The Evolution of the International Trade Competition Pattern of Fluorite Typical Products
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摘要: 萤石作为一种重要的非金属战略性矿产资源, 受到各国(地区)的高度重视。由于全球萤石资源储量有限、分布不均, 萤石产品的供需矛盾不断增强, 激化了萤石资源进出口之间的竞争。本文主要研究了萤石资源国际贸易, 以无机氟化工产业链为切入点, 选取酸级萤石、电子级氢氟酸、六氟磷酸锂为研究对象, 运用复杂网络方法, 构建了2000—2020 年全球萤石产品进口竞争网络, 分析其格局、演变特征, 国家(地区)间竞争特点以及中国萤石产品的竞争状况。结果发现: 全球萤石产品之间的竞争越来越激烈, 各阶段的累积度分布都遵循幂律分布。竞争强度占比前20%的国家(地区)显示出更直观的集中化趋势。近20 年来美国一直是酸级萤石进口竞争的矛盾中心。电子级氢氟酸和六氟磷酸锂的进口竞争网络的核心国家(地区)是不断演变的。建议中国等萤石资源储量丰富的国家(地区), 合理规划萤石产业, 优化萤石资源供需格局、促进萤石产业健康可持续发展。Abstract: As an important non-metallic strategic mineral resource, fluorite is highly valued by all countries (regions). Due to the limited reserves and uneven distribution of global fluorite resources, the contradiction between supply and demand of fluorite products continues to increase, which intensifies the competition between the import and export of fluorite resources. This paper mainly studies the international trade of fluorite resources, takes the inorganic fluorine chemical industry chain as the entry point, selects acid-grade fluorite, electronic grade hydrofluoric acid, lithium hexafluorophosphate as the research objects, and uses complex network methods to construct a global fluorite product import competition network from 2000 to 2020, and analyzes its pattern, evolution characteristics, inter-country (region) competition characteristics and the competitive situation of China's fluorite products. The results show that the competition between global fluorite products is becoming more and more intense, and the cumulative distribution of each stage follows the power law distribution. Countries (regions) in the top 20% of competition intensity show a more intuitive trend towards centralization. For nearly two decades, the United States has been the center of contradiction in the competition for acid-grade fluorite imports. The core countries (regions) of the import competition network for electronic grade hydrofluoric acid and lithium hexafluorophosphate are constantly evolving. It is recommended that China and other countries (regions) with rich fluorite resource reserves rationally plan the fluorite industry, optimize the supply and demand pattern of fluorite resources, and promote the healthy and sustainable development of the fluorite industry.
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Key words:
- fluorite /
- competitive network /
- international trade /
- typical products
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安海忠, 李华姣. 2022. 战略性矿产资源全产业链理论和研究前沿[J]. 资源与产业, 24(1): 8-14.
陈军元, 刘艳飞, 颜玲亚, 高树学, 欧阳友和, 龙涛. 2021. 石墨、萤石等战略非金属矿产发展趋势研究[J]. 地球学报, 42(2): 287-296.
郝晓晴, 安海忠, 陈玉蓉, 高湘昀. 2013. 基于复杂网络的国际铁矿石贸易演变规律研究[J]. 经济地理, 33(1): 92-97.
李步界, 邢万里. 2021. 基于复杂网络理论的全球精炼铜贸易特征分析[J]. 中国矿业, 30(5): 57-64.
李华姣, 安海忠, 齐亚杰, 刘海萍. 2020. 基于产业链国际贸易网络的中国优势矿产资源全球贸易格局和竞争力--以钨为例[J]. 资源科学, 42(8): 1504-1514.
李敬, 张寿庭, 商朋强, 赵玉. 2019. 萤石资源现状及战略性价值分析[J]. 矿产保护与利用, 39(6): 62-68.
卢煜, 李华姣. 2020. 铜产业链研究现状综述[J]. 资源与产业, 22(2): 60-68.
商朋强, 焦森, 屈云燕, 刘丙秋, 高永璋. 2020. 世界萤石资 源供需形势分析及对策建议[J]. 国土资源情报, (10): 104-109.
史超亚, 高湘昀, 孙晓奇, 郝晓晴. 2018. 复杂网络视角下的国际铝土矿贸易演化特征研究[J]. 中国矿业, 27(1): 57-62.
王振亮, 鲁瑞君, 林天亮, 吴新刚. 2013. 浅析中国萤石矿 分布特征及其成矿规律[J]. 中国非金属矿工业导刊, (5): 56-59.
王自国, 朱培元. 2020. 中央企业萤石矿战略布局思考[J]. 中国矿业, 29(6): 8-11, 20.
许海, 刘海涛, 贾元琴, 王国梁. 2021. 关于中国萤石矿产业发展的思考[J]. 四川有色金属, (3): 2-5, 51.
杨宇, 于宏源, 鲁刚, 王礼茂, 赵媛, 郝丽莎, 任东明, 方伟, 安海忠, 蔡国田. 2020. 世界能源百年变局与国家能源安 全[J]. 自然资源学报, 35(11): 2803-2820.
张丹仙, 亢建华, 黄红军, 祝雯霞, 王若林. 2022. 萤石资源开发利用现状与战略意义[J]. 过程工程学报, https://kns.cnki.net/kcms/detail/11.4541.TQ.20220616.1459.0 04.html.
张福良, 郭小兵. 2017. 我国萤石资源形势分析及管理对策建 议[J]. 现代矿业, 33(12): 8-9, 14.
赵鹏, 郑厚义, 张新, 王帆, 王英林. 2020. 中国萤石产业资源现状及发展建议[J]. 化工矿产地质, 42(2): 178-183.
赵怡然, 高湘昀, 孙晓奇, 司景舰, 孙笑甜, 伍涛. 2022. 产业链视角下贸易依赖网络结构变动对钴价格的影响[J]. 资源科学, 44(7): 1344-1357.
AN Hai-zhong, ZHONG Wei-qiong, CHEN Yu-rong, LI Hua-jiao, GAO Xiang-yun. 2014. Features and evolution of international crude oil trade relationships: A trading-based network analysis[J]. Energy, 74: 254-259.
AN Hai-zhong, LI Hua-jiao. 2022. Theory and research advances in whole industrial chain of strategic mineral resources[J]. Resources & Industries, 24(1): 8-14(in Chinese with English abstract).
BARABÁSI A-L, ALBERT R. 1999. Emergence of scaling in random networks[J]. Science, 286(5439): 509-512.
CHEN Jun-yuan, LIU Yan-fei, YAN Ling-ya, GAO Shu-xue, OUYANG You-he, LONG Tao. 2021. Research on development trend of strategic nonmetallic minerals such as graphite and fluorite[J]. Acta Geoscientica Sinica, 42(2): 287-296(in Chinese with English abstract).
CHEN Zhi-hua, AN Hai-zhong, GAO Xiang-yun, LI Hua-jiao, HAO Xiao-qing. 2016. Competition pattern of the global liquefied natural gas (LNG) trade by network analysis[J]. Journal of Natural Gas Science and Engineering, 33: 769-776.
GENG Jiang-bo, JI Qiang, FAN Ying. 2014. A dynamic analysis on global natural gas trade network[J]. Applied Energy, 132: 23-33.
GLICK R, ROSE A K. 1999. Contagion and trade: Why are currency crises regional?[J]. Journal of International Money and Finance, 18(4): 603-617.
HAO Xiao-qing, AN Hai-zhong, CHEN Yu-rong, GAO Xiang-yun. 2013. Research on evolution of international iron ore trade based on complex network theory[J]. Economic Geography, 33(1): 92-97(in Chinese with English abstract).
LI Bu-jie, XING Wan-li. 2021. Analysis of global trade characteristics of refined copper and its products based on the complex network theory[J]. China Mining Magazine, 30(5): 57-64(in Chinese with English abstract).
LI Hua-jiao, AN Hai-zhong, QI Ya-jie, LIU Hai-ping. 2020. Trade and competitiveness structure of China’s advantageous mineral resources based on the international trade network of industrial chain: A case study of Tungsten[J]. Resources Science, 42(8): 1504-1514(in Chinese with English abstract).
LI Jing, ZHANG Shou-ting, SHANG Peng-qiang, ZHAO Yu. 2019. Present situation and analysis of strategic value of fluorite resource[J]. Conservation and Utilization of Mineral Resources, 39(6): 62-68(in Chinese with English abstract).
LU Yu, LI Hua-jiao. 2020. Research overview of copper industrial chain[J]. Resources & Industries, 22(2): 60-68(in Chinese with English abstract).
NEWMAN M E J. 2001. Scientific collaboration networks. II. Shortest paths, weighted networks, and centrality[J]. Physical Review E, 64(1): 016132.
REN Shuai, LI Hua-jiao, WANG Yan-li, GUO Chen, FENG Si-da, WANG Xing-xing. 2021. Comparative study of the China and U.S. import trade structure based on the global chromium ore trade network[J]. Resources Policy, 73: 102198.
SHANG Peng-qiang, JIAO Sen, QU Yun-yan, LIU Bing-qiu, GAO Yong-zhang. 2020. Analysis of supply-demand situation of fluorite resources in the world and countermeasures[J]. Natural Resources Information, (10): 104-109(in Chinese with English abstract).
SHI Chao-ya, GAO Xiang-yun, SUN Xiao-qi, HAO Xiao-qing. 2018. Study on the evolution characteristics of international bauxite trade from the perspective of complex network[J]. China Mining Magazine, 27(1): 57-62(in Chinese with English abstract).
WANG Xing-xing, LI Hua-jiao, YAO Hua-jun, CHEN Zhi-hua, GUAN Qing. 2019. Network feature and influence factors of global nature graphite trade competition[J]. Resources Policy, 60: 153-161.
WATTS D J, STROGATZ S H. 1998. Collective dynamics of ‘small-world’ networks[J]. Nature, 393(6684): 440-442.
WANG Zhen-liang, LU Rui-jun, LIN Tian-liang, WU Xin-gang. 2013. Analysis of the distribution characteristics and the metallogenic regularity of fluorspar mine in China[J]. China Non-metallic Minerals Industry, (5): 56-59(in Chinese with English abstract).
WANG Zi-guo, ZHU Pei-yuan. 2020. Strategic layout of fluorite mine in state-owned enterprises[J]. China Mining Magazine, 29(6): 8-11, 20(in Chinese with English abstract).
XU Hai, LIU Hai-tao, JIA Yuan-qin, WANG Guo-liang. 2021. Reflection on the development of fluorite industry in China[J]. Sichuan Nonferrous Metals, (3): 2-5, 51(in Chinese with English abstract).
YANG Yu, YU Hong-yuan, LU Gang, WANG Li-mao, ZHAO Yuan, HAO Li-sha, REN Dong-ming, FANG Wei, AN Hai-zhong, CAI Guo-tian. 2020. Interview on the unprecedented changes of energy geopolitics and national energy security[J]. Journal of Natural Resources, 35(11): 2803-2820(in Chinese with English abstract).
ZHANG Dan-xian, KANG Jian-hua, HUANG Hong-jun, ZHU Wen-xia, WANG Ruo-lin. 2022. Exploitation and utilization of fluorite and its strategic significance[J]. The Chinese Journal of Process Engineering, https://kns.cnki.net/kcms/detail/11.4541.TQ.20220616.1459.0 04.html(in Chinese with English abstract).
ZHANG Fu-liang, GUO Xiao-bing. 2017. Analysis of fluorite resource situation and management countermeasures in China[J]. Modern Mining, 33(12): 8-9, 14(in Chinese).
ZHANG Hai-Ying, JI Qiang, FAN Ying. 2014. Competition, transmission and pattern evolution: A network analysis of global oil trade[J]. Energy Policy, 73: 312-322.
ZHAO Peng, ZHENG Hou-yi, ZHANG Xin, WANG Fan, WANG Ying-lin. 2020. Resource actualities and demand countermeasures of fluorite in China[J]. Geology of Chemical Minerals, 42(2): 178-183(in Chinese with English abstract).
ZHAO Yi-ran, GAO Xiang-yun, SUN Xiao-qi, SI Jing-jian, SUN Xiao-tian, WU Tao. 2022. The impact of structural changes of trade dependence network on cobalt price from the perspective of industrial chain[J]. Resources Science, 44(7): 1344-1357(in Chinese with English abstract).
ZHONG Wei-qiong, AN Hai-zhong, GAO Xiang-yun, SUN Xiao-qi. 2014. The evolution of communities in the international oil trade network[J]. Physica A: Statistical Mechanics and its Applications, 413: 42-52.
ZHONG Wei-qiong, AN Hai-zhong, SHEN Lei, DAI Tao, FANG Wei, GAO Xiang-yun, DONG Di. 2017. Global pattern of the international fossil fuel trade: The evolution of communities[J]. Energy, 123: 260-270.
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