Measuring the anthropogenic cycles of light rare earths in China: Implications for the imbalance problem

Light rare earth elements (LREEs) are of strategic importance for low carbon transition and decarbonization. However, the imbalance between LREEs exists and a systematic understanding of their flows and stocks is lacking, which impedes the attainment of resources efficiency and exacerbates the envir...

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Published inThe Science of the total environment Vol. 879; p. 163215
Main Authors Zheng, Biao, Zhang, Yuquan W., Geng, Yong, Wei, Wendong, Tan, Xueping, Xiao, Shijiang, Gao, Ziyan
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 25.06.2023
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Abstract Light rare earth elements (LREEs) are of strategic importance for low carbon transition and decarbonization. However, the imbalance between LREEs exists and a systematic understanding of their flows and stocks is lacking, which impedes the attainment of resources efficiency and exacerbates the environmental burdens. This study examines the anthropogenic cycles and the imbalance problem of three representative LREEs in China, the largest LREEs producer in the world, including cerium (the most abundant), neodymium and praseodymium (the fastest demand-growing). We find that 1) from 2011 to 2020, the total consumption of Nd and Pr increased by 228 % and 223 %, respectively, mainly attributed to the increasing demand of NdFeB, whereas that of Ce increased by 157 %; 2) the supply insufficiency of Nd and Pr under the current quota system accumulated to 138,086 tons and 35,549 tons, respectively, while the oversupply of Ce reached 63,523 tons; and 3) China has become a net importer of LREEs concentrates, and a net exporter of LREEs in the form of intermediate and final products, imposing further burdens to the domestic environment. It is clear that the imbalance of LREEs occurred during the study period, raising urgent needs to adjust the LREEs production quotas, seek other Ce applications, and eliminate illegal mining. [Display omitted] •The anthropogenic cycles of representative LREEs in China were examined.•The imbalance problem of LREEs in China was identified by using dynamic MFA.•Both the supply insufficiency of Nd and Pr and the oversupply of Ce had been considerable.•China served as a net importer of LREEs concentrates, and a net exporter of LREEs products.•It is urgent to adjust the LREEs production quotas, broaden Ce applications, and eliminate illegal mining.
AbstractList Light rare earth elements (LREEs) are of strategic importance for low carbon transition and decarbonization. However, the imbalance between LREEs exists and a systematic understanding of their flows and stocks is lacking, which impedes the attainment of resources efficiency and exacerbates the environmental burdens. This study examines the anthropogenic cycles and the imbalance problem of three representative LREEs in China, the largest LREEs producer in the world, including cerium (the most abundant), neodymium and praseodymium (the fastest demand-growing). We find that 1) from 2011 to 2020, the total consumption of Nd and Pr increased by 228 % and 223 %, respectively, mainly attributed to the increasing demand of NdFeB, whereas that of Ce increased by 157 %; 2) the supply insufficiency of Nd and Pr under the current quota system accumulated to 138,086 tons and 35,549 tons, respectively, while the oversupply of Ce reached 63,523 tons; and 3) China has become a net importer of LREEs concentrates, and a net exporter of LREEs in the form of intermediate and final products, imposing further burdens to the domestic environment. It is clear that the imbalance of LREEs occurred during the study period, raising urgent needs to adjust the LREEs production quotas, seek other Ce applications, and eliminate illegal mining. [Display omitted] •The anthropogenic cycles of representative LREEs in China were examined.•The imbalance problem of LREEs in China was identified by using dynamic MFA.•Both the supply insufficiency of Nd and Pr and the oversupply of Ce had been considerable.•China served as a net importer of LREEs concentrates, and a net exporter of LREEs products.•It is urgent to adjust the LREEs production quotas, broaden Ce applications, and eliminate illegal mining.
Light rare earth elements (LREEs) are of strategic importance for low carbon transition and decarbonization. However, the imbalance between LREEs exists and a systematic understanding of their flows and stocks is lacking, which impedes the attainment of resources efficiency and exacerbates the environmental burdens. This study examines the anthropogenic cycles and the imbalance problem of three representative LREEs in China, the largest LREEs producer in the world, including cerium (the most abundant), neodymium and praseodymium (the fastest demand-growing). We find that 1) from 2011 to 2020, the total consumption of Nd and Pr increased by 228 % and 223 %, respectively, mainly attributed to the increasing demand of NdFeB, whereas that of Ce increased by 157 %; 2) the supply insufficiency of Nd and Pr under the current quota system accumulated to 138,086 tons and 35,549 tons, respectively, while the oversupply of Ce reached 63,523 tons; and 3) China has become a net importer of LREEs concentrates, and a net exporter of LREEs in the form of intermediate and final products, imposing further burdens to the domestic environment. It is clear that the imbalance of LREEs occurred during the study period, raising urgent needs to adjust the LREEs production quotas, seek other Ce applications, and eliminate illegal mining.
ArticleNumber 163215
Author Wei, Wendong
Xiao, Shijiang
Zhang, Yuquan W.
Geng, Yong
Tan, Xueping
Zheng, Biao
Gao, Ziyan
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CitedBy_id crossref_primary_10_1016_j_scitotenv_2023_167777
crossref_primary_10_1016_j_jhazmat_2024_135076
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Keywords Light rare earth elements
Material flow analysis
Imbalance
Surplus
Insufficient supply
Language English
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Snippet Light rare earth elements (LREEs) are of strategic importance for low carbon transition and decarbonization. However, the imbalance between LREEs exists and a...
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SubjectTerms Imbalance
Insufficient supply
Light rare earth elements
Material flow analysis
Surplus
Title Measuring the anthropogenic cycles of light rare earths in China: Implications for the imbalance problem
URI https://dx.doi.org/10.1016/j.scitotenv.2023.163215
https://www.ncbi.nlm.nih.gov/pubmed/37011686
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