img

Wechat

Adv. Search

J4 ›› 1998, Vol. 6 ›› Issue (4): 14-23.

• article • Previous Articles     Next Articles

THE GEOCHEMISTRY CHARACTERISTICS OF WALLROCK ALTERATION AND ISOTOPES OF THE DAHE GEOCHEMISTRY CHARACTERISTICS OF WALLROCK ALTERATION AND ISOTOPES OF THE DAPING GOLD DEPOSIT

Ying Hanlong   

  1. Institute of Geology Chinese Academy of Sciences 100029 Beijing
  • Received:1998-03-18 Online:1998-08-28 Published:2011-11-07

Abstract:

The Daping gold deposit,Yunnan,is dominantly hosted by diorite.From the distal wallrock to the vein,alteration zonings of autometamorphic diorite,choritization and carbonatization form.The later two zones are closely related to g old mineralization,gradually changing with different  width.SiO2,Al2O3,Na2O,FeO,Fe2O3,MnO,CaO,MgO,H2O+,Li,W,Ta,Zr,V,Sc,Sn,Mo,Cr,Co,Ni,Cu,Pb,Au and LREE decrease in chloritization zone; in contrast,K2O,P2O5,Ba,HREE (including Y),Ag and Zn increase. In the carbonat izat ion prosess,SiO2,Al2O3,Na2O,K2O,Ba,HREE(including Y),Mo,Sn,Pb,Zn and Ag are taken out;FeO,Fe2O3,MnO,CaO,MgO,H2O+,P2O5,Li,Ta,Zr,V,Sc,Cr,Co,Ni,Au and LREE are taken in;W and Cu are basically unchanged.δ14C,(87Sr/86Sr),∈Nd (0) and fSm/Nd of the ferro dolmite of the ore vein are separately -4.81‰ which is near to the value of deep carbon,0.709019±72,-17.34 and -0.34,indicating a derivation of crust.Thestronger the rock is altered,the bigger the δ18O of the rock is,by that means the altering hy drothermal fluid is not meteoric,The value range of δ32S of sulfides (including pyrite,galena,chalcopyrite and blende) is between -4.0 to -11.1‰ the Σ34S of the hydrothermal fluid increases from early mineralization stage to late stage.

Key words: Wallrork alteration, Isotopes, Gold deposit

CLC Number: 

  • P597/P618.51


[1] 毕献武.哀牢山金矿带的成矿时代及其成矿机制探讨.地质地球化学,1996(1):94-97.

[2] 韩润生等.云南元阳金矿床的成因及找矿标志.有色金属矿产与勘查,1994,3(4):218-222.

[3] 刘英俊.元素地球化学.北京:地质出版社,1987.

[4] 杨岳清.哀牢山南段金的成矿作用.第五届全国矿床会议论文集.北京:地质出版社:1993,263-265.

[5] 徐研非.元阳大坪石英脉型金矿床地质特征.云南地质,1987,8(2):171-177.

[6] 金世昌.元阳大坪金矿床地质特征及矿床成因.国际金矿地质与勘探学术会议论文集.东北工学院出版社:1989

[7] 陈振胜.蚀变体系岩石(氢)氧同位素组成与热液矿床成因.矿床地质与矿床地球化学研究新进展.兰州:兰州大学出版社:1990.

[8] 周永章.广东河台金矿田构造变形和热液围岩蚀变及有关元素的地球化学活动性状.中加金矿床对比研究-CIDA项目Ⅱ-17文集.北京:地震出版社,1994.

[9] R L Gresens.Composition-volume relationships of metasomatism.Chemical Geology,1967,2:47-65.

[10] W H Maclean,P Kranidiotis.Immobile elements as monitors of mass transfers in hydrother malalteration:Phelps Dodge massive sulphide deposit,Matagami,Quebec:Economic Geology,1990,82:649-690.

[1] Wenxuan HU, Mingchun SONG, Jie LI, Leilei DONG, Runqian ZHAO, Liangliang ZHANG, Jian LI, Tianhui BAI. Sources of Ore-forming Materials in the Jiaodong Gold Deposits:Constraints on Gold Content from Geological Units Related to Gold Mineralization [J]. Gold Science and Technology, 2024, 32(5): 781-797.
[2] Xiaoping ZHOU, Mingchun SONG, Xiangdong LIU, Chunming YAN, Zhaojun HU, Haigang SU, Bingqian HU, Yikang ZHOU. Formation Age,Petrogenesis,and Implications for Gold Mineralization of Giant Porphyritic Granite in the Sanshandao Gold Deposit in Jiaodong [J]. Gold Science and Technology, 2024, 32(5): 813-829.
[3] Zikun YUAN, Yongjun SHAO, Qingquan LIU, Yuce ZHANG, Zhilin WANG. Genesis of Jiangdong Gold Deposit in Wangu Gold Field,Northeast Hunan:Constraints from Fluid Inclusions and H-O Isotope [J]. Gold Science and Technology, 2024, 32(4): 559-578.
[4] Yan YANG, Zengbao HUANG, Xiaogang GUO, Yanlong XU, Hua YAN. Zircon U-Pb Age and Geochemical Characteristics of Granodiorite Porphyry Veins in Yushugoushan Gold Deposit,Northern Qilian Mountain,and Its Geological Significance [J]. Gold Science and Technology, 2024, 32(3): 387-399.
[5] Li SU, Haijun ZHU, Shoujiang GU, Xingke YANG, Yichen ZHAO, Xueping SUN, Hujun HE, Ke HAN, Yuyu ZHANG, Jiang TAN, Yuanlong XIE, Long ZHANG, Libo GAO. Geological and Geochemistry Characteristics and Genesis Analysis of Gold Deposits in Xihuashan Area,Haiyuan,Ningxia [J]. Gold Science and Technology, 2024, 32(2): 191-206.
[6] Bing YU, Zhengjiang DING, Weijun CHEN, Xiao LI, Caijie LIU, Jianling XUE, Qingdong ZENG, Hongrui FAN, Jinjian WU, Qibin ZHANG. Thermoelectric Characteristics of Pyrite from the Xiling Gold Deposit in Jiaodong Peninsula and Its Implications for Deep Prospecting [J]. Gold Science and Technology, 2024, 32(2): 207-219.
[7] Yuanlin LOU, Jianli QIAN, Zhiping ZHU, Yong BA, Minglong YANG, Tao YANG. Application of Integrated Geophysical,Geochemical and Remote Sensing Prospecting Methods in Lajiu Area,Longzi County,Tibet [J]. Gold Science and Technology, 2024, 32(2): 241-257.
[8] Yong ZHANG, Shuiping LI, Peng JING, Pan FENG. Geochemical Characteristics and Exploration Model of the Jiuzhanggou Gold Deposit,Songxian County,Henan Province [J]. Gold Science and Technology, 2024, 32(2): 258-269.
[9] Xingchun WANG, Haicheng QIU, Jianping LI, Qingquan ZHI, Hua LI, Junjie WU, Xiaohong DENG, Qiong WU. Peripheral Electrical Characteristics and Its Prospecting Significance of Wulong Gold Deposit in Eastern Liaoning Peninsula [J]. Gold Science and Technology, 2024, 32(1): 1-12.
[10] Lei SHI, Xirong WANG, Xiaofeng NING, Fengbin LU, Yanbo XU, Yanan LI. Occurrence State and Enrichment Mechanism of Gold in Nanlü-Xinmu Gold Deposit,Shandong Province [J]. Gold Science and Technology, 2024, 32(1): 41-54.
[11] Gaorui SONG, Xinwei ZHAI, Erteng WANG, Lei WU, Wanfeng CHEN, Feifei ZHENG, Haidong WANG, Jinrong WANG. Properties of Ore-forming Fluids and Genesis of the Huaniushan Gold Deposit in Gansu Province [J]. Gold Science and Technology, 2023, 31(6): 873-887.
[12] Wenfa SHAN, Xiancheng MAO, Zhankun LIU, Hao DENG, Jin CHEN, Wei ZHANG, Haizheng WANG, Xin YANG. Numerical Simulation of Metallogenic Processes of Dayingezhuang Gold Deposit in Jiaodong Peninsula and Its Prospecting Significance [J]. Gold Science and Technology, 2023, 31(5): 707-720.
[13] Fangying XU, Yanhong ZOU, Zhuowei YI, Fuqiang YANG, Xiancheng MAO. ADASYN-CatBoost Method for Intelligent Identification of Logging Lithology Considering Unbalanced Data:A Case Study of Zhaoxian Gold Deposit in Northwestern Jiaodong Peninsula [J]. Gold Science and Technology, 2023, 31(5): 721-735.
[14] Zhongping FAN, Wang ZHANG, Wei WANG. Study on Metallogenic Regularity and Prospecting Prediction of Shanyang-Shangnan Gold Deposits in Shaanxi Province [J]. Gold Science and Technology, 2023, 31(4): 560-579.
[15] Zhigang LIU,Aikui ZHANG,Yongle LIU,Yong ZHANG,Shuyue HE,Feifei SUN. Ar-Ar Dating of Sericite from Aqiyin Gold Deposit in the West Section of East Kunlun and Its Geological Significance [J]. Gold Science and Technology, 2023, 31(3): 378-386.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!