2002Neues Jahrbuch für Mineralogie - Abhandlungen Journal of Mineralogy and GeochemistryRequires access

Characteristics of mineralization and gold occurrence in Shaxi porphyry copper-gold deposit, central Anhui, China

Xiaoyong Yang, Kuiren Wang, Xue-Ming Yang, Liguang Sun Hefei

Open publisher page 12 citations

Abstract

Through field geological surveys, mineralogical observation by microscopy, compositional analyses on minerals using EPMA, geochemical analyses on Cu-Au-bearing intrusive rocks, fluid inclusion and isotope studies, and element distributions detected by PIXE system, the characteristics of mineralization and gold occurrence in the Shaxi porphyry copper-gold deposit (Central Anhui Province, East China) have been fully investigated. The results of the study are summarized as the follows: (1) Altogether 5 types of copper (gold) ore can be detected, namely chalcopyrite ore, Cu-bearing pyrite ore, magnetite-chalcopyrite ore, pyrite-bornite-chalcopyrite ore and chalcopyrite-molybdenite ore; (2) The assemblage of ores mainly consists of chalcopyrite, pyrite, psedomorph hematite, bornite, magnetite, chalcocite, covellite and arsenopyrite; the non-metal minerals are quartz, K-feldspar, calcite, gypsum, anhydrite; (3) Liquid-vapour conditions have been documented and show that fluid inclusions frequently occur in quartz veins accompanied by pyritization-chalcopyritization-gold mineralization, mostly consisting of a coexisting liquid-gas phase and some are only with pure liquid phase. The ore-forming temperature is between 230-350°C; (4) Sulfur isotope studies show that the δ 3 4 S values are between 0.28-0.80 per mills for most of sulfides, δ 3 4 S values of chalcopyrite are somewhat homogenous those of pyrites; (5) The gold occurred in micro-inclusion sizes (<1 μm), heterogeneously distributed in chalcopyrite and pyrite in the ore deposit. The Au mineralization is positively correlated with As, S, Cu, Fe, Zn and Ti in chalcopyrite and pyrite. (6) The major controlling deposition of Au in the region is probably the oxidation potential of the red sedimentary rocks of shale and fine grain sandstone may be crucial as a geochemical barrier to the reducing fluid. Some fine-grained crystals of pyrite and pyrrhotite formed under conditions of very rapid crystallization from the hydrothermal solutions, in which the content of H 2 S decrease rapidly accompanied by destabilization of Au disulfides complexes. This study has provided the first evidences for the theoretical study of gold mineralization as well as its possible utilization during the mining process of the porphyry copper-gold deposit.

About this research paper

What this paper is about

Through field geological surveys, mineralogical observation by microscopy, compositional analyses on minerals using EPMA, geochemical analyses on Cu-Au-bearing intrusive rocks, fluid inclusion and isotope studies, and element distributions detected by PIXE system, the characteristics of mineralization and gold occurrence in the Shaxi porphyry copper-gold deposit (Central Anhui Province, East China) have been fully investigated. The results of the study are summarized as the follows: (1) Altogether 5 types of copper (gold) ore can be detected, namely chalcopyrite ore, Cu-bearing pyrite ore, magnetite-chalcopyrite ore, pyrite-bornite-chalcopyrite ore and chalcopyrite-molybdenite ore; (2) The assemblage of ores mainly consists of chalcopyrite, pyrite, psedomorph hematite, bornite, magnetite, chalcocite, covellite and arsenopyrite; the non-metal minerals are quartz, K-feldspar, calcite, gypsum, anhydrite; (3) Liquid-vapour conditions have been documented and show that fluid inclusions frequently occur in quartz veins accompanied by pyritization-chalcopyritization-gold mineralization, mostly consisting of a coexisting liquid-gas phase and some are only with pure liquid phase. The ore-forming temperature is between 230-350°C; (4) Sulfur isotope studies show that the δ 3 4 S values are between 0.28-0.80 per mills for most of sulfides, δ 3 4 S values of chalcopyrite are somewhat homogenous those of pyrites; (5) The gold occurred in micro-inclusion sizes (<1 μm), heterogeneously distributed in chalcopyrite and pyrite in the ore deposit. The Au mineralization is positively correlated with As, S, Cu, Fe, Zn and Ti in chalcopyrite and pyrite. (6) The major controlling deposition of Au in the region is probably the oxidation potential of the red sedimentary rocks of shale and fine grain sandstone may be crucial as a geochemical barrier to the reducing fluid. Some fine-grained crystals of pyrite and pyrrhotite formed under conditions of very rapid crystallization from the hydrothermal solutions, in which the content of H 2 S decrease rapidly accompanied by destabilization of Au disulfides complexes. This study has provided the first evidences for the theoretical study of gold mineralization as well as its possible utilization during the mining process of the porphyry copper-gold deposit.

Why it matters

OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Through field geological surveys, mineralogical observation by microscopy, compositional analyses on minerals using EPMA, geochemical analyses on Cu-Au-bearing intrusive rocks, fluid inclusion and isotope studies, and element distributions detected by PIXE system, the characteristics of mineralization and gold occurrence in the Shaxi porphyry copper-gold deposit (Central Anhui Province, East China) have been fully investigated. The results of the study are summarized as the follows: (1) Altogether 5 types of copper (gold) ore can be detected, namely chalcopyrite ore, Cu-bearing pyrite ore, magnetite-chalcopyrite ore, pyrite-bornite-chalcopyrite ore and chalcopyrite-molybdenite ore; (2) The assemblage of ores mainly consists of chalcopyrite, pyrite, psedomorph hematite, bornite, magnetite, chalcocite, covellite and arsenopyrite; the non-metal minerals are quartz, K-feldspar, calcite, gypsum, anhydrite; (3) Liquid-vapour conditions have been documented and show that fluid inclusions frequently occur in quartz veins accompanied by pyritization-chalcopyritization-gold mineralization, mostly consisting of a coexisting liquid-gas phase and some are only with pure liquid phase. The ore-forming temperature is between 230-350°C; (4) Sulfur isotope studies show that the δ 3 4 S values are between 0.28-0.80 per mills for most of sulfides, δ 3 4 S values of chalcopyrite are somewhat homogenous those of pyrites; (5) The gold occurred in micro-inclusion sizes (<1 μm), heterogeneously distributed in chalcopyrite and pyrite in the ore deposit. The Au mineralization is positively correlated with As, S, Cu, Fe, Zn and Ti in chalcopyrite and pyrite. (6) The major controlling deposition of Au in the region is probably the oxidation potential of the red sedimentary rocks of shale and fine grain sandstone may be crucial as a geochemical barrier to the reducing fluid. Some fine-grained crystals of pyrite and pyrrhotite formed under conditions of very rapid crystallization from the hydrothermal solutions, in which the content of H 2 S decrease rapidly accompanied by destabilization of Au disulfides complexes. This study has provided the first evidences for the theoretical study of gold mineralization as well as its possible utilization during the mining process of the porphyry copper-gold deposit.

Key concepts: Mineralization (soil science), Geochemistry, Geology, China, Porphyry copper deposit, Copper, Ore genesis, Central asia

Related papers

Back to paper searchBrowse research topicsOriginal source
Characteristics of mineralization and gold occurrence in Shaxi porphyry copper-gold deposit, central Anhui, China — Research Paper | ScholarLens