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Title Regional rare-earth element supply and demand balanced with circular economy strategies
ID_Doc 4963
Authors Wang, P; Yang, YY; Heidrich, O; Chen, LY; Chen, LH; Fishman, T; Chen, WQ
Title Regional rare-earth element supply and demand balanced with circular economy strategies
Year 2024
Published Nature Geoscience, 17, 1
DOI 10.1038/s41561-023-01350-9
Abstract The growing dependence of society on rare-earth elements poses a challenge to achieving a just low-carbon transition globally. While circular economy strategies have gained attention, their specific impacts remain unmeasured. Here we present an integrated model that quantifies how circular economy strategies can reshape global supply chains of the critical rare-earth elements such as neodymium, praseodymium, dysprosium and terbium. The model considers both in-ground and in-use stocks across ten regions from 2021 to 2050. The projections include the full deployment of three widely accepted climate scenarios. We find a considerable mismatch between in-ground stocks, supply and demand at specific region and element levels, with the mismatch for heavy rare-earth elements as a key obstacle for achieving net-zero emissions targets. We suggest that, as in-ground stocks decline among mineral suppliers, the accumulation of in-use stocks in consuming regions can foster a more balanced and less polarized geopolitical landscape for rare-earth elements, and circular economy strategies can lead to an increase of 701 kt secondary supply and a decrease of 2,306 kt demand within the next three decades. Implementing these circular economy strategies will require international cooperation in the governance of rare-earth elements amid sustainable transition. Mobilization of in-use rare-earth element stocks in regions of high consumption can ease dependence on regions of rare-earth extraction, according to dynamic integrated modelling combining material flow and scenario analysis.
Author Keywords
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001136643500002
WoS Category Geosciences, Multidisciplinary
Research Area Geology
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