Managing challenging waste fractions: Mechanical recycling of FFP3 masks and environmental assessment

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Autori principali: Celik, Yasemin, Rode, Niklas, Jürgens, Meret, Shamsuyeva, Madina, Endres, Hans-Josef
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Celik, Yasemin
Rode, Niklas
Jürgens, Meret
Shamsuyeva, Madina
Endres, Hans-Josef
author_facet Celik, Yasemin
Rode, Niklas
Jürgens, Meret
Shamsuyeva, Madina
Endres, Hans-Josef
contents <p>Multi-material materials are challenging waste fractions for mechanical recycling processes. One example of these waste streams are expired but unused Filtering Face Piece (FFP) masks that are commonly disposed of through incineration, despite being biologically uncontaminated. This study investigates the technical feasibility and environmental performance of mechanically recycling FFP3 masks. A mechanical recycling approach was developed, that consists of pre-shredding, shredding, pelletising and extrusion. The resulting polypropylene recyclate was compared to commercially available recyclates based on the melt flow rate and mechanical properties: tensile strength, tensile modulus and impact strength. The recycled material exhibits suitable melt flow rates and comparable or higher mechanical properties. In addition, a life cycle assessment (LCA) was performed to compare the potential environmental impacts of developed recycling approach with the current waste treatment, incineration with energy recovery. While incineration shows lower net impacts due to energy credits, mechanical recycling can achieve net-negative environmental impacts when the recyclate substitutes virgin polypropylene in appropriate product applications. The results demonstrate the technical and environmental potential of mechanically recycling expired FFP3 masks, while highlighting limitations related to mask design variability, data availability for the environmental assessment, and transferability to other mask types.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19921660
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Managing challenging waste fractions: Mechanical recycling of FFP3 masks and environmental assessment
Celik, Yasemin
Rode, Niklas
Jürgens, Meret
Shamsuyeva, Madina
Endres, Hans-Josef
Recycling
FFP Masks
LCA
multi-layer materials
Plastic waste
<p>Multi-material materials are challenging waste fractions for mechanical recycling processes. One example of these waste streams are expired but unused Filtering Face Piece (FFP) masks that are commonly disposed of through incineration, despite being biologically uncontaminated. This study investigates the technical feasibility and environmental performance of mechanically recycling FFP3 masks. A mechanical recycling approach was developed, that consists of pre-shredding, shredding, pelletising and extrusion. The resulting polypropylene recyclate was compared to commercially available recyclates based on the melt flow rate and mechanical properties: tensile strength, tensile modulus and impact strength. The recycled material exhibits suitable melt flow rates and comparable or higher mechanical properties. In addition, a life cycle assessment (LCA) was performed to compare the potential environmental impacts of developed recycling approach with the current waste treatment, incineration with energy recovery. While incineration shows lower net impacts due to energy credits, mechanical recycling can achieve net-negative environmental impacts when the recyclate substitutes virgin polypropylene in appropriate product applications. The results demonstrate the technical and environmental potential of mechanically recycling expired FFP3 masks, while highlighting limitations related to mask design variability, data availability for the environmental assessment, and transferability to other mask types.</p>
title Managing challenging waste fractions: Mechanical recycling of FFP3 masks and environmental assessment
topic Recycling
FFP Masks
LCA
multi-layer materials
Plastic waste
url https://doi.org/10.5281/zenodo.19921660