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<title>Valorization of brewer’s spent grain by furfural recovery/removal from subcritical water hydrolysates by pervaporation</title>
<creator>Alonso Riaño, Patricia</creator>
<creator>Illera Gigante, Alba Ester</creator>
<creator>Amândio, Mariana S.T.</creator>
<creator>Xavier, Ana María Rebelo Barreto</creator>
<creator>Beltrán Calvo, Sagrario</creator>
<creator>Sanz Díez, Mª Teresa</creator>
<subject>Brewer's spent grain</subject>
<subject>Subcritical water hydrolysates</subject>
<subject>Pervaporation</subject>
<subject>PDMS/POMS membranes</subject>
<subject>Furfural</subject>
<description>This work is focused on the development of a sustainable process for the valorisation of the main by-product&#xd;
generated in the brewing industry, the brewer’s spent grain (BSG). A two-step process combining subcritical&#xd;
water treatment and pervaporation (PV) was proposed to hydrolyse the hemicelluloses fraction of this lignocellulosic biomass and further removal/recovery of some of the degradation products of sugars by using two&#xd;
different organophilic membranes, polydimethylsiloxane (PDMS) and polyoctilmethylsiloxane (POMS) membranes. Specifically, furfural is the dehydration product of pentoses and it is one of the top biomass-based&#xd;
chemicals being an important platform chemical. For synthetic binary mixtures, lower total permeation flux&#xd;
but higher enrichment factors for furfural were determined for POMS. When dealing with subW hydrolysates,&#xd;
POMS membranes yielded the highest furfural recovery, 94.1 %, with permeate concentrations as high as 40 g⋅L1&#xd;
. Furthermore, it was assessed that PV is a suitable detoxification method that yielded a retentate nearly free of&#xd;
furfural allowing its use as growth media in the opposite to the subW hydrolysate with inhibitory furfural&#xd;
concentrations for microbial bioprocesses.</description>
<date>2023-02-13</date>
<date>2023-02-13</date>
<date>2023-03</date>
<type>info:eu-repo/semantics/article</type>
<identifier>1383-5866</identifier>
<identifier>http://hdl.handle.net/10259/7442</identifier>
<identifier>10.1016/j.seppur.2022.123008</identifier>
<language>eng</language>
<relation>Separation and Purification Technology. 2023, V. 309, 123008</relation>
<relation>https://doi.org/10.1016/j.seppur.2022.123008</relation>
<relation>info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-104950RB-I00/ES/VALORIZACION DE SUBPRODUCTOS MARINOS MEDIANTE TECNOLOGIAS DE FLUIDOS SUB- Y SUPERCRITICOS PARA LA OBTENCION DE BIOCOMPUESTOS VALIOSOS/</relation>
<relation>info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica, Técnica y de Innovación 2021-2023/TED2021-129311B-I00/ES/Tecnologías verdes basadas en el empleo de fluidos presurizados para valorizar biomasa lignocelulósica mediante la producción de furfural/</relation>
<relation>info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica, Técnica y de Innovación 2021-2023/PDC2022-133443-I00/ES/Diseño de un prototipo para la extracción de bioproductos con agua subcrítica/</relation>
<relation>info:eu-repo/grantAgreement/Junta de Castilla y León//BU050P20//Valorización de la fracción proteica de subproductos de la industria agroalimentaria de Castilla y León mediante tecnologías de fluidos presurizados/</relation>
<relation>info:eu-repo/grantAgreement/FCT//UIDB%2F50011%2F2020/PT/</relation>
<relation>info:eu-repo/grantAgreement/FCT//UIDP%2F50011%2F2020/PT/</relation>
<relation>info:eu-repo/grantAgreement/FCT//LA%2FP%2F0006%2F2020/PT/</relation>
<rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</rights>
<rights>info:eu-repo/semantics/openAccess</rights>
<rights>Attribution-NonCommercial-NoDerivatives 4.0 Internacional</rights>
<publisher>Elsevier</publisher>
</thesis></metadata></record></GetRecord></OAI-PMH>