Reduction of oxidized sulfur in the formation of the Grasberg porphyry copper-gold deposit, Papua, Indonesia

被引:17
作者
Sulaksono, Adi [1 ,2 ]
Watanabe, Yasushi [1 ]
Arribas, Antonio [1 ,3 ]
Echigo, Takuya [1 ]
Al Furqan, Reza [1 ,4 ]
Leys, Clyde A. [4 ,5 ]
机构
[1] Akita Univ, Dept Earth Resource Sci, 1-1 Tegatagakuenmachi, Akita 0108502, Japan
[2] UPN Vet Yogyakarta, Dept Geol Engn, Jl Padjajaran Condongcatur, Yogyakarta 55283, Indonesia
[3] Univ Texas El Paso, Dept Geol Sci, 500 W Univ Ave, El Paso, TX 79968 USA
[4] PT Eksplorasi Nusa Jaya, Jl Sultan Iskandar Muda Kav V TA, Pondok Indah 12310, Jakarta Selatan, Indonesia
[5] Freeport McMoRan Copper & Gold Inc, 333 N Cent Ave, Phoenix, AZ 85004 USA
关键词
Reduction of oxidized sulfur; Porphyry copper; SO2; SO42-; Rock buffer; Fe2+;
D O I
10.1007/s00126-021-01040-9
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The reduction of oxidized sulfur is essential in porphyry copper deposits whose mineralization predominantly comprises copper sulfides, whereas their source magmas are oxidized with most of their sulfur as SO42- and with exsolved fluids having SO2>>H2S. To estimate the redox state of sulfur, we examined drill cores that intersect potassic and unaltered intrusive rocks in the deeper levels of the Grasberg porphyry copper-gold deposit. Magmatic oxybarometers such as the amphibole-titanite-magnetite-quartz assemblage, anhydrite, and amphibole consistently show that Grasberg ore-forming magmas were oxidized with fO(2) > FMQ+3. Initial hydrothermal events formed sulfide-free, anhydrite-rich K-feldspar, and biotite alteration, followed by successive vein stages of (1) magnetite, (2) biotite, (3) quartz, (4) anhydrite-chalcopyrite, (5) chalcopyrite +/- sericite selvages, and (6) pyrite-chalcopyrite-quartz + sericite selvages. The delta S-34 values of sulfide-sulfate mineral pairs indicate SO2-derived SO42- and H2S in SO42-/H2S molar proportions of similar to 4:1 to similar to 3:1 at > 550 degrees C. The hydrothermal fluid then likely followed a rock-buffered trajectory and became more reduced at < 550 degrees C. Hydrothermal biotite that replaces igneous amphibole and biotite has a phlogopitic composition, suggesting that Fe2+ was liberated from igneous mafic minerals and oxidized by reaction with SO42- to form magnetite, resulting in sulfide formation by the simplified reaction 12FeO + SO42- + 2H(+) -> 4Fe(3)O(4) + H2S.
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页码:1027 / 1042
页数:16
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