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April 18, 2026Polymers0 citationsOpen Access

Enhancing Stability of Reprocessed Acrylonitrile–Butadiene–Styrene (ABS) Polymers from Sorted WEEE Streams for Filament Extrusion

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CPChristina PodaraCPChristos PanagiotopoulosDKDionysia Kouranou

Key Points

  • The aim is to investigate the degradation of ABS from WEEE during processing and evaluate stabilization strategies.
  • Investigated mechanical recycling of ABS through multiple extrusion cycles.
  • Assessed degradation via chemical structure, rheological, thermal, mechanical tests, and colorimetric analysis.
  • Prepared antioxidant-stabilized ABS compounds for reprocessing under identical conditions.
  • Repeated processing led to increased melt flow and reduced molecular weight.
  • Mechanical properties were deteriorated along with discoloration during reprocessing.
  • Antioxidants effectively reduced chain scission and stabilized rheological properties.

Abstract

The mechanical recycling of styrenic polymers from waste electrical and electronic equipment (WEEE) is often limited by thermomechanical degradation occurring during repeated processing. In this work, the degradation behaviour of acrylonitrile–butadiene–styrene (ABS) recovered from sorted WEEE streams was systematically investigated through multiple extrusion cycles, and the effectiveness of antioxidant stabilization was evaluated. Progressive degradation was assessed by chemical structure, rheological, thermal and mechanical testing, and colorimetric analysis. Repeated processing resulted in increased melt flow, altered viscoelastic behaviour, molecular weight reduction, deterioration of mechanical properties, and discoloration. To mitigate these effects, antioxidant-stabilized compounds were prepared and subjected to identical reprocessing pathways. The addition of antioxidants effectively reduced chain scission, stabilized rheological properties, and limited colour changes during reprocessing. Furthermore, the processability of the optimized recycled ABS is demonstrated through filament extrusion for fused filament fabrication, highlighting its potential for high-value additive manufacturing applications. These results demonstrate that appropriate stabilization strategies can significantly enhance the process stability and recyclability of styrenic polymers from WEEE streams, supporting their use in higher-value applications within a circular economy framework.

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Cite This Study

Podara et al. (2026) studied this question.

synapsesocial.com/papers/69e320e740886becb65400e7https://doi.org/10.3390/polym18080971
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