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Assessing gadolinium resource efficiency and criticality in China

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  • Zhao, Guimei
  • Geng, Yong
  • Wei, Wendong
  • Bleischwitz, Raimund
  • Ge, Zewen

Abstract

Gadolinium (Gd) is one important non-renewable strategic element and has been widely used in many fields. This study investigates gadolinium flows in China by conducting dynamic material flow analysis and identifies key factors that affect gadolinium supply and demand. Results show that: (1) China's demand for Gd increased by 30% from 2011 to 2020; (2) Gd supply kept increasing and reached 1922 tons in 2020; (3) Gd resource was exported mainly in the form of intermediate and final products, in which 72% Gd embedded in intermediate products was used for export to meet the growing global demand for Gd. The criticality of gadolinium is not that severe. But it is necessary to prepare appropriate policies to meet with future demands from emerging fields, such as ensuring sustainable supply of gadolinium resources, upgrading China's role in the global gadolinium industrial chain, and improving gadolinium resources efficiency by all the means.

Suggested Citation

  • Zhao, Guimei & Geng, Yong & Wei, Wendong & Bleischwitz, Raimund & Ge, Zewen, 2023. "Assessing gadolinium resource efficiency and criticality in China," Resources Policy, Elsevier, vol. 80(C).
  • Handle: RePEc:eee:jrpoli:v:80:y:2023:i:c:s0301420722005803
    DOI: 10.1016/j.resourpol.2022.103137
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    1. Klinar, Katja & Tomc, Urban & Jelenc, Blaž & Nosan, Simon & Kitanovski, Andrej, 2019. "New frontiers in magnetic refrigeration with high oscillation energy-efficient electromagnets," Applied Energy, Elsevier, vol. 236(C), pages 1062-1077.
    2. Xiao, Shijiang & Geng, Yong & Rui, Xue & Su, Chang & Yao, Tianli, 2022. "Behind of the criticality for rare earth elements: Surplus of China’s yttrium," Resources Policy, Elsevier, vol. 76(C).
    3. Gao, Cuixia & Xu, Yufei & Geng, Yong & Xiao, Shijiang, 2022. "Uncovering terbium metabolism in China: A dynamic material flow analysis," Resources Policy, Elsevier, vol. 79(C).
    4. Aprea, Ciro & Maiorino, Angelo, 2010. "A flexible numerical model to study an active magnetic refrigerator for near room temperature applications," Applied Energy, Elsevier, vol. 87(8), pages 2690-2698, August.
    5. Ge, Zewen & Geng, Yong & Wei, Wendong & Zhong, Chen, 2022. "Assessing samarium resource efficiency in China: A dynamic material flow analysis," Resources Policy, Elsevier, vol. 76(C).
    6. I. D. Hughes & M. Däne & A. Ernst & W. Hergert & M. Lüders & J. Poulter & J. B. Staunton & A. Svane & Z. Szotek & W. M. Temmerman, 2007. "Lanthanide contraction and magnetism in the heavy rare earth elements," Nature, Nature, vol. 446(7136), pages 650-653, April.
    7. Luca Ciacci & Ivano Vassura & Fabrizio Passarini, 2018. "Shedding Light on the Anthropogenic Europium Cycle in the EU–28. Marking Product Turnover and Energy Progress in the Lighting Sector," Resources, MDPI, vol. 7(3), pages 1-17, September.
    8. Cheng Xu & Jindřich Kynický & Martin P. Smith & Antonin Kopriva & Martin Brtnický & Tomas Urubek & Yueheng Yang & Zheng Zhao & Chen He & Wenlei Song, 2017. "Origin of heavy rare earth mineralization in South China," Nature Communications, Nature, vol. 8(1), pages 1-7, April.
    9. Chen, Wei-Qiang & Shi, Lei, 2012. "Analysis of aluminum stocks and flows in mainland China from 1950 to 2009: Exploring the dynamics driving the rapid increase in China's aluminum production," Resources, Conservation & Recycling, Elsevier, vol. 65(C), pages 18-28.
    10. Riesgo García, María Victoria & Krzemień, Alicja & Manzanedo del Campo, Miguel Ángel & Menéndez Álvarez, Mario & Gent, Malcolm Richard, 2017. "Rare earth elements mining investment: It is not all about China," Resources Policy, Elsevier, vol. 53(C), pages 66-76.
    11. Paulick, Holger & Machacek, Erika, 2017. "The global rare earth element exploration boom: An analysis of resources outside of China and discussion of development perspectives," Resources Policy, Elsevier, vol. 52(C), pages 134-153.
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