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<dc:title>Production of cellulose nanofibers from onion peels using Nades and microfluidization: a sustainable valorization strategy</dc:title>
<dc:creator>Benito Román, Oscar</dc:creator>
<dc:creator>Beltrán Calvo, Sagrario</dc:creator>
<dc:creator>Sanz Díez, Mª Teresa</dc:creator>
<dc:subject>Cellulose nanofibers</dc:subject>
<dc:subject>NADES</dc:subject>
<dc:subject>Onion peels</dc:subject>
<dc:subject>Lignocellulosic biomass</dc:subject>
<dc:subject>Circular bioeconomy</dc:subject>
<dc:subject>Green pretreatment</dc:subject>
<dc:description>Póster presentado en: XVI International Scientific Agriculture Symposium "Agrosym 2025", Jahorina, Bosnia and Herzegovina, October 2-5, 2025</dc:description>
<dc:description>Agro-industrial residues are an abundant and underutilized source of lignocellulosic biomass with&#xd;
strong potential for the development of bio-based materials. In this study, onion peels—a major&#xd;
by-product of the agri-food sector—were valorised for the production of cellulose nanofibers&#xd;
(CNF) through a green pretreatment based on Natural Deep Eutectic Solvents (NADES), followed&#xd;
by mechanical fibrillation (microfluidization). The NADES system, composed of betaine&#xd;
(hydrogen bond acceptor, HBA) and tartaric acid (hydrogen bond donor, HBD) in a 1:2 molar ratio&#xd;
(HBA:HBD), was applied at 120 °C for 6 hours. This treatment yielded a solid residue enriched in&#xd;
cellulose (72%) and lignin (15%), suitable for further processing. Subsequently, the pretreated&#xd;
biomass was the treated using a Microfluidics LM-20 unit equipped with a Z-type interaction&#xd;
chamber (H210Z, 200 μm). The influence of homogenization pressure (up to 150 MPa) and the&#xd;
number of passes was evaluated. The resulting CNFs exhibited a high aspect ratio as confirmed by&#xd;
morphological analyses. Additionally, they demonstrated promising techno-functional properties,&#xd;
including excellent water retention capacity and potential as emulsifying agents. This process&#xd;
provides a sustainable and efficient alternative to conventional chemical pretreatments and aligns&#xd;
with circular bioeconomy principles by converting low-value agricultural waste into high-value&#xd;
nanomaterials. These findings support the implementation of NADES-based technologies in&#xd;
integrated biorefinery strategies aimed at producing advanced materials from renewable sources.</dc:description>
<dc:description>This work is supported by the Spanish Research Agency (AEI) [grant number PID2022-136385OB-I00], Junta de Castilla y León (JCyL), and European Regional Development Fund (ERDF) [grant number BU027P23]. Ó. Benito-Román contract is funded by Ministerio de Ciencia, Innovación y Universidades through grant RYC2023-043578-I.</dc:description>
<dc:date>2026-10-02T10:36:52Z</dc:date>
<dc:date>2026-10-02T10:36:52Z</dc:date>
<dc:date>2025</dc:date>
<dc:type>info:eu-repo/semantics/conferenceObject</dc:type>
<dc:type>info:eu-repo/semantics/acceptedVersion</dc:type>
<dc:identifier>https://hdl.handle.net/10259/12215</dc:identifier>
<dc:language>eng</dc:language>
<dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
<dc:format>application/pdf</dc:format>
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