Journal of Jilin University(Earth Science Edition)

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Genetic Study on the Huaaobaote Pb-Zn-Ag Polymetallic Deposit in Inner Mongolia:Evidence from Fluid Inclusions and S,Pb,H,O Isotopes

Chen Yongqing1,Zhou Ding1, 2,Guo Lingfen3   

  1. 1.School of Earth Science and Resource, China University of Geosciences, Beijing100083, China;
    2.No.6 Gold Geological Party of CAPF, Sanmenxia472000, Henan, China;
    3.School of Geographical Sciences,Harbin Normal University,Harbin150025, China
  • Received:2013-12-12 Online:2014-09-26 Published:2014-09-26

Abstract:

Huaaobaote Pb-Zn-Ag polymetallic deposit, a hydrothermal vein-type deposit, is tectonically located at the central and southern Daxinganling Mountains Metallogenic Belt. In combination with the alteration and mineralization characteristics, the paragenetic sequence of ore minerals and gangue minerals, the metallogenic stages could be divided into Quartz-Pyrite, Sphalerite-Galena and Arsenopyrite-Pyrite ones. By the study of fluid inclusions, it was shown that the ore-forming fluid are characterized by middle-low temperature (146.7-274.3℃), low salinity (0.54%-8.52%) and low density (0.790-0.943 g/cm3). The estimated metallogenic pressure and the metallogenic depth reflect that the deposit was formed in a mesogene-hypergene environment. With sulfur, lead isotopic analytical results of metal sulfides, it was shown that the source of ore-forming materials had the characteristics of a crust-mantle mixed source. The δ18OSMOW and δD of the ore-forming fluid range from -11.78‰ to -6.01‰ and from -110.90‰ to -70.30‰, respectively. It was concluded  that the oreforming fluid of the deposit was mainly derived from mixing of magmatic water and meteorite water. In combination with regional geological features and tectonic evolution, it is considered that this middle-low-temperature hydrothermal vein-type Pb-Zn-Ag polymetallic deposit was formed under the stretch orogenic structure system, among southern Daxinganling in the Mesozoic Era, and controlled by the multiple geological factors, such as deep faults, the Early Cretaceous tectonic-magmatic activities and the Shoushangou Group.

Key words: Huaaobaote, polymetallic deposit, fluid inclusions, S, Pb, H, O isotopes, genetic study

CLC Number: 

  • P618.2
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