Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesHost
2022 No. 2
Article Contents

Zhang Zhenfang, Chen Xiufa, Li Yangchun, Gao Aihong, Wang Yanggang, He Xuezhou, Wang Qiushu. Multipurpose Utilization Trend of Nickel Mineral Resources under the Goal of Carbon Peaking and Carbon Neutrality[J]. Multipurpose Utilization of Mineral Resources, 2022, (2): 31-39. doi: 10.3969/j.issn.1000-6532.2022.02.006
Citation: Zhang Zhenfang, Chen Xiufa, Li Yangchun, Gao Aihong, Wang Yanggang, He Xuezhou, Wang Qiushu. Multipurpose Utilization Trend of Nickel Mineral Resources under the Goal of Carbon Peaking and Carbon Neutrality[J]. Multipurpose Utilization of Mineral Resources, 2022, (2): 31-39. doi: 10.3969/j.issn.1000-6532.2022.02.006

Multipurpose Utilization Trend of Nickel Mineral Resources under the Goal of Carbon Peaking and Carbon Neutrality

  • The challenge of climate change is becoming more and more serious, and the "warm war" has been launched around the world. After China's "dual carbon" target was put forward, various sectors have studied and developed their own emission reduction plans. As an important basic industry of national economy, metal mineral industry faces both challenges and opportunities in green and low-carbon transformation. This paper focuses on nickel, one of the most important metals in power battery, and its comprehensive application prospect under the dual drive of clean energy and high nickelization of power battery. At present, nickel mainly used in stainless steel production will gradually decrease in the green and low-carbon transition, and the consumption of battery grade nickel sulfate will increase rapidly. Laterite type nickel ore has become the main source of nickel as nickel sulfide ore resources become scarce. At present, laterite nickel ore is mainly produced by KREF and other pyrosmelting processes to produce nickel-iron and stainless steel. With the increasing demand for battery grade nickel sulfate, high pressure acid leaching nickel wet smelting of intermediate products and converting nickel-iron to high matte nickel to produce nickel sulfate may become the development trend of comprehensive utilization of laterite nickel ore in the future.

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  • [1] 王文举. 中国碳排放总量确定、指标分配、实现路径机制设计综合研究[M]. 北京: 首都经济贸易大学出版社, 2018: 1-454.

    Google Scholar

    WANG W J. A comprehensive study on the determination of China's total carbon emissions, the allocation of targets, and the mechanism design of implementation paths [M]. Beijing: Capital University of Economics and Business Press, 2018: 1-454.

    Google Scholar

    [2] 白永秀, 鲁能, 李双媛. 双碳目标提出的背景、挑战、机遇及实现路径[J]. 中国经济评论, 2021(5):10-13.

    Google Scholar

    BAI Y X, LU N, LI S Y. The background, challenge, opportunity and realization path of the goal of carbon peaking and carbon neutrality[J]. China Economic Review, 2021(5):10-13.

    Google Scholar

    [3] 张中祥. “双碳”目标下中国绿色低碳转型和高质量发展[J]. 中国经济报告, 2021(4):165-167. doi: 10.3969/j.issn.1673-3788.2021.04.072

    CrossRef Google Scholar

    ZHANG Z X. China and the world under the targets of carbon peak and carbon neutralization—green low-carbon transformation, green finance, carbon market and carbon border adjustment mechanism[J]. China Policy Review, 2021(4):165-167. doi: 10.3969/j.issn.1673-3788.2021.04.072

    CrossRef Google Scholar

    [4] 乔晓楠, 彭李政. 碳达峰、碳中和与中国经济绿色低碳发展[J]. 中国特色社会主义研究, 2021(04):43-56.

    Google Scholar

    QIAO X N, PENG L Z. Carbon peak, carbon neutrality and green and low-carbon development of China's economy[J]. Studies on Socialism with Chinese Characteristics, 2021(04):43-56.

    Google Scholar

    [5] 余碧莹, 赵光普, 安润颖, 等. 碳中和目标下中国碳排放路径研究[J]. 北京理工大学学报(社会科学版), 2021, 23(2):17-24.

    Google Scholar

    YU B Y, ZHAO G P, AN R Y, et al. Research on China’s CO2 emission pathway under carbon neutral target[J]. Journal of Beijing Institute of Technology(Social Sciences Edition), 2021, 23(2):17-24.

    Google Scholar

    [6] 鲁博文, 张立麒, 徐勇庆, 等. 碳捕集、利用与封存(CCUS)技术助力碳中和实现[J]. 工业安全与环保, 2021, 47(S1): 30-34.

    Google Scholar

    LU B W, ZHANG L Q, XU Y Q, et al. Carbon capture, utilization and storage(CCUS)technology helps to the realization of carbon neutralization. [J] Industrial Safety and Environmental Protection, 2021, 47(S1): 30-34.

    Google Scholar

    [7] 王灿, 孙若水, 张九天. 中国实现碳中和的支撑技术与路径[J]. China Economist, 2021, 16(5):32-70.

    Google Scholar

    WANG C, SUN R S, ZHANG J T. Supportive technologies and roadmap for China’s carbon neutrality[J]. China Economist, 2021, 16(5):32-70.

    Google Scholar

    [8] 邹才能, 熊波, 薛华庆, 等. 新能源在碳中和中的地位与作用[J]. 石油勘探与开发, 2021, 48(2):411-420. doi: 10.11698/PED.2021.02.18

    CrossRef Google Scholar

    ZOU C N, XIONG B, XUE H Q, et al. The role of new energy in carbon neutral[J]. Petroleum Exploration and Development, 2021, 48(2):411-420. doi: 10.11698/PED.2021.02.18

    CrossRef Google Scholar

    [9] 王文, 赵越. 欧美碳减排经验教训及对中国的借鉴意义[J]. 新经济导刊, 2021(2):28-35. doi: 10.3969/j.issn.1009-959X.2021.02.005

    CrossRef Google Scholar

    WANG W, ZHAO Y. Experience and lessons of carbon emission reduction in Europe and America and its significance for China[J]. New Economy Weekly, 2021(2):28-35. doi: 10.3969/j.issn.1009-959X.2021.02.005

    CrossRef Google Scholar

    [10] 张时聪, 王珂, 杨芯岩, 等. 建筑部门碳达峰碳中和排放控制目标研究[J]. 建筑科学, 2021, 37(8):189-198.

    Google Scholar

    ZHANG S C, WANG K, YANG X Y, et al. Research on emission goal of carbon peak and carbon neutral in building sector[J]. Building Science, 2021, 37(8):189-198.

    Google Scholar

    [11] 苍大强. 钢铁工业“碳达峰”“碳中和”及低碳技术的误区及现实路径[J]. 中国冶金, 2021, 31(9):3-8.

    Google Scholar

    CANG D Q. Misunderstandings and realistic path of carbon peak carbon neutrality and low carbon technologies in iron and steel industry[J]. China Metallurgy, 2021, 31(9):3-8.

    Google Scholar

    [12] 强海洋, 高兵, 郭冬艳, 等. 碳中和背景下矿业可持续发展路径选择[J]. 中国国土资源经济, 2021, 34(04):4-11.

    Google Scholar

    QIANG H Y, GAO B, GUO D Y, et al. Options for sustainable development of mining industry under the background of carbon neutrality[J]. Natural Resource Economics of China, 2021, 34(04):4-11.

    Google Scholar

    [13] 马静玉, 程东波. 碳中和愿景下金属矿产行业的挑战与机遇[J]. 科技导报, 2021, 39(19):48-55.

    Google Scholar

    MA J Y, CHENG D B. Challenges and opportunities of metallic mineral industry under the vision of carbon neutrality[J]. Science & Technology Review, 2021, 39(19):48-55.

    Google Scholar

    [14] 张福明, 程相锋, 银光宇, 等. 国内外低碳绿色炼铁技术的发展[J]. 炼铁, 2021, 40(5):1-8.

    Google Scholar

    ZHANG F M, CHENG X F, YIN G Y, et al. Development of low-carbon green ironmaking technology at home and abroad[J]. Ironmaking, 2021, 40(5):1-8.

    Google Scholar

    [15] The World Bank. Minerals for climate action: the mineral intensity of the clean energy transition[DB/OL]. [2020-05].

    Google Scholar

    [16] S&P Global Market Intelligence. Commodities [DB/OL]. [2021-07-18].https://platform.mi.spglobal. Cn

    Google Scholar

    [17] World Bureau of Metal Statistics. [DB/OL]. https://world-bureau.co.uk/

    Google Scholar

    [18] crugroup . CRU阐述: 硫化镍缘何失宠[DB/OL].[2021-03]. https://www.crugroup.com/knowledge-and-insights/insights/2021/cru%E9%98%90%E8%BF%B0-%E7%A1%AB%E5%8C%96%E9%95%8D%E7%BC%98%E4%BD%95%E5%A4%B1%E5%AE%A0/

    Google Scholar

    [19] 邢佳韵, 张晓鹤, 陈其慎, 等. “二元消费”影响下的镍供需形势分析[J]. 地球学报, 2021, 42(2):251-257. doi: 10.3975/cagsb.2020.110202

    CrossRef Google Scholar

    XING J Y, ZHANG X H, CHEN Q S, et al. An analysis of nickel supply and demand situation under the influence of “dual consumption”[J]. Acta Geoscientica Sinica, 2021, 42(2):251-257. doi: 10.3975/cagsb.2020.110202

    CrossRef Google Scholar

    [20] 张邦胜, 刘贵清, 刘昱辰, 等. 2020年硫酸镍市场分析[J]. 中国资源综合利用, 2021, 39(1):86-91. doi: 10.3969/j.issn.1008-9500.2021.01.026

    CrossRef Google Scholar

    ZHANG B S, LIU G Q, LIU Y C, er al. Analysis of nickel sulfate market in 2020[J]. China Resources Comprehensive Utilization, 2021, 39(1):86-91. doi: 10.3969/j.issn.1008-9500.2021.01.026

    CrossRef Google Scholar

    [21] 安泰科. 镍产业现状、展望及经营对策.

    Google Scholar

    Antaike. Current situation, prospects and management countermeasures of nickel industry. [DB/OL]. extension: //oemmndcbldboiebfnladdacbdfmadadm/http://www.shfe.com.cn/upload/20210702/1625217935899.pdf

    Google Scholar

    [22] 张本曰, 刘丹, 郭锐, 等. 含镍蛇纹石的综合利用现状[J]. 矿产综合利用, 2020(4):13-20. doi: 10.3969/j.issn.1000-6532.2020.04.003

    CrossRef Google Scholar

    ZHANG B Y, LIU D, GUO R, et al. Comprehensive utilization status of nickel-containing serpentine[J]. Multipurpose Utilization of Mineral Resources, 2020(4):13-20. doi: 10.3969/j.issn.1000-6532.2020.04.003

    CrossRef Google Scholar

    [23] 王帅, 姜颖, 郑富强, 等. 红土镍矿火法冶炼技术现状与研究进展[J]. 中国冶金, 2021, 31(10):1-7.

    Google Scholar

    WANG S, JIANG Y, ZHENG F Q, et al. Development of pyrometallurgical technology of laterite nickel ore[J]. China Metallurgy, 2021, 31(10):1-7.

    Google Scholar

    [24] 武兵强, 齐渊洪, 周和敏, 等. 红土镍矿火法冶炼工艺现状及进展[J]. 矿产综合利用, 2020(3):78-83+93. doi: 10.3969/j.issn.1000-6532.2020.03.012

    CrossRef Google Scholar

    WU B Q, QI Y H, ZHOU H M, et al. Status and progress in pyrometallurgy processes of a laterite nickel ore[J]. Multipurpose Utilization of Mineral Resources, 2020(3):78-83+93. doi: 10.3969/j.issn.1000-6532.2020.03.012

    CrossRef Google Scholar

    [25] 郭远生, 罗玉福, 等. 中国和东南亚红土型镍矿地质与勘查[M]. 北京: 地质出版社, 2013: 1-310.

    Google Scholar

    GUO Y S, LUO Y F, et al. Geology and exploration of laterite nickel deposits in China and Southeast Asia[M]. Beijing: Geological publishing house, 2013: 1-310.

    Google Scholar

    [26] 李长玖, 陈玉明, 黄旭日, 等. 镍矿的处理工艺现状及进展[J]. 矿产综合利用, 2012(6):8-11.

    Google Scholar

    LI C J, CHEN Y M, HUANG X R, et al. The Present situation and development of nickel ore processing technology[J]. Multipurpose Utilization of Mineral Resources, 2012(6):8-11.

    Google Scholar

    [27] 高冰镍工艺、成本拆分及后市如何演变 [EB/OL]. [2022-01-05]. https://zhuanlan.zhihu.com/p/453669030

    Google Scholar

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