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May 6, 2026Sci0 citationsOpen Access

Comparative Biodegradation of Agro-Industrial and Recycled Fiber-Based Facestocks for Pressure-Sensitive Labels Under Aerobic Soil Conditions

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ADAna Marošević DolovskiKIKatarina Itrić IvandaRKRahela Kulčar

Key Points

  • This research aims to assess the biodegradation behavior of fiber-based facestocks for pressure-sensitive labels compared to bio-based polyethylene.
  • Conducted laboratory-scale aerobic soil burial tests for up to 28 days
  • Evaluated biodegradation through weight loss measurements, visual evaluations, and spectroscopic analysis
  • Analyzed samples made from agro-industrial by-products, recycled fibers, and virgin wood pulp vs. bio-based polyethylene
  • Fiber-based facestocks achieved approximately 50–55% weight loss after 28 days
  • Structural changes were observed in the cellulose matrix of fiber-based samples
  • Bio-based polyethylene showed negligible weight loss and minor spectroscopic changes, indicating high stability.

Abstract

The increasing use of pressure-sensitive labels (PSLs), driven by growth in the packaging sector, raises concerns regarding material consumption and end-of-life management under evolving European packaging regulations. This study investigates the biodegradation potential of sustainable PSL facestocks produced from 15% agro-industrial by-products, 40% post-consumer recycled fibers, and 45% virgin wood pulp. Their biodegradation behavior was compared with bio-based polyethylene (PE) facestocks using laboratory-scale aerobic soil burial tests conducted for up to 28 days. Biodegradation was assessed through weight loss measurements, visual evaluation, Fourier transform infrared (FTIR) spectroscopy, and fluorescence analysis. Fiber-based facestocks exhibited significant degradation, reaching approximately 50–55% weight loss after 28 days, accompanied by structural changes in the cellulose matrix and reduced fluorescence intensity. In contrast, bio-based polyethylene facestocks showed negligible weight loss and only minor spectroscopic changes, indicating high stability under the tested conditions. The results demonstrate that fiber-based samples derived from agro-industrial and recycled sources possess substantially higher biodegradation potential than bio-based polymeric alternatives. These findings support the use of fiber-based PSL facestocks in applications requiring improved environmental compatibility.

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Cite This Study

Dolovski et al. (2026) studied this question.

synapsesocial.com/papers/69faa28f04f884e66b533107https://doi.org/10.3390/sci8050099
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