[1] LERCH M F,XUE F,KRONER A,et al.A Middle Silurian-Early Devonian Magmatic Arc in the Qinling Mountains of Central China[J].The Journal of Geology,1995,103(4):437-449.
[2] ZENG Q T,MCCUAIG T C,HART C J R,et al.Structural and Geochronological Studies on the Liba Goldfield of the West Qinling Orogen,Central China[J].Mineralium Deposita,2012,47(7):799-819.
[3] GOLDFARB R J,TAYLOR R D,COLLINSG S,et al.Phanerozoic Continental Growth and Gold Metallogeny of Asia[J].Gondwana Research,2014,25(1):48-102.
[4] LIU J J,DAI H Z,ZHAI D G,et al.Geological and Geochemical Characteristics and Formation Mechanisms of the Zhaishang Carlin-like Type Gold Deposit,Western Qinling Mountains,China[J].Ore Geology Reviews,2015,64:273-298.
[5] WU Y F,LI J W,EVANS K,et al.Ore-forming Processes of the Daqiao Epizonal Orogenic Gold Deposit,West Qinling Orogen,China:Constraints from Textures,Trace Elements,and Sulfur Isotopes of Pyrite and Marcasite,and Raman Spectroscopy of Carbonaceous Material[J].Economic Geology,2018,113(5):1093-1132.
[6] CHEN Y J,PIRAJNO F,LI N,et al.Isotope Systema-tics and Fluid Inclusion Studies of the Qiyugou Bre-ccia Pipe-hosted Gold Deposit,Qinling Orogen,Henan Province,China:Implications for Ore Genesis[J].Ore Geology Reviews,2009,35(2):245-261.
[7] CHEN Y J,WANG Y.Fluid Inclusion Study of the Tangjiaping Mo Deposit,Dabie Shan,Henan Province:Implications for the Nature of the Porphyry Systems of Post-collisional Tectonic Settings[J].International Geology Review,2011,53(5/6):635-655.
[8] FAN H R,HU F F,WILDE S A,et al.The Qiyugou Gold-bearing Breccia Pipes,Xiong'ershan Region,Central China:Fluid-inclusion and Stable-isotope Evidence for an Origin from Magmatic Fluids[J].International Geo-logy Review,2011,53(1):25-45.
[9] LI N,CHEN Y J,SANTOSH M,et al.The 1.85 Ga Mo Mineralization in the Xiong'er Terrane,China:Implications for Metallogeny Associated with Assembly of the Columbia Supercontinent[J].Precambrian Research,2011,186(1/2/3/4):220-232.
[10] YANG Y F,LI N,CHEN Y J.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[J].Ore Geology Reviews,2012,46:83-94.
[11] DENG X H,CHEN Y J,SANTOSH M,et al.Genesis of the 1.76 Ga Zhaiwa Mo-Cu and Its Link with the Xiong'er Volcanics in the North China Craton:Implications for Accretionary Growth Along the Margin of the Columbia Supercontinent[J].Precambrian Research,2013,227:337-348.
[12] DENG X H,CHEN Y J,SANTOSH M,et al.Re-Os Geochronology,Fluid Inclusions and Genesis of the 0.85 Ga Tumen Molybdenite-fluorite Deposit in Eastern Qinling,China: Implications for Pre-Mesozoic Mo Enri-chment and Tectonic Setting[J].Geological Journal,2013,48(5):484-497.
[13] DENG X H,CHEN Y J,SANTOSH M,et al.Metallogeny During Continental Outgrowth in the Columbia Supercontinent:Isotopic Characterization of the Zhaiwa Mo-Cu System in the North China Craton[J].Ore Geology Reviews,2013,51:43-56.
[14] MAO J W,QIU Y M,GOLDFARB R J,et al.Geology,Distribution,and Classification of Gold Deposits in the Western Qinling Belt,Central China[J].Mineralium Deposita,2002,37(3/4):352-377.
[15] ZHOU Z J,LIN Z W,QIN Y.Geology,Geochemistry and Genesis of the Huachanggou Gold Deposit,Western Qinling Orogen,Central China[J].Geological Journal,2014,49(4/5):424-441.
[16] 王义忠,王得权.陕西南沙河地区车渡金矿床成因[J].地质通报,2019,38(11):1877-1887.
WANG Yi-zhong,WANG De-quan.The Genesis of the Chedu Gold Deposit in Nansha River Area,Shaanxi Province[J].Geological Bulletin of China,2019,38(11):1877-1887.
[17] 陈剑祥,高福平,卫中弟,等.陕西宁强县青木川—旧房梁一带典型金矿床特征、控矿因素及找矿标志[J].新疆有色金属,2013,36(2):15-18.
CHEN Jian-xiang,GAO Fu-ping,WEI Zhong-di,et al.Characteristics,Ore-controlling Factors and Prospecting Criteria of Typical Gold Deposits in Qingmuchuan-Jiufangliang Area,Ningqiang County,Shaanxi Province[J].Xinjiang Nonferrous Metals,2013,36(2):15-18.
[18] 张孝攀,王权锋,陈 聆,等.陕西省金厂沟金矿床地质及地球化学特征[J].贵金属,2015,36(1):29-35.
ZHANG Xiao-pan,WANG Quan-feng,CHEN Ling,et al.Geology and Geochemistry of Jinchanggou Gold Deposit in Shaanxi[J].Precious Metals,2015,36(1):29-35.
[19] 张利亚,陈守余,廖时理.陕西勉略宁地区旧房梁金矿床元素地球化学特征及成矿意义[J].地质科技情报,2017,36(2):151-159.
ZHANG Li-ya,CHEN Shou-yu,LIAO Shi-li.Element Geochemistry and Metallogenic Significance of Jiufang-liang Gold Deposit in Mianluening Region,Shaanxi Pro-vince[J].Geological Science and Technology Information,2017,36(2):151-159.
[20] KERSWILL J A,KIRKHAM R V,SINCLAIR W D,et al.Models for Iron-formation-hosted Gold Deposits[C]∥DUKE J M,KIRKHAM R V,SINCLAIR W D,et al.Mineral Deposit Modeling.St.John's:Geological Association of Canada,1993:171-199.
[21] GROVES D I,GOLDFARB R J,GEBRE-MARIAM M,et al.Orogenic Gold Deposits:A Proposed Classification in the Context of Their Crustal Distribution and Relationship to Other Gold Deposit Types[J].Ore Geo-logy Reviews,1998,13(1/2/3/4/5):7-27.
[22] GOLDFARB R J,GROVES D I,GARDOLL S.Orogenic Gold and Geologic Time:A Global Synthesis[J].Ore Geology Reviews,2001,18(1/2):1-75.
[23] GOLDFARB R J,BAKER T,DUBE B,et al.Distribution,Character and Genesis of Gold Deposits in Metamorphic Terranes[R].Littleton:Society of Economic Geologists,2005.
[24] STEADMAN J A,LARGE R R.Synsedimentary,Diagenetic,and Metamorphic Pyrite,Pyrrhotite,and Marcasite at the Homestake BIF-hosted Gold Deposit,South Dakota,USA:Insights on Au-As Ore Genesis from Textural and LA-ICP-MS Trace Element Studies[J].Economic Geology,2016,111(7):1731-1752.
[25] FRIPP R E P.Stratabound Gold Deposits in Archean Banded Iron-formation,Rhodesia[J].Economic Geology,1976,71(1):58-75.
[26] PHILLIPS G N,GROVES D I,MARTYN J E.An Epi-genetic Origin for Archean Banded Iron-formation-hosted Gold Deposits[J].Economic Geology,1984,79(1):162-171.
[27] PHILLIPS G N,POWELL R.Formation of Gold Deposits:A Metamorphic Devolatilization Model[J].Journal of Metamorphic Geology,2010,28(6):689-718.
[28] POULSEN K H,ROBERT F,DUBE B.Geological Classification of Canadian Gold Deposits[R].Ottawa:Geological Survey of Canada,2000.
[29] DUBE B,GOSSELIN P.Greenstone-hosted Quartz-carbonate Vein Deposits[C]∥GOODFELLOW W D.Mineral Deposits of Canada:A Synthesis of Major Deposit-types,Distric Metallogeny,the Evolution of Geo-logical Provinces,and Exploration Methods.St.John's:Geological Association of Canada,2007:49-73.
[30] GOURCEROL B,KONTAK D J,THURSTON P C,et al.Results of LA-ICP-MS Sulfide Mapping from Algoma-type BIF Gold Systems with Implications for the Nature of Mineralizing Fluids,Metal Sources,and Deposit Models[J].Mineralium Deposita,2018,53(6):871-894.
[31] WANG X C,LI X H,LI W X,et al.The Bikou Basalts in the Northwestern Yangtze Block,South China:Remnants of 820-810 Ma Continental Flood Basalts?[J].Geological Society of America Bulletin,2008,120(11/12):1478-1492.
[32] YAN Q R,HANSON A D,WANG Z Q,et al.Neoproterozoic Subduction and Rifting on the Northern Margin of the Yangtze Plate,China:Implications for Rodinia Reconstruction[J].International Geology Review,2004,46(9):817-832.
[33] 秦克令,杨静华.陕西略阳何家岩磷矿顶板铷、锶同位素数据及磷矿的时代问题[J].西北地质,1983,16(2):43-48.
QIN Ke-ling,YANG Jing-hua.Rb,Sr Isotopic Data of the Roof of Hejiayan Phosphorite in Lueyang,Shaanxi Province and the Age of Phosphorite[J].Northwestern Geology,1983,16(2):43-48.
[34] 王 凯,刘少峰,姜承鑫,等.扬子板块北缘中段多期褶皱构造的变形特征及叠加关系[J].大地构造与成矿学,2015,39(2):231-240.
WANG Kai,LIU Shao-feng,JIANG Cheng-xin,et al.Structural Style and Superposed Relationship of Multi-period Folds in the Middle Segment of Northern Yangtze Block[J].Geotectonica et Metallogenia,2015,39(2):231-240.
[35] 秦克令,何世平,宋述光.碧口地体同位素地质年代学及其意义[J].西北地质科学,1992,13(2):97-110.
QIN Ke-ling,HE Shi-ping,SONG Shu-guang.Isotope Geochronology of Bikou Terrane and Its Significance[J].Northwest Geoscience,1992,13(2):97-110.
[36] 吴峰辉,刘树文,李秋根,等.西秦岭光头山花岗岩锆石U-Pb年代学及其地质意义[J].北京大学学报(自然科学版),2009,45(5):811-818.
WU Feng-hui,LIU Shu-wen,LI Qiu-gen,et al.Zircon U-Pb Geochronology and Geological Significance of Guangtoushan Granitoids from Western Qinling,Central China[J].Acta Scientiarum Naturalium Universitatis Pekinensis,2009,45(5):811-818.
[37] LIU C H,LIU J J,CARRANZA E J M,et al.Geological and Geochemical Constraints on the Genesis of the Huachanggou Gold Deposit,Western Qinling Region,Central China[J].Ore Geology Reviews,2016,73:354-373.
[38] 岳素伟,林振文,邓小华,等.陕西省煎茶岭金矿C、H、O、S、Pb同位素地球化学示踪[J].大地构造与成矿学,2013,37(4):653-670.
YUE Su-wei,LIN Zhen-wen,DENG Xiao-hua,et al.C,H,O,S,Pb Isotopic Geochemistry of the Jianchaling Gold Deposit,Shaanxi Province[J].Geotectonica et Metallogenia,2013,37(4):653-670.
[39] 杨 晨.碧口地块构造演化[D].西安:西北大学,2011.
YANG Chen.The Tectonic Evolution of Bikou Terrane[D].Xi'an:Northwest University,2011.
[40] YUE S W,DENG X H,BAGAS L,et al.Fluid Inclusion Geochemistry and 40Ar/39Ar Geochronology Con-straints on the Genesis of the Jianchaling Au Deposit,China[J].Ore Geology Reviews,2017,80:676-690.
[41] 周振菊,秦 艳,林振文,等.西秦岭铧厂沟金矿床流体包裹体特征研究及矿床成因[J].岩石学报,2011,27(5):1311-1326.
ZHOU Zhen-ju,QIN Yan,LIN Zhen-wen,et al.Study of Fluid Inclusion Characteristic and Genetic Type of the Huachanggou Gold Deposit,West Qinling Orogen[J].Acta Petrologica Sinica,2011,27(5):1311-1326.
[42] 魏刚锋,姜修道,刘永华,等.铧厂沟金矿床地质特征及控矿因素分析[J].矿床地质,2000,19(2):138-146.
WEI Gang-feng,JIANG Xiu-dao,LIU Yong-hua,et al.Geological Characteristics and Ore-controlling Factors of the Huachanggou Gold Deposit[J].Mineral Deposits,2000,19(2):138-146.
[1]王义天,李霞,王瑞廷,等.陕西凤太矿集区丝毛岭金矿床成矿时代的Ar-Ar年龄证据[J].地球科学与环境学报,2014,36(03):61.
WANG Yi-tian,LI Xia,WANG Rui-ting,et al.Evidence of Ar-Ar Age for the Metallogenic Epoch of Simaoling Gold Deposit in Fengxian-Taibai Ore Cluster of Shaanxi[J].Journal of Earth Sciences and Environment,2014,36(03):61.
[2]张婷,彭建堂.湘西合仁坪钠长石石英脉型金矿床围岩蚀变及质量平衡[J].地球科学与环境学报,2014,36(04):32.
ZHANG Ting,PENG Jian-tang.Wall-rock Alteration and Mass Balance of Herenping Albite-quartz Vein-type Gold Deposit in the Western Hunan[J].Journal of Earth Sciences and Environment,2014,36(03):32.
[3]宋慈安,宋玮,丁汝福,等.甘肃北山地区460金矿床植物地球化学异常形成的地学机制[J].地球科学与环境学报,2016,38(06):766.
SONG Ci-an,SONG Wei,DING Ru-fu,et al.Formation Geo-mechanism of Botanogeochemical Anomaly of 460 Au Deposit in Beishan Area of Gansu[J].Journal of Earth Sciences and Environment,2016,38(03):766.
[4]刘新会,刘爽,李渊,等.丁家山古楼山金矿床成矿流体储运规律[J].地球科学与环境学报,2006,28(01):24.
LIU Xin-hui,LIU Shuang,LI Yuan,et al.Storage and Moving of Ore-forming Fluid of
Dingjiashan-Gulushan Gold Deposit[J].Journal of Earth Sciences and Environment,2006,28(03):24.
[5]舒建生,杨兴科,王磊,等.新疆冰达坂阿拉沟成矿条件及有利区带[J].地球科学与环境学报,2006,28(04):15.
SHU Jian-sheng,YANG Xing-ke,WANG Lei,et al.Metallogenetic Environment and Prospective
Provinces of Bingdaban-Alagou Zone of
Enrichment in Tianshan Mountains,Xingjiang[J].Journal of Earth Sciences and Environment,2006,28(03):15.
[6]隗合明,赵国斌,焦建刚.河南夏馆—二郎坪一带叠加
改造型金矿床地质特征及成矿模式[J].地球科学与环境学报,2005,27(01):39.
WEI He-ming,ZHAO Guo-bin,JIAO Jian-gang.Geological features and metallogenic model of
hydrothermal superimposion (regeneration) gold
deposits from Xiaguan to Erlangping in Henan[J].Journal of Earth Sciences and Environment,2005,27(03):39.
[7]安 鹏,陈懋弘*,孔志岗,等.桂西隆林地区隆或金矿构造控矿模型及成矿预测[J].地球科学与环境学报,2023,45(01):27.[doi:10.19814/j.jese.2022.06017]
AN Peng,CHEN Mao-hong*,KONG Zhi-gang,et al.Structural Ore-controlling Model and Metallogenic Target of Longhuo Gold Deposit in Longlin Area, the Western Guangxi, China[J].Journal of Earth Sciences and Environment,2023,45(03):27.[doi:10.19814/j.jese.2022.06017]