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May 15, 2026Polymers0 citationsOpen Access

Incorporation of Fully Bio-Based Butylene Succinate Oligomers into Poly(butylene succinate) by Melt Mixing

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CACarmen Olivas AlonsoACAmparo ChiraltSTSergio Torres-Giner

Key Points

  • The aim is to investigate the incorporation of bio-based butylene succinate oligomers into poly(butylene succinate) and to evaluate their influence on film properties for sustainable packaging.
  • Incorporated low, medium, and high molecular weight bio-based oligomers into PBS by melt mixing at 5–15 wt% loadings.
  • Characterized PBS/OBS films using thermo-compression and analyzed thermal, mechanical, and barrier properties.
  • Conducted X-ray diffraction to assess crystallinity and structural changes after incorporation.
  • L-OBS improved the plasticization of PBS more effectively than M-OBS and H-OBS, enhancing thermal and mechanical properties.
  • H-OBS increased mechanical strength and barrier performance despite its lower plasticization effect.
  • Overall migration in food simulants increased with oligomer incorporation, raising concerns about packaging suitability.

Abstract

In this study, fully bio-based oligomers of butylene succinate (OBS) with different molecular weights (low: L-OBS, medium: M-OBS and high: H-OBS) were incorporated into poly(butylene succinate) (PBS) by melt mixing at varying loadings of 5–15 wt%. Then, PBS/OBS films were obtained by thermo-compression and characterized to assess their suitability for sustainable food packaging. Thus, OBS were homogeneously incorporated into PBS matrix and modulated the thermal, mechanical, and barrier properties of the PBS. L-OBS (Mn = 1150 g·mol−1) plasticized the amorphous PBS, depending on its concentration, more effectively than M-OBS (Mn: 8700 g·mol−1) and H-OBS (Mn: 18,650 g·mol−1), as deduced from the thermo-mechanical analysis. In every case, OBS enhanced crystallinity, mainly L-OBS, which reduced the film strength and increased water vapor permeability, depending on its concentration. In contrast, H-OBS improved mechanical strength, stiffness, and barrier performance. In all cases, X-ray diffraction confirmed the preservation of the PBS’s monoclinic crystalline structure but slightly shifted the diffraction angle depending on the ratio of the end-chain groups in the blend, thus reflecting the contribution of OBS in the crystalline lattice. Finally, oligomer incorporation resulted in an overall migration increase in different food simulants, impairing their application in packaging.

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Cite This Study

Alonso et al. (2026) studied this question.

synapsesocial.com/papers/6a06b914e7dec685947aba59https://doi.org/10.3390/polym18101190
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