James Jung, Jörn Altmann
Recycling of waste electrical and electronic equipment (WEEE) is widely regarded as a cornerstone of circular economy and climate mitigation strategies, reinforced by normalized expectations, institutional routines, and performance metrics. Yet beneath this consensus, recycling systems genuinely succeed on the metrics they are designed to meet while systematically failing to recover the critical raw materials they are institutionally designed to secure. This paper presents a systematic literature review of 55 peer-reviewed studies, extended by a temporal comparison of ten studies from 2023 to 2026 under identical search criteria. The analysis reveals that recycling system failure is a dynamic market-coupling failure, driven by three structural mechanisms which include the optimization penalty, the value inversion paradox, and the purity bottleneck that interacting through a CE-climate design contradiction that subordinates material criticality to carbon and volume proxies. Critically, these mechanisms do not operate in isolation: single-layer interventions worsen adjacent coupling failures, and each product generation cycle deepens the lock-in. This study introduces anticipatory coupling as the missing governance logic, defined as the deliberate design of recovery infrastructure, metric systems, and market instruments in advance of demand shocks rather than in response to them. The primary contribution is demonstrating how metric failure, market inversion, and infrastructure lock-in are simultaneously reproduced across three system layers, and that addressing this moving target requires governance.
@article{963fce7f-1781-456e-887c-aebe1222be31,
title={What do we really recycle A systematic literature review of syste 2026 Wast},
author={James Jung and Jörn Altmann},
year={2026},
language={en}
}TY - JOUR TI - What do we really recycle A systematic literature review of syste 2026 Wast AU - James Jung AU - Jörn Altmann PY - 2026 LA - en ER -
Ata Akcil
The increasing production of electrical and electronic equipment (EEE) has led to the rapid growth of Waste Electrical and Electronic Equipment (WEEE)
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
Jirang Cui, Hans Jørgen Roven
Rapid growth in electronic equipment consumption has generated large quantities of electronic waste containing hazardous substances and high-value met
Printed circuit boards (PCBs) from electronic gadgets at the end of their useful life period are currently being dumped in landfills or incinerated, c