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March 14, 2026Journal of Composite Materials23 citations

From plant fiber to product: Fabrication, properties, and circular pathways of bio-based composites

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GAGaurav AroraSirindhorn College of Public HealthHSHimani SharmaDoon UniversityPBPapiya BhowmikLinnaeus University

Key Points

  • This review examines the development, properties, and applications of bio-based composites in the context of sustainability.
  • Review of recent advancements in bio-based composites
  • Classification and analysis of manufacturing processes
  • Assessment of mechanical and structural qualities
  • Life cycle analyses to evaluate environmental impact
  • Exploration of various applications and emerging trends
  • Significant improvement in the mechanical properties of bio-based composites reported
  • Lower carbon footprints associated with bio-based composites noted
  • Challenges in moisture absorption and mechanical variability identified
  • Emerging trends in hybrid composites and nanomaterials highlighted
  • Potential for circular economy alignment emphasized

Abstract

Growing environmental awareness and the depletion of fossil fuel sources have propelled the development of sustainable, bio-based composite materials as competitive options to traditional synthetic composites. This review offers a detailed examination of recent advances in their classification, manufacturing processes, properties, and applications. The combination of natural fibers with biodegradable matrices, along with innovative manufacturing methods such as compression molding, injection molding, and automated fiber placement, has significantly improved the mechanical and structural qualities of bio-based composites. Their environmental advantages are assessed through life cycle analyses, highlighting lower carbon footprints and biodegradability. Various uses of sustainable bio-composites are also explored. Despite notable progress, challenges such as moisture absorption, mechanical variability, and raw material consistency remain. The review concludes with emerging developments in hybrid composites, nanomaterial integration, and future prospects to enhance scalability, performance, and alignment with circular economy principles.

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Cite This Study

Arora et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc44b39f7826a300cffahttps://doi.org/10.1177/00219983261425772
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