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February 16, 2026Journal of Polymer Science0 citationsOpen Access

Enhancing the Functional Properties of Polylactic Acid by Incorporation of Esterified Lignin

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RVRogerio Martins VieiraEGEmilie GauthierSFSyamak Farajikhah

Key Points

  • This research aims to explore how esterified lignin from different sources affects the properties of polylactic acid (PLA) composites.
  • Produced composites using melt-compounding followed by compression molding.
  • Investigated two lignin concentrations: 5 wt% and 10 wt%.
  • Conducted thermal analyses and evaluated mechanical properties of the composites.
  • Reduced glass transition temperature by up to 14.4°C with modified lignin.
  • Lowest tensile strength observed was approximately 10.76 MPa for composites with banana pseudostem lignin.
  • All lignin-PLA composites showed increased hydrophobicity compared to neat PLA.
  • Lignin addition resulted in 84.9% enhancement in antioxidant activity and full UV-blocking efficiency.

Abstract

ABSTRACT Incorporating lignin as an additive is a promising strategy to overcome the limitations of PLA‐based composites. This study investigates the effects of adding esterified lignin from banana pseudostem and sugarcane bagasse into a PLA matrix. Composites were produced via melt‐compounding followed by compression molding, using two lignin concentrations: 5 wt% and 10 wt%. Thermal analyses revealed a reduction of up to 14.4°C in the glass transition temperature, particularly in samples containing modified lignin. Mechanical properties were also influenced by lignin addition, with the lowest tensile strength (approximately 10.76 MPa) observed in composites containing modified banana pseudostem lignin. However, elongation at break remained unchanged. All lignin‐PLA composites exhibited enhanced hydrophobicity compared to neat PLA. Improved cohesion between unmodified sugarcane bagasse lignin and PLA resulted in lower surface roughness, while chemical modification led to more homogeneous banana lignin‐based composites. Furthermore, all lignin‐containing samples demonstrated a significant enhancement in antioxidant activity, reaching up to 84.9%. Lignin addition also provided complete UV‐blocking efficiency, regardless of source, content, or chemical modification. These findings confirm that esterified lignin effectively enhances the performance of PLA, particularly in terms of hydrophobicity, antioxidant capacity, and UV‐shielding properties, which is advantageous for non‐load‐bearing applications where functional performance is prioritized over mechanical reinforcement.

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Cite This Study

Vieira et al. (2026) studied this question.

synapsesocial.com/papers/6992b4c59b75e639e9b09caehttps://doi.org/10.1002/pol.20251162
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