Infrared microthermometric and noble gas isotope study of fluid inclusions in ore minerals at the Woxi orogenic Au–Sb–W deposit, western Hunan, South China
Tài liệu tham khảo
Bailly, 2000, Fluid inclusion study of stibnite using infrared microscopy: an example from the Brouzils antimony deposit (Vendee, Armorican massif, France), Econ. Geol. Bull. Soc., 95, 221, 10.2113/gsecongeo.95.1.221
Bailly, 2002, Infrared microthermometry and chemistry of wolframite from the Baia Sprie epithermal deposit, Romania, Econ. Geol., 97, 415, 10.2113/gsecongeo.97.2.415
Ballentine, 2002, Tracing fluid origin, transport and interaction in the crust, 539
Baptiste, 1996, Abundance and isotopic composition of helium in hydrothermal sulfides from the East Pacific Rise at 13°N, Geochim. Cosmochim. Acta, 60, 87, 10.1016/0016-7037(95)00357-6
Beuchat, 2004, Fluid evolution in the W–Cu–Zn–Pb San Cristobal vein, Peru: fluid inclusion and stable isotope evidence, Chem. Geol., 210, 201, 10.1016/j.chemgeo.2004.06.008
Bodnar, 1993, Revised equation and table for determining the freezing-point depression of H2O–NaCl solutions, Geochim. Cosmochim. Acta, 57, 683, 10.1016/0016-7037(93)90378-A
Brown, 1989, P–V–T properties of fluids in the system H2O±CO2±NaCl: new graphical presentations and implications for fluid inclusion studies, Geochim. Cosmochim. Acta, 53, 1209, 10.1016/0016-7037(89)90057-4
Bruno, 1997, Dating of Sirius Group tillites in the Antarctic Dry Valleys with cosmogenic 3He and 21Ne, Earth Planet. Sci. Lett., 147, 37, 10.1016/S0012-821X(97)00003-4
Buchholz, 2007, Multistage Au–As–Sb Mineralization and crustal-scale fluid evolution in the Kwekwe District, Midlands Greenstone Belt, Zimbabwe: a combined geochemical, mineralogical, stable isotope, and fluid inclusion study, Econ. Geol., 102, 347, 10.2113/gsecongeo.102.3.347
Burgess, 1992, 40Ar/39Ar laser microprobe study of fluids in different colour zones of a hydrothermal scheelite crystal from the Dae Hwa W–Mo mine, South Korea, Chem. Geol., 102, 259, 10.1016/0009-2541(92)90160-7
Burnard, 1999, Mantle, crustal and atmospheric noble gases in Ailaoshan gold deposits, Yunnan Province, China, Geochim. Cosmochim. Acta, 63, 1595, 10.1016/S0016-7037(99)00108-8
Cai, 2012, Noble gas isotopic characteristics of Hehuaping tin-polymetallic deposit, southern Hunan Province, Mineral Deposits, 31, 1163
Campbell, 1990, Comparison of fluid inclusions in coexisting (cogenetic?) wolframite, cassiterite, and quartz from St. Michael's Mount and Cligga Head, Cornwall, England, Geochim. Cosmochim. Acta, 54, 673, 10.1016/0016-7037(90)90363-P
Campbell, 1987, Infrared fluid inclusion microthermometry on coexisting wolframite and quartz, Econ. Geol., 82, 1640, 10.2113/gsecongeo.82.6.1640
Campbell, 1984, Internal features of ore minerals seen with the infrared microscope, Econ. Geol., 79, 1387, 10.2113/gsecongeo.79.6.1387
Canet, 2003, Origin of the mineralizing fluids from the Carboniferous sedex deposits of L'Alforja (SW Catalonian Coastal Ranges, Spain), J. Geochem. Explor., 78–79, 513, 10.1016/S0375-6742(03)00042-6
Chen, 2006, Orogenic-type deposits and their metallogenic model and exploration potential, Geol. China, 33, 1181
Chen, 2012, 1
Chen, 1994, Study of fluid inclusions of vein-type gold deposits and its implication to predict for blind orebodies in wester Hunan and eastern Guizhou, Guizhou Geol., 11, 280
Chen, 2007, Diagnostic fluid inclusions of different types hydrothermal gold deposits, Acta Petrol. Sin., 23, 2085
Chen, 2012, Isotopic geochemistry of the Sawayaerdun orogenic-type gold deposit, Tianshan, northwest China: implications for ore genesis and mineral exploration, Chem. Geol., 310–311, 1, 10.1016/j.chemgeo.2012.03.026
Chen, 2012, Evolution of ore-forming fluids in the Sawayaerdun gold deposit in the southwestern Chinese Tianshan metallogenic belt, Northwest China, J. Asian Earth Sci., 49, 131, 10.1016/j.jseaes.2011.05.011
Chu, 2012, Phanerozoic tectonothermal events of the Xuefengshan Belt, central South China: implications from U–Pb age and Lu–Hf determinations of granites, Lithos, 150, 243, 10.1016/j.lithos.2012.04.005
De Boorder, 2012, Spatial and temporal distribution of the orogenic gold deposits in the Late Palaeozoic Variscides and Southern Tianshan: how orogenic are they?, Ore Geol. Rev., 46, 1, 10.1016/j.oregeorev.2012.01.002
Ding, 2009, Study on fluid inclusions and genesis of Mobin gold deposit in Hunan Province, Glob. Geol., 28, 467
Ding, 1981, The fluid inclusion study and metallogeny review on gold deposits in western Hunan district, Central-South Inst Mining Metall, 12, 114
Dong, 2008, Fluid inclusion evidence for the genesis of the Woxi W–Sb–Au deposit, Hunan province, Acta Geol. Sin., 82, 641
Dugdale, 2001, The Bronzewing lode-gold deposit, Western Australia: P–T–X evidence for fluid immiscibility caused by cyclic decompression in gold-bearing quartz-veins, Chem. Geol., 173, 59, 10.1016/S0009-2541(00)00268-0
Fairmaid, 2011, The origin and evolution of mineralizing fluids in a sediment-hosted orogenic-gold deposit, Ballarat East, Southeastern Australia, Econ. Geol., 106, 653, 10.2113/econgeo.106.4.653
Fan, 2003, Ore-forming fluids associated with granite-hosted gold mineralization at the Sanshandao deposit, Jiaodong gold province, China, Mineral. Deposita, 38, 739, 10.1007/s00126-003-0368-x
Fan, 2009, The Qiyugou gold-bearing breccia pipes, Xiong'ershan region, central China: fluid-inclusion and stable-isotope evidence for an origin from magmatic fluids, Int. Geol. Rev., 53, 25, 10.1080/00206810902875370
Fu, 2012, New constraints on fluid sources in orogenic gold deposits, Victoria, Australia, Contrib. Mineral. Petrol., 163, 427, 10.1007/s00410-011-0678-4
Giamello, 1992, The W–Mo deposit of Perda Majori (SE Sardinia, Italy): a fluid inclusion study of ore and gangue minerals, Eur. J. Mineral., 4, 1079, 10.1127/ejm/4/5/1079
Gold Headquarters of Chinese People's Armed Police Force (GHCPAPF), 1996, 1
Goldfarb, 1988, Origin of lode-gold deposits of the Juneau gold belt, southeastern Alaska, Geology, 16, 440, 10.1130/0091-7613(1988)016<0440:OOLGDO>2.3.CO;2
Goldfarb, 2001, Orogenic gold and geologic time: a global synthesis, Ore Geol. Rev., 18, 1, 10.1016/S0169-1368(01)00016-6
Goldfarb, 2005, Distribution, character, and genesis of gold deposits in metamorphic terranes, 407
Goldstein, 1994, 1
Groves, 1998, Orogenic gold deposits: a proposed classification in the context of their crustal distribution and relationship to other gold deposit types, Ore Geol. Rev., 13, 7, 10.1016/S0169-1368(97)00012-7
Groves, 2003, Gold deposits in metamorphic belts: overview of current understanding, outstanding problems, future research, and exploration significance, Econ. Geol., 98, 1
Groves, 2005, Secular changes in global tectonic processes and their influence on the temporal distribution of gold-bearing mineral deposits, Econ. Geol., 100, 203, 10.2113/gsecongeo.100.2.203
Gu, 2007, Rare earth element geochemistry of the Woxi W–Sb–Au deposit, Hunan province, South China, Ore Geol. Rev., 31, 319, 10.1016/j.oregeorev.2005.01.003
Gu, 2012, The Woxi W–Sb–Au deposit in Hunan, South China: an example of Late Proterozoic sedimentary exhalative (SEDEX) mineralization, J. Asian Earth Sci., 57, 54, 10.1016/j.jseaes.2012.06.006
Guillemette, 1993, Genesis of the Sb–W–Au deposits at Ixtahuacan, Guatemala: evidence from fluid inclusions and stable isotopes, Mineral. Deposita, 28, 167, 10.1007/BF00204040
Hagemann, 2003, P–T–X conditions of hydrothermal fluids and precipitation mechanism of stibnite-gold mineralization at the Wiluna lode-gold deposits, Western Australia: conventional and infrared microthermometric constraints, Mineral. Deposita, 38, 936, 10.1007/s00126-003-0351-6
Harlov, 2012, The potential role of fluids during regional granulite-facies dehydration in the lower crust, Geosci. Front., 3, 813, 10.1016/j.gsf.2012.03.007
He, 1996, Geochemistry of mineralization in the Zhazixi antimony ore belt on the margin of the Jiangnan old land, Mineral Deposits, 15, 41
Hou, 2011, Noble gas isotopic systematics of Fe–Ti–V oxide ore-related mafic–ultramafic layered intrusions in the Panxi area, China: the role of recycled oceanic crust in their petrogenesis, Geochim. Cosmochim. Acta, 75, 6727, 10.1016/j.gca.2011.09.003
Hronsky, 2012, A unified model for gold mineralisation in accretionary orogens and implications for regional-scale exploration targeting methods, Mineral. Deposita, 47, 339, 10.1007/s00126-012-0402-y
Hu, 1997, He–Ar isotopic systematics of fluid inclusions in pyrite from Machangqing copper deposit, Yunnan, China, Sci. China Ser. D., 27, 503
Hu, 1998, Helium and Argon isotope systematics in fluid inclusions of Machangqing copper deposit in west Yunnan province, China, Chem. Geol., 146, 55, 10.1016/S0009-2541(98)00003-5
Hu, 1999, He and Ar isotope geochemistry of ore-forming fluid in Ailaoshan gold metallogenic belt, Sci. China Ser. D., 29, 321
Hu, 1999, Helium and argon isotope geochemistry of metallogenic fluids of gold deposit belt in Ailaoshan, Sci. China Ser. D., 29, 321
Hu, 2004, Helium and argon isotope geochemistry of alkaline intrusion-associated gold and copper deposits along the Red River-Jinshajiang fault belt, SW China, Chem. Geol., 203, 305, 10.1016/j.chemgeo.2003.10.006
Hunan Bureau of Geology and Mineral Resources (HBGMR), 1988, 1
Kendrick, 2001, Fluid inclusion noble gas and halogen evidence on the origin of Cu-Porphyry mineralising fluids, Geochim. Cosmochim. Acta, 65, 2651, 10.1016/S0016-7037(01)00618-4
Kendrick, 2002, Hydrothermal fluid origins in a fluorite-rich Mississippi Valley-type district: combined noble gas (He, Ar, Kr) and halogen (Cl, Br, I) analysis of fluid inclusions from the South Pennine ore field, United Kingdom, Econ. Geol., 97, 435, 10.2113/gsecongeo.97.3.435
Kendrick, 2011, High abundances of noble gas and chlorine delivered to the mantle by serpentinite subduction, Nat. Geosci., 4, 807, 10.1038/ngeo1270
Kerrich, 2000, The characteristics, origins, and geodynamic settings of supergiant gold metallogenic provinces, Sci. China Ser. D., 43, 1, 10.1007/BF02911933
Kouzmanov, 2010, Direct analysis of ore-precipitating fluids: combined IR microscopy and LA-ICP-MS study of fluid inclusions in opaque ore minerals, Econ. Geol., 105, 351, 10.2113/gsecongeo.105.2.351
Kucha, 2009, Gold-oxysulphides in copper deposits of the Greywacke Zone, Austria: a mineral chemical and infrared fluid inclusion study, Ore Geol. Rev., 35, 87, 10.1016/j.oregeorev.2008.10.004
Lamadrid, 2013, Raman spectroscopic characterization of H2O in CO2-rich fluid inclusions in granulite facies metamorphic rocks, Gondwana Res., 2013, 1
Landis, 2012, Ore genesis constraints on the Idaho cobalt belt from fluid inclusion gas, noble gas isotope, and ion ratio analyses, Econ. Geol., 107, 1189, 10.2113/econgeo.107.6.1189
Lawrence, 2013, A fluid inclusion and stable isotope study at the Loulo mining district, Mali, West Africa: implications for multifluid sources in the generation of orogenic gold deposits, Econ. Geol., 108, 229, 10.2113/econgeo.108.2.229
Li, 1983, Fold structure and its ore-controlling in the Woxi Au–Sb–W deposit, western Hunan, Hunan Geol., 2, 15
Li, 2009, Amalgamation between the Yangtze and Cathaysia Blocks in South China: constraints from SHRIMP U–Pb zircon ages, geochemistry and Nd–Hf isotopes of the Shuangxiwu volcanic rocks, Precambrian Res., 174, 117, 10.1016/j.precamres.2009.07.004
Li, 2011, He–Ar isotope composition of pyrite and wolframite in the Tieshanlong tungsten deposit, Jiangxi, China: implications for fluid evolution, Resour. Geol., 61, 356, 10.1111/j.1751-3928.2011.00172.x
Liang, 1986, A study on the typomorphic properties of quartz in Woxi Au–Sb–W deposit, western Hunan, Hunan Geol., 5, 17
Liang, 1981, A preliminary discussion on micro-textures and fabrics of quartz layers in the Woxi gold deposits in Hunan, J. Guilin Coll. Metall. Geol., 1, 41
Lindaas, 2002, Near-infrared observation and microthermometry of pyrite-hosted fluid inclusions, Econ. Geol., 97, 603, 10.2113/gsecongeo.97.3.603
Liu, 1992, Fold structure of the Woxi gold–antimony–tungsten deposit in west Hunan and its ore-controlling regularity as well as dynamic ore-forming process, Mineral Deposits, 11, 134
Liu, 2013, Fluid inclusions and ore genesis of the Jinchuantang tin-bismuth deposit, Hunan province, China, Acta Petrol. Sin., 12, 4245
Lott, 1999, Sedimentary exhalative nickel–molybdenum ores in South China, Econ. Geol., 94, 1051, 10.2113/gsecongeo.94.7.1051
Lu, 2004
Lu, 2012
Lüders, 1996, Contribution of infrared microscopy to fluid inclusion studies in some opaque minerals (wolframite, stibnite, bournonite): metallogenic implications, Econ. Geol. Bull. Soc., 91, 1462, 10.2113/gsecongeo.91.8.1462
Lüders, 1999, Possibilities and limits of infrared light microthermometry applied to studies of pyrite-hosted fluid inclusions, Chem. Geol., 154, 169, 10.1016/S0009-2541(98)00130-2
Luo, 1984, Ore genesis of the Woxi Au–Sb deposit, western Hunan, Geol. Prospect., 20, 1
Luque, 2014, Vein graphite deposits: geological settings, origin, and economic significance, Mineral. Deposita, 49, 261, 10.1007/s00126-013-0489-9
Mao, 1997, Research on genesis of the gold deposits in the Jiangnan Terrain, Geochemica, 26, 71
Mao, 2003, Fluid inclusion and noble gas studies of the Dongping gold deposit, Hebei province, China: a mantle connection for mineralization?, Econ. Geol., 98, 517
McCuaig, 1998, P–T–t–deformation–fluid characteristics of lode gold deposits: evidence from alteration systematics, Ore Geol. Rev., 12, 381, 10.1016/S0169-1368(98)00010-9
Mernagh, 2001, A fluid inclusion study of the Fosterville mine: a turbidite-hosted gold field in the Western Lachlan Fold Belt, Victoria, Australia, Chem. Geol., 173, 91, 10.1016/S0009-2541(00)00269-2
Moritz, 2006, Fluid salinities obtained by infrared microthennometry of opaque minerals: implications for ore deposit modeling — A note of caution, J. Geochem. Explor., 89, 284, 10.1016/j.gexplo.2005.11.068
Naden, 1989, Role of methane and carbon dioxide in gold deposition, Nature, 342, 793, 10.1038/342793a0
Nagao, 1979, Isotopic anomalies of rare gases in the Nigorikawa geotheramal area, Hokkaido, Japan, Earth Planet. Sci. Lett., 44, 82, 10.1016/0012-821X(79)90010-4
Nagao, 1981, Rare gas isotopic compositions in natural gases of Japan, Earth Planet. Sci. Lett., 53, 175, 10.1016/0012-821X(81)90152-7
Niu, 1991, Fluid inclusions studies of Jiangnan type gold deposits in western Hunan province, Acta Mineral. Sin., 11, 386
Ozima, 2002
Peng, 2004, Nd–Sr–Pb isotopic constraints on metal and fluid sources in W–Sb–Au mineralization at Woxi and Liaojiaping (western Hunan, China), Mineral. Deposita, 39, 313, 10.1007/s00126-004-0409-0
Peng, 2003, Scheelite Sm–Nd dating and quartz Ar–Ar dating for Woxi Au–Sb–W deposit, western Hunan, Chin. Sci. Bull., 48, 2640, 10.1360/03wd0001
Peng, 2003, The ore-forming fluid with a marked radiogenic 87Sr signature from the Woxi Au–Sb–W deposit and its significant implication, Bull. Mineral. Petrol. Geochem., 22, 193
Peng, 2005, Rare earth element (REE) geochemistry for scheelite from the Woxi Au–Sb–W deposit, western Hunan, Geochimica, 34, 115
Pichavant, 1982, Fluid immiscibility in natural processes: Use and misuse of fluid inclusion data: I. Phase equilibria analysis — A theoretical and geometrical approach, Chem. Geol., 37, 1, 10.1016/0009-2541(82)90064-X
Polito, 2001, Compositional zoning of fluid inclusions in the Archaean Junction gold deposit, Western Australia: a process of fluid–wall–rock interaction?, Aust. J. Earth Sci., 48, 833, 10.1046/j.1440-0952.2001.00903.x
Rai, 2003, Noble gases in ureilites: cosmogenic, radiogenic, and trapped components, Geochim. Cosmochim. Acta, 67, 4435, 10.1016/S0016-7037(03)00379-X
Ramboz, 1982, Fluid immiscibility in natural processes: use and misuse of fluid inclusion data: II. Interpretation of fluid inclusion data in terms of immiscibility, Chem. Geol., 37, 29, 10.1016/0009-2541(82)90065-1
Reynolds, 1970, Isotopic analysis of rare gases from stepwise heating of lunar fines and rocks, Science, 167, 545, 10.1126/science.167.3918.545
Ridley, 2000, Fluid chemistry of orogenic lode gold deposits and implications for genetic models, Rev. Econ. Geol., 13, 141
Robert, 1987, Ore-forming fluids in Archean gold-bearing quartz veins at the Sigma mine, Abitibi greenstone belt, Quebec, Canada, Econ. Geol., 82, 1464, 10.2113/gsecongeo.82.6.1464
Roedder, 1984, Fluid inclusions, Miner. Soc. Am. Rev. Miner., 12, 1
Schaaf, 2002, Strontium and neodymium isotopic study of Libyan desert glass: inherited Pan-African age signatures and new evidence for target material, Meteorit. Planet. Sci., 37, 565, 10.1111/j.1945-5100.2002.tb00839.x
Shao, 1996, Mineralogical studies on pyrites in Woxi Au–Sb–W deposit, western Hunan, Hunan Geol., 15, 26
Shi, 1993
Sibson, 1988, High-angle reverse faults, fluid-pressure cycling, and mesothermal gold–quartz deposits, Geology, 16, 551, 10.1130/0091-7613(1988)016<0551:HARFFP>2.3.CO;2
Singer, 2002, The Santa Rosa event: 40Ar/39Ar and paleomagnetic results from the Valles rhyolite near Jaramillo Creek, Jemez Mountains, New Mexico, Earth Planet. Sci. Lett., 197, 51, 10.1016/S0012-821X(01)00598-2
Stuart, 1994, Helium-isotopes as tracers of trapped hydrothermal fluids in ocean-floor sulfides, Geology, 22, 823, 10.1130/0091-7613(1994)022<0823:HIATOT>2.3.CO;2
Sun, 2006, Noble gases isotopic composition of fluid inclusions in scheelites collected from Daping gold mine, Yunnan province, China, and its application for ore genesis, Acta Petrol. Sin., 22, 725
Sun, 2009, Crust and mantle contributions to gold-forming process at the Daping deposit, Ailaoshan gold belt, Yunnan, China, Ore Geol. Rev., 36, 235, 10.1016/j.oregeorev.2009.05.002
Tomkins, 2013, On the source of orogenic gold, Geology, 41, 1255, 10.1130/focus122013.1
Tripathi, 2012, Mantle-derived fluids in the basement of the Deccan trap: evidence from stable carbon and oxygen isotopes of carbonates from the Killari borehole basement, Maharashtra, India, Int. J. Earth Sci., 101, 1385, 10.1007/s00531-011-0723-6
Van den Kerkhof, 2001, Fluid inclusion petrography, Lithos, 55, 27, 10.1016/S0024-4937(00)00037-2
Wang, 2013, Fluid inclusion studies on coexisting cassiterite and quartz from the Piaotang tungsten deposit, Jiangxi province, China, Acta Geol. Sin., 87, 850
Wei, 2012, Infrared microthermometric and stable isotopic study of fluid inclusions in wolframite at the Xihuashan tungsten deposit, Jiangxi province, China, Mineral. Deposita, 47, 589, 10.1007/s00126-011-0377-0
Wieler, 1986, Noble gases from solar energetic particles revealed by closed system stepwise etching of lunar soil minerals, Geochim. Cosmochim. Acta, 50, 1997, 10.1016/0016-7037(86)90255-3
Wilkinson, 2001, Fluid inclusions in hydrothermal ore deposits, Lithos, 55, 229, 10.1016/S0024-4937(00)00047-5
Xu, 2013, Hydrothermal He and CO2 at Wudalianchi intra-plate volcano, NE China, J. Asian Earth Sci., 62, 526, 10.1016/j.jseaes.2012.11.001
Yang, 1992, Source of ore material and paragenesis of orebuilding elements in Woxi Au–Sb–W deposit, Hunan, J. Chengdu Coll. Geol., 19, 23
Yang, 2012, Fluid inclusion study of the Nannihu giant porphyry Mo–W deposit, Henan province, China: implications for the nature of porphyry ore-fluid systems formed in a continental collision setting, Ore Geol. Rev., 46, 83, 10.1016/j.oregeorev.2012.02.003
Yang, 2013, Fluid inclusion and isotope geochemistry of the Qian'echong giant porphyry Mo deposit, Dabie Shan, China: a case of NaCl-poor, CO2-rich fluid systems, J. Geochem. Explor., 124, 1, 10.1016/j.gexplo.2012.06.019
Yao, 1993, Polygenetic compound model for the Fuzhuxi gold deposit of Hunan province and its prospecting, Geotecton. Metallog., 17, 199
Ye, 2007, Helium and neon isotopic compositions in the ophiolites from the Yarlung Zangbo River, Southwestern China: the information from deep mantle, Sci. China Ser. D Earth Sci., 50, 801, 10.1007/s11430-007-0017-9
Yokart, 2003, Late-stage alteration and tin-tungsten mineralization in the Khuntan Batholith, northern Thailand, J. Asian Earth Sci., 21, 999, 10.1016/S1367-9120(02)00178-5
Yu, 1997, A study on the geological and geochemical characteristics of bake gold deposit, east Guizhou, Geol. Geochem., 12–17
Zachariáš, 2013, Multiple fluid sources/pathways and severe thermal gradients during formation of the Jílové orogenic gold deposit, Bohemian Massif, Czech Republic, Ore Geol. Rev., 54, 81, 10.1016/j.oregeorev.2013.02.012
Zeng, 2014, Multiple isotope composition (S, Pb, H, O, He, and Ar) and genetic implications for gold deposits in the Jiapigou gold belt, Northeast China, Mineral. Deposita, 49, 145, 10.1007/s00126-013-0475-2
Zhai, 2012, He–Ar isotope geochemistry of the Yaoling-Meiziwo tungsten deposit, North Guangdong province: constraints on Yanshanian crust-mantle interaction and metallogenesis in SE China, Chin. Sci. Bull., 57, 1137, 10.1007/s11434-011-4952-7
Zhang, 1985, Stable isotope geological study on the W–Sb–Au deposit in the upwarped district, Xuefengshan, western Hunan, Geol. Prospect., 21, 24
Zhang, 1996, A study on the mineralogy of the Woxi Au–Sb–W deposit in Hunan, 216
Zhang, 2012, Geology and fluid evolution of the Wangfeng orogenic-type gold deposit, Western Tian Shan, China, Ore Geol. Rev., 49, 85, 10.1016/j.oregeorev.2012.09.002
Zhang, 2013, Tectonics of South China continent and its implications, Sci. China: Earth Sci., 56, 1804, 10.1007/s11430-013-4679-1
Zhou, 2002, Tectonics and distribution of gold deposits in China—an overview, Mineral. Deposita, 37, 249, 10.1007/s00126-001-0240-9
Zhu, 2013, Fluid inclusions and He–Ar isotopes in pyrite from the Yinjiagou deposit in the southern margin of the North China Craton: a mantle connection for poly-metallic mineralization, Chem. Geol., 351, 1, 10.1016/j.chemgeo.2013.05.004
Zhu, 2014, Mineral deposit geology and trace element geochemistry of wolframite from the Woxi deposit, western Hunan, China, Geochimica, 43, 287