Javascript must be enabled to continue!
Electron-Beam Radiation Crosslinking as a Route for Upgrading Recycled Polyethylene for Circular Economy Applications
View through CrossRef
The growing demand for polymer recycling requires effective approaches to improve the performance of recycled materials and expand their practical applications. In this study, electron-beam irradiation was investigated as a method for modifying recycled polyethylene obtained from façade-fastening elements. Virgin PE-80 polyethylene was used as a reference material for comparison. Irradiation was carried out using an ILU-10 electron accelerator (5 MeV) at doses of 95–125 kGy. Structural, morphological, elemental, thermal, crosslinking, and mechanical characteristics were evaluated using FTIR spectroscopy, SEM/EDS analysis, differential scanning calorimetry (DSC), gel fraction determination, and tensile testing according to ISO 527. The results showed that irradiation promotes the formation of a crosslinked network structure in both materials, as confirmed by the increase in gel fraction with increasing dose. For recycled polyethylene, gel fraction values increased from 46.7 to 56.2%, indicating effective radiation-induced crosslinking despite the structural heterogeneity of the material. FTIR analysis revealed the formation of oxygen-containing functional groups associated with radiation-induced oxidation, which was more pronounced in recycled polyethylene due to the presence of pre-existing defects and degradation products. SEM observations revealed increased surface roughness and localized fibrillar features after irradiation, while DSC analysis indicated a decrease in the crystallinity of recycled polyethylene associated with radiation-induced crosslinking and restricted molecular chain rearrangement. Mechanical testing showed an increase in tensile strength and elastic modulus accompanied by a reduction in elongation at break. Among the investigated irradiation doses, 110 kGy provided the most favorable balance between crosslinking efficiency and preservation of structural integrity. These findings demonstrate that electron-beam irradiation is an effective strategy for upgrading recycled polyethylene by improving its mechanical performance while maintaining structural integrity, thereby expanding its potential for reuse in circular economy applications.
Title: Electron-Beam Radiation Crosslinking as a Route for Upgrading Recycled Polyethylene for Circular Economy Applications
Description:
The growing demand for polymer recycling requires effective approaches to improve the performance of recycled materials and expand their practical applications.
In this study, electron-beam irradiation was investigated as a method for modifying recycled polyethylene obtained from façade-fastening elements.
Virgin PE-80 polyethylene was used as a reference material for comparison.
Irradiation was carried out using an ILU-10 electron accelerator (5 MeV) at doses of 95–125 kGy.
Structural, morphological, elemental, thermal, crosslinking, and mechanical characteristics were evaluated using FTIR spectroscopy, SEM/EDS analysis, differential scanning calorimetry (DSC), gel fraction determination, and tensile testing according to ISO 527.
The results showed that irradiation promotes the formation of a crosslinked network structure in both materials, as confirmed by the increase in gel fraction with increasing dose.
For recycled polyethylene, gel fraction values increased from 46.
7 to 56.
2%, indicating effective radiation-induced crosslinking despite the structural heterogeneity of the material.
FTIR analysis revealed the formation of oxygen-containing functional groups associated with radiation-induced oxidation, which was more pronounced in recycled polyethylene due to the presence of pre-existing defects and degradation products.
SEM observations revealed increased surface roughness and localized fibrillar features after irradiation, while DSC analysis indicated a decrease in the crystallinity of recycled polyethylene associated with radiation-induced crosslinking and restricted molecular chain rearrangement.
Mechanical testing showed an increase in tensile strength and elastic modulus accompanied by a reduction in elongation at break.
Among the investigated irradiation doses, 110 kGy provided the most favorable balance between crosslinking efficiency and preservation of structural integrity.
These findings demonstrate that electron-beam irradiation is an effective strategy for upgrading recycled polyethylene by improving its mechanical performance while maintaining structural integrity, thereby expanding its potential for reuse in circular economy applications.
Related Results
Mechanical, physical and biodegradability performances of treated and untreated groundnut shell powder recycled polypropylene composites
Mechanical, physical and biodegradability performances of treated and untreated groundnut shell powder recycled polypropylene composites
Abstract
In this study, groundnut shell powder (GSP) was used for the reinforcement of recycled polypropylene (recycled PP). The GSP consisting of two-particle sizes...
Transitioning towards a circular (healthcare) economy
Transitioning towards a circular (healthcare) economy
Educational level: Bachelor / Master
This book offers a comprehensive roadmap toward a circular and sustainable healthcare system, structured into three distinct parts.
Part I de...
Financing the Circular Economy: a European Perspective
Financing the Circular Economy: a European Perspective
Abstract. Introduction For the development of the circular economy, many countries have begun to actively use various tools and mechanisms of public policy to ensure its complexity...
PHYSICAL PROPERTIES OF ULTRAFINE CLAY-WOOD DUST HYBRID REINFORCED RECYCLED POLYETHYLENE TEREPHTHALATE MATRIX COMPOSITE FOR SEMI-STRUCTURAL APPLICATIONS
PHYSICAL PROPERTIES OF ULTRAFINE CLAY-WOOD DUST HYBRID REINFORCED RECYCLED POLYETHYLENE TEREPHTHALATE MATRIX COMPOSITE FOR SEMI-STRUCTURAL APPLICATIONS
This research involves the production of polymer matrix composites as a combination of ultrafine clay, wood dust and recycled Polyethylene Terephthalate (PET) where the matrix is r...
Digital economy drives the transformation and upgrading of manufacturing industry in Hebei Province
Digital economy drives the transformation and upgrading of manufacturing industry in Hebei Province
<p class="MDPI17abstract" style="margin-left: 0cm; text-align: justify;"><span style="font-family: 'times new roman', times, serif; font-size: 14pt;"><span lang="EN-...
Methodological architectonics of inclusive circular economy for eco-security of society under pandemic
Methodological architectonics of inclusive circular economy for eco-security of society under pandemic
The transition from a linear to a circular economy is determined by the change in the positioning of global risks from year to year, which determines the vectors of such changes. T...
Development of a high-voltage power supply with ultra-low ripple of beam current on electron beam gun
Development of a high-voltage power supply with ultra-low ripple of beam current on electron beam gun
Electron beam guns with grid-controlled electrodes and hot-cathodes are widely used in accelerator physics facilities, high-voltage electron beam welding machines, electron beam 3D...
Investigation on focus and transport characteristics of high transmission rate sheet electron beam
Investigation on focus and transport characteristics of high transmission rate sheet electron beam
The investigation on focus and transport characteristics of sheet electron beam has been a key technique for the development of high-power microwave and millimeter-wave vacuum elec...

