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Re-Os Isotope Characteristics of Hongqiling Cu-Ni Sulfide Deposit in Jilin Province and Its Significance

Hao Libo1,Wu Chao1,Sun Liji2,Jiang Yanming3,Zhao Yuyan1,Lu Jilong1,Li Jie4   

  1. 1.College of GeoExploration Science and Technology, Jilin University, Changchun130021,China;
    2.Info Center for National Land & Resources of Hunan Province, Changsha410000,China;
    3.The Geological Exploration Institute of Liaoning Metallurgcally Geological Exploration Bureau, Anshan114002,Liaoning,China;
    4.Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou510640,China
  • Received:2013-07-06 Online:2014-03-26 Published:2014-03-26

Abstract:

The Hongqiling copper-nickel sulfide deposit mainly consists of No.1, No.2 and No.7 ore-bearing intrusions. The Re-Os isochron age of No.2 intrusion ((215.0±24.0) Ma) is consistent with zircon SHRIMP U-Pb age of the intrusion, (212.2±2.6 ) Ma, but the Re-Os isochron age of No.1 intrusion((237.0±16.0) Ma) is greater than zircon SHRIMP U-Pb age of the No.1 intrusion, (216.0±5.0) Ma. All these data indicate that Re-Os isochron ages of disseminated ores are not completely reliable. The Re-Os isochron age is greater than zircon SHRIMP U-Pb age, which is usually interpreted as crustal contamination inducing heterogeneity of Os isotopic. However, the research shows that No.1 and No.2 intrusions are mixed with some of the Earth’s crust substance, and the mixing volume of No.2 intrusion is slightly higher than that of the No.1 intrusion, which indicate that hybridization of crust materials is not the cause of heterogeneity in initial 187Os/188Os ratios, the major reason should be a further research. The initial 187Os/188Os ratios of No.1 and No.2 intrusions are 0.215±0.043 and 0.302±0.089, and γOs values range from 67.5 to 155.8 and 113.9 to 206.9, respectively, which indicate that the oreforming intrusions interfuse some crustal materials with possibly 20%-30% crustal Os contamination in Hongqiling area, and crustal materials might be the key factor to promote liquation ore formation.

Key words: Re-Os isotope, isochron age, Cu-Ni sulfide deposit, disseminated ore, Hongqiling

CLC Number: 

  • P578.2
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