Mechanical Performance and Environmental Assessment of Hybrid Reinforced Gypsum Composites Incorporating Commercial and Recycled Fibers

The use of hybrid fiber reinforcement has been investigated to enhance the performance of gypsum-based materials, taking advantage of several types of fibers. This study develops hybrid fiber-reinforced gypsum composites (HFRGCs) incorporating sixteen combinations of recycled mineral wool (RMW) and polypropylene (PP) fibers, with contents ranging from 0.25 to 1.00 wt.%. The samples are mechanically characterized, and statistical analyses of the measured values are conducted. Moreover, a life cycle assessment (LCA) is also performed regarding their environmental impacts. The HFRGC containing 0.50 wt.% RMW fibers and 1.00 wt.% PP fibers exhibited the highest surface hardness, with a 5.5% increase compared with the reference. The highest flexural and compressive strengths were achieved by HFRGCs containing 0.50 wt.% PP fibers, reaching increases of 7.5% and 9.0%, respectively, with only a minor influence of RMW fibers, whose greatest contribution was reducing environmental impacts due to the low energy demand for recycling this industrial waste compared with the high emissions from PP fiber production. A statistical analysis revealed no significant differences in the mechanical properties of HFRGCs containing 0.50 and 1.00 wt.% PP fibers, suggesting that increasing the PP fiber content beyond 0.50 wt.% did not result in significant mechanical improvements. Therefore, considering both mechanical and environmental aspects, the HFRGC incorporating 1.00 wt.% RMW fiber and 0.50 wt.% PP fibers provided the most balanced overall performance.

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Publication Details

Journal
Recycling
Published
2026-09-01
DOI
https://doi.org/10.3390/recycling11090159
Primary Topic
Natural Fiber Reinforced Composites
Type
article
Field-Weighted Citation Impact
0.00

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article

Mechanical Performance and Environmental Assessment of Hybrid Reinforced Gypsum Composites Incorporating Commercial and Recycled Fibers

Paulo Santos, Alicia Zaragoza-Benzal, Alberto Leal Matilla, Daniel Ferrández et al.
Recycling
Natural Fiber Reinforced Composites
article

Mechanical Performance and Environmental Assessment of Hybrid Reinforced Gypsum Composites Incorporating Commercial and Recycled Fibers

Paulo Santos, Alicia Zaragoza-Benzal, Alberto Leal Matilla, Daniel Ferrández, Leonardo Lima
article en

Abstract

The use of hybrid fiber reinforcement has been investigated to enhance the performance of gypsum-based materials, taking advantage of several types of fibers. This study develops hybrid fiber-reinforced gypsum composites (HFRGCs) incorporating sixteen combinations of recycled mineral wool (RMW) and polypropylene (PP) fibers, with contents ranging from 0.25 to 1.00 wt.%. The samples are mechanically characterized, and statistical analyses of the measured values are conducted. Moreover, a life cycle assessment (LCA) is also performed regarding their environmental impacts. The HFRGC containing 0.50 wt.% RMW fibers and 1.00 wt.% PP fibers exhibited the highest surface hardness, with a 5.5% increase compared with the reference. The highest flexural and compressive strengths were achieved by HFRGCs containing 0.50 wt.% PP fibers, reaching increases of 7.5% and 9.0%, respectively, with only a minor influence of RMW fibers, whose greatest contribution was reducing environmental impacts due to the low energy demand for recycling this industrial waste compared with the high emissions from PP fiber production. A statistical analysis revealed no significant differences in the mechanical properties of HFRGCs containing 0.50 and 1.00 wt.% PP fibers, suggesting that increasing the PP fiber content beyond 0.50 wt.% did not result in significant mechanical improvements. Therefore, considering both mechanical and environmental aspects, the HFRGC incorporating 1.00 wt.% RMW fiber and 0.50 wt.% PP fibers provided the most balanced overall performance.

RecyclingVol. 11(9)
Universidade Federal do Amazonas (BR), University of Coimbra (PT), Universidad Politécnica de Madrid (ES)
Consejería de Sanidad, Comunidad de Madrid
Responsible consumption and production
Openalex Percentile: Top 22%
Natural Fiber Reinforced Composites
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