Origin of the Luping Pb deposit in the Beiya area, Yunnan Province, SW China: Constraints from geology, isotope geochemistry and geochronology
暂无分享,去创建一个
L. Ye | Zhilong Huang | Jiaxi Zhou | Hairui Sun | S. Dou | Yinliang Cui | Bo Li | Ting Gan
[1] Qingfei Wang,et al. Geology and genesis of the giant Beiya porphyry–skarn gold deposit, northwestern Yangtze Block, China , 2015 .
[2] Huan Liu,et al. Geochemistry and geochronology of porphyries from the Beiya gold–polymetallic orefield, western Yunnan, China , 2015 .
[3] Z. Hou,et al. Geodynamics and Metallogeny of the Eastern Tethyan Metallogenic Domain , 2014 .
[4] Zhilong Huang,et al. Geology, isotope geochemistry and ore genesis of the Shanshulin carbonate-hosted Pb–Zn deposit, southwest China , 2014 .
[5] Qingfei Wang,et al. Cenozoic tectono-magmatic and metallogenic processes in the Sanjiang region, southwestern China , 2014 .
[6] G. Olivo,et al. Genesis of the Proterozoic Mangabeira tin–indium mineralization, Central Brazil: Evidence from geology, petrology, fluid inclusion and stable isotope data , 2014 .
[7] G. Dipple,et al. Isotope Geochemistry of the Northeast Zone, Mount Polley Alkalic Cu-Au-Ag Porphyry Deposit, British Columbia: A Case for Carbonate Assimilation , 2014 .
[8] R. Berry,et al. Mineralization, U-Pb Geochronology, and Stable Isotope Geochemistry of the Lower Main Zone of the Lorraine Deposit, North-Central British Columbia: A Replacement-Style Alkalic Cu-Au Porphyry , 2014 .
[9] P. Muchez,et al. Zinc, sulfur and lead isotopic variations in carbonate-hosted Pb–Zn sulfide deposits, southwest China , 2014 .
[10] F. Pirajno,et al. Distribution of porphyry deposits in the Eurasian continent and their corresponding tectonic settings , 2014 .
[11] R. Hu,et al. Origin of the ore-forming fluids of the Tongchang porphyry Cu–Mo deposit in the Jinshajiang–Red River alkaline igneous belt, SW China: Constraints from He, Ar and S isotopes , 2014 .
[12] E. Carranza,et al. Sulfur and lead isotopes of Guern Halfaya and Bou Grine deposits (Domes zone, northern Tunisia): Implications for sources of metals and timing of mineralization , 2013 .
[13] M. Leybourne,et al. Multiple sources of selenium in ancient seafloor hydrothermal systems: Compositional and Se, S, and Pb isotopic evidence from volcanic-hosted and volcanic-sediment-hosted massive sulfide deposits of the Finlayson Lake District, Yukon, Canada , 2013 .
[14] Zhilong Huang,et al. The origin of the Maozu carbonate-hosted Pb–Zn deposit, southwest China: Constrained by C–O–S–Pb isotopic compositions and Sm–Nd isotopic age , 2013 .
[15] Zhilong Huang,et al. Constraints of C-O-S-Pb isotope compositions and Rb-Sr isotopic age on the origin of the Tianqiao carbonate-hosted Pb-Zn deposit, SW China , 2013 .
[16] Zhilong Huang,et al. Geological and sulfur-lead-strontium isotopic studies of the Shaojiwan Pb-Zn deposit, southwest China: Implications for the origin of hydrothermal fluids , 2013 .
[17] N. White,et al. Petrogenesis and metallogenic setting of the Habo porphyry Cu-(Mo-Au) deposit, Yunnan, China , 2013 .
[18] H. Wen. Zircon U-Pb and molybdenite Re-Os dating for the Beiya gold-polymetallic deposit in the western Yunnan Province and its geological significance , 2013 .
[19] F. Molnár,et al. Metallogenic Model of the Trepča Pb-Zn-Ag Skarn Deposit, Kosovo: Evidence from Fluid Inclusions, Rare Earth Elements, and Stable Isotope Data , 2013 .
[20] R. Hu,et al. Relationships between porphyry Cu–Mo mineralization in the Jinshajiang–Red River metallogenic belt and tectonic activity: Constraints from zircon U–Pb and molybdenite Re–Os geochronology , 2012 .
[21] Peter A. Cawood,et al. Zircon SHRIMP U–Pb geochronology of potassic felsic intrusions in western Yunnan, SW China: Constraints on the relationship of magmatism to the Jinsha suture , 2012 .
[22] H. Wen. Genetic types and the relationship between alkalirich intrusion and mineralization of Beiya gold-polymetallic ore field,western Yunnan Province,China , 2012 .
[23] F. Pirajno,et al. Porphyry Cu–Au–Mo–epithermal Ag–Pb–Zn–distal hydrothermal Au deposits in the Dexing area, Jiangxi province, East China—A linked ore system , 2011 .
[24] L. Yongsheng,et al. Reappraisement and refinement of zircon U-Pb isotope and trace element analyses by LA-ICP-MS , 2010 .
[25] P. Muchez,et al. Pb isotopic constraints on the formation of the Dikulushi Cu–Pb–Zn–Ag mineralisation, Kundelungu Plateau (Democratic Republic of Congo) , 2010 .
[26] Peng Jiantang. An Oxygen and Carbon Isotope Study on the Formation Mode of Calcite in Beiya Gold Deposit,West Yunnan Province,China , 2010 .
[27] 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 .
[28] Nigel J. Cook,et al. Metallogenesis of the Tibetan collisional orogen: A review and introduction to the special issue , 2009 .
[29] Shan Gao,et al. In situ analysis of major and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard , 2008 .
[30] B. Taylor,et al. Sulfur Isotope Evidence for Thermochemical Reduction of Dissolved Sulfate in Mississippi Valley-Type Zinc-Lead Mineralization, Bongara Area, Northern Peru , 2008 .
[31] Changqing Zhang,et al. The relationship of mantle-derived fluids to gold metallogenesis in the Jiaodong Peninsula: Evidence from D–O–C–S isotope systematics , 2008 .
[32] I. Campbell,et al. The Age of the Potassic Alkaline Igneous Rocks along the Ailao Shan–Red River Shear Zone: Implications for the Onset Age of Left‐Lateral Shearing: A Reply , 2008, The Journal of Geology.
[33] Z. Hou,et al. Nature, diversity of deposit types and metallogenic relations of South China , 2007 .
[34] Z. Hou,et al. Sanjiang Tethyan metallogenesis in S.W. China: Tectonic setting, metallogenic epochs and deposit types , 2007 .
[35] Xing‐Wang Xu,et al. Porphyry Cu–Au and associated polymetallic Fe–Cu–Au deposits in the Beiya Area, western Yunnan Province, south China , 2007 .
[36] A. Du,et al. Himalayan Cu–Mo–Au mineralization in the eastern Indo–Asian collision zone: constraints from Re–Os dating of molybdenite , 2006 .
[37] X. Xing. Petrologic,chronological and geochemistry characteristics and formation mechanism of alkaline porphyries in the Beiya gold district,western Yunnan. , 2006 .
[38] P. Muchez,et al. 7: Extensional tectonics and the timing and formation of basin-hosted deposits in Europe , 2005 .
[39] P. Burnard,et al. Helium and argon isotope geochemistry of alkaline intrusion-associated gold and copper deposits along the Red River–Jinshajiang fault belt, SW China , 2004 .
[40] L. Jiajun,et al. An estimate of the lead isotopic compositions of upper mantle and upper crust and implications for the source of lead in the Jinding Pb-Zn deposit in Western Yunnan, China. , 2002 .
[41] Qian Xiang-gui. A PRELIMINARY STUDY ON THE GENETIC MECHANISM OF YAOAN AU DEPOSIT , 2002 .
[42] T. Harrison,et al. A tectonic model for Cenozoic igneous activities in the eastern Indo–Asian collision zone , 2001 .
[43] P. Jian,et al. The Jinshajiang–Ailaoshan Suture Zone, China: tectonostratigraphy, age and evolution , 2000 .
[44] T. Vennemann,et al. Crustal contamination and fluid/rock interaction in the carbonatites of Fuerteventura (Canary Islands, Spain): A C, O, H isotope study , 1998 .
[45] T. Yano,et al. The Machangqing copper-molybdenum deposits, Yunnan, China — an example of Himalayan porphyry-hosted Cu-Mo mineralization , 1998 .
[46] H. Ohmoto. Sulfur and Carbon Isotopes , 1997 .
[47] G. Davidson,et al. Stable isotope evidence for thermochemical sulfate reduction in the Dugald river (Australia) strata-bound shale-hosted zinclead deposit , 1996 .
[48] A. Demény,et al. Stable isotope studies and processes of carbonate formation in Hungarian alkali basalts and lamprophyres: evolution of magmatic fluids and magma-sediment interactions , 1996 .
[49] G. Carr,et al. Precise lead isotope fingerprinting of hydrothermal activity associated with Ordovician to Carboniferous metallogenic events in the Lachlan fold belt of New South Wales , 1995 .
[50] P. Muchez,et al. Geochemical constraints on the origin and migration of palaeofluids at the northern margin of the Variscan foreland, southern Belgium. , 1995 .
[51] D. Gray,et al. Rock‐buffered fluid‐rock interaction in deformed quartz‐rich turbidite sequences, eastern Australia , 1991 .
[52] F. Albarède,et al. Sulphur isotope variations in the mantle from ion microprobe analyses of micro-sulphide inclusions , 1988 .
[53] B. Doe,et al. Plumbotectonics-the model , 1981 .
[54] H. Ohmoto. Isotopes of sulfur and carbon , 1979 .
[55] J. Veizer,et al. The nature of O18/O16 and C13/C12 secular trends in sedimentary carbonate rocks , 1976 .
[56] H. Barnes,et al. Geochemistry of Hydrothermal Ore Deposits , 1968 .
[57] H. Taylor,et al. Oxygen and carbon isotope studies of carbonatites from the Laacher See district, West Germany and the Alno district, Sweden. , 1967 .