High-Resolution Mapping of the Nordic Plastic Cycle Suggests Capacity Expansion for Both Mechanical and Chemical Recycling
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American Chemical Society (ACS)
Department of Engineering
https://doi.org/10.1021/acssusresmgt.5c00143
Department of Engineering
https://doi.org/10.1021/acssusresmgt.5c00143
Abstract
Description
Nordic countries are widely recognized for their leadership in
sustainability initiatives and have implemented numerous projects to improve
plastic waste recycling and utilization. However, the plastic consumption and waste
management in these countries remain insufficiently understood due to the lack of
dynamic, high-resolution plastic cycle maps that span the entire lifecycle. Here, we
devised a polymer-level dynamic material flow analysis model by integrating data
from disparate sources to simulate the historical cycle of 14 groups of polymers
(1978−2020) and their recycling potentials by 2050 in five Nordic countries
(Denmark, Finland, Norway, Sweden, and Iceland). The results show that the
average per capita stock in Nordic countries in 2020 reached the saturation level
(1100 kg per capita), which is the highest global value. Imported polymers far
exceeded the domestic production. Most of the plastic waste was incinerated or
landfilled, with the average recycling rate falling below 6%. Enhanced mechanical
recycling could contribute to 27% of the regional demand, requiring 6.7 times the expansion of the current recycling capacity by
2050. The additional implementation of chemical recycling could potentially provide 22% of the regional demand, but the potential
contribution of chemical recycling is compromised by the lack of industrial production in the region, implying the need for
international collaborations. The results contribute to addressing key issues under discussion in the ongoing negotiations of the
Intergovernmental Negotiating Committee for the Global Plastic Treaty.