High-loading composites based on waste-derived expanded polystyrene for lead-free X-ray shielding applications

Expanded polystyrene (EPS)–based composites derived from recycled materials were developed using an innovative processing route to obtain lead-free X-ray shielding materials incorporating high contents of tungsten and bismuth oxide. Recycled EPS was selected due to its lightweight nature, availability, and sustainability advantages, while still offering adequate structural performance when properly processed. The effectiveness of a carbon filler, namely graphene nanoplatelets (GNP), as a secondary additive in the composite systems was also investigated. The composites were characterized through flexural testing, thermogravimetric analysis, and morphological evaluation, while their X-ray attenuation capability was assessed via both numerical simulations and experimental measurements. Despite the elevated filler loading (75 wt%), a homogeneous distribution of tungsten and bismuth oxide within the polymer phase was achieved, conferring good mechanical properties to the composites. Within the investigated energy range (50–150 keV), effective X-ray shielding equivalent to lead was obtained. This performance was achieved at thicknesses corresponding to a moderate mass increase (approximately 24–53%) compared to conventional lead shielding providing equivalent attenuation. These results highlight the potential of recycled EPS-based composites as a new class of sustainable, lead-free X-ray shielding materials.

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Publication Details

Journal
Discover Materials
Published
2026-09-25
DOI
https://doi.org/10.1007/s43939-026-00974-z
Primary Topic
Radiation Shielding Materials Analysis
Type
article
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article

High-loading composites based on waste-derived expanded polystyrene for lead-free X-ray shielding applications

Roberto Avolio, Federico Olivieri, Maria Emanuela Errico, Gennaro Gentile et al.
Discover Materials
Radiation Shielding Materials Analysis
article

High-loading composites based on waste-derived expanded polystyrene for lead-free X-ray shielding applications

Roberto Avolio, Federico Olivieri, Maria Emanuela Errico, Gennaro Gentile, Rachele Castaldo, Michele Nacucchi, Rosanna Rizzi, Cinzia Giannini, Annamaria Mazzone, Marino Lavorgna
article en

Abstract

Expanded polystyrene (EPS)–based composites derived from recycled materials were developed using an innovative processing route to obtain lead-free X-ray shielding materials incorporating high contents of tungsten and bismuth oxide. Recycled EPS was selected due to its lightweight nature, availability, and sustainability advantages, while still offering adequate structural performance when properly processed. The effectiveness of a carbon filler, namely graphene nanoplatelets (GNP), as a secondary additive in the composite systems was also investigated. The composites were characterized through flexural testing, thermogravimetric analysis, and morphological evaluation, while their X-ray attenuation capability was assessed via both numerical simulations and experimental measurements. Despite the elevated filler loading (75 wt%), a homogeneous distribution of tungsten and bismuth oxide within the polymer phase was achieved, conferring good mechanical properties to the composites. Within the investigated energy range (50–150 keV), effective X-ray shielding equivalent to lead was obtained. This performance was achieved at thicknesses corresponding to a moderate mass increase (approximately 24–53%) compared to conventional lead shielding providing equivalent attenuation. These results highlight the potential of recycled EPS-based composites as a new class of sustainable, lead-free X-ray shielding materials.

Discover Materials
National Agency for New Technologies, Energy and Sustainable Economic Development (IT), National Research Council (IT), Institute of Polymers, Composites and Biomaterials (IT), Institute of Crystallography (IT)
Responsible consumption and production
Openalex Percentile: Top 25%
Radiation Shielding Materials Analysis
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