Geology and chronology of the Zhaofayong carbonate-hosted Pb–Zn ore cluster: Implication for regional Pb–Zn metallogenesis in the Sanjiang belt, Tibet
暂无分享,去创建一个
Zhusen Yang | Yucai Song | S. Tian | Yingchao Liu | Wang Ma | Yushuai Yu | Z. Hou | Yingchao Liu
[1] J. Gutzmer,et al. Formation of Mississippi Valley–type deposits linked to hydrocarbon generation in extensional tectonic settings: Evidence from the Jabali Zn-Pb-(Ag) deposit (Yemen) , 2015 .
[2] Zhusen Yang,et al. Fluid origin of fluorite-rich carbonate-hosted Pb–Zn mineralization of the Himalayan–Zagros collisional orogenic system: A case study of the Mohailaheng deposit, Tibetan Plateau, China , 2015 .
[3] Tiannan Yang,et al. The Chaqupacha Mississippi Valley-type Pb-Zn deposit, central Tibet: Ore formation in a fold and thrust belt of the India-Asia continental collision zone , 2015 .
[4] G. Chi,et al. Micro-textures and in situ sulfur isotopic analysis of spheroidal and zonal sulfides in the giant Jinding Zn–Pb deposit, Yunnan, China: Implications for biogenic processes , 2015 .
[5] Song Yu. Metallogenic regularity and ore exploration targeting in Tuotuohe area,northern Sanjiang orogenic belt , 2015 .
[6] T. Harrison,et al. Postcollisional potassic and ultrapotassic rocks in southern Tibet: Mantle and crustal origins in response to India-Asia collision and convergence , 2014 .
[7] Zhusen Yang,et al. Rb‐Sr and Sm‐Nd Isochron Ages of the Dongmozhazhua and Mohailaheng Pb‐Zn Ore Deposits in the Yushu area, southern Qinghai and Their Geological Implications , 2014 .
[8] W. Lei,et al. Re-Os Isotopic Dating of Pyrite from Jinding Zn-Pb Ore Deposit and Its Geological Significance , 2013 .
[9] L. Ying. Characteristics and genesis of Lalongla MVT-like deposit in Changdu region, Tibet , 2013 .
[10] Song Yu. Mineral prospecting and its related approaches in Duocaima Pb-Zn deposit in Tuotuohe,Qinghai Province , 2013 .
[11] Gao Bing. Re-Os dating of bitumen in the giant Jinding Zn-Pb deposit,Yunnan and its geological significance , 2012 .
[12] E. Carranza,et al. Formation of the Dongmozhazhua Pb–Zn Deposit in the Thrust‐Fold Setting of the Tibetan Plateau, China: Evidence from Fluid Inclusion and Stable Isotope Data , 2011 .
[13] Zhou Jiangyu. The Closure of Paleogene Basins of East-Central Tibet in Response to Tectonic,Sedimentation,Magmatism and Paleoclimate , 2011 .
[14] W. Xiao. Baiyangping Pb-Zn-Cu-Ag polymetallic deposit in Lanping basin:Metallogenic chronology and regional mineralization , 2011 .
[15] Wang Yuan-kui. Structural control of lead-zinc mineralization in the Chaqupacha ore deposit,northern segment of the Sanjiang region , 2011 .
[16] T. Shi,et al. Sulfur, lead, strontium and neodymium isotope compositions of the Dongmozhazhua lead-zinc ore deposit in the Yushu area, southern Qinghai: Implications for the sources of ore-forming material in the deposit , 2011 .
[17] T. Shi,et al. Sulfur,lead,strontium and neodymium isotope compositions of the Mohailaheng lead-zinc ore deposit in the Yushu area,southern Qinghai:Implications for the sources of ore-forming material in the deposit and comparison with those of Dongmozhazhua lead-zinc or , 2011 .
[18] Wang Guang-hui. Sediment-hosted Himalayan base metal deposits in Sanjiang region:characteristics and genetic types , 2011 .
[19] Zhu Tian. Confirmation of connection between Dongmozhazhua and Mohailaheng Pb-Zn ore deposits and thrust nappe system in Yushu area,southern Qinghai:evidence from Rb-Sr and Sm-Nd isochron ages of macrocrystalline calcite , 2011 .
[20] Z. Hou,et al. Thrust-controlled, sediment-hosted, Himalayan Zn–Pb–Cu–Ag deposits in the Lanping foreland fold belt, eastern margin of Tibetan Plateau , 2009 .
[21] B. Xia,et al. Calcite Sm-Nd isochron age of the Shuiyindong Carlin-type gold deposit, Guizhou, China , 2009 .
[22] Hou Zeng,et al. Thrust-controlled,sediments-hosted Pb-Zn-Ag-Cu deposits in eastern and northern margins of Tibetan orogenic belt:Geological features and tectonic model , 2008 .
[23] Jun Chen,et al. The Sr and Nd isotopic variations of the Chinese Loess Plateau during the past 7 Ma: Implications for the East Asian winter monsoon and source areas of loess , 2007 .
[24] G. Chi,et al. Geologic, fluid inclusion and isotopic characteristics of the Jinding Zn-Pb deposit, western Yunnan, South China: A review , 2007 .
[25] M. Glikson,et al. Sm–Nd dating and rare-earth element tracing of calcite: Implications for fluid-flow events in the Bowen Basin, Australia , 2007 .
[26] Wenbo Li,et al. Dating of the Giant Huize Zn‐Pb Ore Field of Yunnan Province, Southwest China: Constraints from the Sm‐Nd System in Hydrothermal Calcite , 2007 .
[27] Chengshan Wang,et al. Tectonic and sedimentary evolution of basins in the northeast of Qinghai-Tibet Plateau and their implication for the northward growth of the Plateau , 2006 .
[28] Li Yalin. Cenozoic Thrust System and Uplifting of the Tanggula Mountain, Northern Tibet , 2006 .
[29] Tang Ju-xing. Intracontinent Orogen and Metallogenesis in Himalayan Epoch:Changdu Large Composite Basin, Eastern Tibet , 2006 .
[30] P. Muchez,et al. 7: Extensional tectonics and the timing and formation of basin-hosted deposits in Europe , 2005 .
[31] A. Yin,et al. Structural evolution of the Yushu-Nangqian region and its relationship to syncollisional igneous activity, east-central Tibet , 2005 .
[32] R. Casey,et al. Source of Fluorine and Petrogenesis of the Rio Grande Rift-Type Barite-Fluorite-Galena Deposits , 2005 .
[33] G. Garven,et al. Sediment-hosted lead-zinc deposits: A global perspective , 2005 .
[34] Q. Zhang,et al. Tibetan tectonic evolution inferred from spatial and temporal variations in post-collisional magmatism , 2005 .
[35] Chen Zhi-liang,et al. K-Ar Ages of Cenozoic Volcanic Rocks from Gongjue Basin in Eastern Tibet , 2004 .
[36] R. Romer,et al. Tracing element sources of hydrothermal mineral deposits: REE and Y distribution and Sr-Nd-Pb isotopes in fluorite from MVT deposits in the Pennine Orefield, England , 2003 .
[37] P. Muchez,et al. Carbonate-Hosted Zn-Pb Deposits in Upper Silesia, Poland: Origin and Evolution of Mineralizing Fluids and Constraints on Genetic Models , 2003 .
[38] D. Symons,et al. Sweetwater BaFZn district, eastern Tennessee: a paleomagneticage for dolomitisation from fluid flow , 2003 .
[39] D. Leach,et al. Tectonic controls of Mississippi Valley-type lead–zinc mineralization in orogenic forelands , 2003 .
[40] Yin Haisheng. Sediments and Structural Features of Nangqian Tertiary Basin in Eastern of Tibet-Qingzang Plateau , 2002 .
[41] G. de Marsily,et al. Mississippi Valley-type lead–zinc deposits through geological time: implications from recent age-dating research , 2001 .
[42] Chengshan Wang,et al. Evolution and Mass Accumulation of the Cenozoic Hoh Xil Basin, Northern Tibet , 2001 .
[43] M. Palmer,et al. Sm-Nd dating of the giant Sullivan Pb-Zn-Ag deposit, British Columbia , 2000 .
[44] À. Canals,et al. U–Pb dating of MVT ore-stage calcite: implications for fluid flow in a Mesozoic extensional basin from Iberian Peninsula , 2000 .
[45] D. Symons,et al. Paleomagnetic age for Zn-Pb mineralization at Robb Lake, northeastern British Columbia , 1999 .
[46] G. Garven,et al. The hydrology of ore formation in the Southeast Missouri District; numerical models of topography-driven fluid flow during the Ouachita Orogeny , 1999 .
[47] M. Wallace,et al. Th-Pb and U-Pb Dating of Ore-Stage Calcite and Paleozoic Fluid Flow , 1996, Science.
[48] A. Mucci,et al. Partitioning of rare earth elements (REEs) between calcite and seawater solutions at 25°C and 1 atm, and high dissolved REE concentrations , 1995 .
[49] Paul G. Spry,et al. DIRECT DATING OF MISSISSIPPI VALLEY-TYPE MINERALIZATION: USE OF Sm-Nd IN FLUORITE , 1994 .
[50] T. Lee,et al. Cenozoic plate reconstruction of the South China Sea region , 1994 .
[51] D. Symons,et al. Paleomagnetism of the Pine Point Zn–Pb deposits , 1993 .
[52] F. Podosek,et al. Alleghenian age of the Upper Mississippi Valley zinc–lead deposit determined by Rb–Sr dating of sphalerite , 1992, Nature.
[53] Y. Wang,et al. THE MINEROGENETIC AGES OF Sm-Nd AND Rb-Sr OF YULI SKARN POLYMETALLIC ORE DEPOSIT IN THE SUZHOU REGION AND ITS GEOLOGICAL SIGNIFICANCE , 1992 .
[54] H. D. Jones,et al. Rb–Sr dating of sphalerites from Tennessee and the genesis of Mississippi Valley type ore deposits , 1990, Nature.
[55] G. Faure. Principles of isotope geology , 1977 .