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September 10, 2025Journal of Vinyl and Additive Technology2 citations

Mechanical and Physical Properties of PLA Biocomposites Reinforced With Hybrid Fiber From Cocoa Pod Husk and Dragon Fruit Root for Flexible Packaging

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MAMochamad AsrofiMRMd. Zawad RafidRPRevvan Rifada Pradiza

Key Points

  • The tensile strength of PLA biocomposites reached 18.30 MPa with 6% hybrid fiber content.
  • Biocomposites exhibited significant biodegradation, losing 6.4% of their weight in 15 days.
  • Improved thermal stability achieved at 344°C highlights the potential of CPH-DFR fibers in eco-friendly applications.
  • The crystallinity of biocomposites increased with fiber addition, suggesting enhanced structural integrity.

Abstract

ABSTRACT The use of natural waste materials as reinforcement in biocomposites is an emerging area of research, particularly in the development of advanced materials. Cocoa pod husk (CPH) and dragon fruit root (DFR) fibers are promising candidates for reinforcing polylactic acid (PLA) biocomposites. PLA biocomposite films were prepared using the solvent casting method, incorporating CPH and DFR hybrid fibers. The highest tensile strength was observed at 6% fiber content, reaching 18.30 MPa. The addition of fibers improved the thermal stability of the biocomposites, with the highest stability achieved at 6% hybrid fiber for 344°C. Additionally, the crystallinity of the biocomposite increased with the addition of fibers, and the biocomposites demonstrated biodegradation in soil within 15 days, with a 6.4% weight loss. The presence of CPH‐DFR hybrid fibers also enhanced the biodegradation rate. This study demonstrates the potential of CPH‐DFR reinforced PLA biocomposites for use in green flexible packaging applications.

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Cite This Study

Asrofi et al. (2025) studied this question.

synapsesocial.com/papers/68c1afc054b1d3bfb60e7662https://doi.org/10.1002/vnl.70012
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