4.7 Article

Helium and argon isotope geochemistry of alkaline intrusion-associated gold and copper deposits along the Red River-Jinshajiang fault belt, SW China

Journal

CHEMICAL GEOLOGY
Volume 203, Issue 3-4, Pages 305-317

Publisher

ELSEVIER
DOI: 10.1016/j.chemgeo.2003.10.006

Keywords

Red River-Jinshajiang; alkaline intrusion; copper and gold deposits; helium and argon isotopes; ore-forming fluid; mantle fluids; ASW

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The Red River-Jinshajiang strike-slip fault zone on the eastern margin of the Tibetan plateau was originally produced by the India-Eurasia collision similar to60-70 Myr ago. Numerous post-collisional, mantle-derived alkaline igneous rocks, with ages of similar to40-30 Ma, have been intruded along this fault zone. In recent years, several copper and gold deposits associated with the alkaline intrusions of this region were discovered, such as the Yao'an and Beiya gold deposits and the Yulong and Machangqing copper deposits studied in this paper. The mineralised intrusions are felsic, with SiO2 ranging from 61.4 to 67.7 wt.%, K2O + Na2O from 8.1 to 11.5 wt.% and K2ONa2O>1. The deposits are located at both the exo- and endo-contact zones of the intrusions. The mineral deposits are of hydrothermal origin, with the ore-forming temperatures mainly in the range 150-450 degreesC. This paper presents He and Ar isotope analyses of these four deposits. The concentrations of 4 He trapped in fluid inclusions of pyrites from the ores are (0.7-54.1) x 10(-6) cm(3) STP g(-1), and those of Ar-40 are (0.6-7.3) x 10(-6) cm(3) STP g(-1), He-3/He-4 ratios are 0.3-2.5 Ra (Ra represents the He-3/He-4 ratio of air, 1.39 x 10(-6)), Ar-40/Ar-36 ratios are 316-1736, and He-3/Ar-36 ratios are 0.2-11.2 x 10(-3). Generally, the He-3/He-4, Ar-40/(36) Ar and He-3/Ar-36 ratios for the gold deposits are higher than those for the copper deposits. We suggest that the ore-forming fluids of both gold and copper deposits were differentiated from the mantle-derived alkaline magmas, but were diluted by modified air-saturated water (MASW) that experienced intensive interaction with crustal rocks. However, the magmatic fluids responsible for the gold deposits were less extensively diluted by MASW, resulting in higher He-3/He-4, Ar-40/Ar-36 and He-3/Ar-36 ratios than the copper deposits. (C) 2003 Elsevier B.V. All rights reserved.

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