[1] SENGÖR A M C,NATALIN B A,BURTMAN V S.Evolution of the Altaid Tectonic Collage and Palaeozoic Crustal Growth in Eurasia[J].Nature,1993,364:299-307.
[2] XIAO W J,WINDLEY B F,SUN S,et al.A Tale of Amalgamation of Three Permo-Triassic Collage Systems in Central Asia:Oroclines,Sutures,and Terminal Accretion[J].Annual Review of Earth and Planetary Sciences,2015,43(1):477-507.
[3] WINDLEY B F,ALEXEIEV D,XIAO W J,et al.Tectonic Models for Accretion of the Central Asian Orogenic Belt[J].Journal of the Geological Society,2007,164:31-47.
[4] 肖文交,宋东方,WINDLEY B F,等.中亚增生造山过程与成矿作用研究进展[J].中国科学:地球科学,2019,49(10):1512-1545.
XIAO Wen-jiao,SONG Dong-fang,WINDLEY B F,et al.Research Progresses of the Accretionary Processes and Metallogenesis of the Central Asian Orogenic Belt[J].Science China:Earth Sciences,2019,49(10):1512-1545.
[5] WAN B,LI S H,XIAO W J,et al.Where and When Did the Paleo-Asian Ocean Form?[J].Precambrian Research,2018,317:241-252.
[6] 涂光炽.初议中亚成矿域[J].地质科学,1999,34(4):397-404.
TU Guang-chi.On the Central Asia Metallogenic Pro-vince[J].Scientia Geologica Sinica,1999,34(4):397-404.
[7] 黄 杰,安 芳.中亚成矿域核心区斑岩铜矿地质和地球化学特征研究现状综述[J].西北地质,2018,51(1):192-208.
HUANG Jie,AN Fang.Geological and Geochemical Characteristics of Porphyry Copper Deposits in Core Part of Central Asian Metallogenic Domain:A Review[J].Northwestern Geology,2018,51(1):192-208.
[8] GENG X X,YANG F Q,YANG C D,et al.Metallogenesis and Fluid Evolution of the Devonian Porphyry Copper Deposits in the Central Asian Orogenic Belt:The Xiaotu'ergen Example[J].International Geology Review,2020,DOI:10.1080/00206814.2020.1802618.
[9] 朱永峰.中亚成矿域地质矿产研究的若干重要问题[J].岩石学报,2009,25(6):1297-1302.
ZHU Yong-feng.Some Important Issues for the Stu-dies on the Central Asian Metallogeny Domain[J].Acta Petrologica Sinica,2009,25(6):1297-1302.
[10] YAKUBCHUK A.Architecture and Mineral Deposit Settings of the Altaid Orogenic Collage:A Revised Model[J].Journal of Asian Earth Sciences,2004,23(5):761-779.
[11] SELTMANN R,PORTER T M,PIRAJNO F.Geodynamics and Metallogeny of the Central Eurasian Porphyry and Related Epithermal Mineral Systems:A Review[J].Journal of Asian Earth Sciences,2014,79:810-841.
[12] YAKUBCHUK A S,SHATOV V V,KIRWIN D,et al.Gold and Base Metal Metallogeny of the Central Asian Orogenic Supercollage[J].Economic Geology,2005,DOI:10.5382/AV100.31.
[13] MAO J W,PIRAJNO F,LEHMANN B,et al.Distribution of Porphyry Deposits in the Eurasian Continent and Their Corresponding Tectonic Settings[J].Journal of Asian Earth Sciences,2014,79:576-584.
[14] 申 萍,潘鸿迪,ELEONORA S.中亚成矿域斑岩铜矿床基本特征[J].岩石学报,2015,31(2):315-332.
SHEN Ping,PAN Hong-di,ELEONORA S.Characteristics of the Porphyry Copper Deposits in the Central Asia Metallogenic Domain[J].Acta Petrologica Sinica,2015,31(2):315-332.
[15] SHEN P,PAN H D,HATTORI K,et al.Large Pa-leozoic and Mesozoic Porphyry Deposits in the Central Asian Orogenic Belt:Geodynamic Settings,Magmatic Sources,and Genetic Models[J].Gondwana Resear-ch,2018,58:161-94.
[16] 吕 斌,王 涛,童 英,等.中亚造山带东部岩浆热液矿床时空分布特征及其构造背景[J].吉林大学学报(地球科学版),2017,47(2):305-342.
LYU Bin,WANG Tao,TONG Ying,et al.Spatial and Temporal Distribution and Tectonic Setting of Magmatic-hydrothermal Ore Deposits in the Eastern Central Asia Orogen Belt[J].Journal of Jilin University(Earth Science Edition),2017,47(2):305-342.
[17] 薛春纪,赵晓波,莫宣学.中亚成矿域斑岩铜金成矿的地质环境问题[J].岩石学报,2016,32(5):1249-1261.
XUE Chun-ji,ZHAO Xiao-bo,MO Xuan-xue.Pro-blem on Porphyry Copper-gold Metallogenic Environment in Central Asian:An Overview[J].Acta Petrologica Sinica,2016,32(5):1249-1261.
[18] GAO J,KLEMD R,ZHU M T,et al.Large-scale Porphyry-type Mineralization in the Central Asian Metallogenic Domain:A Review[J].Journal of Asian Earth Sciences,2018,165:7-36.
[19] 高 俊,朱明田,王信水,等.中亚成矿域斑岩大规模成矿特征:大地构造背景、流体作用与成矿深部动力学机制[J].地质学报,2019,93(1):24-71.
GAO Jun,ZHU Ming-tian,WANG Xin-shui,et al.Large-scale Porphyry-type Mineralization in the Central Asian Metallogenic Domain:Tectonic Backgrou-nd,Fluid Feature and Metallogenic Deep Dynamic Mechanism[J].Acta Geologica Sinica,2019,93(1):24-71.
[20] XIAO W J,SONG D F,WINDLEY B F,et al.Accretionary Processes and Metallogenesis of the Central Asian Orogenic Belt:Advances and Perspectives[J].Science China:Earth Sciences,2020,63(3):329-361.
[21] WATANABE Y,STEIN H J.Re-Os Ages for the Erdenet and Tsagaan Suvarga Porphyry Cu-Mo Depo-sits,Mongolia,and Tectonic Implications[J].Economic Geology,2000,95(7):1537-1542.
[22] GEREL O,MUNKHTSENGEL B.Erdenetiin Ovoo Porphyry Copper-molybdenum Deposit in North Mon-golia[M]∥PORTER T M.Super Porphyry Cop-per & Gold Deposits:A Global Perspective.Adelaide:PGC Publishing,2005:525-543.
[23] KAVALIERIS I,KHASHGEREL B E,MORGAN L E,et al.Characteristics and 40Ar/39Ar Geochronology of the Erdenet Copper-molybdenum Deposit,Mongolia[J].Economic Geology,2017,112(5):1033-1053.
[24] DEJIDMAA G,NAITO K.Previous Studies on the Erdenetiin Ovoo Porphyry Copper-molybdenum Depo-sit,Mongolia[J].Bulletin of the Geological Survey of Japan,1998,49:299-308.
[25] 江思宏,聂凤军,苏永江,等.蒙古国额尔登特特大型铜-钼矿床年代学与成因研究[J].地球学报,2010,31(3):289-306.
JIANG Si-hong,NIE Feng-jun,SU Yong-jiang,et al.Geochronology and Origin of the Erdenet Super-large Copper-molybdenum Deposit in Mongolia[J].Acta Geoscientica Sinica,2010,31(3):289-306.
[26] PORTER T M.The Geology,Structure and Minera-lisation of the Oyu Tolgoi Porphyry Copper-gold-molybdenum Deposits,Mongolia:A Review[J].Geoscience Frontiers,2016,7(3):375-407.
[27] PERELLÓ J,COX D,GARAMJAV D,et al.Oyu Tolgoi,Mongolia:Siluro-Devonian Porphyry Copper-gold(-molybdenum)and High-sulfidation Cu Mineralization with a Cretaceous Chalcocite Blanket[J].Economic Geology,2001,96(6):1407-1428.
[28] 刘益康,徐叶兵.蒙古Oyu Tolgoi斑岩铜金矿的勘查[J].地质与勘探,2003,39(1):1-4.
LIU Yi-kang,XU Ye-bing.The Prospecting and Main Features of Oyu Tolgoi Porphyry Copper-gold Depo-sit in Mongolia[J].Geology and Prospecting,2003,39(1):1-4.
[29] KIRWIN D J,FORSTER C N,KAVALIERIS I,et al.The Oyu Tolgoi Copper-gold Porphyry Deposits,South Gobi,Mongolia[M]∥SELTMANN R,GEREL O,KIRWIN D J.Geodynamics and Metallogeny of Mongolia with a Special Emphasis on Copper and Gold Deposits.London:IAGOD,2005:155-168.
[30] 李莎莎,陈华勇,汪礼明.关于建立斑岩型铜矿床勘查标识体系的初步探讨[J].大地构造与成矿学,2019,43(5):991-1009.
LI Sha-sha,CHEN Hua-yong,WANG Li-ming.Initial Approach to Establish the Identification Criteria System for Exploration of Porphyry Copper Deposits[J].Geotectonica et Metallogenia,2019,43(5):991-1009.
[31] CRANE D,KAVALIERIS I.Geologic Overview of the Oyu Tolgoi Porphyry Cu-Au-Mo Deposits,Mongolia[M]∥HEDENQUIST J W,HARRIS M,CAMUS F.Geology and Genesis of Major Copper Deposits and Districts of the World:A Tribute to Richard H. Sillitoe.Littleton:Society of Economic Geologists,2012:187-214.
[32] 聂凤军,江思宏,张 义,等.中蒙边境及邻区斑岩型铜矿床地质特征及成因[J].矿床地质,2004,23(2):176-189.
NIE Feng-jun,JIANG Si-hong,ZHANG Yi,et al.Geological Features and Origin of Porphyry Copper Deposits in China-Mongolia Border Region and Its Neighboring Areas[J].Mineral Deposits,2004,23(2):176-189.
[33] 齐程元,韩宝福.蒙古南戈壁欧玉陶勒盖铜(金)矿床地质特征及其对我国找矿勘查工作的启示[J].地质找矿论丛,2017,32(3):351-359.
QI Cheng-yuan,HAN Bao-fu.Geologic Features of the Oyu Tolgoi Deposit in South Gobi,Mongolia,and Its Implications for Prospecting in China[J].Contributions to Geology and Mineral Resources Research,2017,32(3):351-359.
[34] 张 义,聂凤军,江思宏,等.中蒙边境欧玉陶勒盖大型铜-金矿床的发现及对找矿勘查工作的启示[J].地质通报,2003,22(9):708-712.
ZHANG Yi,NIE Feng-jun,JIANG Si-hong,et al.Discovering of the Oyu Tolgoi Copper-gold Deposit in the Sino-Mongolia Border Region and Its Significance for Mineral Exploration[J].Geological Bulletin of China,2003,22(9):708-712.
[35] 杨 波,赵元艺.南蒙古欧玉陶勒盖斑岩型矿床研究进展[J].地质通报,2017,36(1):90-111.
YANG Bo,ZHAO Yuan-yi.New Progress in the Stu-dy of the Oyu Tolgoi Porphyry Deposit in Southern Mongolia[J].Geological Bulletin of China,2017,36(1):90-111.
[36] WAINWRIGHT A J.Volcano-stratigraphic Framework and Magmatic Evolution of the Oyu Tolgoi Porphyry Copper-gold District,South Mongolia[D].Vancouver:The University of British Columbia,2008.
[37] WAINWRIGHT A J,TOSDAL R M,WOODEN J L,et al.U-Pb(Zircon)and Geochemical Constraints on the Age,Origin,and Evolution of Paleozoic Arc Magmas in the Oyu Tolgoi Porphyry Copper-gold District,Southern Mongolia[J].Gondwana Research,2011,19(3):764-787.
[38] KAVALIERIS I,WAINWRIGHT A J.Wholerock Geochemistry of Late Devonian Island Arc Intrusive Sui-tes from Oyu Tolgoi[M]∥SELTMANN R,GEREL O,KIRWIN D J.Geodynamics and Metallogeny of Mongolia with a Special Emphasis on Copper and Gold Deposits.London:IAGOD,2005:169-174.
[39] LARGE R R,GEMMELL J B,PAULICK H,et al.The Alteration Box Plot:A Simple Approach to Understanding the Relationship Between Alteration Mi-neralogy and Lithogeochemistry Associated with Volcanic-hosted Massive Sulfide Deposits[J].Economic Geology,2001,96(5):957-971.
[40] WOODHEAD J D,EGGINS S M,JOHNSON R W.Magma Genesis in the New Britain Island Arc:Further Insights into Melting and Mass Transfer Proce-sses[J].Journal of Petrology,1998,39(9):1641-1668.
[41] MOROZUMI H.Geochemical Characteristics of Gra-nitoids of the Erdenet Porphyry Copper Deposit,Mongolia[J].Resource Geology,2003,53(4):311-316.
[42] BERZINA A P,SOTNIKOV V I.Character of Formation of the Erdenet-Ovoo Porphyry Copper-molybdenum Magmatic Center(Northern Mongolia)in the Zone of Influence of a Permo-Triassic Plume[J].Russian Geology and Geophysics,2007,48(2):141-156.
[43] ISHIHARA S,BRUCE W C.Petrochemistry of I-type Magnetite-series Granitoids of the Northern Chile,Highland Valley,Southern B.C.,Canada,Erdenet Mine,Mongolia,Dexing Mine,China,Medet Mine,Bulgaria,and Ani Mine,Japan[J].Bulletin of the Geological Survey of Japan,2010,61(11/12):383-415.
[44] KHASHGEREL B E,KAVALIERIS I,HAYASHI K I.Mineralogy,Textures,and Whole-rock Geochemistry of Advanced Argillic Alteration:Hugo Dummett Porphyry Copper-gold Deposit,Oyu Tolgoi Mineral District,Mongolia[J].Mineralium Deposita,2008,43(8):913-932.
[45] DOLGOPOLOVA A,SELTMANN R,ARMSTRONG R,et al.Sr-Nd-Pb-Hf Isotope Systematics of the Hugo Dummett Copper-gold Porphyry Deposit(Oyu Tolgoi,Mongolia)[J].Lithos,2013,164/165/166/167:47-64.
[46] MIDDLEMOST E A K.Naming Materials in the Magma/Igneous Rock System[J].Earth-science Reviews,1994,37(3/4):215-224.
[47] LEBAS M J,LEMAITRE R W,STREKEISEN A,et al.A Chemical Classification of Volcanic Rocks Ba-sed on the Total Alkali-silica Diagram[J].Journal of Petrology,1986,27(3):745-750.
[48] RICKWOOD P C.Boundary Lines Within Petrologic Diagrams Which Use Oxides of Major and Minor Elements[J].Lithos,1989,22(4):247-263.
[49] MANIAR P D,PICCOLI P M.Tectonic Discrimination of Granitoids[J].Geological Society of America Bulletin,1989,101(5):635-643.
[50] MUNKHTSENGEL B,GEREL O,TSUCHIYA N,et al.Petrochemistry of Igneous Rocks in Area of the Erdenetiin Ovoo Porphyry Cu-Mo Mineralized District,Northern Mongolia[J].AIP Conference Proceedings,2007,898(1):63-65.
[51] KHASHGEREL B E,RYE R O,HEDENQUIST J W,et al.Geology and Reconnaissance Stable Isotope Study of the Oyu Tolgoi Porphyry Copper-gold System,South Gobi,Mongolia[J].Economic Geology,2006,101(3):503-522.
[52] LIU Q,ZHAO G C,HAN Y G,et al.Geochronology and Geochemistry of Permian to Early Triassic Gra-nitoids in the Alxa Terrane:Constraints on the Final Closure of the Paleo-Asian Ocean[J].Lithosphere,2017,9(4):665-680.
[53] XIAO Y L,SUN W D,HOEFS J,et al.Making Continental Crust Through Slab Melting:Constraints from Niobium-tantalum Fractionation in UHP Metamorphic Rutile[J].Geochimica et Cosmochimica Acta,2006,70(18):4770-4782.
[54] LIANG J L,DING X,SUN X M,et al.Nb/Ta Fractionation Observed in Eclogites from the Chinese Continental Scientific Drilling Project[J].Chemical Geology,2009,268(1):27-40.
[55] FENG Z Q,JIA J,LIU Y J,et al.Geochronology and Geochemistry of the Carboniferous Magmatism in the Northern Great Xing'an Range,NE China:Constraints on the Timing of Amalgamation of Xing'an and Songnen Blocks[J].Journal of Asian Earth Sciences,2015,113:411-426.
[56] DEFANT M J,DRUMMOND M S.Derivation of Some Modern Arc Magmas by Melting of Young Subducted Lithosphere[J].Nature,1990,347:662-665.
[57] DRUMMOND M S,DEFANT M J,KEPEZHINSKAS P K.Petrogenesis of Slab-derived Trondhjemite-tonalite-dacite/Adakite Magmas[J].Transactions of the Royal Society of Edinburgh:Earth Sciences,1996,87(1/2):205-215.
[58] LING M X,WANG F Y,DING X,et al.Different Ori-gins of Adakites from the Dabie Mountains and the Lower Yangtze River Belt,Eastern China:Geochemical Constraints[J].International Geology Review,2011,53(5/6):727-740.
[59] CHIARADIA M,MÜNTENER O,BEATE B,et al.Adakite-like Volcanism of Ecuador:Lower Crust Magmatic Evolution and Recycling[J].Contributions to Mineralogy and Petrology,2009,158(5):563-588.
[60] 刘红涛,张 旗,刘建明,等.埃达克岩与Cu-Au成矿作用:有待深入研究的岩浆成矿关系[J].岩石学报,2004,20(2):205-218.
LIU Hong-tao,ZHANG Qi,LIU Jian-ming,et al.Adakite Versus Porphyry Copper and Epithermal Gold Deposits:A Possible Metallogenetic Specialization of Magmatism Required In-deep Assessment[J].Acta Petrologica Sinica,2004,20(2):205-218.
[61] KAY R W,MAHLBURG KAY S.Delamination and Delamination Magmatism[J].Tectonophysics,1993,219(1):177-189.
[62] PETFORD N,ATHERTON M.Na-rich Partial Melts from Newly Underplated Basaltic Crust:The Cordillera Blanca Batholith,Peru[J].Journal of Petrology,1996,37(6):1491-1521.
[63] CASTILLO P R,JANNEY P E,SOLIDUM R U.Petrology and Geochemistry of Camiguin Island,Southern Philippines:Insights to the Source of Adakites and Other Lavas in a Complex Arc Setting[J].Contributions to Mineralogy and Petrology,1999,134(1):33-51.
[64] DRUMMOND M S,DEFANT M J.A Model for Trondhjemite-tonalite-dacite Genesis and Crustal Growth via Slab Melting:Archean to Modern Comparisons[J].Journal of Geophysical Research:Solid Earth,1990,95(B13):21503-21521.
[65] HE Y S,LI S G,HOEFS J,et al.Post-collisional Gra-nitoids from the Dabie Orogen:New Evidence for Partial Melting of a Thickened Continental Crust[J].Geochimica et Cosmochimica Acta,2011,75(13):3815-3838.
[66] SILLITOE R H.Porphyry Copper Systems[J].Economic Geology,2010,105(1):3-41.
[67] 侯增谦,杨志明,王 瑞,等.再论中国大陆斑岩铜钼金矿床成矿作用[J].地学前缘,2020,27(2):20-44.
HOU Zeng-qian,YANG Zhi-ming,WANG Rui,et al.Further Discussion on Porphyry Copper-molybdenum-gold Deposit Formation in Chinese Mainland[J].Earth Science Frontiers,2020,27(2):20-44.
[68] 侯增谦,杨志明.中国大陆环境斑岩型矿床:基本地质特征、岩浆热液系统和成矿概念模型[J].地质学报,2009,83(12):1779-1817.
HOU Zeng-qian,YANG Zhi-ming.Porphyry Deposits in Continental Settings of China:Geological Characteristics,Magmatic-hydrothermal System,and Metallogenic Model[J].Acta Geologica Sinica,2009,83(12):1779-1817.
[69] HOU Z Q,GAO Y F,QU X M,et al.Origin of Adakitic Intrusives Generated During Mid-Miocene East-west Extension in Southern Tibet[J].Earth and Pla-netary Science Letters,2004,220(1):139-155.
[70] WANG Q,XU J F,JIAN P,et al.Petrogenesis of Adakitic Porphyries in an Extensional Tectonic Setting,Dexing,South China:Implications for the Genesis of Porphyry Copper Mineralization[J].Journal of Petrology,2005,47(1):119-144.
[71] PEARCE J A,HARRIS N B W,TINDLE A G.Trace Element Discrimination Diagrams for the Tectonic Interpretation of Granitic Rocks[J].Journal of Petrology,1984,25(4):956-983.
[72] 毛安琦.额尔古纳地块中部中生代火山盆地岩浆岩:岩石成因与动力学机制[D].长春:吉林大学,2020.
MAO An-qi.Magmatic Rocks of Mesozoic Volcanic Basins in Central Erguna Block:Petrogenesis and Geodynamic[D].Changchun:Jilin University,2020.
[73] LI Z Q,CHEN J L,ZOU H,et al.Mesozoic-Cenozoic Tectonic Evolution and Dynamics of the Songliao Basin,NE Asia:Implications for the Closure of the Paleo-Asian Ocean and Mongol-Okhotsk Ocean and Sub-duction of the Paleo-Pacific Ocean[J].Earth-science Reviews,2020,DOI:10.1016/j.earscirev.2020.103471.
[74] ZHANG C,QUAN J Y,ZHANG Y J,et al.Late Mesozoic Tectonic Evolution of the Southern Great Xing'an Range,NE China:Evidence from Whole-rock Geochemistry,and Zircon U-Pb Ages and Hf Isotopes from Volcanic Rocks[J].Lithos,2020,362/363:105409.
[75] MIYASHIRO A.Volcanic Rock Series in Island Arcs and Active Continental Margins[J].American Journal of Science,1974,274(4):321-355.
[76] XIAO W J,WINDLEY B F,HAO J,et al.Accretion Leading to Collision and the Permian Solonker Suture,Inner Mongolia,China:Termination of the Central Asian Orogenic Belt[J].Tectonics,2003,22(6):001484.
[77] HEUMANN M J,JOHNSON C L,WEBB L E,et al.Paleogeographic Reconstruction of a Late Paleozoic Arc Collision Zone,Southern Mongolia[J].Geological Society of America Bulletin,2012,124(9/10):1514-1534.
[78] DANIEL M,GROVES D I.Potassic Igneous Rocks and Associated Gold-copper Mineralization[M].Heidelberg:Springer,2000.
[1]张连昌,冯京,董连慧,等.西昆仑塔什库尔干铁矿带矿床类型、成因及成矿规律[J].地球科学与环境学报,2016,38(04):427.
ZHANG Lian-chang,FENG Jing,DONG Lian-hui,et al.Deposit Types, Origin and Metallogenetic Regularity of Taxkorgan Iron Ore Belt in West Kunlun[J].Journal of Earth Sciences and Environment,2016,38(03):427.
[2]杨晓勇,古黄玲,严志忠,等.安徽贵池地区燕山期岩浆岩与铜金钼成矿关系:来自地质-地球化学-地球物理证据[J].地球科学与环境学报,2016,38(04):444.
YANG Xiao-yong,GU Huang-ling,YAN Zhi-zhong,et al.Metallogenic Relationship Between Yanshanian Magmatic Rocks and Cu-Au-Mo Deposits in Guichi Area of Anhui: Evidences from Geological-geochemical-geophysical Characteristics[J].Journal of Earth Sciences and Environment,2016,38(03):444.
[3]安国堡,辛存林,杨涛,等.甘肃龙首山成矿带地质构造演化及其对铀成矿的控制作用[J].地球科学与环境学报,2016,38(06):803.
AN Guo-bao,XIN Cun-lin,YANG Tao,et al.Geotectonic Evolution of Longshoushan Metallogenic Belt in Gansu and Its Control Function on Uranium Mineralization[J].Journal of Earth Sciences and Environment,2016,38(03):803.
[4]江思宏,孙朋飞,白大明,等.中东欧地区地质矿产特征及找矿潜力[J].地球科学与环境学报,2017,39(01):1.
JIANG Si-hong,SUN Peng-fei,BAI Da-ming,et al.Characteristics of Geology and Minerals in Central and Eastern Europe and Their Prospecting Potential[J].Journal of Earth Sciences and Environment,2017,39(03):1.
[5]潘彤.青海成矿单元划分[J].地球科学与环境学报,2017,39(01):16.
PAN Tong.Classification of Metallogenic Units in Qinghai, China[J].Journal of Earth Sciences and Environment,2017,39(03):16.
[6]朱广彬,刘国范,姚新年,等.东秦岭铅锌银金钼多金属成矿带成矿规律及找矿标志[J].地球科学与环境学报,2005,27(01):44.
ZHU Guang-bin,LIU Guo-fan,YAO Xin-nian,et al.Metallogeny and mineral resource prospecting in the
Pb-Zn-Ag-Au-Mo polymetallic ore belt of eastern Qinling[J].Journal of Earth Sciences and Environment,2005,27(03):44.
[7]王进寿,潘 彤*,李 鹏,等.青海省柴北缘成矿带矿床成矿系列[J].地球科学与环境学报,2022,44(03):391.[doi:10.19814/j.jese.2022.02031]
WANG Jin-shou,PAN Tong*,LI Peng,et al.Metallogenic Series of Deposits in the Northern Qaidam Metallogenic Belt of Qinghai Province, China[J].Journal of Earth Sciences and Environment,2022,44(03):391.[doi:10.19814/j.jese.2022.02031]