The Rare Earth Elements: Demand, Global Resources, and Challenges for Resourcing Future Generations

被引:405
|
作者
Goodenough, Kathryn M. [1 ]
Wall, Frances [2 ]
Merriman, David [3 ]
机构
[1] British Geol Survey, Lyell Ctr, Res Ave South, Edinburgh EH14 4AP, Midlothian, Scotland
[2] Univ Exeter, Camborne Sch Mines & Environm & Sustainabil Inst, Penryn Campus, Penryn TR10 9FE, Cornwall, England
[3] Roskill Informat Serv Ltd, 54 Russell Rd, London SW19 1QL, England
基金
英国自然环境研究理事会;
关键词
Rare earth elements; Resources; Supply chain; Minerals processing; IGNEOUS ROCKS; REE MINERALIZATION; ALKALINE COMPLEX; DEPOSITS; MINERALS; CARBONATITE; CANADA; AUSTRALIA; CHINA; NB;
D O I
10.1007/s11053-017-9336-5
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The rare earth elements (REE) have attracted much attention in recent years, being viewed as critical metals because of China's domination of their supply chain. This is despite the fact that REE enrichments are known to exist in a wide range of settings, and have been the subject of much recent exploration. Although the REE are often referred to as a single group, in practice each individual element has a specific set of end-uses, and so demand varies between them. Future demand growth to 2026 is likely to be mainly linked to the use of NdFeB magnets, particularly in hybrid and electric vehicles and wind turbines, and in erbium-doped glass fiber for communications. Supply of lanthanum and cerium is forecast to exceed demand. There are several different types of natural (primary) REE resources, including those formed by high-temperature geological processes (carbonatites, alkaline rocks, vein and skarn deposits) and those formed by low-temperature processes (placers, laterites, bauxites and ion-adsorption clays). In this paper, we consider the balance of the individual REE in each deposit type and how that matches demand, and look at some of the issues associated with developing these deposits. This assessment and overview indicate that while each type of REE deposit has different advantages and disadvantages, light rare earth-enriched ion adsorption types appear to have the best match to future REE needs. Production of REE as by-products from, for example, bauxite or phosphate, is potentially the most rapid way to produce additional REE. There are still significant technical and economic challenges to be overcome to create substantial REE supply chains outside China.
引用
收藏
页码:201 / 216
页数:16
相关论文
共 50 条
  • [31] CHALLENGES FOR THE SUSTAINABLE EXTRACTION OF RARE EARTH ELEMENTS BEARING MINERALS
    Souza, A. C. S. P.
    Nascimento, M.
    Giese, E. C.
    HOLOS, 2019, 35 (01)
  • [32] Bioleaching of rare earth elements challenges and opportunities: A critical review
    Owusu-Fordjour, Emmanuel Yaw
    Yang, Xinbo
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2023, 11 (05):
  • [33] Hydrometallurgical Roadmaps and Future Strategies for Recovery of Rare Earth Elements
    Erust, C.
    Karacahan, M. K.
    Uysal, T.
    MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2023, 44 (06): : 436 - 450
  • [34] Cryptic footprints of rare earth elements on natural resources and living organisms
    Adeel, Muhammad
    Lee, Jie Yinn
    Zain, Muhammad
    Rizwan, Muhammad
    Nawab, Aamir
    Ahmad, M. A.
    Shafiq, Muhammad
    Yi, Hao
    Jilani, Ghulam
    Javed, Rabia
    Horton, R.
    Rui, Yukui
    Tsang, Daniel C. W.
    Xing, Baoshan
    ENVIRONMENT INTERNATIONAL, 2019, 127 : 785 - 800
  • [35] Kinetics and mechanisms of leaching of rare earth elements from secondary resources
    Brahim, Jamal Ait
    Hak, Sara Ait
    Achiou, Brahim
    Boulif, Rachid
    Beniazza, Redouane
    Benhida, Rachid
    MINERALS ENGINEERING, 2022, 177
  • [36] Marine Phosphorites as Potential Resources for Heavy Rare Earth Elements and Yttrium
    Hein, James R.
    Koschinsky, Andrea
    Mikesell, Mariah
    Mizell, Kira
    Glenn, Craig R.
    Wood, Ray
    MINERALS, 2016, 6 (03):
  • [37] Rare earths stick to rare cyanobacteria: Future potential for bioremediation and recovery of rare earth elements
    Paper, Michael
    Koch, Max
    Jung, Patrick
    Lakatos, Michael
    Nilges, Tom
    Brueck, Thomas B.
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2023, 11
  • [38] Challenges for the production of heavy rare earth elements from hard rocks
    Watanabe, Yasushi
    International Journal of the Society of Material Engineering for Resources, 2014, 20 (02) : 113 - 117
  • [39] Chinese Monopoly in Rare Earth Elements: Supply-Demand and Industrial Applications
    Mancheri, Nabeel A.
    CHINA REPORT, 2012, 48 (04) : 449 - 468
  • [40] Role of microorganisms in bioleaching of rare earth elements from primary and secondary resources
    Homayoun Fathollahzadeh
    Jacques J. Eksteen
    Anna H. Kaksonen
    Elizabeth L. J. Watkin
    Applied Microbiology and Biotechnology, 2019, 103 : 1043 - 1057