Autor/a

Canela Xandri, Anna

Balcells Fluvià, Mercè

Villorbina Noguera, Gemma

Cubero, Miguel Ángel

Canela i Garayoa, Ramon

Fecha de publicación

2017-07-28T10:32:58Z

2018-04-23T22:15:04Z

2017-04-23

2017-07-28T10:32:58Z



Resumen

Here we studied the modification of fibres derived from the fruit juice industry to prepare new value-added ingredients. These by-products are usually composted or used as animal feed. In this regard, fibres from apple, peach, and citrus fruit were enzymatically treated to improve their functional properties, with the aim to use them as food ingredients. Several enzymes were selected to modify various parts of the polymers present in the fibres. The effect of the treatments was assessed by comparing the water-holding capacity (WHC) and swelling water capacity (SWC) of the modified and raw fibres. FTIR spectrometry was also used to monitor changes in fibre structure. After the enzymatic modifications, some of these fibres not only showed an increase in WHC and SWC compared with the starting material but also greater viscosity.


We acknowledge funding from Spanish Government (MINECO grant number: RTC-2015-3652-5) and Catalan Government, 2014 SGR 1296 Agricultural Biotechnology research group.

Tipo de documento

Artículo
Versión aceptada

Lengua

Inglés

Materias y palabras clave

Resting cell; Supercritical CO2; Eutectic-like mixtures; Enzymatic hydrolysis; Non-edible fats

Publicado por

Taylor & Francis

Documentos relacionados

info:eu-repo/grantAgreement/MINECO//RTC-2015-3652-5Q7550001GCATALUÑA/ES/Preparación de aldehídos a partir de residuos de fruta por procedimientos enzimáticos para su aplicación en curtición - ALDEFRUIT/

info:eu-repo/grantAgreement/MINECO//RTC-2015-3652-5A25021494CATALUÑA/ES/Preparación de aldehídos a partir de residuos de fruta por procedimientos enzimáticos para su aplicación en curtición - ALDEFRUIT/

Versió postprint del document publicat a: https://doi.org/10.1080/10242422.2017.1313836

Biocatalysis and Biotransformation, 2017, p. 172-177

Derechos

(c) Taylor & Francis, 2017

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