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Article

A Dual Valorization Strategy of Barley Straw for the Development of High-Performance Bio-Based Polyurethane Foams

by
Marina Rodríguez-Aranda
1,2,
Esther Rincón
1,2,
María Pinillos
1,2,
Pablo E. Romero
3 and
Luis Serrano
1,2,*
1
BioPrEn RNM-940 Research Group, Inorganic Chemistry and Chemical Engineering Department, Universidad de Córdoba, Marie Curie Building (C-3), Ctra. Nnal. Km. 396, 14014 Córdoba, Spain
2
Faculty of Science, Instituto Químico Para la Energía y el Medioambiente (IQUEMA), Universidad de Córdoba, Marie Curie Building (C-3), Ctra. Nnal. Km. 396, 14014 Córdoba, Spain
3
Mechanical Engineering Department, Universidad de Córdoba, Leonardo da Vinci Building, Ctra. Nnal. Km. 396, 14014 Córdoba, Spain
*
Author to whom correspondence should be addressed.
Polymers 2025, 17(23), 3142; https://doi.org/10.3390/polym17233142
Submission received: 30 October 2025 / Revised: 21 November 2025 / Accepted: 24 November 2025 / Published: 26 November 2025

Abstract

This study presents a complete and zero-waste valorization strategy for barley straw through the synthesis of bio-polyols and the concurrent utilization of its cellulose fraction as lignin-containing cellulose nanofibers (LCNF) for the development of bio-based polyurethane (PU) foams. Two types of bio-polyols were prepared: one derived from lignin isolated via biomass fractionation, named lignin bio-polyol (LBP), and another obtained directly from unfractionated barley straw, called straw bio-polyol (SBP), thereby incorporating all lignocellulosic constituents into a single reactive matrix. LCNF, produced from the same feedstock, was incorporated at different loadings to achieve full biomass utilization and reinforce the polyurethane foam structure. Foams prepared with LBP exhibited lower density and a more homogeneous structure, whereas those synthesized with SBP developed a stiffer, more crosslinked network. The incorporation of LCNF generally increased apparent density and mechanical performance, with optimal reinforcement at 3 wt.% in foams with SBP and 5 wt.% in LBP foams, corresponding to a 62.5 and 121% enhancement in compressive strength relative to their respective control foams. Moreover, the use of barley straw bio-polyol shifted some thermal degradation peaks toward higher temperatures, evidencing improved thermal resistance. Overall, this dual-route strategy provides a sustainable and versatile methodology for the comprehensive valorization of lignocellulosic biomass, enabling a systematic understanding of the role of each structural component in polyurethane foam synthesis. The resulting materials offer a renewable, low-impact pathway toward high-performance polymeric materials.
Keywords: polyurethane foams; lignin; barley straw; lignin-containing cellulose nanofibers; biorefinery polyurethane foams; lignin; barley straw; lignin-containing cellulose nanofibers; biorefinery
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MDPI and ACS Style

Rodríguez-Aranda, M.; Rincón, E.; Pinillos, M.; Romero, P.E.; Serrano, L. A Dual Valorization Strategy of Barley Straw for the Development of High-Performance Bio-Based Polyurethane Foams. Polymers 2025, 17, 3142. https://doi.org/10.3390/polym17233142

AMA Style

Rodríguez-Aranda M, Rincón E, Pinillos M, Romero PE, Serrano L. A Dual Valorization Strategy of Barley Straw for the Development of High-Performance Bio-Based Polyurethane Foams. Polymers. 2025; 17(23):3142. https://doi.org/10.3390/polym17233142

Chicago/Turabian Style

Rodríguez-Aranda, Marina, Esther Rincón, María Pinillos, Pablo E. Romero, and Luis Serrano. 2025. "A Dual Valorization Strategy of Barley Straw for the Development of High-Performance Bio-Based Polyurethane Foams" Polymers 17, no. 23: 3142. https://doi.org/10.3390/polym17233142

APA Style

Rodríguez-Aranda, M., Rincón, E., Pinillos, M., Romero, P. E., & Serrano, L. (2025). A Dual Valorization Strategy of Barley Straw for the Development of High-Performance Bio-Based Polyurethane Foams. Polymers, 17(23), 3142. https://doi.org/10.3390/polym17233142

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