Diverted from Landfill: Reuse of Single-Use Plastic Packaging Waste

Low-density polyethylene (LDPE) based packaging films mostly end up in landfill after single-use as they are not commonly recycled due to their flexible nature, low strength and low cost. Additionally, the necessity to separate and sort different plastic waste streams is the most costly step in plas...

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Published inPolymers Vol. 14; no. 24; p. 5485
Main Authors O'Rourke, Kit, Wurzer, Christian, Murray, James, Doyle, Adrian, Doyle, Keith, Griffin, Chris, Christensen, Bernd, Brádaigh, Conchúr M Ó, Ray, Dipa
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 15.12.2022
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Abstract Low-density polyethylene (LDPE) based packaging films mostly end up in landfill after single-use as they are not commonly recycled due to their flexible nature, low strength and low cost. Additionally, the necessity to separate and sort different plastic waste streams is the most costly step in plastics recycling, and is a major barrier to increasing recycling rates. This cost can be reduced through using waste mixed plastics (wMP) as a raw material. This research investigates the properties of PE-based wMP coming from film packaging wastes that constitutes different grades of PE with traces of polypropylene (PP). Their properties are compared with segregated individual recycled polyolefins and virgin LDPE. The plastic plaques are produced directly from the wMP shreds as well as after extruding the wMP shreds into a more uniform material. The effect of different material forms and processing conditions on the mechanical properties are investigated. The results of the investigation show that measured properties of the wMP fall well within the range of properties of various grades of virgin polyethylene, indicating the maximum possible variations between different batches. Addition of an intermediate processing step of extrusion before compression moulding is found to have no effect on the tensile properties but results in a noticeably different failure behaviour. The wMP does not show any thermal degradation during processing that was confirmed by thermogravimetric analysis. The results give a scientific insight into the adoption of wMP in real world products that can divert them from landfill creating a more circular economy.
AbstractList Low-density polyethylene (LDPE) based packaging films mostly end up in landfill after single-use as they are not commonly recycled due to their flexible nature, low strength and low cost. Additionally, the necessity to separate and sort different plastic waste streams is the most costly step in plastics recycling, and is a major barrier to increasing recycling rates. This cost can be reduced through using waste mixed plastics (wMP) as a raw material. This research investigates the properties of PE-based wMP coming from film packaging wastes that constitutes different grades of PE with traces of polypropylene (PP). Their properties are compared with segregated individual recycled polyolefins and virgin LDPE. The plastic plaques are produced directly from the wMP shreds as well as after extruding the wMP shreds into a more uniform material. The effect of different material forms and processing conditions on the mechanical properties are investigated. The results of the investigation show that measured properties of the wMP fall well within the range of properties of various grades of virgin polyethylene, indicating the maximum possible variations between different batches. Addition of an intermediate processing step of extrusion before compression moulding is found to have no effect on the tensile properties but results in a noticeably different failure behaviour. The wMP does not show any thermal degradation during processing that was confirmed by thermogravimetric analysis. The results give a scientific insight into the adoption of wMP in real world products that can divert them from landfill creating a more circular economy.
Audience Academic
Author O'Rourke, Kit
Wurzer, Christian
Christensen, Bernd
Doyle, Adrian
Doyle, Keith
Griffin, Chris
Ray, Dipa
Brádaigh, Conchúr M Ó
Murray, James
AuthorAffiliation 1 School of Engineering, Institute for Materials and Processes, The University of Edinburgh, Sanderson Building, Robert Stevenson Road, Edinburgh EH9 3FB, UK
6 Johns Manville Europe GmbH, Werner-Schuller-Str. 1, 97877 Wertheim, Germany
4 PALTECH, Ballycumber Road, Co. Offaly, R35 XR57 Clara, Ireland
2 School of GeoSciences, UK Biochar Research Centre, The University of Edinburgh, Edinburgh EH9 3FF, UK
3 Materials Research Institute, Technological University of the Shannon, University Road, Co. Westmeath, N37 HD68 Athlone, Ireland
5 Johns Manville, 10, 100, West Ute Ave., Littleton, CO 80127, USA
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Issue 24
Keywords recycled plastics
mixed plastic packaging waste
mixed polyethylenes
mechanical testing
compression moulding
fracture surface
Language English
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Snippet Low-density polyethylene (LDPE) based packaging films mostly end up in landfill after single-use as they are not commonly recycled due to their flexible...
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StartPage 5485
SubjectTerms Compacting
compression moulding
Extrusion molding
fracture surface
High density polyethylenes
Impact strength
Landfills
Low density polyethylenes
Mechanical properties
mechanical testing
mixed plastic packaging waste
mixed polyethylenes
Packaging
Packaging industry
Plastics
Polyethylene terephthalate
Polymers
Polyolefins
Pressure molding
Raw materials
recycled plastics
Recycling
Recycling industry
Tensile properties
Thermal degradation
Thermogravimetric analysis
Waste management
Yield stress
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Title Diverted from Landfill: Reuse of Single-Use Plastic Packaging Waste
URI https://www.ncbi.nlm.nih.gov/pubmed/36559852
https://www.proquest.com/docview/2756778004
https://search.proquest.com/docview/2758100748
https://pubmed.ncbi.nlm.nih.gov/PMC9785204
https://doaj.org/article/35b5b04ad67f4e0baa1c779c7986494f
Volume 14
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