Dorien C. van Dolderen, Doris L. Versloot
Understanding how product design shapes recycling outcomes is becoming increasingly important as the demand for recyclable electronics grows. This study investigates how design choices influence recyclability through an analysis of four commercially available smart TVs from major brands. We conducted manual disassembly and controlled shredding tests to explore how materials and connections behave under realistic recycling conditions. Our findings show that recyclability is mainly limited by plastics that are seldom recovered in practice, even when recyclable in principle. Most connections broke down effectively during shredding, with limited material losses. Some design features, however, still hindered recovery, such as ductile materials that trap others. Based on these findings, we propose design guidelines and compare them with existing literature. Our work contributes to the growing body of research linking product design with current recycling processes and can inform design practice and future regulations that support a more circular electronics industry.
@article{a0a4e504-a8b9-4fb2-87ac-95b87cdf4775,
title={Shredding for science How smart TV design affec 2026 Resources Conservatio},
author={Dorien C. van Dolderen and Doris L. Versloot},
year={2026},
language={en}
}TY - JOUR TI - Shredding for science How smart TV design affec 2026 Resources Conservatio AU - Dorien C. van Dolderen AU - Doris L. Versloot PY - 2026 LA - en ER -
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
Printed circuit boards (PCBs) from electronic gadgets at the end of their useful life period are currently being dumped in landfills or incinerated, c
Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to