Resources Science, Volume. 42, Issue 8, 1592(2020)

A review on the impact of technological progress on critical metal mineral demand

Xuesong DONG1,2, Jianbai HUANG1,2、*, Meirui ZHONG1,2, Jinyu CHEN1,2, Gang LIU3, and Yi SONG4
Author Affiliations
  • 1School of Business, Central South University, Changsha 410083, China
  • 2Institute of Metal Resources Strategy, Central South University, Changsha 410083, China
  • 3SDU Life Cycle Engineering, Department of Chemical Engineering, Biotechnology, and Environmental Engineering, University of Southern Denmark (SDU), 5230 Odense, Denmark
  • 4School of Economics and Management, China University of Geosciences (Wuhan), Wuhan 430074, China
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    References(108)

    [1] [1] 汪灵. 战略性非金属矿产的思考[J]. 矿产保护与利用, 2019,39(6):1-7. [WangL. Considerations on strategic non-metallic mineral resources[J]. Conservation and Utilization of Mineral Resources, 2019,39(6):1-7.] [Wang L. Considerations on strategic non-metallic mineral resources[J]. Conservation and Utilization of Mineral Resources, 2019, 39(6): 1-7.]

    [2] [2] 唐金荣, 杨宗喜, 周平, 等. 国外关键矿产战略研究进展及其启示[J]. 地质通报, 2014,33(9):1445-1453. [Tang JR, Yang ZX, ZhouP, et al. The progress in the strategic study of critical minerals and its implications[J]. Geological Bulletin of China, 2014,33(9):1445-1453.] [Tang J R, Yang Z X, Zhou P, et al. The progress in the strategic study of critical minerals and its implications[J]. Geological Bulletin of China, 2014, 33(9): 1445-1453.]

    [3] [3] 王登红. 关键矿产的研究意义、矿种厘定、资源属性、找矿进展、存在问题及主攻方向[J]. 地质学报, 2019,93(6):1189-1209. [Wang DH. Study on critical mineral resources: Significance of research, determination of types, attributes of resources, progress of prospecting, problems of utilization, and direction of exploitation[J]. Acta Geologica Sinica, 2019,93(6):1189-1209.] [Wang D H. Study on critical mineral resources: Significance of research, determination of types, attributes of resources, progress of prospecting, problems of utilization, and direction of exploitation[J]. Acta Geologica Sinica, 2019, 93(6): 1189-1209.]

    [4] [4] 张所续, 刘伯恩, 马朋林. 美国关键矿产战略调整对我国的相关启示[J]. 中国国土资源经济, 2019,32(7):38-45. [Zhang SX, Liu BE, Ma PL. The enlightenment of the strategic adjustment of key minerals in the United States to Our country[J]. Natural Resource Economics of China, 2019, (7):38-45.] [Zhang S X, Liu B E, Ma P L. The enlightenment of the strategic adjustment of key minerals in the United States to Our country[J]. Natural Resource Economics of China, 2019, (7): 38-45.]

    [6] [6] 郭佳, 易继宁, 王慧. 全球主要战略性矿产名录评价因素对比研究[J]. 现代矿业, 2018,34(12):1-5. [GuoJ, Yi JN, WangH. Comparative study on evaluation factors of global major strategic mineral resources lists[J]. Modern Mining, 2018,34(12):1-5.] [Guo J, Yi J N, Wang H. Comparative study on evaluation factors of global major strategic mineral resources lists[J]. Modern Mining, 2018, 34(12): 1-5.]

    [7] [7] 毛景文, 杨宗喜, 谢桂青, 等. 关键矿产: 国际动向与思考[J]. 矿床地质, 2019,38(4):689-698. [Mao JW, Yang ZX, Xie GQ, et al. Critical minerals: International trend and thinking[J]. Mineral Deposits, 2019,38(4):689-698.] [Mao J W, Yang Z X, Xie G Q, et al. Critical minerals: International trend and thinking[J]. Mineral Deposits, 2019, 38(4): 689-698.]

    [8] [8] 王安建, 王高尚, 邓祥征, 等. 新时代中国战略性关键矿产资源安全与管理[J]. 中国科学基金, 2019,33(2):31-38. [Wang AJ, Wang GS, Deng XZ, et al. Security and management of China’s critical mineral resources in the new era[J]. Bulletin of National Natural Science Foundation of China, 2019,33(2):31-38.] [Wang A J, Wang G S, Deng X Z, et al. Security and management of China’s critical mineral resources in the new era[J]. Bulletin of National Natural Science Foundation of China, 2019, 33(2): 31-38.]

    [9] [9] 翟明国, 吴福元, 胡瑞忠, 等. 战略性关键金属矿产资源: 现状与问题[J]. 中国科学基金, 2019,33(2):106-111. [Zhai MG, Wu FY, Hu RZ, et al. Critical metal mineral resources: Current research status and scientific issues[J]. Bulletin of National Natural Science Foundation of China, 2019,33(2):106-111.] [Zhai M G, Wu F Y, Hu R Z, et al. Critical metal mineral resources: Current research status and scientific issues[J]. Bulletin of National Natural Science Foundation of China, 2019, 33(2): 106-111.]

    [12] VidalO, RostomF, Fran?oisC et al. Global trends in metal consumption and supply: The raw material-energy nexus[J]. Elements: An International Magazine of Mineralogy, Geochemistry, and Petrology, 13, 319-324(2017).

    [14] [14] 李鹏飞, 杨丹辉, 渠慎宁, 等. 稀有矿产资源的战略评估: 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.]

    [18] HotellingH. The economics of exhaustible resources[J]. Bulletin of Mathematical Biology, 39, 137-175(1931).

    [20] Hartwick JM, Dasgupta PS, Heal GM. Economic theory and exhaustible resources[J]. The Canadian Journal of Economics/Revue Canadienne d’Economique, 14, 355-358(1981).

    [21] [21] 梁姗姗, 杨丹辉. 矿产资源消费与产业结构演进的研究综述[J]. 资源科学, 2018,40(3):535-546.

    [22] [22] 刘东霖, 张俊瑞. 我国能源消费需求的时变弹性分析[J]. 中国人口·资源与环境, 2010,20(2):92-97. [Liu DL, Zhang JR. Time varying elasticity of energy consumption demand[J]. China Population, Resources and Environment, 2010,20(2):92-97.] [Liu D L, Zhang J R. Time varying elasticity of energy consumption demand[J]. China Population, Resources and Environment, 2010, 20(2): 92-97.]

    [25] [25] 王双英, 李东, 王群伟. 基于LMDI指数分解的中国石油消费影响因素分析[J]. 资源科学, 2011,33(4):759-765.

    [33] [33] 任泽平, 熊柴, 孙婉莹, 等. 中国新基建研究报告[J]. 发展研究, 2020, (4):4-19. [Ren ZP, XiongC, Sun WY, et al. Research report of China’s new infrastructure[J]. Development Research, 2020, (4):4-19.] [Ren Z P, Xiong C, Sun W Y, et al. Research report of China’s new infrastructure[J]. Development Research, 2020, (4): 4-19.]

    [34] [34] 韩莹. 技术进步对我国经济增长贡献率的测定及实证分析[J]. 经济问题探索, 2008, (4):11-16.

    [35] [35] 李晓宁. 经济增长的技术进步效率研究: 1978-2010[J]. 科技进步与对策, 2012,29(7):5-10. [Li XN. Study on technology advancement efficiency of economic growth: 1978-2010[J]. Science & Technology Progress and Policy, 2012,29(7):5-10.] [Li X N. Study on technology advancement efficiency of economic growth: 1978-2010[J]. Science & Technology Progress and Policy, 2012, 29(7): 5-10.]

    [40] [40] 李健, 徐海成. 技术进步与我国产业结构调整关系的实证研究[J]. 软科学, 2011,25(4):8-13. [LiJ, Xu HC. Research on the relationship between technical progress and adjustment of industry structure in China[J]. Soft Science, 2011,25(4):8-13.] [Li J, Xu H C. Research on the relationship between technical progress and adjustment of industry structure in China[J]. Soft Science, 2011, 25(4): 8-13.]

    [42] Burns LS, FriedmannJ. Natural Resources Endowment and Regional Economic Growth[report]. Springfield: Environment, Development and Public Policy (Cities and Development)(1961).

    [43] [43] 陈其慎, 于汶加, 张艳飞, 等. 资源-产业雁行式演进规律[J]. 资源科学, 2015,37(5):871-882.

    [44] [44] 王昶, 黄健柏. 中国金属资源战略形势变化及其产业政策调整研究[J]. 中国人口·资源与环境, 2014,24(171):391-394. [WangC, Huang JB. The changes in strategic situation of China’s metal resources and the adjustment of the industrial policy[J]. China Population, Resources and Environment, 2014,24(171):391-394.] [Wang C, Huang J B. The changes in strategic situation of China’s metal resources and the adjustment of the industrial policy[J]. China Population, Resources and Environment, 2014, 24(171): 391-394.]

    [45] [45] 王昶, 宋慧玲, 耿红军, 等. 关键新材料创新突破的研究回顾与展望[J]. 资源科学, 2019,41(2):207-218.

    [47] Critical Metals for Future Sustainable Technologies and Their Recycling Potential[report]. Darmstadt: Öko-Institut, United Nations Environment Programme(2009).

    [54] [54] 王安建, 王高尚, 张建华, 等. 矿产资源与国家经济发展[M]. 北京: 地质出版社, 2002. [Wang AJ, Wang GS, Zhang JH, et al.Mineral Resources and National Economic Development[M]. Beijing: Geological Publishing House, 2002.] [Wang A J, Wang G S, Zhang J H, et al. Mineral Resources and National Economic Development[M]. Beijing: Geological Publishing House, 2002.]

    [55] [55] 任忠宝, 王世虎, 唐宇, 等. 矿产资源需求拐点理论与峰值预测[J]. 自然资源学报, 2012,27(9):1480-1489.

    [58] [58] 刘艳飞, 张艳, 于汶加, 等. 全球原镁需求预测及中国合理产能分析[J]. 资源科学, 2015,37(5):1047-1058.

    [59] XuanY, YueQ. Forecast of steel demand and the availability of depreciated steel scrap in China[J]. Resources Conservation & Recycling, 109, 1-12(2016).

    [61] [61] 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.

    [62] [62] 王安建, 王高尚, 陈其慎, 等. 能源与国家经济发展[M]. 北京: 地质出版社, 2008. [Wang AJ, Wang GS, Chen QS, et al.Energy and National Economic Development[M]. Beijing: Geology Press, 2008.] [Wang A J, Wang G S, Chen Q S, et al. Energy and National Economic Development[M]. Beijing: Geology Press, 2008.]

    [63] [63] 王安建, 王高尚, 陈其慎, 等. 矿产资源需求理论与模型预测[J]. 地球学报, 2010,31(2):137-147. [Wang AJ, Wang GS, Chen QS, et al. The mineral resources demand theory and the prediction model[J]. Acta Geoscientica Sinica, 2010,31(2):137-147.] [Wang A J, Wang G S, Chen Q S, et al. The mineral resources demand theory and the prediction model[J]. Acta Geoscientica Sinica, 2010, 31(2): 137-147.]

    [64] [64] 王安建, 王高尚, 周凤英. 能源和矿产资源消费增长的极限与周期[J]. 地球学报, 2017,38(1):3-10. [Wang AJ, Wang GS, Zhou FY. The limits and cycles of the growth of energy and mineral resources consumption[J]. Acta Geoscientica Sinica, 2017,38(1):3-10.] [Wang A J, Wang G S, Zhou F Y. The limits and cycles of the growth of energy and mineral resources consumption[J]. Acta Geoscientica Sinica, 2017, 38(1): 3-10.]

    [65] [65] 陈其慎, 于汶加, 张艳飞, 等. 点石: 未来20年全球矿产资源产业发展研究[M]. 北京: 科学出版社, 2016. [Chen QS, Yu WJ, Zhang YF, et al. Point Stone: Research on the Development of Global Mineral Resources Industry in the Next 20 Years[M]. Beijing: Science Press, 2016.] [Chen Q S, Yu W J, Zhang Y F, et al. Point Stone: Research on the Development of Global Mineral Resources Industry in the Next 20 Years[M]. Beijing: Science Press, 2016.]

    [72] NakicenovicN, SwartR. Emission Scenarios[report](2000).

    [73] Global Environmental Outlook 4[report]. Nairobi: Environment for Development, United Nations Environment Programme(2007).

    [74] Energy Revolution: A Sustainable World Energy Outlook[report]. The Netherlands: Greenpeace International, European Renewable Energy Council(2008).

    [79] Liu DH, Gao XY, An HZ et al. Supply and demand response trends of lithium resources driven by the demand of emerging renewable energy technologies in China[J]. Resources Conservation & Recycling, 145, 311-321(2019).

    [89] [89] 王琳, 齐中英, 潘峰. 社会演进中钢未来使用规律预测及政策分析[J]. 运筹与管理, 2017,26(1):173-181. [WangL, Qi ZY, PanF. Patterns prediction and policy analysis of steel use in societal evolution[J]. Operations Research and Management Science, 2017,26(1):173-181.] [Wang L, Qi Z Y, Pan F. Patterns prediction and policy analysis of steel use in societal evolution[J]. Operations Research and Management Science, 2017, 26(1): 173-181.]

    [90] [90] 张超, 王韬, 陈伟强, 等. 中国钢铁长期需求模拟及产能过剩态势评估[J]. 中国人口·资源与环境, 2018,28(10):169-176. [ZhangC, WangT, Chen WQ, et al. Simulation of China’s long-term steel demand and evaluation of the trend of overcapacity of steel industry[J]. China Population, Resources and Environment, 2018,28(10):169-176.] [Zhang C, Wang T, Chen W Q, et al. Simulation of China’s long-term steel demand and evaluation of the trend of overcapacity of steel industry[J]. China Population, Resources and Environment, 2018, 28(10): 169-176.]

    [104] [104] 王班班, 齐绍洲. 有偏技术进步、要素替代与中国工业能源强度[J]. 经济研究, 2014, (2):117-129. [Wang BB, Qi SZ. Biased technological progress, factor substitution and China’s industrial energy intensity[J]. Economic Research Journal, 2014, (2):117-129.] [Wang B B, Qi S Z. Biased technological progress, factor substitution and China’s industrial energy intensity[J]. Economic Research Journal, 2014, (2): 117-129.]

    [107] Zhang YG, GuY, Chen XY et al. An effective indicator for evaluation of wavelength extending InGaAs photodetector technologies[J]. Infrared Physics & Technology, 83, 45-50(2017).

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    Xuesong DONG, Jianbai HUANG, Meirui ZHONG, Jinyu CHEN, Gang LIU, Yi SONG. A review on the impact of technological progress on critical metal mineral demand[J]. Resources Science, 2020, 42(8): 1592

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    Paper Information

    Received: Feb. 17, 2020

    Accepted: --

    Published Online: Apr. 23, 2021

    The Author Email: HUANG Jianbai (jbhuang@csu.edu.cn)

    DOI:10.18402/resci.2020.08.13

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