSN: 2311-5637
Aparece nas colecções:Home collection (FCT)

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