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中国钴矿资源现状与关键科学问题
Cobalt resources in China:current research status and key scientific issues

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许德如 1,2 *   王智琳 3   聂逢君 1   邹少浩 2   邓腾 1   李增华 1  
文摘 由于钴金属在材料、合金等领域的重要用途,已被许多国家列为关键战略资源。我国钴资源匮乏,是全球最大的钴进口国和消费国。本文在阐述了世界上钴矿资源的概况、分布特征及成因类型等基础上,结合我国钴矿多以共/伴生资源产出且品位低、规模小、成矿机理复杂等特点,提出了研究中存在的关键科学问题,给出了今后勘查开发和利用建议。
其他语种文摘 Due to the important use of cobalt metal in the fields of materials and alloys industries,it has been listed as a strategic critical resource by many countries.China's cobalt resources are scarce and it is the world's largest cobalt importer and consumer.This paper summarizes the general distribution characteristics and genetic types of cobalt ore resources in the world.According to the characteristics of cobalt as a co-existing or by-product together with other metal resources,and the low grade,small scale and complex metallogenic mechanism of cobalt deposits in China,this paper emphasizes the following key scientific issues should be addressed,and suggests future exploration,development and utilization of the cobalt resources.
来源 中国科学基金 ,2019,33(2):125-132 【扩展库】
关键词 钴矿 ; 战略资源 ; 成因类型 ; 关键科学问题
地址

1. 东华理工大学, 核资源与环境国家重点实验室, 南昌, 330013  

2. 中国科学院广州地球化学研究所, 中国科学院矿物学与成矿学重点实验室, 广州, 510640  

3. 中南大学地球科学与信息物理学院, 有色金属成矿预测与地质环境监测教育部重点实验室, 长沙, 410083

语种 中文
文献类型 研究性论文
ISSN 1000-8217
基金 2016年度和2017年度国家重点研发计划项目 ;  国家自然科学基金
文献收藏号 CSCD:6454571

参考文献 共 23 共2页

1.  Roberts S. Cobalt. Critical Metals Handbook,2014:361-385 被引 2    
2.  Schulz K J. Critical Mineral Resources of the United States-Economic and environmental Geology and Prospects For Future Supply: U. S. Geological Survey Professional Paper 1802,2018:797 被引 1    
3.  刘英俊. 元素地球化学,1984 被引 496    
4.  Muchez P. Anhydrite pseudomorphs and the origin of stratiform Cu-Co ores in the Katangan Copperbelt (Democratic Republic of Congo). Mineralium Deposita,2008,43(5):575 被引 13    
5.  Desouky H A E. Genesis of sediment-hosted stratiform copper-cobalt mineralization at Luiswishi and Kamoto, Katanga Copperbelt (Democratic Republic of Congo). Mineralium Deposita,2010,45(8):735-763 被引 16    
6.  Al-Khirbash S. Genesis and mineralogical classification of Ni-laterites, Oman Mountains. Ore Geology Reviews,2015,65(65):199-212 被引 4    
7.  Naldrett A J. The mineralogy of the Voisey's Bay Ni-Cu-Co deposit, Northern Labrador,Canada: Influence of oxidation state on textures and mineral Compositions. Economic Geology,2000,95(4):889-900 被引 10    
8.  Marques A F A. Sulfide mineralization in an ultramafic-rock hosted seafloor hydrothermal system: From serpentinization to the formation of Cu-Zn-(Co)-rich massive sulfides. Marine Geology,2007,245(1):20-39 被引 11    
9.  Liu S. Mesoproterozoic and Paleozoic hydrothermal metasomatism in the giant Bayan Obo REE-Nb-Fe deposit: Constrains from trace elements and Sr-Nd isotope of fluorite and preliminary thermodynamic calculation. Precambrian Research,2018,311:228-246 被引 6    
10.  Bouabdellah M. The Bou Azzer Co-Ni-Fe-As(±Au±Ag) district of central Anti-Atlas (Morocco): A long-lived Late Hercynian to Triassic magmatic-hydrothermal to low-sulphidation epithermal system. Mineral Deposits of North Africa,2016:229-247 被引 2    
11.  Kissin S. Five-element (Ni-Co-As-Ag-Bi) Veins. Geoscience Canada,1992,19(3):113-124 被引 2    
12.  Nash J T. Iron and chlorine as guides to stratiform Cu-Co-Au deposits, Idaho cobalt belt, USA. Mineralium Deposita,1993,28(2):99-106 被引 4    
13.  Slack J F. High REE and Y concentrations in Co-Cu-Au ores of the Blackbird District, Idaho. Economic Geology,2006,101(2):275-280 被引 3    
14.  Saintilan N J. Re-Os systematics and geochemistry of cobaltite (CoAsS) in the Idaho cobalt belt, Belt-Purcell Basin, USA: Evidence for middle Mesoproterozoic sediment-hosted Co-Cu sulfide mineralization with Grenvillian and Cretaceous remobilization. Ore Geology Reviews,2017,86:509-525 被引 10    
15.  . 中国矿产资源报告,2018:1-49 被引 1    
16.  Feng C Y. Re-Os dating of pyrite from the Tuolugou stratabound Co (Au) deposit, eastern Kunlun Orogenic Belt, northwestern China. Ore Geology Reviews,2009,36(1/3):213-220 被引 17    
17.  任启武. 大横路钴铜矿床控矿因素及找矿标志. 吉林地质,2005,24(4):26-31 被引 4    
18.  Zhang M. Precise U-Pb zircon-baddeleyite age of the Jinchuan sulfide ore-bearing ultramafic intrusion, western China. Mineralium Deposita,2010,45(1):3-9 被引 8    
19.  李小虎. 青海德尔尼铜(锌钴)矿床硫化物Cu同位素组成及矿床成因探讨. 地学前缘,2014,21(1):196-204 被引 5    
20.  Wang Z. Mineralogical and isotopic constraints on the genesis of the Jingchong Co-Cu polymetallic ore deposit in northeastern Hunan Province, South China. Ore Geology Reviews,2017,88:638-654 被引 3    
引证文献 7

1 王智琳 湘东北长沙—平江断裂带关键金属钴的赋存状态与成矿规律 黄金科学技术,2020,28(6):779-785
被引 4

2 王宇非 黔中猫场杨家洞矿段铝土矿中富钴黄铁矿的发现与意义 矿物学报,2021,41(4/5):460-474
被引 6

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