ISSN 1006-3021 CN11-3474/P
Published bimonthly started in 1979
基于短波红外勘查技术的西藏甲玛铜多金属矿热液蚀变矿物分布模型研究
  
关键词:shortwave technique  periphery of Jiama(Gyama) copper polymetallic deposit distribution  model of hydrothermal alteration
基金项目:国家973项目(编号: 2011CB403103);青藏专项(编号: 1212010012005);中央公益性行业科研专项(编号: 200911007-02)
作者单位E-mail
郭娜 数学地质四川省重点实验室成都理工大学 guona06@cdut.cn 
郭科 数学地质四川省重点实验室成都理工大学  
张婷婷 中国地质科学院矿产资源研究所  
刘廷晗 成都理工大学  
胡斌 成都理工大学  
汪重午 成都理工大学  
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摘要:
Hydrothermal Alteration Distribution Model of the Jiama(Gyama) Copper-Polymetallic Deposit Based on Shortwave Technique
      The Jiama(Gyama) copper-polymetallic ore deposit is a superlarge ore deposit in the eastern part of central Gangdise. The hydrothermal alteration minerals of the ore body mainly include muscovite, chlorite, biotite, anhydrite, kaolinite, dickite, topaz and calcite, as identified by short wave infrared measurement. The muscovite has close relations with copper polymetallic mineralization, and the thickness of the ore body has the positive correlation with the sample number of aluminum-poor muscovite. The distribution trend of biotite represents potassic alteration, which suggests that the heat center of Jiama(Gyama) ore body lies in the north of exploration line ZK2416-ZK3216. Magnesium-rich chlorite is distributed outside of the aluminum- poor muscovite. In addition, magnesium- rich chlorite and aluminum-poor chlorite have the same significance of heat center. The distribution model, short of phengite, shows that the heat center is quite deep in the mining area. Therefore, the Jiama(Gyama) porphyry system with low denudation extent must have high ore potential in its periphery.
GUO Na,GUO Ke,ZHANG Ting-ting,LIU Ting-han,HU Bin,WANG Chong-wu.2012.Hydrothermal Alteration Distribution Model of the Jiama(Gyama) Copper-Polymetallic Deposit Based on Shortwave Technique[J].Acta Geoscientica Sinica,33(4):641-653.
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