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Early Eocene Longmala skarn Pb-Zn-Cu deposit in Tibet, China: Geochemistry, fluid inclusions, and H-O-S-Pb isotopic compositions.

Authors :
Wang, Liqiang
Tang, Juxing
Bagas, Leon
Wang, Yong
Lin, Xin
Li, Zhuang
Li, Yubin
Source :
Ore Geology Reviews. Aug2017, Vol. 88, p99-115. 17p.
Publication Year :
2017

Abstract

The Longmala deposit is a representative of the skarn Pb-Zn-Cu deposits found in the Nyainqêntanglha area of Tibet, China. The mineralization is hosted by skarn and marble of the Permian Wululong Formation intruded by an early Eocene biotite monzogranite, which is associated with the Pb-Zn-Cu mineralization. The genesis of the deposit is related to a four-stage progression involving: Stage I involves the development of prograde skarn; Stage II is a pre-ore retrograde skarn; Stage III is the emplacement of quartz-sulfides ore; and Stage IV is the emplacement of post-ore carbonate. The biotite monzogranite is a high-K calc-alkaline highly fractionated I-type granite characterized by its elevated SiO 2 (68.38–72.62 wt%), Fe T (4.09–6.19 wt%), and K 2 O + Na 2 O (7.82–8.33 wt%) contents. Its aluminum saturation index of 0.97–0.99 and a high differentiation index of 79–86 are indicative of a last-stage fractionation of the magma. The monzogranite is relatively enriched in light rare-earth elements, Th, U, and Rb, depleted in Sr, Ba, K, Nb, P, and Ti, and has a negative Eu anomaly. The εHf (t) values (−6.2 to +1.5), two-stage Hf model ages (average T DM2 = 1224 Ma) for zircons, and whole rock Pb isotopic compositions ( 206 Pb/ 204 Pb = 18.806–18.938, 207 Pb/ 204 Pb = 15.676–15.697, and 208 Pb/ 204 Pb = 39.234–39.376) indicate that the source of the magma is the crust of Lhasa Terrane. The study of fluid inclusions from each of the four stages mentioned above show that garnet and diopside from the prograde skarn (Stage I) are characterized by high temperatures and high oxygen fugacity indicative of magmatic fluids. The succeeding mineralization (Stage III) is characterized by moderate to high temperature and a reducing fluid, and final carbonate veining (Stage IV) with a decreased fluid temperature and salinity. The δ 18 O w values range from 1.3 to 10.8‰, and the δD w values are −123.5 to −93.4‰, indicating that the ore-forming fluids were derived from mixture magmatic and meteoric fluids, and the δ 34 S values of sulfides have a relatively narrow range of 0.3–3.6‰, suggestive of a magmatic source. The 206 Pb/ 204 Pb (18.571–18.722), 207 Pb/ 204 Pb (15.707–15.796), and 208 Pb/ 204 Pb (39.116–39.448) values of sulfides show that ore-forming metals were derived from the crust in the Lhasa Terrane. Major and trace elements characteristics of the ore-associated biotite monzogranite, combined with the dating results, suggest that the Longmala deposit were formed within the India-Asia continental-collision tectonic setting. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01691368
Volume :
88
Database :
Academic Search Index
Journal :
Ore Geology Reviews
Publication Type :
Academic Journal
Accession number :
123758388
Full Text :
https://doi.org/10.1016/j.oregeorev.2017.04.026