• Resources Science
  • Vol. 42, Issue 8, 1439 (2020)
Qiaosheng WU, Na ZHOU*, and Jinhua CHENG
Author Affiliations
  • School of Economics and Management, China University of Geosciences (Wuhan), Wuhan 430074, China
  • show less
    DOI: 10.18402/resci.2020.08.01 Cite this Article
    Qiaosheng WU, Na ZHOU, Jinhua CHENG. A review and prospects of the supply security of strategic key minerals[J]. Resources Science, 2020, 42(8): 1439 Copy Citation Text show less
    References

    [1] McClure JA. Stockpiling of strategic and critical materials[J]. Idaho Law Review, 19, 417-453(1983).

    [2] Kyriakopoulos GL, ArabatzisG. Electrical energy storage systems in electricity generation: Energy policies, innovative technologies, and regulatory regimes[J]. Renewable and Sustainable Energy Reviews, 56, 1044-1067(2016).

    [3] Silva R CD, Neto I DM, Seifert SS. Electricity supply security and the future role of renewable energy sources in Brazil[J]. Renewable and Sustainable Energy Reviews, 59, 328-341(2016).

    [4] 王昶, 宋慧玲, 左绿水, 等. 国家金属资源安全研究回顾与展望[J]. 资源科学, 2017,39(5):805-817.

    [5] ChecchiA, BehrensA, EgenhoferC. Long-term Energy Security Risks for Europe: A Sector-specific Approach[online](2009). http://aei.pitt.edu/10759/1/1785.pdf

    [6] ManssonA, JohanssonB, Nilsson LJ. Assessing energy security: An overview of commonly used methodologies[J]. Energy, 73, 1-14(2014).

    [7] ChesterL. Conceptualizing energy security and making explicit its polysomic nature[J]. Energy Policy, 38, 887-895(2010).

    [8] KruytB, Vuuren DP V, Vries H JM D et al. Indicators for energy security[J]. Energy Policy, 37, 2166-2181(2009).

    [9] 龙如银, 杨家慧. 国家矿产资源安全研究现状及展望[J]. 资源科学, 2018,40(3):465-476.

    [10] Critical Materials Strategy[online]. https://www.energy.gov/sites/prod/files/DOE_CMS2011_FINAL_Full.pdf

    [11] 曹庭语. 日本稀有金属保障战略[J]. 国土资源情报, 2011, (4):42-46. [Cao TY. Japan’s rare metal safeguard strategy[J]. Land and Resources Information, 2011, (4):42-46.] [Cao T Y. Japan’s rare metal safeguard strategy[J]. Land and Resources Information, 2011, (4): 42-46.]

    [12] Report Lists 14 Critical Mineral Raw Materials[online](2010). http://www.docin.com/p-60945422.html

    [13] 吴巧生, 薛双娇. 中美贸易变局下关键矿产资源供给安全分析[J]. 中国地质大学学报(社会科学版), 2019,19(5):69-78. [Wu QS, Xue SJ. Supply security analysis of China’s critical minerals under the Sio-US trade Change[J]. Journal of China University of Geosciences (Social Sciences Edition), 2019,19(5):69-78.] [Wu Q S, Xue S J. Supply security analysis of China’s critical minerals under the Sio-US trade Change[J]. Journal of China University of Geosciences (Social Sciences Edition), 2019, 19(5): 69-78.]

    [14] 李宪海, 王丹, 吴尚昆. 我国战略性或关键矿产资源评价指标选择: 基于美国、欧盟等关键矿产名录的思考[J]. 中国矿业, 2014,23(4):30-33. [Li XH, WangD, Wu SK. The domestic strategic mineral resources evaluation index selection: Thinking based on list of key-minerals such as the United States, the European Union[J]. China Mining Magazine, 2014,23(4):30-33.] [Li X H, Wang D, Wu S K. The domestic strategic mineral resources evaluation index selection: Thinking based on list of key-minerals such as the United States, the European Union[J]. China Mining Magazine, 2014, 23(4): 30-33.]

    [15] 陈毓川. 建立我国战略性或关键矿产资源储备制度和体系[J]. 国土资源, 2002, (1):20-21.

    [16] 王登红. 战略性关键矿产相关问题探讨[J]. 化工矿产地质, 2019,41(2):65-72. [Wang DH. Discussion on issues related to strategic key mineral resources[J]. Geology of Chemical Minerals, 2019,41(2):65-72.] [Wang D H. Discussion on issues related to strategic key mineral resources[J]. Geology of Chemical Minerals, 2019, 41(2): 65-72.]

    [17] 余韵, 陈甲斌. 美国危机矿产研究概况及其启示[J]. 国土资源情报, 2017, (2):45-51. [YuY, Chen JB. Summary and enlightenment of research of USA critical minerals[J]. Land and Resources Information, 2017, (2):45-51.] [Yu Y, Chen J B. Summary and enlightenment of research of USA critical minerals[J]. Land and Resources Information, 2017, (2): 45-51.]

    [18] 王登红, 王瑞江, 孙艳, 等. 我国三稀(稀有稀土稀散)矿产资源调查研究成果综述[J]. 地球学报, 2016,37(5):569-580. [Wang DH, Wang RJ, SunY, et al. A review of achievements in the three-type rare mineral resources (rare resources, rare earth and rarely scattered resources) survey in China[J]. Acta Geoscientica Sinica, 2016,37(5):569-580.] [Wang D H, Wang R J, Sun Y, et al. A review of achievements in the three-type rare mineral resources (rare resources, rare earth and rarely scattered resources) survey in China[J]. Acta Geoscientica Sinica, 2016, 37(5): 569-580.]

    [19] 中华人民共和国自然资源部. 全国矿产资源规划(2016-2020年)[EB/OL]. (2016-11-15) [2020-07-08]. http://www.mnr.gov.cn/gk/ghjh/201811/t20181101_2324927.html. [Ministry of Natural Resources of the People’s Republic of China. National Mineral Resources Planning[EB/OL]. (2016-11-15) [2020-07-08]. http://www.mnr.gov.cn/gk/ghjh/201811/t20181101_2324927.html. ] [Ministry of Natural Resources of the People’s Republic of China. National Mineral Resources Planning[EB/OL]. (2016-11-15) [2020-07-08]. http://www.mnr.gov.cn/gk/ghjh/201811/t20181101_2324927.html.] http://www.mnr.gov.cn/gk/ghjh/201811/t20181101_2324927.html

    [20] Sarah MH, Erin AM. Critical mineral: A review of elemental trends in comprehensive criticality[J]. Resources Policy, 59, 192-199(2018).

    [21] EuropeanCommission. Tackling the Challenges in Commodity Markets and on Raw Materials[report]. Brussels: European Commission(2011).

    [22] EuropeanCommission. On the 2017 List of Critical Raw Materials for the EU[report]. Brussels: European Commission(2017).

    [23] A Federal Strategy to Ensure Secure and Reliable Supplies of Critical Minerals[online](2019). https://www.commerce.gov/news/reports/2019/06/federal-strategy-ensure-secure-and-reliable-supplies-critical-minerals

    [24] Annual Report on Energy[online](2019). https://www.meti.go.jp/english/report/index_whitepaper.html

    [25] Australia’s Critical Mineral Strategy[online](2019). https://www.industry.gov.au/data-and-publications/australias-critical-minerals-strategy

    [26] 黄琳, 孙艳, 郭唯明, 等. 当前新材料及所需战略性矿产概述[J]. 中国矿业, 2018,27(8):1-8. [HuangL, SunY, Guo WM, et al. Summary of current new materials and necessary strategic mineral resources[J]. China Mining Magazine, 2018,27(8):1-8.] [Huang L, Sun Y, Guo W M, et al. Summary of current new materials and necessary strategic mineral resources[J]. China Mining Magazine, 2018, 27(8): 1-8.]

    [27] 黄健柏, 王志平, 钟美瑞. 关键行业对中国金属消费的影响: 基于跨行业视角的综合分析[J]. 中南大学学报(社会科学版), 2018,24(6):103-112. [Huang JB, Wang ZP, Zhong MR. The impact of key industries on China’s metal consumption: Based on comprehensive analysis from inter-sectoral perspective[J]. Journal of Central South University (Social Science), 2018,24(6):103-112.] [Huang J B, Wang Z P, Zhong M R. The impact of key industries on China’s metal consumption: Based on comprehensive analysis from inter-sectoral perspective[J]. Journal of Central South University (Social Science), 2018, 24(6): 103-112.]

    [28] [M]. Minerals, Critical Minerals, and the U. S. Economy(2008).

    [29] MorleyN, EatherleyD. Material Security: Ensuring Resource Availability for the UK Economy[online](2008). https://www.oakdenehollins.com/reports/2008/5/1/material-security-ensuring-resource-availability-for-the-uk-economy

    [30] BuchertM, SchulerD, BleherD. Critical Metals for Future Sustainable Technologies and Their Recycling Potential[online](2009). https://www.oeko.de/oekodoc/1070/2009-129-en.pdf

    [31] Critical Raw Materials for the EU: Report of the Ad-hoc Working Group on Defining Critical Raw Materials[report]. Brussels: European Commission: Brussels(2010).

    [32] Strategic and Critical Materials 2011 Report on Stockpile Requirements[online](2011). http://www.dmsmsmeeting.com/2012/images/2011_NDS_Requirements_Report-04-25-2011.pdf

    [33] MossR, TzimasE, KaraH et al. Critical Metals in Strategic Energy Technologies: Assessing Rare Metals as Supply-chain Bottlenecks in Low Carbon Energy Technologies[online](2011). http://publications.jrc.ec.europa.eu/repository/handle/JRC65592

    [34] British Geological Survey Risk List 2011[online]. https://strategic-metal.typepad.com/strategic-metal-report/2011/09/the-british-geological-survey-risk-list-2011.html

    [35] British Geological Survey Risk List 2012[online]. https://www.bgs.ac.uk/news/NEWS/Risk_List_2012_Press_Release.pdf

    [36] WillisP, ChapmanA, FryerA. Study of By-products of Copper, Lead, Zinc, and Nickel[online](2014). https://www.oakdenehollins.com/reports/2014/1/15/study-of-by-products-of-copper-lead-zinc-nickel-executive-summary

    [37] Strategic and Critical Materials 2013 Report on Stockpile Requirements[report]. Washington D C: Department of Defense(2013).

    [38] MossR, TzimasE, WillisP et al. Critical Metals in the Path towards the Decarbonization of the EU Energy Sector: Assessing Rare Metals as Supply Chain Bottlenecks in Low-carbon Energy Technologies[online](2020). https://ec.europa.eu/jrc/en/publication/eur-scientific-and-technical-research-reports/ critical-metals-path-towards-decarbonisation-eu-energy-sector-assessing-rare-metals-supply

    [39] Skirrow RG, Huston DL, Mernagh TP et al. Critical Commodities for a High-tech World: Australia's Potential to Supply Global Demand[online](2009). https://www.ga.gov.au/data-pubs/data-and-publications-search/ publications/critical-commodities-for-a-high-tech-world#heading-1

    [40] Study on the Review of the List of Critical Raw Materials for the EU and the Implementation of the Raw Materials Initiative[online](2017). http://hytechcycling.eu/wp-content/uploads/Study-on-the-review-of-the- list-of-Critical-Raw-Materials.pdf

    [41] Strategic and Critical Materials 2015 Report on Stockpile Requirements[report]. Washington D C: Department of Defense(2015).

    [42] British Geological Survey Risk List 2015[online]. https://www.bgs.ac.uk/mineralsuk/statistics/riskList.html

    [43] BasteinT, ReitveldE. Materials in the Dutch economy: A Vulnerability Analysis[online](2015). https://www.fme.nl/sites/default/files/afbeeldingen/ TNO%202015%20R11613%20Materials%20in%20the%20Dutch%20Economy.pdf

    [44] HatayamaH, TaharaK. Criticality assessment of metals for Japan’s resource strategy[J]. Materials Transactions, 56, 229-235(2015).

    [45] Graedel TE, Harper EM, Nassar NT et al. Criticality of metals and metalloids[J]. Proceedings of the National Academy of Sciences, 112, 4257-4262(2015).

    [46] Bortnikov NS, Volkov AV, Galyamov AL et al. Mineral resources of high-tech metals in Russia: State of the art and outlook[J]. Geology of Ore Deposits, 58, 83-103(2016).

    [47] Assessment of Critical Minerals: Screening Methodology and Initial Application[report]. Washington: Executive office of the President(2016).

    [48] Schulz KJ, DeYoungJ H, Seal IIR R et al. Critical Mineral Resources of the United States: Economic and Environmental Geology and Prospects for Future Supply[M]. Virginia: U.S. Geological Survey(2017).

    [49] McCulloughE, Nassar NT. Assessment of critical minerals: Updated application of an early-warning screening methodology[J]. Mineral Economics, 30, 257-272(2017).

    [50] Fortier SM, Nassar NT, Lederer GW et al. Geological Survey Technical Input Document in Response to Secretarial Order No. 3359[online]. https://pubs.er.usgs.ov/publication/ofr20181021

    [51] AchzetB, HeilbigC. How to evaluate raw material supply risks: An overview[J]. Resources Policy, 38, 435-447(2013).

    [52] Graedel TE, BarrR, ChandlerC et al. Methodology of metal criticality determination[J]. Environmental Science and Technology, 46, 1063-1070(2012).

    [53] Nassar NT, BarrR, BrowningM et al. Criticality of the geological copper family[J]. Environmental Science and Technology, 46, 1071-1078(2012).

    [54] Graedel TE, Harper EM, Nassar NT et al. Criticality of metals and metalloids[J]. Proceedings of the National Academy of Sciences, 112, 4257-4262(2015).

    [55] HabibK, HamelinL, WenzelH. A dynamic perspective of the geopolitical supply risk of metals[J]. Journal of Cleaner Production, 133, 850-858(2016).

    [56] 孔锐, 裴文林, 曾祯. 我国重要矿产资源评价模型设计与研究[J]. 资源与产业, 2011,13(2):31-36. [KongR, Pei WL, ZengZ. Design and study of evaluation model of China’s vital mineral resources[J]. Resources and Industries, 2011,13(2):31-36.] [Kong R, Pei W L, Zeng Z. Design and study of evaluation model of China’s vital mineral resources[J]. Resources and Industries, 2011, 13(2): 31-36.]

    [57] 李文芳, 孔锐, 王仁财. 我国重要矿产资源评价指标体系研究[J]. 中国国土资源经济, 2008,21(7):26-28. [Li WF, KongR, Wang RC. Research on evaluation target system of important mineral resources in China[J]. Natural Resource Economics of China, 2008,21(7):26-28.] [Li W F, Kong R, Wang R C. Research on evaluation target system of important mineral resources in China[J]. Natural Resource Economics of China, 2008, 21(7): 26-28.]

    [58] 张艳飞, 陈其慎, 于汶加, 等. 中国矿产资源重要性二维评价体系构建[J]. 资源科学, 2015,37(5):883-890.

    [59] ErdmannL, Graedel TE. Criticality of non-fuel minerals: A review of major approaches and analysis[J]. Environment Sciences Technology, 45, 7620-7630(2011).

    [60] GeorgesD. Security of mineral resources: A new framework for quantitative assessment of criticality[J]. Resources Policy, 53, 173-189(2017).

    [61] Masoudi SM, EzzatiaE, Rashidnejad-OmranN et al. Geoeconomics of fluorspar as strategic and critical mineral in Iran[J]. Resources Policy, 52, 100-106(2017).

    [62] TeresaB. Measurement of mineral supply diversity and its importance in assessing risk and criticality[J]. Resources Policy, 58, 202-218(2018).

    [63] Ray GF. Mineral reserves: Projected lifetimes and security of supply[J]. Resources Policy, 10, 75-80(1984).

    [64] Anderson DL. Implications of the Canada-USA free trade agreement for the Canadian minerals industry[J]. Resources Policy, 14, 121-134(1988).

    [65] Harker RI, Lutz TM. Securities of mineral supplies[J]. Resources Policy, 16, 115-127(1990).

    [66] Lusty P AJ, Gunn AG. Challenges to global mineral resource security and options for future supply[J]. Geological Society London Special Publications, 393, 265-276(2015).

    [67] CinelliM, Coles SR, SadikO et al. A framework of criteria for the sustainability assessment of nanoproducts[J]. Journal of Cleaner Production, 126, 277-287(2016).

    [68] JasińskiD, MeredithJ, KirwanK. A comprehensive framework for automotive sustainability assessment[J]. Journal of Cleaner Production, 135, 1034-1044(2016).

    [69] Mineral Commodity Summaries 2019[online]. https://prd-wret.s3-us-west-2.amazonaws.com/assets/palladium/production/atoms/files/mcs2019_all.pdf

    [70] Rosenau-TornowD, BuchholzP, RiemannA et al. Assessing the long-term supply risks for mineral raw materials: A combined evaluation of past and future trends[J]. Resources Policy, 34, 161-175(2009).

    [71] Nassar NT, Graedel TE, Harper EM. By-product metals are technologically essential but have problematic supply[J]. Science Advances, 1, 1-10(2015).

    [72] Gulley AL, Nassar NT, XunS. China, the United States, and competition for resources that enable emerging technologies[J]. Proceedings of the National Academy of Sciences of the United States of America, 115, 4111-4115(2018).

    [73] ChapmanA, ArendorfJ, CastellaT et al. Study on Critical Raw Materials at EU Level[online](2017). http://hytechcycling.eu/wp-content/uploads/Study-on-the-review-of-the-list-of-Critical-Raw-Materials.pdf

    [74] Gl?serS, Tercero EL, GandenbergerC et al. Raw material criticality in the context of classical risk assessment[J]. Resources Policy, 44, 35-46(2015).

    [75] HsuA, ZomerA. Environmental Performance Index[online](2016). https://doi.org/10.1002/9781118445112.stat03789.pub2

    [76] ZhangL, BaiW, YuJ et al. Critical mineral security in China: An evaluation based on hybrid MCDM methods[J]. Sustainability(2018). https://www.ncbi.nlm.nih.gov/pubmed/29350212

    [77] JacksonT, GreenK P. Survey of Mining Companies 2016[online]. https://www.fraserinstitute.org/sites/default/files/survey-of-mining-companies-2016.pdf

    [78] Human Development Report 2015: Work for Human Development[online](2015). http://hdr.undp.org/en/content/human-development-report-2015

    [79] 张所续. 矿产资源战略储备与国家安全[J]. 中国矿业, 2010,19(10):1-4. [Zhang SX. Mineral resources reserve national security strategy[J]. China Mining Magazine, 2010,19(10):1-4.] [Zhang S X. Mineral resources reserve national security strategy[J]. China Mining Magazine, 2010, 19(10): 1-4.]

    [80] 严筱, 陈莲芳, 严良, 等. 基于PSR模型的我国重要矿产资源安全评价[J]. 中国矿业, 2016,25(1):43-49. [YanX, Chen LF, YanL, et al. Evaluation of major mineral resources’ security in China based on PSR model[J]. China Mining Magazine, 2016,25(1):43-49.] [Yan X, Chen L F, Yan L, et al. Evaluation of major mineral resources’ security in China based on PSR model[J]. China Mining Magazine, 2016, 25(1): 43-49.]

    [81] 朱永光, 徐德义, 成金华, 等. 国际铁矿石贸易空间互动过程及中国进口策略分析[J]. 资源科学, 2017,39(4):664-677.

    [82] 余敬, 高思宇, 张龙. 重要矿产资源安全评价的集成算法与实证[J]. 统计与决策, 2017, (6):61-63. [YuJ, Gao SY, ZhangL. Integrated algorithm and empirical study on safety evaluation of important mineral resources[J]. Statistics and Decision, 2017, (6):61-63.] [Yu J, Gao S Y, Zhang L. Integrated algorithm and empirical study on safety evaluation of important mineral resources[J]. Statistics and Decision, 2017, (6): 61-63.]

    [83] 朱学红, 邹佳纹, 黄健柏. 基于信息可替代的有色金属产业安全指标体系构建与评估[J]. 软科学, 2019,33(2):42-46. [Zhu XH, Zou JW, Huang JB. Construction and evaluation of non-ferrous metal industry safety index system based on information substitutable[J]. Soft Science, 2019,33(2):42-46.] [Zhu X H, Zou J W, Huang J B. Construction and evaluation of non-ferrous metal industry safety index system based on information substitutable[J]. Soft Science, 2019, 33(2): 42-46.]

    [84] KnoblochV, ZimmermannT, G??ling-ReisemannS. From criticality to vulnerability of resource supply: The case of the automobile industry[J]. Resources, Conservation and Recycling, 138, 272-282(2018).

    [85] Son JY, Orchard RK. Effectiveness of policies for mitigating supply disruptions[J]. International Journal of Physical Distribution and Logistics Management, 43, 684-706(2013).

    [86] 李鹏飞, 杨丹辉, 渠慎宁, 等. 稀有矿产资源的战略性评估: 基于战略性新兴产业发展的视角[J]. 中国工业经济, 2014, (7):44-57. [Li PF, Yang DH, Qu SN, et al. A strategic assessment of rare minerals: Based on the perspective of strategic emerging industries development[J]. China Industrial Economics, 2014, (7):44-57.] [Li P F, Yang D H, Qu S N, et al. A strategic assessment of rare minerals: Based on the perspective of strategic emerging industries development[J]. China Industrial Economics, 2014, (7): 44-57.]

    [87] Yang DH. Research on China’s Rare Earth Industry Development and Policy(2015).

    [88] 沈镭, 张红丽, 钟帅, 等. 新时代下中国自然资源安全的战略思考[J]. 自然资源学报, 2018,33(5):721-734. [ShenL, Zhang HL, ZhongS, et al. Strategic thinking on the security of natural resources of China in the New Era[J]. Journal of Natural Resources, 2018,33(5):721-734.] [Shen L, Zhang H L, Zhong S, et al. Strategic thinking on the security of natural resources of China in the New Era[J]. Journal of Natural Resources, 2018, 33(5): 721-734.]

    [89] Ali SH, GiurcoD, ArndtN et al. Mineral supply for sustainable development requires resource governance[J]. Nature, 543, 367-372(2017).

    [90] Hilpert HG, MildnerS A. Fragmentation or Cooperation in Global Resource Governance? A Comparative Analysis of the Raw Materials Strategies of the G20[online](2013). https://www.swp-berlin.org/fileadmin/contents/products/research_papers/2013_RP01_hlp_mdn.pdf

    [91] BartekováE, KempR. National strategies for securing a stable supply of rare earths in different world regions[J]. Resources Policy, 49, 153-164(2016).

    [92] 于宏源, 余博闻. 资源自立与全球治理: 欧盟矿产资源安全战略评析[J]. 欧洲研究, 2017,35(2):85-104. [Yu HY, Yu BW. Resource independence and global governance: An analysis of the EU’s mineral resources security strategy[J]. Chinese Journal of European Studies, 2017, (2):85-104.] [Yu H Y, Yu B W. Resource independence and global governance: An analysis of the EU’s mineral resources security strategy[J]. Chinese Journal of European Studies, 2017, (2): 85-104.]

    [93] BieleckiJ. Energy security: Is the wolf at the door?[J]. The Quarterly Review of Economics and Finance, 42, 235-250(2002).

    [94] VivodaV. Diversification of oil import sources and energy security: A key strategy or an elusive objective?[J]. Energy Policy, 37, 4615-4623(2009).

    [95] CabaluH. Indicators of security of natural gas supply in Asia[J]. Energy Policy, 38, 218-225(2010).

    [96] Zhang YJ. The impact of financial development on carbon emissions: An empirical analysis in China[J]. Energy Policy, 39, 2197-2203(2011).

    [97] 王昶, 宋慧玲, 左绿水, 等. 中国优势金属供应全球需求的风险评估[J]. 自然资源学报, 2018,33(7):1218-1229. [WangC, Song HL, Zuo LS, et al. Risk assessment of China’s preponderant metals’ supplying global demand[J]. Journal of Natural Resources, 2018,33(7):1218-1229.] [Wang C, Song H L, Zuo L S, et al. Risk assessment of China’s preponderant metals’ supplying global demand[J]. Journal of Natural Resources, 2018, 33(7): 1218-1229.]

    [98] ChangW, Ellinger AE, BlackhurstJ. A contextual approach to supply chain risk mitigation[J]. The International Journal of Logistics Management, 26, 642-656(2015).

    [99] BodeC, Wagner SM, Petersen KJ et al. Understanding responses to supply chain disruptions: Insights from information processing and resource dependence perspectives[J]. Academy of Management Journal, 54, 833-856(2011).

    [100] 周德群, 孙立成, 万红. 考虑石油替代品和关税配额政策的石油储备模型研究[J]. 中国管理科学, 2010,18(1):149-155.

    [101] 姚予龙, 谷树忠. 资源安全机理及其经济学解释[J]. 资源科学, 2002,24(5):46-51.

    Qiaosheng WU, Na ZHOU, Jinhua CHENG. A review and prospects of the supply security of strategic key minerals[J]. Resources Science, 2020, 42(8): 1439
    Download Citation