Javascript must be enabled to continue!
Research on Metallogenic System and Deposit Genesis: With Zhacun Goldmine in Weishan County of Yunnan as an Example
View through CrossRef
This paper mainly takes Zhacun goldmine as the research object and carries out research on the metallogenic system and genesis of the deposit in the area. The research methods are as follows: according to the geological characteristics of the metallogenic mining area in the Zhacun goldmine, combined with the comparative analysis of the metallogenic age, alteration characteristics and lithology between the Zhacun goldmine and the Lianhuashan alkali rich rock mass, and the analysis of the isotopic data in the Zhacun goldmine, this paper demonstrates that the magmatic activity of the Lianhuashan quartz monzonite porphyry plays an important role in the mineralization of this area, which is both an important ore source and fluid source. It is also the main heat source driving the circulation of ore-forming fluid. On this basis, through the analysis of the metallogenic elements in the area, the metallogenic system model of Zhacun goldmine is constructed. It is considered that under the action of long-term horizontal compressive stress, the atmospheric precipitation infiltrated into the formation continued to penetrate along the fractures and fissures to deep crust and finally mixed with the magmatic water sealed in the thick formation. During this period, a series of shallow and ultrashallow porphyry mass intruded, providing heat source and part of the ore-forming materials and resulting in incomplete homogenization under high temperature and high pressure, which formed highly mineralized mixed water. Under the combined action of long-term compressive stress and various deep thermal dynamics, these mineral fluids migrated along the buried deep faults near the core of the duplex anticline to the upper part of the crust. When the metal elements in these ore fluids migrated over long distances to the nappe fault zone of the gold-bearing fracture zone, the gold began to precipitate, and the native gold and the coarse-grained pyrite and quartz formed at the same time or earlier started to fill the fracture zone along the fissures and accumulate into minerals. Then, through the analysis of metallogenic conditions, gold mineralization process, and genetic mechanism of the deposit, it is proposed that the genetic type of the ore deposit in this area is magmatic mesothermal-epithermal gold deposit. The establishment of metallogenic system model in Zhacun goldmine will provide theoretical and practical guidance for deep and peripheral prospecting prediction in the area, carry out targeted and reasonable prediction, and improve prospecting effectiveness.
Title: Research on Metallogenic System and Deposit Genesis: With Zhacun Goldmine in Weishan County of Yunnan as an Example
Description:
This paper mainly takes Zhacun goldmine as the research object and carries out research on the metallogenic system and genesis of the deposit in the area.
The research methods are as follows: according to the geological characteristics of the metallogenic mining area in the Zhacun goldmine, combined with the comparative analysis of the metallogenic age, alteration characteristics and lithology between the Zhacun goldmine and the Lianhuashan alkali rich rock mass, and the analysis of the isotopic data in the Zhacun goldmine, this paper demonstrates that the magmatic activity of the Lianhuashan quartz monzonite porphyry plays an important role in the mineralization of this area, which is both an important ore source and fluid source.
It is also the main heat source driving the circulation of ore-forming fluid.
On this basis, through the analysis of the metallogenic elements in the area, the metallogenic system model of Zhacun goldmine is constructed.
It is considered that under the action of long-term horizontal compressive stress, the atmospheric precipitation infiltrated into the formation continued to penetrate along the fractures and fissures to deep crust and finally mixed with the magmatic water sealed in the thick formation.
During this period, a series of shallow and ultrashallow porphyry mass intruded, providing heat source and part of the ore-forming materials and resulting in incomplete homogenization under high temperature and high pressure, which formed highly mineralized mixed water.
Under the combined action of long-term compressive stress and various deep thermal dynamics, these mineral fluids migrated along the buried deep faults near the core of the duplex anticline to the upper part of the crust.
When the metal elements in these ore fluids migrated over long distances to the nappe fault zone of the gold-bearing fracture zone, the gold began to precipitate, and the native gold and the coarse-grained pyrite and quartz formed at the same time or earlier started to fill the fracture zone along the fissures and accumulate into minerals.
Then, through the analysis of metallogenic conditions, gold mineralization process, and genetic mechanism of the deposit, it is proposed that the genetic type of the ore deposit in this area is magmatic mesothermal-epithermal gold deposit.
The establishment of metallogenic system model in Zhacun goldmine will provide theoretical and practical guidance for deep and peripheral prospecting prediction in the area, carry out targeted and reasonable prediction, and improve prospecting effectiveness.
Related Results
Composite Metallogenic Systems in the Weihai Area of Shandong and Evolution of Continental Dynamic Regimes
Composite Metallogenic Systems in the Weihai Area of Shandong and Evolution of Continental Dynamic Regimes
Abstract: Based on 9 sheets of l:50,000‐scale regional geological survey and guided by the theory of metallogenic systems and integrated analyses of the structural and metallogenic...
Relationship between electrical conductivity, metallogeny, and lithospheric structure in South China
Relationship between electrical conductivity, metallogeny, and lithospheric structure in South China
The South China Block (SCB) is located at the junction of the Pacific, Eurasian, and Tethys plates. Their interaction led to large-scale multi-stage mineralization in the SCB durin...
Dataset of the Comparative Study of Tectonic Environment and Metallogenic Laws of Cu-Au Mineralization in IndoChina Peninsula and Western Pacific Giant Metallogenic Belt
Dataset of the Comparative Study of Tectonic Environment and Metallogenic Laws of Cu-Au Mineralization in IndoChina Peninsula and Western Pacific Giant Metallogenic Belt
The Comparative Study of Tectonic Environment and Metallogenic Laws of Cu–Au Mineralization in the Indo-China Peninsula and Western Pacific Giant metallogenic belt takes the Indo-C...
Metallogenic Series Related to Permian Mafic Complex in North Xinjiang: Post‐collisional Stage or Mantle Plume Result?
Metallogenic Series Related to Permian Mafic Complex in North Xinjiang: Post‐collisional Stage or Mantle Plume Result?
AbstractThere are four deposit types related to a Permian mafic complex in northern Xinjiang, i.e., copper‐nickel sulfide deposit, vanadic titanomagnetite deposit, magnetite (‐coba...
Re‐Os Isotopic Age of Molybdenite of the Jingren Deposit and its Mineralogical Significance of Magnetite, Pyrite and Chalcopyrite
Re‐Os Isotopic Age of Molybdenite of the Jingren Deposit and its Mineralogical Significance of Magnetite, Pyrite and Chalcopyrite
AbstractThe Jingren deposit is part of the Qimantage metallogenic belt within the eastern Kunlun orogenic belt, the largest metallogenic belt in Qinghai Province, northwestern Chin...
Magma recharging beneath the Weishan volcano of the intraplate Wudalianchi volcanic field, northeast China, implied from 3-D magnetotelluric imaging
Magma recharging beneath the Weishan volcano of the intraplate Wudalianchi volcanic field, northeast China, implied from 3-D magnetotelluric imaging
AbstractThe last volcanic eruptions at the intraplate Wudalianchi volcanic field in northeast China were ∼300 yr ago. Recent ambient noise tomography (ANT) imaged a potential magma...
Dataset of Metallogenic Provinces and Belts of Energy Resources in Southern China and Adjacent Areas
Dataset of Metallogenic Provinces and Belts of Energy Resources in Southern China and Adjacent Areas
Energy and mineral resources constitute a country’s strategic resources for national security and economic development. It is of paramount importance to strengthen research and dev...
Lithogeochemical and Chronological Test Dataset of Mesozoic and Cenozoic Porphyry Metallogenic System in the Eastern Section of the Gangdise Metallogenic Belt, Tibet
Lithogeochemical and Chronological Test Dataset of Mesozoic and Cenozoic Porphyry Metallogenic System in the Eastern Section of the Gangdise Metallogenic Belt, Tibet
The data base for the ore-Cenozoic porphyry metallogenic system in the eastern section
of the Gangdise metallogenic belt, Tibet is supported by the Gangdise Metallogenic Belt Geol...

