PDF

Void formation due to gas evolution during the recycling of 2009 Polymer Deg

J.C. Arnold, S. Alston

2026enrecyclingABSWEEEvoidsmechanical propertiesvolatile emissions

Abstract

Language:

During processing of recycled ABS and ABS/HIPS blends, voiding defects can occur within the resulting material which can result in deterioration of mechanical properties. The voids were previously thought to be caused by the evolution of volatile substances during processing. This study investigated the recycling of post-consumer ABS from a variety of types of WEEE. The mechanical properties of the processed material were assessed and a combination of visual observation during processing and optical microscopy was used to identify the extent of voiding. It was found that flexural strength and ductility in particular decreased with increased levels of voids. The gases emitted during heating and processing were analysed using Gas Chromatography with Mass Spectroscopy (GCMS) and were found to be breakdown products of the original polymers. These seem to be present in the WEEE, either as polymerization residuals or as products of degradation during the initial service life rather than degradation products from reprocessing. The amounts of volatiles liberated were quantified, which showed that the volatile emissions from post-consumer material were of a similar magnitude to those seen with virgin material. More intensive or longer processing led to a reduction in the emissions and voiding and an improvement in strength, suggesting that there is a finite potential for volatile liberation, and that the problem could be overcome by the use of suitable processing conditions.

Download

Cite This Work

@article{0a1be768-fdc0-41cf-8b82-129017394bb4,
  title={Void formation due to gas evolution during the recycling of 2009 Polymer Deg},
  author={J.C. Arnold and S. Alston},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Void formation due to gas evolution during the recycling of 2009 Polymer Deg
AU  - J.C. Arnold
AU  - S. Alston
PY  - 2026
LA  - en
ER  -

Similar Items

Treatment of manufacturing scrap TV boar

The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f

2026enPDF

Does WEEE recycling make sense from an environmental perspe 2005 Environment

R. Hischier, P. Wa¨ger

The production of electrical and electronic equipment (EEE) is one of the fastest growing markets in the world, leading to an expected increase in was

2026enPDF

Constructing an automatic object recognition algorithm using l 2019 Waste Ma

Naohito Hayashi, Shigeki Koyanaka

In an attempt to select an efficient recycling process for waste electrical and electronic equipment based on the value of individual products, we are

2026enPDF

Closed loop recycling of WEEE plastics a case study for pay 2020 Procedia C

F. Wagner, J.R. Peeters

The closed-loop recycling of PolyCarbonate/Acrylonitrile Styrene Acrylate (PC/ASA) housings from post-consumer payment terminals that are subject to a

2026enPDF

A dual channel quality based price competition model for the WEEE 2016 Ome

Huihui Liu, Ming Lei

It is quite common to find both formal and informal sectors for processing waste electrical and electronic equipment (WEEE) in many emerging countries

2026enPDF

Chemical hazards associated with treatme

Oyuna Tsydenova, Magnus Bengtsson

This review paper summarizes the existing knowledge on the chemical hazards associated with recycling and other end-of-life treatment options of waste

2026enPDF