Gold mineralization in the northern margin of the North China Craton: Influence of alkaline magmatism and regional tectonic during Middle Paleozoic-Mesozoic
暂无分享,去创建一个
Kouamelan Serge Kouamelan | Landry Soh Tamehe | Dehui Zhang | Tao Zhang | Jilin Zhang | Konan Roger Assie | A. Kouamelan | Kadio Aka D. Koua | K. N’dri | Mingqian Wu
[1] Jin-Hui Yang,et al. Spatial–temporal distribution and tectonic setting of gold deposits in the Northern margin gold belt of the North China Craton , 2020 .
[2] Shucai Li,et al. Geochronological and geochemical features of the Xiaowulangou complex plutons, Xilinhot, Inner Mongolia, and their geological significance , 2020, Geological Journal.
[3] Li Liu,et al. Genesis of the Jinchanggouliang gold deposit, Chifeng, China: Constraints from fluid inclusions and isotopic geochemistry , 2019 .
[4] Ke Huang,et al. Regional heterogeneous temporal–spatial distribution of gold deposits in the North China Craton: A review , 2019, Geological Journal.
[5] A. Williams-Jones,et al. Evaluating the Use of the Molybdenite Re-Os Chronometer in Dating Gold Mineralization: Evidence from the Haigou Deposit, Northeastern China , 2019, Economic Geology.
[6] Zong-qi Wang,et al. Bainaimiao Arc as an Exotic Terrane Along the Northern Margin of the North China Craton: Evidences From Petrography, Zircon U‐Pb Dating, and Geochemistry of the Early Devonian Deposits , 2019, Tectonics.
[7] E. Carranza,et al. Mineral Paragenesis and Ore‐Forming Processes of the Dongping Gold Deposit, Hebei Province, China , 2019, Resource Geology.
[8] B. Windley,et al. Where and when did the Paleo-Asian ocean form? , 2018, Precambrian Research.
[9] Lin Wu,et al. Indosinian gold mineralization and magmatic-hydrothermal evolution of the Hadamengou gold deposit at the northern margin of the North China Craton: Constraints from K-feldspar laser 40Ar/39Ar dating , 2018, Journal of Geochemical Exploration.
[10] Liang Li,et al. Genesis of the Haigou gold deposit, Jilin Province, NE China: evidence from fluid inclusions, 40Ar/39Ar geochronology and isotopes , 2017 .
[11] T. Algeo,et al. Geochronology and geochemical characteristics of the Dongping ore-bearing granite, North China: Sources and implications for its tectonic setting , 2017 .
[12] H. Thybo,et al. Heat production in granitic rocks: Global analysis based on a new data compilation GRANITE2017 , 2017 .
[13] R. Zhu,et al. Origin of ore-forming fluids of the Haigou gold deposit in the eastern Central Asian Orogenic belt, NE China: Constraints from H-O-He-Ar isotopes , 2017 .
[14] T. Cope. Phanerozoic magmatic tempos of North China , 2017 .
[15] Zhong-lin Xiang,et al. Magmatic hydrothermal origin of the Hadamengou-Liubagou Au-Mo deposit, Inner Mongolia, China: Constrains on geology, stable and Re-Os isotopes , 2017 .
[16] Gongwen Wang,et al. Geochemistry and geochronology of ore-bearing and barren intrusions in the Luanchuan ore fields of East Qinling metallogenic belt, China: Diverse tectonic evolution and implications for mineral exploration , 2017 .
[17] J. Mao,et al. Two Late Cretaceous A-type granites related to the Yingwuling W–Sn polymetallic mineralization in Guangdong province, South China: Implications for petrogenesis, geodynamic setting, and mineralization , 2017 .
[18] Yan Chen,et al. The Mo deposits of Northeast China: A powerful indicator of tectonic settings and associated evolutionary trends , 2017 .
[19] Q. Hou,et al. Devonian alkaline magmatism in the northern North China Craton: Geochemistry, SHRIMP zircon U-Pb geochronology and Sr-Nd-Hf isotopes , 2017 .
[20] Qingfei Wang,et al. Gold mineralization in China: Metallogenic provinces, deposit types and tectonic framework , 2016 .
[21] D. Groves,et al. The conjunction of factors that lead to formation of giant gold provinces and deposits in non-arc settings , 2016 .
[22] D. Groves,et al. The giant Jiaodong gold province: The key to a unified model for orogenic gold deposits? , 2016 .
[23] Jianchao Liu,et al. Geological characteristics and origin of the Hadamengou gold deposit in Inner Mongolia, China , 2016, Arabian Journal of Geosciences.
[24] Da Zhang,et al. Ordovician intrusive rocks from the eastern Central Asian Orogenic Belt in Northeast China: chronology and implications for bidirectional subduction of the early Palaeozoic Palaeo-Asian Ocean , 2016 .
[25] Yan Chen,et al. Sedimentological and geochronological constraints on the Carboniferous evolution of central Inner Mongolia, southeastern Central Asian Orogenic Belt: Inland sea deposition in a post-orogenic setting , 2016 .
[26] H. Fan,et al. Late Mesozoic Gold Mineralization in the North China Craton , 2016 .
[27] Wencan Liu,et al. Early Paleozoic magmatic history of central Inner Mongolia, China: implications for the tectonic evolution of the Southeast Central Asian Orogenic Belt , 2016, International Journal of Earth Sciences.
[28] Jun Deng,et al. Geochronology and geochemistry of granitoids related to the giant Dahutang tungsten deposit, middle Yangtze River region, China: Implications for petrogenesis, geodynamic setting, and mineralization , 2015 .
[29] M. Santosh,et al. Early Cretaceous magma flare-up and its implications on gold mineralization in the Jiaodong Peninsula, China , 2015 .
[30] M. Santosh,et al. The ‘Jiaodong type’ gold deposits: Characteristics, origin and prospecting , 2015 .
[31] Hong Xu,et al. Ore petrography and chemistry of the tellurides from the Dongping gold deposit, Hebei Province, China , 2015 .
[32] Y. Niu,et al. Late Triassic adakitic plutons within the Archean terrane of the North China Craton: Melting of the ancient lower crust at the onset of the lithospheric destruction , 2015 .
[33] Yufeng Zhai,et al. Study on the Metallogenic Geochronology of the Jinchanggouliang Gold Deposit in Inner Mongolia , 2014 .
[34] Xiaoming Sun,et al. Bangbu: the Largest Cenozic Orogenic Gold Deposit in Southern Tibet, China , 2014 .
[35] F. Moore,et al. Discriminating productive and barren porphyry copper deposits in the southeastern part of the central Iranian volcano-plutonic belt, Kerman region, Iran: A review , 2014 .
[36] Wei-dong Sun,et al. U-Pb dating of hydrothermal zircon from the Dongping gold deposit in North China: Constraints on the mineralization processes , 2014 .
[37] Yue Zhao,et al. Origin and evolution of the Bainaimiao arc belt: Implications for crustal growth in the southern Central Asian orogenic belt , 2014 .
[38] N. Akinfiev,et al. Gold speciation and transport in geological fluids: insights from experiments and physical-chemical modelling , 2014 .
[39] J. Ridley,et al. Evidence for exsolution of Au-ore fluids from granites crystallized in the mid-crust, Archaean Louis Lake Batholith, Wyoming , 2014 .
[40] M. Santosh,et al. The dilemma of the Jiaodong gold deposits: Are they unique? , 2014 .
[41] J. Vervoort,et al. Guidelines for reporting zircon Hf isotopic data by LA-MC-ICPMS and potential pitfalls in the interpretation of these data , 2014 .
[42] Zhang Cha. Characteristics of sulfur isotope geochemistry of the Xincheng gold deposit Northwest Jiaodong China , 2014 .
[43] Miao Lai-chen. Tectonic setting of Mesozoic magmatism and associated metallogenesis in Beishan area , 2014 .
[44] M. Santosh,et al. Metallogeny and craton destruction: Records from the North China Craton , 2014 .
[45] P. Srivastava,et al. Hydrothermal Fluids of Magmatic Origin , 2014 .
[46] J. Li,et al. Timing and Location of the Collision between North China Craton and Siberian Plate: New Evidence of Zircon U-Pb ages of Linxi Formation and its intrusion in Linxi region, Inner Mongolia , 2013 .
[47] J. Charvet,et al. Middle Paleozoic convergent orogenic belts in western Inner Mongolia (China): framework, kinematics, geochronology and implications for tectonic evolution of the Central Asian Orogenic Belt , 2013 .
[48] B. Dai,et al. Multiple sources for the origin of Late Jurassic Linglong adakitic granite in the Shandong Peninsula, eastern China: Zircon U-Pb geochronological, geochemical and Sr-Nd-Hf isotopic evidence , 2013 .
[49] Mei-Fu Zhou,et al. Geology, mineralization, and geochronology of the Qianhe gold deposit, Xiong’ershan area, southern North China Craton , 2013, Mineralium Deposita.
[50] D. Günther,et al. A “wire” signal smoothing device for laser ablation inductively coupled plasma mass spectrometry analysis , 2012 .
[51] S. Wilde,et al. Reactivation of the Archean lower crust: Implications for zircon geochronology, elemental and Sr-Nd-Hf isotopic geochemistry of late Mesozoic granitoids from northwestern Jiaodong Terrane, the North China Craton , 2012 .
[52] Xiaohui Zhang,et al. Contrasting Triassic ferroan granitoids from northwestern Liaoning, North China: Magmatic monitor of Mesozoic decratonization and a craton–orogen boundary , 2012 .
[53] Xiaohui Zhang,et al. Carboniferous appinitic intrusions from the northern North China craton: geochemistry, petrogenesis and tectonic implications , 2012, Journal of the Geological Society.
[54] J. Richards,et al. High Sr/Y Magmas Reflect Arc Maturity, High Magmatic Water Content, and Porphyry Cu ± Mo ± Au Potential: Examples from the Tethyan Arcs of Central and Eastern Iran and Western Pakistan , 2012 .
[55] T. Kusky,et al. The Cretaceous Duimiangou adakite-like intrusion from the Chifeng region, northern North China Craton: Crustal contamination of basaltic magma in an intracontinental extensional environment , 2012 .
[56] W. Hui. The alkaline plutons in eastern part of Guyang County,Inner Mongolia:Geochronology,petrogenesis and tectonic implications , 2012 .
[57] W. Yong,et al. Zircon U-Pb ages and Sr-Nd-Hf isotopic composition of the Haigou granitoids at the northeastern margin of North China Craton:Implications for geodynamic setting , 2012 .
[58] Pengtao Yang,et al. Zircon U–Pb chronology of the Jianping Complex: Implications for the Precambrian crustal evolution history of the northern margin of North China Craton , 2011 .
[59] M. Santosh,et al. The early Precambrian odyssey of the North China Craton: A synoptic overview , 2011 .
[60] Yongfeng Zhu,et al. Geochemistry of hydrothermal gold deposits: A review , 2011 .
[61] Hong‐fu Zhang,et al. Crust–mantle interaction in the central North China Craton during the Mesozoic: Evidence from zircon U–Pb chronology, Hf isotope and geochemistry of syenitic–monzonitic intrusions from Shanxi province , 2011 .
[62] Pengtao Yang,et al. Geochemistry and zircon U-Pb-Hf isotopic systematics of the Neoarchean Yixian-Fuxin greenstone belt, northern margin of the North China Craton: Implications for petrogenesis and tectonic setting , 2011 .
[63] Yue-heng Yang,et al. Mafic and felsic magma interaction during the construction of high-K calc-alkaline plutons within a metacratonic passive margin: The Early Permian Guyang batholith from the northern North China Craton , 2011 .
[64] S. Wilde,et al. Early Permian high-K calc-alkaline volcanic rocks from NW Inner Mongolia, North China: geochemistry, origin and tectonic implications , 2011, Journal of the Geological Society.
[65] Yang Wei-long. Stable Isotopic Geochemistry of the Liubagou-Hadamengou Gold Deposit in Inner Mongolia , 2011 .
[66] Wang Zhi-gang. Ore-forming fluid characteristics and metallogenic mechanism of Haigou gold deposit in Antu of Jilin , 2011 .
[67] Z. Ke. Geochronology and Geochemistry of Shadegai Granites in Wulashan Area,Inner Mongolia and Its Geological Significance , 2011 .
[68] B. Shafiei. Lead isotope signatures of the igneous rocks and porphyry copper deposits from the Kerman Cenozoic magmatic arc (SE Iran), and their magmatic-metallogenetic implications , 2010 .
[69] M. Zhai,et al. Early Devonian alkaline intrusive complex from the northern North China craton: a petrological monitor of post-collisional tectonics , 2010, Journal of the Geological Society.
[70] Hong-lin Yuan,et al. Permian-Triassic (260-220 Ma) crustal growth of Eastern Central Asian orogenic belt as revealed by detrital zircon studies , 2010, American Journal of Science.
[71] Dunyi Liu,et al. Devonian A-type granitic magmatism on the northern margin of the North China Craton: SHRIMP U–Pb zircon dating and Hf-isotopes of the Hongshan granite at Chifeng, Inner Mongolia, China , 2010 .
[72] Jin-Hui Yang,et al. Precise U-Pb and Th-Pb age determination of kimberlitic perovskites by secondary ion mass spectrometry , 2010 .
[73] R. Sillitoe. Porphyry Copper Systems , 2010 .
[74] Shan Gao,et al. Continental and Oceanic Crust Recycling-induced Melt^Peridotite Interactions in the Trans-North China Orogen: U^Pb Dating, Hf Isotopes and Trace Elements in Zircons from Mantle Xenoliths , 2010 .
[75] Peter A. Cawood,et al. Metallogeny of accretionary orogens - The connection between lithospheric processes and metal endowment , 2009 .
[76] P. Spry,et al. Understanding gold-(silver)-telluride-(selenide) mineral deposits , 2009 .
[77] Yue Zhao,et al. Early Permian plutons from the northern North China Block: constraints on continental arc evolution and convergent margin magmatism related to the Central Asian Orogenic Belt , 2009 .
[78] Yue-heng Yang,et al. In situ perovskite Sr–Nd isotopic constraints on the petrogenesis of the Ordovician Mengyin kimberlites in the North China Craton , 2009 .
[79] Qingfei Wang,et al. Fluid Evolution and Metallogenic Dynamics during Tectonic Regime Transition: Example from the Jiapigou Gold Belt in Northeast China , 2009 .
[80] Li Yinqing. Geochemical Characteristics of the Ore ‐ forming Fluids of the Haigou Gold Deposit, Jilin , 2009 .
[81] F. Pirajno,et al. Isotope systematics and fluid inclusion studies of the Qiyugou breccia pipe-hosted gold deposit, Qinling Orogen, Henan province, China: Implications for ore genesis , 2009 .
[82] C. Yuan,et al. End-Permian to mid-Triassic termination of the accretionary processes of the southern Altaids: implications for the geodynamic evolution, Phanerozoic continental growth, and metallogeny of Central Asia , 2009 .
[83] S. Wilde,et al. Geochemistry of Middle Triassic gabbros from northern Liaoning, North China: origin and tectonic implications , 2008, Geological Magazine.
[84] Lianchang Zhang,et al. Mantle-Derived Fluids Involved in Large-Scale Gold Mineralization, Jiaodong District, China: Constraints Provided by the He-Ar and H-O Isotopic Systems , 2008 .
[85] Simon A. Wilde,et al. A Jurassic peraluminous leucogranite from Yiwulüshan, western Liaoning, North China craton: age, origin and tectonic significance , 2008, Geological Magazine.
[86] Z. Kun. Diagenetic epoch and genesis of Haigou rock bodies , 2008 .
[87] S. Wilde,et al. Petrogenesis of an Alkali Syenite–Granite–Rhyolite Suite in the Yanshan Fold and Thrust Belt, Eastern North China Craton: Geochronological, Geochemical and Nd–Sr–Hf Isotopic Evidence for Lithospheric Thinning , 2007 .
[88] Yue Zhao,et al. The 1.75–1.68 Ga anorthosite-mangerite-alkali granitoid-rapakivi granite suite from the northern North China Craton: Magmatism related to a Paleoproterozoic orogen , 2007 .
[89] S. Wilde,et al. The Hulan Group: Its role in the evolution of the Central Asian Orogenic Belt of NE China , 2007 .
[90] Brian F. Windley,et al. Tectonic models for accretion of the Central Asian Orogenic Belt , 2007, Journal of the Geological Society.
[91] W. Hui. Zircon SHRIMP U-Pb age of the dioritic rocks from northern Hebei:the geological records of late Paleozoic magmatic arc. , 2007 .
[92] S. Wilde,et al. Constraints on the timing of uplift of the Yanshan Fold and Thrust Belt, North China , 2006 .
[93] E. N. Terekhov,et al. Genesis of positive Eu anomalies in acid rocks from the Eastern Baltic Shield , 2006 .
[94] Yue-heng Yang,et al. Contrasting Late Carboniferous and Late Permian–Middle Triassic intrusive suites from the northern margin of the North China craton: Geochronology, petrogenesis, and tectonic implications , 2006 .
[95] W. Fan,et al. Geology, geochronology, and tectonic setting of the Jiapigou gold deposits, southern Jilin Province, China , 2005 .
[96] S. Wilde,et al. Nd isotopic constraints on crustal formation in the North China Craton , 2005 .
[97] Neng Jiang. Petrology and geochemistry of the Shuiquangou syenitic complex, northern margin of the North China Craton , 2005, Journal of the Geological Society.
[98] Cai Hongjun. Geological Characteristics and Prospective Value of Greenstone Type Gold Deposits of Central Part of Inner Mongolia Autonomous Area , 2005 .
[99] Guo Jing. Evolution of syn-to post-collisional magmatism from north Sulu UHP belt,eastern China:zircon U-Pb geochronology. , 2005 .
[100] Wei Xu,et al. Cretaceous high-potassium intrusive rocks in the Yueshan-Hongzhen area of east China: Adakites in an extensional tectonic regime within a continent , 2004 .
[101] F. Nie,et al. Intrusion‐Related Gold Deposits of North China Craton, People's Republic of China , 2004 .
[102] P. Blevin. Redox and Compositional Parameters for Interpreting the Granitoid Metallogeny of Eastern Australia: Implications for Gold‐rich Ore Systems , 2004 .
[103] Ma Fang. Geochronology and Geologic Significance of the Orbicular Dioritic Rocks in Luanping, Hebei Province , 2004 .
[104] J. Li,et al. HYDROTHERMAL METALLOGENY OF THE SHANGGONG GOLD DEPOSIT,EAST QINLING:STUDIES ON ORE GEOLOGY AND FLUID INCLUSION GEOCHEMISTRY , 2004 .
[105] B. Jahn. The Central Asian Orogenic Belt and growth of the continental crust in the Phanerozoic , 2004, Geological Society, London, Special Publications.
[106] WangJianping,et al. Metallogenic Effect of Transition of Tectonic Dynamic System , 2004 .
[107] B. Windley,et al. Accretion leading to collision and the Permian Solonker suture, Inner Mongolia, China: Termination of the central Asian orogenic belt , 2003 .
[108] S. Wilde,et al. A review of the geodynamic setting of large-scale Late Mesozoic gold mineralization in the North China Craton: an association with lithospheric thinning , 2003 .
[109] D. Groves,et al. SHRIMP U-Pb Zircon Ages of Granitoids in the Wulashan Gold Deposit, Inner Mongolia, China: Timing of Mineralization and Tectonic Implications , 2003 .
[110] Yinqi Li,et al. Fluid Inclusion and Noble Gas Studies of the Dongping Gold Deposit, Hebei Province, China: A Mantle Connection for Mineralization? , 2003 .
[111] Deng Jun,et al. Evidence of mantle-rooted fluids and multi-level circulation ore-forming dynamics: A case study from the Xiadian gold deposit, Shandong province, China , 2003, Science in China Series D Earth Sciences.
[112] Yuanchao Shen,et al. Isotopic Geochronology of the Late Paleozoic Kanggur Gold Deposit of East Tianshan Mountains, Xinjiang, NW China , 2002 .
[113] X. Su,et al. Geological features and origin of gold deposits occurring in the Baotou–Bayan Obo district, south-central Inner Mongolia, People's Republic of China , 2002 .
[114] S. Wilde,et al. A-type granites in northeastern China: age and geochemical constraints on their petrogenesis , 2002 .
[115] D. Groves,et al. SHRIMP U–Pb zircon geochronology of granitoids from Dongping area, Hebei Province, China: constraints on tectonic evolution and geodynamic setting for gold metallogeny , 2002 .
[116] W. Griffin,et al. Zircon chemistry and magma mixing, SE China: In-situ analysis of Hf isotopes, Tonglu and Pingtan igneous complexes , 2002 .
[117] M. L. Miller,et al. Gold deposits of the northern margin of the North China Craton: multiple late Paleozoic–Mesozoic mineralizing events , 2002 .
[118] R. Goldfarb,et al. Tectonics and distribution of gold deposits in China – an overview , 2002 .
[119] K. Kelley,et al. Cripple Creek and other alkaline-related gold deposits in the southern Rocky Mountains, USA: influence of regional tectonics , 2002 .
[120] R. Sillitoe. Some metallogenic features of gold and copper deposits related to alkaline rocks and consequences for exploration , 2002 .
[121] Zhang Yan. Single grain zircon U-Pb ages of the Huangniling granite in Jilin province , 2002 .
[122] S. Wilde,et al. Development of the North China Craton During the Late Archaean and its Final Amalgamation at 1.8 Ga: Some Speculations on its Position Within a Global Palaeoproterozoic Supercontinent , 2002 .
[123] Calvin G. Barnes,et al. A Geochemical Classification for Granitic Rocks , 2001 .
[124] J. R. Lang,et al. Intrusion-related gold systems: the present level of understanding , 2001 .
[125] Peter A. Cawood,et al. Archean blocks and their boundaries in the North China Craton: lithological, geochemical, structural and P–T path constraints and tectonic evolution , 2001 .
[126] G. Gehrels,et al. Mesozoic tectonic evolution of the Yanshan fold and thrust belt, with emphasis on Hebei and Liaoning provinces, northern China , 2001 .
[127] D. Groves,et al. The geodynamics of world-class gold deposits: characteristics, space-time distribution, and origins , 2000 .
[128] Z. Jiong. On the Jixian?type mid?upper Proterozoic sedimentaryenvironment and the character of Inner Mongolian Axis , 2000 .
[129] D. Groves,et al. First evidence of >3.2 Ga continental crust in the Yangtze craton of south China and its implications for Archean crustal evolution and Phanerozoic tectonics , 2000 .
[130] B. Jahn. Sm-Nd Isotope Tracer Study of UHP Metamorphic Rocks: Implications for Continental Subduction and Collisional Tectonics , 1999 .
[131] R. Ramesh,et al. Carbon isotopes in Kerguelen plume-derived carbonatites: evidence for recycled inorganic carbon , 1999 .
[132] J. R. Lang,et al. Intrusion-related gold deposits associated with tungsten-tin provinces , 1999 .
[133] Peter A. Cawood,et al. Thermal evolution of two textural types of mafic granulites in the North China craton: evidence for both mantle plume and collisional tectonics , 1999, Geological Magazine.
[134] B. Chappell. Aluminium saturation in I- and S-type granites and the characterization of fractionated haplogranites , 1999 .
[135] Guowei Zhang,et al. Timing of collision of the North and South China blocks: Controversy and reconciliation , 1999 .
[136] A. Kröner,et al. Single zircon ages from high-grade rocks of the Jianping Complex, Liaoning Province, NE China , 1998 .
[137] A. Imai,et al. Hydrogen Isotope Study of Fluid Inclusions in Vein Quartz of the Hishikari Gold Deposits, Japan , 1998 .
[138] F. Nie. Geology and Origin of the Dongping Alkalic‐Type Gold Deposit, Northern Hebei Province, People's Republic of China , 1998 .
[139] Richard J. Goldfarb,et al. Tectonic setting of synorogenic gold deposits of the Pacific Rim , 1998 .
[140] W. Ramsay,et al. Turbidite-hosted gold deposits of central Victoria, Australia; their regional setting, mineralising styles, and some genetic constraints , 1998 .
[141] G. Gehrels,et al. The enigmatic Yinshan fold-and-thrust belt of northern China: New views on its intraplate contractional styles , 1998 .
[142] Bin Chen,et al. Framework and evolution of the middle Paleozoic orogenic belt between Siberian and North China Plates in northern Inner Mongolia , 1997 .
[143] F. Albarède,et al. Separation of Hf and Lu for high-precision isotope analysis of rock samples by magnetic sector-multiple collector ICP-MS , 1997 .
[144] F. Nie. Type and Distribution of Gold Deposits along the Northern Margin of the North China Craton, People's Republic of China , 1997 .
[145] H. Taylor. Oxygen and hydrogen isotope relationships in hydrothermal mineral deposits , 1997 .
[146] R. Trumbull,et al. Granitoid-hosted gold deposits in the Anjiayingzi District of Inner Mongolia, People's Republic of China , 1996 .
[147] D. Groves,et al. Radiothermal Granites of the Cullen Batholith and Associated Mineralisation (Australia) , 1996 .
[148] Mao Jingwen,et al. Geology and Geochemistry of the Dongping Gold Telluride Deposit, Heibei Province, North China , 1995 .
[149] G. Morrison,et al. Adularia in epithermal veins, Queensland: morphology, structural state and origin , 1995 .
[150] D. Groves,et al. Genetic types of gold deposits in the Archaean North China Craton and their geological features , 1995 .
[151] F. Nie,et al. Lead and sulfur isotope studies of the Wulashan quartz-K feldspar and quartz vein gold deposit, southwestern Inner Mongolia, People's Republic of China , 1994 .
[152] J. Lowenstern,et al. The role of magmas in the formation of hydrothermal ore deposits , 1994, Nature.
[153] X. Jiawei,et al. Tectonic Models of the Tan-Lu Fault Zone, Eastern China , 1994 .
[154] David Swinbanks,et al. Earthquake 'forecasters' face their critics in Japan , 1994, Nature.
[155] F. Nie. Genesis of the Bieluwutu Volcanogenic Copper Deposit, South-Central Inner Mongolia, People's Republic of China , 1993 .
[156] A. Şengör,et al. Evolution of the Altaid tectonic collage and Palaeozoic crustal growth in Eurasia , 1993, Nature.
[157] G. Eby. Chemical subdivision of the A-type granitoids:Petrogenetic and tectonic implications , 1992 .
[158] A. Nutman,et al. Remnants of ≥3800 Ma crust in the Chinese part of the Sino-Korean craton , 1992 .
[159] P. Hunt,et al. A compilation of K-Ar ages report 21 , 1992 .
[160] B. Nesbitt,et al. Stable isotopic constraints on the nature of the syntectonic fluid regime of the Canadian Cordillera , 1991 .
[161] B. Lehmann. Metallogeny of Tin , 1991 .
[162] M. Drummond,et al. Derivation of some modern arc magmas by melting of young subducted lithosphere , 1990, Nature.
[163] K. Tang. Tectonic development of Paleozoic foldbelts at the north margin of the Sino‐Korean Craton , 1990 .
[164] T. Kwak. Geochemical and temperature controls on ore mineralization at the Emperor gold mine, Vatukoula, Fiji , 1990 .
[165] F. Robert,et al. Observations on gold deposits in North China Platform , 1990 .
[166] Henian Wang,et al. Tanlu Fracture Zone, East China: An Element of an Ancient Transform Belt? , 1990 .
[167] P. Piccoli,et al. Tectonic discrimination of granitoids , 1989 .
[168] H. Barnes,et al. The solubility of Ag2S in near-neutral aqueous sulfide solutions at 25 to 300°C☆ , 1989 .
[169] W. McDonough,et al. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes , 1989, Geological Society, London, Special Publications.
[170] B. Nesbitt. Gold deposit continuum: A genetic model for lode Au mineralization in the continental crust , 1988 .
[171] H. Martin. Petrogenesis of Archaean Trondhjemites, Tonalites, and Granodiorites from Eastern Finland: Major and Trace Element Geochemistry , 1987 .
[172] J. Whalen,et al. A-type granites: geochemical characteristics, discrimination and petrogenesis , 1987 .
[173] J. Anderson,et al. Crust-Enriched, Mantle-Derived Tonalites in the Early Proterozoic Penokean Orogen of Wisconsin , 1987, The Journal of Geology.
[174] D. O. Hayba,et al. Comparative anatomy of volcanic-hosted epithermal deposits; acid-sulfate and adularia-sericite types , 1987 .
[175] J. Liégeois,et al. Alkaline magmatism subsequent to collision in the Pan-African belt of the Adrar des Iforas (Mali) , 1987, Geological Society, London, Special Publications.
[176] Xueya Liu,et al. Paleoplate tectonics between Cathaysia and Angaraland in inner Mongolia of China , 1986 .
[177] D. Burrows,et al. Carbon isotope evidence for a magmatic origin for Archaean gold-quartz vein ore deposits , 1986, Nature.
[178] R. Fifarek,et al. Light stable-isotopes systematics in the epithermal environment , 1985 .
[179] H. Eugster. Granites and hydrothermal ore deposits: a geochemical framework , 1985, Mineralogical Magazine.
[180] A. Kröner,et al. Multi-chronometric ages and origin of Archaean tonalitic gneisses in Finnish Lapland: A case for long crustal residence time , 1984 .
[181] A. Tindle,et al. Trace Element Discrimination Diagrams for the Tectonic Interpretation of Granitic Rocks , 1984 .
[182] G. P. Watson,et al. The Macassa Mine Archean lode gold deposit, Kirkland Lake, Ontario; geology, patterns of alteration, and hydrothermal regimes , 1984 .
[183] F. Mutschler,et al. Allard stock, La Plata Mountains, Colorado—an alkaline rock-hosted porphyry copper – precious metal deposit , 1984 .
[184] W. Collins,et al. Nature and origin of A-type granites with particular reference to southeastern Australia , 1982 .
[185] B. Doe,et al. Plumbotectonics-the model , 1981 .
[186] J. K. Greenberg. Characteristics and Origin of Egyptian Younger Granites , 1981 .
[187] S. Ishihara. The granitoid series and mineralization , 1981 .
[188] W. Fyfe,et al. The gold—carbonate association: Source of CO2, and CO2 fixation reactions in Archaean lode deposits , 1981 .
[189] J. Leterrier,et al. A classification of volcanic and plutonic rocks using R1R2-diagram and major-element analyses — Its relationships with current nomenclature , 1980 .
[190] S. Ishihara. The Magnetite-series and Ilmenite-series Granitic Rocks , 1977 .
[191] B. Chappell,et al. Two contrasting granite types , 1974 .
[192] T. Seward. Thio complexes of gold and the transport of gold in hydrothermal ore solutions , 1973 .
[193] H. Ohmoto. Systematics of Sulfur and Carbon Isotopes in Hydrothermal Ore Deposits , 1972 .
[194] J. B. Wright. A simple alkalinity ratio and its application to questions of non-orogenic granite genesis , 1969, Geological Magazine.