Fluid inclusions in gold mineralization in the Sarekoubu area of the southern Altai Mountains, Xinjiang, China

  • Xu J
  • Xie Y
  • Zhong C
  • et al.
N/ACitations
Citations of this article
3Readers
Mendeley users who have this article in their library.
Get full text

Abstract

The Sarekoubu gold deposit occurs in Devonian metamorphic rocks at the southern margin of the Altai Mountains, Xinjiang, China. The main mineralization stages are pyrite-quartz stage (11) and polymetallic stage (III). Both the quartz debris in volcanics and vein quartz contains abundant fluid inclusions, but they are very different in types and compositions. Primary fluid inclusions in quartz debris are mainly L-V type with t(h)=255 similar to 270 degrees C, and L-V-S type (They are usually decrepitated from 248 degrees C to higher than 335 degrees C). SEM/ EDS analysis shows that many daughter minerals are calcic salts. Fluid inclusions in vein quartz are different, and are dominated by L (CO2), L-CO2-L-H2O, and L-H2O-L-CO2 types; those in polymetallic stage are more complex, probably with CO2-CH4 system fluid.The t(m) of solid CO2 are -78.1 similar to-61.9 degrees C,and the t(hCO2) are -33.7 similar to-17.7 degrees C. Pure CO2 fluid inclusions and CO2-rich fluid inclusions are widely developed in the Sarekoubu gold deposit. delta C-13 of CO2 inclusions ranges from 10.725 parts per thousand to -21.151 parts per thousand,which are similar to those from mantle mineralS.CO2 fluids in the Sarekoubu gold deposit might originate from degassing of upper mantle during late Hercynian collisional orogeny, or from the geochemical recycling of subducted materials.

Cite

CITATION STYLE

APA

Xu, J., Xie, Y., Zhong, C., Yuan, X., & Ding, R. (2005). Fluid inclusions in gold mineralization in the Sarekoubu area of the southern Altai Mountains, Xinjiang, China. In Mineral Deposit Research: Meeting the Global Challenge (pp. 1359–1362). Springer Berlin Heidelberg. https://doi.org/10.1007/3-540-27946-6_346

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free