首页|我国镨循环利用供给的量化及提升策略研究

我国镨循环利用供给的量化及提升策略研究

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镨是支持全球清洁能源发展的关键矿产,全球对镨的需求持续增加.我国是全球镨储量和产量最大的国家,但是未来依然可能出现镨供给缺口,发展循环经济、促进物质循环利用是解决镨潜在供需受限问题的重要方案.本文采用动态物质流方法,结合循环利用率指标,估算了2011-2020年我国大陆地区的镨循环利用潜力.结果表明:2011-2020年,我国累计有7.902×104 t镨进入镨循环,其中1.639×104 t来自循环利用;从钕铁硼磁体生产废料中累计回收利用了1.369×104 t镨,其循环利用率稳定在17%左右;理论上,报废产品可以供给2.7×103 t镨,其循环利用率从0.04%增长到5.17%.针对实现报废产品中镨循环利用所面临的主要挑战,本文提出了完善我国生产者责任延伸制、逐步建立相关产品的消费者责任制、引导行业制定循环利用相关技术规范和行业标准等镨循环利用提升策略.
Quantifying the Praseodymium Recycling Supply in China and Its Improvement Strategy
Praseodymium(Pr)is a critical mineral for the global clean energy industry.The global demand for Pr continues to increase.China possesses the largest proven reserves and highest production of Pr worldwide.However,a future Pr supply-demand gap still could occur in China.Developing a circular economy and promoting material recycling are considered as solutions to the potential supply constraints.This study adopts a material flow analysis method and combines it with the recycling input rate(RIR)indicator to estimate the potential quantities of the Pr recycling supply in China from 2011 to 2020.The key findings are as follows:(1)From 2011 to 2020,7.902×104 t Pr entered the anthropogenic cycle system in China from the supply side,of which 1.639×104 t Pr originated from recycling;(2)1.369×104 t Pr was recycled from NdFeB magnet production scraps,with the RIR remaining stable at approximately 17%;(3)theoretically,2.7×103 t Pr could be recycled from end-of-life(EoL)products,and the RIR of EoL products could increase from 0.04%to 5.17%.In view of the major challenges in realizing Pr recycling from EoL products,this study proposes improvement strategies to promote Pr recycling in China.They include improving the extended producer responsibility of China,progressively establishing consumer responsibility for relevant products,and guiding the industry to formulate recycling-related technical specifications and industry standards.

praseodymiumrecyclingmaterial flow analysisrecycling input rate

葛建平、姚钰洁、王艺博

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中国地质大学(北京)经济管理学院,北京 100083

中国地质大学(北京)自然资源战略发展研究院,北京 100083

循环 物质流分析 循环利用率

中国工程院咨询项目国家自然科学基金北京市社会科学基金

2023-XY-217227418321DTR059

2024

中国工程科学
中国工程院,高等教育出版社有限公司

中国工程科学

CSTPCD北大核心
影响因子:0.737
ISSN:1009-1742
年,卷(期):2024.26(3)