Major and Trace Element Geochemistry of Pyrite and Pyrrhotite from Stratiform and Lamellar Orebodies: Implications for the Ore Genesis of the Dongguashan Copper (Gold) Deposit, Eastern China
暂无分享,去创建一个
Yong-jun Shao | Nan Liu | Jiandong Zhang | Zhong-fa Liu | Cheng Wang | Qing-quan Liu | Haodi Zhou | Kuanxin Huang
[1] C. Ryan,et al. Geochemistry of Au-bearing pyrite from the Sepon Mineral District, Laos DPR, Southeast Asia: Implications for ore genesis , 2018, Journal of Asian Earth Sciences.
[2] Yu Zhang,et al. Trace Element Analysis of Pyrite from the Zhengchong Gold Deposit, Northeast Hunan Province, China: Implications for the Ore-Forming Process , 2018, Minerals.
[3] A. Stepanov,et al. Whole rock and discrete pyrite geochemistry as complementary tracers of ancient ocean chemistry: An example from the Neoproterozoic Doushantuo Formation, China , 2017 .
[4] Jianping Liu,et al. Indium Mineralization in the Xianghualing Sn-Polymetallic Orefield in Southern Hunan, Southern China , 2017 .
[5] Yu Zhang,et al. LA-ICP-MS trace element geochemistry of garnets: Constraints on hydrothermal fluid evolution and genesis of the Xinqiao Cu–S–Fe–Au deposit, eastern China , 2017 .
[6] Cheng Linjie,et al. Sulfide zonal texture and its geological significance of ores from the Dongguashan copper( gold) deposit in Tongling,Anhui Province,China , 2016 .
[7] T. Lyons,et al. Trace Element Content of Sedimentary Pyrite in Black Shales , 2015 .
[8] Mei-Fu Zhou,et al. Geochemistry of magnetite from Proterozoic Fe-Cu deposits in the Kangdian metallogenic province, SW China , 2015, Mineralium Deposita.
[9] Yang Zhe. Mineralogy typomorphic characteristics of pyrrhotite and mineralization significance of Yangla copper deposit Yunnan China , 2014 .
[10] Liu Zhong. Hydrogen,oxygen,sulfur and lead isotope composition tracing for the ore-forming material source of Dongguashan copper( gold) deposit in Tongling,Anhui Province , 2014 .
[11] X. Xiao. Metallogenic model for the copper-gold-polymetallic deposits in Shizishan ore-field,Tongling,Anhui Province , 2014 .
[12] Liu Zhong. Characteristics of ore-forming fluids and metallogenic process of Dongguashan copper (gold) deposit in Anhui Province , 2014 .
[13] Weimin Guo,et al. Chronology, Hf isotopes, geochemistry, and petrogenesis of the magmatic rocks in the Shizishan ore field of Tongling, Anhui Province , 2013, Science China Earth Sciences.
[14] K. Haase,et al. Trace element systematics of pyrite from submarine hydrothermal vents , 2013 .
[15] Li Ming-ze. Zircon U-Pb dating of high-K calc-alkaline intrusive rocks from Tongling: Implications for the tectonic setting , 2013 .
[16] Lang Xing-hai. Typomorphic Characteristics and Significance of Pyrrhotite in Xiongcun Cu-Au Deposit , 2012 .
[17] X. Xiao. Re-understanding of the geological and geochemical characteristics of the Mesozoic intrusive rocks from Tongling area of Anhui Province,and discussions on their genesis , 2012 .
[18] F. Pirajno,et al. A tectono-genetic model for porphyry-skarn-stratabound Cu-Au-Mo-Fe and magnetite-apatite deposits along the Middle-Lower Yangtze River Valley, Eastern China , 2011 .
[19] R. Frost,et al. Thermodynamic study of the association and separation of copper and gold in the Shizishan ore field, Tongling, Anhui Province, China , 2011 .
[20] G. Beaudoin,et al. Discriminant diagrams for iron oxide trace element fingerprinting of mineral deposit types , 2011 .
[21] Jiang Shaoyong. Discovery and Significance of Carbonate Mud Mounds from Cu-polymetallic Deposits in the Middle and Lower Yangtze Metallogenic Belt: Examples from the Wushan and Dongguashan Deposits , 2011 .
[22] Hou Zengqian. The Large-Scale Dongguashan deposit, Shizishan district in East China: Carboniferous Sedex-type Massive Sulfides Overprinted by Late Jurassic Skarn Cu Mineralization , 2011 .
[23] Xu Zhaowen. The Superimposed Mineralization of the Dongguashan Cu Deposit in Tongling Area,Anhui Province: Evidence from the Ore Texture , 2011 .
[24] H. Frimmel,et al. Trace-element characteristics of different pyrite types in Mesoarchaean to Palaeoproterozoic placer deposits , 2010 .
[25] Guo Wei. Ore textures and genetic significance of pyrrhotite from Dongguashan ore deposit in Tongling area,Anhui Province , 2010 .
[26] X. Xiao. Origin of Dongguashan stratabound Cu-Au skarn deposit in Tongling:Restraints of sulfur isotope , 2010 .
[27] R. Large,et al. Gold and Trace Element Zonation in Pyrite Using a Laser Imaging Technique: Implications for the Timing of Gold in Orogenic and Carlin-Style Sediment-Hosted Deposits , 2009 .
[28] N. Cook,et al. Textural control on gold distribution in As-free pyrite from the Dongping, Huangtuliang and Hougou gold deposits, North China Craton (Hebei Province, China) , 2009 .
[29] Nie Gui-ping. Metallogenic geological settings and genesis of Dongguashan stratified copper deposit , 2009 .
[30] Mao Jing,et al. Mineral deposit model for porphyry-skarn polymetallic copper deposits in Tongling ore dense district of Middle-Lower Yangtze Valley metallogenic belt , 2009 .
[31] L. Jian. A metallogenic model for the Dongguashan Cu-Au deposit of Tongling,Anhui Province , 2008 .
[32] F. Robert,et al. Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena gold province, Russia , 2007 .
[33] K. Zaw,et al. Distinctive features of Late Palaeozoic massive sulphide deposits in South China , 2007 .
[34] Xu Zhaowen. Isotope Geochemistry and Mineralization in the Dongguashan Diplogenetic Stratified Copper Deposit, Tongling Area , 2007 .
[35] Cao Ji-fei. MINERAL GEOCHEMISTRY IN THE DASHUI DIORITE-TYPE GOLD DEPOSIT,GANSU PROVINCE , 2007 .
[36] Li Hongyang. Geochemical Characteristics of the Dongguashan Copper Deposit in Anhui Province , 2006 .
[37] Zhusen Yang,et al. Numerical Simulation of Fluid Migration during Ore Formation of Carboniferous Exhalation‐Sedimentary Massive Sulfide Deposits in the Tongling District, Anhui Province , 2005 .
[38] Zeng Pu-sheng. The Dongguashan Deposit in the Tongling Mineralization Cluster Area, Anhui: A Large-sized Superimposition-type Copper Deposit , 2005 .
[39] Zhou Xue. Study of Pyrite Typomorphic Characteristics of Wulong Quartz-Vein-Type Gold Deposit in Dandong, Liaoning Province, China , 2005 .
[40] Zeng Fan-zhi. THE PYRITE'S TYPOMORPHIC CHARACTERISTICS IN GOLD DEPOSIT , 2005 .
[41] Lu Jian-ju. A Two-Stage Model for Formation of the Dongguashan Cu-Au Deposit , 2003 .
[42] W. Ridley,et al. Development of sulfide calibration standards for the laser ablation inductively-coupled plasma mass spectrometry technique , 2002 .
[43] Yuanming Pan,et al. The Lower Changjiang (Yangzi/Yangtze River) metallogenic belt, east central China: intrusion- and wall rock-hosted Cu–Fe–Au, Mo, Zn, Pb, Ag deposits , 1999 .
[44] J. A. Rodríguez-Losada,et al. Ancient oxide- and sulphide-mineralization in the islands of Tenerife and La Gomera (Canary Archipelago, Spain) , 1998 .
[45] G. McMahon,et al. Pt, Pd and other trace elements in sulfides of the Main Sulfide Zone, Great Dyke, Zimbabwe; a reconnaissance study , 1997 .
[46] M. Xingyuan,et al. Precambrian crustal evolution of eastern Asia , 1989 .
[47] P. Seccombe,et al. Trace element distribution, Co:Ni ratios and genesis of the big cadia iron-copper deposit, new south wales, australia , 1987 .
[48] G. Sabatini,et al. A revaluation of the Co/Ni ratio in pyrite as geochemical tool in ore genesis problems , 1979 .
[49] R. G. Arnold. Pyrrhotite phase relation below 304 , 1969 .
[50] F. M. Vokes. Linnaeite from the Precambrian Raipas group of Finnmark, Norway , 1967 .
[51] R. H. Carpenter,et al. Range in solid solution and structure of naturally occurring troilite and pyrrhotite , 1964 .