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June 3, 2026Polymers0 citationsOpen Access

Design and Processing of Novel PBS/PVOH Blown Films for Food Packaging: Effect of PVOH Phase Structuring on Morphology and Functional Performance

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ABA. BarbatoFPFrancesco PalmieriEGEmilia Garofalo

Key Points

  • This work aims to explore the effects of PVOH content on the properties of PBS/PVOH biodegradable polymer blends for food packaging.
  • Produced PBS/PVOH blown films using twin-screw melt compounding and film blowing.
  • Investigated phase organization, morphology, and performance through DSC, rheological analysis, and SEM observation.
  • Measured barrier properties and structural evolution with varying PVOH compositions.
  • PBS/PVOH 80/20 formulation achieved optimal balance of barrier properties and ductility for food packaging.
  • PVOH incorporation improved oxygen and water-vapor barrier properties but reduced ductility.
  • Phase-separated morphology confirmed via SEM with droplet–matrix structures becoming coarser at higher PVOH content.

Abstract

Biodegradable polymer blends are promising materials for flexible packaging films with tunable properties. In this work, poly(butylene succinate)/poly(vinyl alcohol) (PBS/PVOH) blown films were produced by twin-screw melt compounding followed by film blowing, and the effect of PVOH content on phase organization, processability, morphology, and functional performance was investigated. The blends showed phase-separated morphologies and composition-dependent structural evolution. DSC indicated that both polymers largely retained their crystallization ability, although the crystallinity decrease was more evident for PVOH. Rheological analysis revealed limited compatibility and increasing elastic response at higher PVOH contents, consistent with the formation of structured PVOH insoluble gel-like domains. SEM confirmed droplet–matrix morphologies, becoming coarser and more heterogeneous at high PVOH content, with film-blowing instability for PBS/PVOH 20/80. PVOH incorporation improved oxygen and water-vapor barrier properties and increased stiffness, but progressively reduced ductility. Model fitting supported the structure–property correlations, relating film performance to blend composition, morphology, and PVOH phase organization. Among the processable formulations, PBS/PVOH 80/20 showed the best balance between improved barrier properties and acceptable extensibility for food packaging application. Overall, PBS/PVOH blown films are promising biodegradable systems for flexible food packaging, provided that PVOH phase structuring is properly controlled.

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Cite This Study

Barbato et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc5d7dee9eb8c0dce745dhttps://doi.org/10.3390/polym18111367
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