[1] 杨富全,张忠利,王 蕊,等.新疆阿尔泰稀有金属矿地质特征及成矿作用[J].大地构造与成矿学,2018,42(6):1010-1026.
YANG Fu-quan,ZHANG Zhong-li,WANG Rui,et al.Geological Characteristics and Metallogenesis of Rare Metal Deposits in Altay,Xinjiang[J].Geotectonica et Metallogenia,2018,42(6):1010-1026.
[2] 邹天人,李庆昌.中国新疆稀有及稀土金属矿床[M].北京:地质出版社,2006.
ZOU Tian-ren,LI Qing-chang.Rare and Rare Earth Metallic Deposits in Xinjiang,China[M].Beijing:Geolo-gical Publishing House,2006.
[3] 薛春纪,祁思敬,隗合明,等.基础矿床学[M].北京:地质出版社,2006.
XUE Chun-ji,QI Si-jing,WEI He-ming,et al.Mineral Deposits[M].Beijing:Geological Publishing House,2006.
[4] YANG F Q,MAO J W,LIU F,et al.A Review of the Geological Characteristics and Mineralization History of Iron Deposits in the Altay Orogenic Belt of the Xinjiang,Northwest China[J].Ore Geology Reviews,2013,54:1-16.
[5] GENG X X,YANG F Q,QIN J H,et al.Devonian Porphyry Cu Deposits in NW China:The Xiaotu'ergen Example[J].International Geology Review,2016,59(10):1-15.
[6] 王 波,孙军红,丁建刚,等.新疆富蕴县别也萨麻斯稀有金属矿资源储量核实报告[R].昌吉:新疆维吾尔自治区有色地质勘查局七〇一队,2018.
WANG Bo,SUN Jun-hong,DING Jian-gang,et al.Verification Report of Resource Reserves of the Bieyesamasi Rare Metal Deposit in Fuyun County,Xinjiang[R].Changji:No.701 Geological Team,Xinjiang Nonferrous Geoexploration Bureau,2018.
[7] LIU Y S,GAO S,HU Z C,et al.Continental and Ocea-nic 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[J].Journal of Petrology,2010,51(1/2):537-571.
[8] 侯可军,李延河,田有荣.LA-MC-ICP-MS锆石微区原位U-Pb定年技术[J].矿床地质,2009,28(4):481-492.
HOU Ke-jun,LI Yan-he,TIAN You-rong.In-situ U-Pb Zircon Dating Using Laser Ablation-multi Ion Counting-ICP-MS[J].Mineral Deposits,2009,28(4):481-492.
[9] ELHLOU S,BELOUSOVA E,GRIFFIN W L,et al.Trace Element and Isotopic Composition of GJ-red Zircon Standard by Laser Ablation[J].Geochimica et Cosmochimica Acta,2006,DOI:10.1016/j.gca.2006.06.1383.
[10] 侯可军,李延河,邹天人,等.LA-MC-ICP-MS锆石Hf同位素的分析方法及地质应用[J].岩石学报,2007,23(10):2595-2604.
HOU Ke-jun,LI Yan-he,ZOU Tian-ren,et al.Laser Ablation-MC-ICP-MS Technique for Hf Isotope Microanalysis of Zircon and Its Geological Applications[J].Acta Petrologica Sinica,2007,23(10):2595-2604.
[11] WANG T,TONG Y,JAHN B M,et al.SHRIMP U-Pb Zircon Geochronology of the Altai No.3 Pegmatite,NW China,and Its Implications for the Origin and Tectonic Setting of the Pegmatite[J].Ore Geology Reviews,2007,32(1/2):325-336.
[12] 任宝琴,张 辉,唐 勇,等.阿尔泰造山带伟晶岩年代学及其地质意义[J].矿物学报,2011,31(3):587-596.
REN Bao-qin,ZHANG Hui,TANG Yong,et al.LA-ICPMS U-Pb Zircon Geochronology of the Altai Pegmatites and Its Geological Significance[J].Acta Mine-ralogica Sinica,2011,31(3):587-596.
[13] 李长民.锆石成因矿物学与锆石微区定年综述[J].地质调查与研究,2009,33(3):161-174.
LI Chang-min.A Review on the Minerageny and Situ Microanalytical Dating Techniques of Zircons[J].Geo-logical Survey and Research,2009,33(3):161-174.
[14] YANG F Q,GENG X X,WANG R,et al.A Synthesis of Mineralization Styles and Geodynamic Settings of the Paleozoic and Mesozoic Metallic Ore Deposits in the Altay Mountains,NW China[J].Journal of Asian Earth Sciences,2018,159:233-258.
[15] 杨富全,耿新霞,李凤鸣,等.阿尔泰南缘火山沉积盆地解剖与矿床深边部定位预测[R].北京:中国地质科学院矿产资源研究所,2016.
YANG Fu-quan,GENG Xin-xia,LI Feng-ming,et al.The Study of Volcanic Sedimentary Basin in the Southern Margin of Altay and Mineral Prospecting in the Deep and Edge of Ore Deposit[R].Beijing:Institute of Mineral Resources,Chinese Academy of Geological Sciences,2016.
[16] MOLLER P,CERNY P,SAUPE F.Lanthanides,Tantalum and Niobium[M].Berlin:Springer-Verlag,1989.
[17] CERNY P.Rare-element Granitic Pegmatites,Part I:Anatomy and Internal Evolution of Pegmatitic Depo-sits[J].Geoscience Canada,1991,18:49-67.
[18] CERNY P.Rare-element Granitic Pegmatites,Part Ⅱ:Regional to Global Environments and Petrogenesis[J].Geoscience Canada,1991,18:68-81.
[19] BAKER D R.The Escape of Pegmatite Dikes from Granitic Plutons:Constraints from New Models of Viscosity and Dike Propagation[J].The Canadian Minera-logist,1998,36:255-263.
[20] 王春龙,秦克章,唐冬梅,等.阿尔泰阿斯喀尔特Be-Nb-Mo矿床年代学、锆石Hf同位素研究及其意义[J].岩石学报,2015,31(8):2337-2352.
WANG Chun-long,QIN Ke-zhang,TANG Dong-mei,et al.Geochronology and Hf Isotope of Zircon for the Arskartor Be-Nb-Mo Deposit in Altay and Its Geologi-cal Implications[J].Acta Petrologica Sinica,2015,31(8):2337-2352.
[21] 刘文政,张 辉,唐红峰,等.新疆阿斯喀尔特铍钼矿床中辉钼矿Re-Os 定年及成因意义[J].地球化学,2015,44(2):145-154.
LIU Wen-zheng,ZHANG Hui,TANG Hong-feng,et al.Molybdenite Re-Os Dating of the Asika'erte Be-Mo Deposit in Xinjiang,China and Its Genetic Implications[J].Geochimica,2015,44(2):145-154.
[22] ZHOU Q F,QIN K Z,TANG D M,et al.LA-ICP-MS U-Pb Zircon,Columbite-tantalite and 40Ar-39Ar Muscovite Age Constraints for the Rare-element Pegmatite Dykes in the Altai Orogenic Belt,NW China[J].Geological Magazine,2018,155(3):707-728.
[23] 童 英.阿尔泰造山带晚古生代花岗岩年代学、成因及其地质意义[D].北京:中国地质科学院,2006.
TONG Ying.Geochronology,Origin of the Late Paleozoic Granitoids from the Altai Orogen in China and Their Geological Significance[D].Beijing:Chinese Academy of Geological Sciences,2006.
[24] 李 强,杨富全,杨成栋.新疆阿尔泰大喀拉苏花岗岩年代学、地球化学特征及其构造意义[J].地球科学与环境学报,2019,41(4):396-413.
LI Qiang,YANG Fu-quan,YANG Cheng-dong.Geochronology and Geochemical Characteristics of Dakalasu Granite in Altay of Xinjiang,China and Their Tectonic Significance[J].Journal of Earth Sciences and Environment,2019,41(4):396-413.
[25] 唐国凡,吴盛先.四川省康定县甲基卡花岗伟晶岩锂矿床地质研究报告[R].西昌:四川省地质矿产局攀西地质大队,1984.
TANG Guo-fan,WU Sheng-xian.Report of Geological Research of the Granitic Pegmatite Type Jiajika Li Deposit in Kangding,Sichuan Province[R].Xichang:Panxi Geological Party of the Sichuan Bureau of Geology,1984.
[26] 王登红,李建康,付小方.四川甲基卡伟晶岩型稀有金属矿床的成矿时代及其意义[J].地球化学,2005,34(6):541-547.
WANG Deng-hong,LI Jian-kang,FU Xiao-fang.40Ar/39Ar Dating for the Jiajika Pegmatite-type Rare Metal Deposit in Western Sichuan and Its Significance[J].Geochimica,2005,34(6):541-547.
[27] 周起凤.阿尔泰可可托海3号脉伟晶岩型稀有金属矿床年代学、矿物学、熔-流体演化与成矿作用[D].北京:中国科学院大学,2013.
ZHOU Qi-feng.The Geochronology,Mineralogy,Melt-fluid Evolution and Metallogenesis of Koktokay No.3 Pegmatitic Rare-element Deposit,Altai,China[D].Beijing:University of Chinese Academy of Sciences,2013.
[28] ZHOU Q F,QIN K Z,TANG D M,et al.Formation Age and Evolution Time Span of the Koktokay No.3 Pegmatite,Altai,NW China:Evidence from U-Pb Zircon and 40Ar-39Ar Muscovite Ages[J].Resource Geology,2015,65(3):210-231.
[29] CHE X D,WU F Y,WANG R C,et al.In-situ U-Pb Isotopic Dating of Columbite-tantalite by LA-ICP-MS[J].Ore Geology Reviews,2015,65:979-989.
[30] 陈剑锋.阿尔泰3号伟晶岩脉缓倾斜部分岩浆的形成和演化[D].北京:中国科学院研究生院,2011.
CHEN Jian-feng.Geochemistry of the Plate Part in Altai No.3 Pegmatite and Its Formation and Evolution[D].Beijing:Graduate University of Chinese Academy of Sciences,2011 .
[31] LIU F,ZHANG Z X,LI Q,et al.New Precise Timing Constraint for the Keketuohai No.3 Pegmatite in Xinjiang,China,and Identification of Its Parental Pluton[J].Ore Geology Reviews,2014,56:209-219.
[32] LV Z H,ZHANG H,TANG Y,et al.Petrogenesis and Magmatic-hydrothermal Evolution Time Limitation of Kelumute No.112 Pegmatite in Altay,Northwestern China:Evidence from Zircon U-Pb and Hf Isotopes[J].Lithos,2012,154:374-391.
[33] 秦克章,申茂德,唐冬梅,等.阿尔泰造山带伟晶岩型稀有金属矿化类型与成岩成矿时代[J].新疆地质,2013,31(增1):1-7.
QIN Ke-zhang,SHEN Mao-de,TANG Dong-mei,et al.Types,Intrusive and Mineralization Ages of Pegmatite Rare-element Deposits in Chinese Altay[J].Xinjiang Geology,2013,31(S1):1-7.
[34] 马占龙,张 辉,唐 勇,等.新疆卡鲁安矿区伟晶岩锆石U-Pb定年、铪同位素组成及其与哈龙花岗岩成因关系研究[J].地球化学,2015,44(1):9-26.
MA Zhan-long,ZHANG Hui,TANG Yong,et al.Zircon U-Pb Geochronology and Hf Isotopes of Pegmatites from the Kalu'an Mining Area in the Altay,Xinjiang and Their Genetic Relationship with the Halong Granite[J].Geochimica,2015,44(1):9-26.
[35] ZHANG X,ZHANG H,MA Z L,et al.A New Model for the Granite-pegmatite Genetic Relationships in the Kalu'an-Azubai-Qiongku'er Pegmatite-related Ore Fields,the Chinese Altay[J].Journal of Asian Earth Sciences,2016,124:139-155.
[36] SODERLUND U,PATCHTT P J,VERROOT J D,et al.The 176Lu Decay Contant Determined by Lu-Hf and U-Pb Isotope Systematics of Precambrian Mafic Intrusion[J].Earth and Planetary Science Letters,2004,219(3/4):311-324.
[37] BLICHERT-TOFT J,ALBAREDE F.The Lu-Hf Isotope Geochemistry of Chondrites and the Evolution of the Mantle-crust System[J].Earth and Planetary Science Letters,1997,148(1/2):243-258.
[38] GRIFFIN W L,PEARSON N J,BELOUSOVA E,et al.The Hf Isotope Composition of Cratonic Mantle:LAM-MC-ICPMS Analysis of Zircon Megacrysts in Kimberlites[J].Geochimica et Cosmochimica Acta,2000,64(1):133-147.
[39] 张 辉,唐 勇,吕正航,等.新疆阿尔泰成矿带哈龙—青河一带稀有金属成矿规律及找矿靶区预测研究[R].乌鲁木齐:新疆有色金属工业集团,2014.
ZHANG Hui,TANG Yong,LU Zheng-hang,et al.Metallogenic Regularity of Rare Metals and Prediction of Prospecting Target Area in the Halong-Qinghe Area of the Altay Metallogenic Belt,Xinjiang[R].Urumqi:Xinjiang Nonferrous Metals Industry Group,2014.
[40] SCHERER E E,CAMERON K L,BLICHERT-TOFT J.Lu-Hf Garnet Geochronology:Closure Temperature Relative to the Sm-Nd System and the Effects of Trace Mineral Inclusions[J].Geochimica et Cosmochimica Acta,2000,64(19):3413-3432.
[41] BELOISOVA B A,GRIFFIN W L,O'REILLY S Y.Zircon Crystal Morphology,Trace Element Signatures and Hf Isotope Composition as a Tool for Petrogenetic Modelling:Examples from Eastern Australian Grani-toids[J].Journal of Petrology,2006,47(2):329-353.
[42] YANG J H,WU F Y,CHUNG S L,et al.A Hybrid Origin for the Qianshan A-type Granite,Northeast China:Geochemical and Sr-Nd-Hf Isotopic Evidence[J].Lithos,2006,89(1/2):89-106.
[43] PATCHETT P J,KOUVO O,HEDGE C E,et al.Evo-lution of Continental Crust and Mantle Heterogeneity:Evidence from Hf Isotopes[J].Contributions to Mine-ralogy and Petrology,1981,78:279-297.
[44] 隋振民,葛文春,吴福元,等.大兴安岭东北部侏罗纪花岗质岩石的锆石U-Pb年龄、地球化学特征及成因[J].岩石学报,2007,23(2):461-480.
SUI Zhen-min,GE Wen-chun,WU Fu-yuan,et al.Zircon U-Pb Ages,Geochemistry and Its Petrogenesis of Jurassic Granites in Northeastern Part of the Da Hinggan Mts.[J].Acta Petrologica Sinica,2007,23(2):461-480.
[45] 吴福元,李献华,郑永飞,等.Lu-Hf同位素体系及其岩石学应用[J].岩石学报,2007,23(2):185-220.
WU Fu-yuan,LI Xian-hua,ZHENG Yong-fei,et al.Lu-Hf Isotopic Systematics and Their Applications in Petrology[J].Acta Petrologica Sinica,2007,23(2):185-220.
[46] 陈剑锋,张 辉,张锦煦,等.新疆可可托海3号伟晶岩脉锆石U-Pb定年、Hf同位素特征及地质意义[J].中国有色金属学报,2018,28(9):1832-1844.
CHEN Jian-feng,ZHANG Hui,ZHANG Jin-xu,et al.Geochronology and Hf Isotope of Zircon for Koktokay No.3 Granitic Pegmatite in Xinjiang and Its Geological Implications[J].The Chinese Journal of Nonferrous Metals,2018,28(9):1832-1844.
[47] WANG T,HONG D W,JAHN B M,et al.Timing,Petrogenesis,and Setting of Paleozoic Synorogenic Intrusions from the Altai Mountains,Northwest China:Implications for the Tectonic Evolution of an Accretionary Orogen[J].Journal of Geology,2006,114(6):735-751.
[48] 刘 锋,李延河,毛景文,等.阿尔泰造山带阿巴宫花岗岩体锆石SHRIMP年龄及其地质意义[J].地球学报,2008,29(6):795-804.
LIU Feng,LI Yan-he,MAO Jing-wen,et al.SHRIMP U-Pb Ages of the Abagong Granites in the Altay Orogen and Their Geological Implications[J].Acta Geoscientia Sinica,2008,29(6):795-804.
[49] 柴凤梅,董连慧,杨富全,等.阿尔泰南缘克朗盆地铁木尔特花岗岩体年龄、地球化学特征及成因[J].岩石学报,2010,26(2):377-386.
CHAI Feng-mei,DONG Lian-hui,YANG Fu-quan,et al.Age,Geochemistry and Petrogenesis of Tiemi'erte Granites in the Kelang Basin at the Southern Margin of Altay,Xinjiang[J].Acta Petrologica Sinica,2010,26(2):377-386.
[50] SUN M,YUAN C,XIAO W J,et al.Zircon U-Pb and Hf Isotopic Study of Gneissic Rocks from the Chinese Altai:Progressive Accretionary History in the Early to Middle Palaeozoic[J].Chemical Geology,2008,247(3/4):352-383.
[51] 王 涛,童 英,李 舢,等.阿尔泰造山带花岗岩时空演变、构造环境及地壳生长意义:以中国阿尔泰为例[J].岩石矿物学杂志,2010,29(6):595-618.
WANG Tao,TONG Ying,LI Shan,et al.Spatial and Temporal Variations of Granitoids in the Altay Orogen and Their Implications for Tectonic Setting and Crustal Growth:Perspectives from Chinese Altay[J].Acta Petrologica et Mineralogica,2010,29(6):595-618.
[52] 董连慧,屈 迅,赵同阳,等.新疆北阿尔泰造山带早古生代花岗岩类侵入序列及其构造意义[J].岩石学报,2012,28(8):2307-2316.
DONG Lian-hui,QU Xun,ZHAO Tong-yang,et al.Magmatic Sequence of Early Palaeozoic Granitic Intrusions and Its Tectonic Implications in North Altay Orogen,Xinjiang[J].Acta Petrologica Sinica,2012,28(8):2307-2316.
[53] 童 英,王 涛,洪大卫,等.中国阿尔泰北部山区早泥盆世花岗岩的年龄、成因及构造意义[J].岩石学报,2007,23(8):1933-1944.
TONG Ying,WANG Tao,HONG Da-wei,et al.Ages and Origin of the Early Devonian Granites from the North Part of Chinese Altai Mountains and Its Tectonic Implications[J].Acta Petrologica Sinica,2007,23(8):1933-1944.
[54] 曾乔松,陈广浩,王 核,等.阿尔泰冲乎尔盆地花岗质岩体的锆石SHRIMP U-Pb定年及其构造意义[J].岩石学报,2007,23(8):1921-1932.
ZENG Qiao-song,CHEN Guang-hao,WANG He,et al.Geochemical Characteristic,SHRIMP Zircon U-Pb Dating and Tectonic Implication for Granitoids in Chonghu'er Basin,Xinjiang[J].Acta Petrologica Sinica,2007,23(8):1921-1932.
[55] YUAN C,SUN M,XIAO W J,et al.Accretionary Oro-genesis of the Chinese Altai:Insights from Paleozoic Gra-nitoids[J].Chemical Geology,2007,242(1/2):22-39.
[56] CAI K D,SUN M,YUAN C,et al.Prolonged Magmatism,Juvenile Nature and Tectonic Evolution of the Chinese Altai,NW China:Evidence from Zircon U-Pb and Hf Isotopic Study of Paleozoic Granitoids[J].Journal of Asian Earth Sciences,2011,42:949-968.
[57] 张忠利,杨成栋,张 斌,等.新疆阿尔泰克兰盆地泥盆纪花岗岩年代学特征及其地质意义[J].地球科学与环境学报,2019,41(4):414-430.
ZHANG Zhong-li,YANG Cheng-dong,ZHANG Bin,et al.Geochronological Characteristics of Devonian Grani-toids in Kelan Basin of Altay,Xinjiang,China and Their Geological Implications[J].Journal of Earth Sciences and Environment,2019,41(4):414-430.
[58] GENG X X,YANG C D,YANG F Q,et al.Geochemi-stry and Sr-Nd-Hf Isotopes of Granitoids from the Xiaotu'ergen Porphyry Cu Deposit,Altay Orogenic Belt,Xinjiang,Northwest China:Implications for Petrogenesis,Tectonic setting,and Mineralization[J].Ore Geo-logy Reviews,2019,DOI:10.1016/j.oregeorev.2019.103071.
[59] 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.
[60] GLORIE S,DE GRAVE J,BUSLOV M M,et al.Structural Control on Meso-Cenozoic Tectonic Reactivation and Denudation in the Siberian Altai:Insights from Multi-method Thermochronometry[J].Tectonophysics,2012,544/545:75-92.
[1]申 萍,潘鸿迪,李昌昊,等.中哈俄阿尔泰稀有金属矿床时空分布、成因及成矿规律[J].地球科学与环境学报,2021,43(03):487.[doi:10.19814/j.jese.2021.02017]
SHEN Ping,PAN Hong-di,LI Chang-hao,et al.Temporal-spatial Distribution, Genesis and Metallogenic Regularity of the Rare Metal Deposits in Altay of China, Kazakhstan and Russia[J].Journal of Earth Sciences and Environment,2021,43(01):487.[doi:10.19814/j.jese.2021.02017]