[1] 翟明国,吴福元,胡瑞忠,等.战略性关键金属矿产资源:现状与问题[J].中国科学基金,2019,33(2):106-111.
ZHAI Ming-guo,WU Fu-yuan,HU Rui-zhong,et al.Critical Metal Mineral Resources:Current Research Status and Scientific Issues[J].Bulletin of National Natural Science Foundation of China,2019,33(2):106-111.
[2] 毛景文,袁顺达,谢桂青,等.21世纪以来中国关键金属矿产找矿勘查与研究新进展[J].矿床地质,2019,38(5):935-969.
MAO Jing-wen,YUAN Shun-da,XIE Gui-qing,et al.New Advances on Metallogenic Studies and Exploration on Critical Minerals of China in 21st Century[J].Mineral Deposits,2019,38(5):935-969.
[3] 陈 骏.关键金属超常富集成矿和高效利用[J].科技导报,2019,37(24):1.
CHEN Jun.Supernormal Enrichment,Mineralization and Highly Efficient Utilization of Critical Metals[J].Science and Technology Review,2019,37(24):1.
[4] WINDLEY B F,KRÖNER A,GUO J H,et al.Neoproterozoic to Paleozoic Geology of the Altai Orogen,NW China:New Zircon Age Data and Tectonic Evolution[J].The Journal of Geology,2002,110(6):719-737.
[5] 何国琦,成守德,徐 新,等.中国新疆及邻区大地构造图(1:2 500 000)[M].北京:地质出版社,2004.
HE Guo-qi,CHENG Shou-de,XU Xin,et al.An Introduction to the Explanatory Text of the Map of Tectonics of Xinjiang and Its Neighbouring Area(1:2 500 000)[M].Beijing:Geological Publishing House,2004.
[6] XIAO W J,HUANG B C,HAN C M,et al.A Review of the Western Part of the Altaids:A Key to Understanding the Architecture of Accretionary Orogens[J].Gondwana Research,2010,18(2/3):253-273.
[7] 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.
[8] 陈毓川,刘德权,应立娟,等.新疆觉罗塔格成矿带与南阿尔泰成矿带的对比研究[J].矿床地质,2009,28(1):1-14.
CHEN Yu-chuan,LIU De-quan,YING Li-juan,et al.A Comparative Study of Jueluotage Metallogenic Belt and South Altay Metallogenic Belt in Xinjiang[J].Mineral Deposits,2009,28(1):1-14.
[9] 陈毓川.中国主要成矿区带矿产资源远景评价[M].北京:地质出版社,1999.
CHEN Yu-chuan.Prospect Evaluation of Mineral Resources in Main Metallogenic Zones of China[M].Beijing:Geological Publishing House,1999.
[10] 王登红,陈毓川,徐志刚,等.阿尔泰成矿省的成矿系列及成矿规律[M].北京:原子能出版社,2002.
WANG Deng-hong,CHEN Yu-chuan,XU Zhi-gang,et al.Metallogenic Series and Regularities in Altai Metallogenic Province[M].Beijing:Atomic Energy Press,2002.
[11] 王登红,刘丽君,代鸿章,等.试论国内外大型超大型锂辉石矿床的特殊性与找矿方向[J].地球科学,2017,42(12):2243-2257.
WANG Deng-hong,LIU Li-jun,DAI Hong-zhang,et al.Discussion on Particularity and Prospecting Direction of Large and Super-large Spodumene Deposits[J].Earth Science,2017,42(12):2243-2257.
[12] 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.
[13] 杨富全,张志欣,刘国仁,等.新疆中亚造山带三叠纪矿床地质特征、时空分布及找矿方向[J].矿床地质,2020,39(2):197-214.
YANG Fu-quan,ZHANG Zhi-xin,LIU Guo-ren,et al.A Review of Geological Characteristics and Time-space Distribution as Well as Prospecting Direction of Triassic Deposits in Central Asian Orogenic Belt,Xinjiang[J].Mineral Deposits,2020,39(2):197-214.
[14] 张 辉.岩浆-热液过渡阶段体系中不相容元素地球化学行为及其机制:以新疆阿尔泰3号伟晶岩脉研究为例[D].贵阳:中国科学院地球化学研究所,2001.
ZHANG Hui.The Geochemical Behaviors and Mechanisms of Incompatible Trace Elements in the Magmatic-hydrothermal Transition System:A Case Study of Altay No.3 Pegmatite,Xinjiang[D].Guiyang:Institute of Geochemistry,Chinese Academy of Sciences,2001.
[15] 张 辉,吕正航,唐 勇.新疆阿尔泰造山带中伟晶岩型稀有金属矿床成矿规律、找矿模型及其找矿方向[J].矿床地质,2019,38(4):792-814.
ZHANG Hui,LV Zheng-hang,TANG Yong.Metallogeny and Prospecting Model as Well as Prospecting Direction of Pegmatite-type Rare Metal Ore Deposits in Altay Orogenic Belt,Xinjiang[J].Mineral Depo-sits,2019,38(4):792-814.
[16] 邹天人,张相宸,贾富义,等.论阿尔泰3号伟晶岩脉的成因[J].矿床地质,1986,5(4):34-48.
ZOU Tian-ren,ZHANG Xiang-chen,JIA Fu-yi,et al.The Origin of No.3 Pegmatite in Altayshan,Xinjiang[J].Mineral Deposits,1986,5(4):34-48.
[17] 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 Metal Deposits in Xinjiang,China[M].Beijing:Geological Publishing House,2006.
[18] LIU W,LIU C Q,MASUDA A.Complex Trace-element Effects of Mixing-fractional Crystallization Composite Processes:Applications to the Ala'er Gra-nite Pluton,Altay Mountains,Xinjiang,Northwestern China[J].Chemical Geology,1997,135:103-124.
[19] 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.
[20] ZHU Y F,ZENG Y S,GU L B.Geochemistry of the Rare Metal-bearing Pegmatite No.3 Vein and Related Granites in the Keketuohai Region,Altay Mountains,Northwest China[J].Journal of Asian Earth Sciences,2006,27(1):61-77.
[21] 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):325-336.
[22] 韩宝福.中俄阿尔泰山中生代花岗岩与稀有金属矿床的初步对比分析[J].岩石学报,2008,24(4):655-660.
HAN Bao-fu.A Preliminary Comparison of Mesozoic Granitiods and Rare Metal Deposits in Chinese and Russian Altai Mountains[J].Acta Petrologica Sinica,2008,24(4):655-660.
[23] 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 Mi-neralogica Sinica,2011,31(3):587-596.
[24] 陈剑锋.阿尔泰3号脉缓倾斜部分的形成和演化[D].贵阳:中国科学院地球化学研究所,2011.
CHEN Jian-feng.Geochemistry of the Part of the Plate of the Altai No.3 Pegmatite and Its Formation and Evolution[D].Guiyang:Institute of Geochemi-stry,Chinese Academy of Sciences,2011.
[25] 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.
[26] 刘 宏.新疆阿尔泰阿拉尔花岗岩地球化学特征及其与可可托海3号脉演化关系[D].昆明:昆明理工大学,2013.
LIU Hong.Geochemical Study on Petrogenesis of Aral Granite and the Keketuohai No.3 Pegmatite Vein,Altay Xinjiang[D].Kunming:Kunming University of Science and Technology,2013.
[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:中国科学院地质与地球物理研究所,2013.
ZHOU Qi-feng.The Geochronology,Mineralogy,Melt-fluid Evolution and Metallogenesis of the Koktokay No.3 Pegmatitic Rare-element Deposit,Altai,China[D].Beijing:Institute of Geology and Geophy-sics,Chinese Academy of Sciences,2013.
[28] 刘 锋,曹 峰,张志欣,等.新疆可可托海近3号脉花岗岩成岩时代及地球化学特征研究[J].岩石学报,2014,30(1):1-15.
LIU Feng,CAO Feng,ZHANG Zhi-xin,et al.Chronology and Geochemistry of the Granite near the Keketuohai No.3 Pegmatite in Xinjiang[J].Acta Pe-trologica Sinica,2014,30(1):1-15.
[29] 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 Geo-logy,2015,65(3):210-231.
[30] 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 Kaluan Mining Area in the Altay,Xinjiang and Their Genetic Relationship with the Halong Granite[J].Geochimica,2015,44(1):9-26.
[31] 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.
[32] 刘源骏.花岗岩型稀有金属矿床成矿模式初议[J].资源环境与工程,2016,30(增1):19-24.
LIU Yuan-jun.Preliminary Discussion on the Metallogenic Model of Granitic Type Rare Metal Deposits[J].Resources Environment and Engineering,2016,30(S1):19-24.
[33] ZHANG X,ZHANG H,MA Z L,et al.A New Model for the Granite-pegmatite Genetic Relationships in the Kaluan-Azubai-Qiongkuer Pegmatite-related Ore Fiel-ds,the Chinese Altay[J].Journal of Asian Earth Sciences,2016,124:139-155.
[34] ANNIKOVA I Y,VLADIMIROV A G,VYSTAVNOI S A,et al.U-Pb and 39Ar/40Ar Dating and Sm-Nd and Pb-Pb Isotopic Study of the Kalguty Molybdenumtun-gsten Ore-magmatic System,Southern Altai[J].Petrology,2006,14(1):81-97.
[35] ANNIKOVA I Y,VLADIMIROV A,SMIRNOV S,et al.Geology and Mineralogy of the Alakha Spodumene Granite Porphyry Deposit,Gorny Altai,Russia[J].Geology of Ore Deposits,2016,58(5):404-426.
[36] ANNIKOVA I,SMIRNOV S Z,SOKOLOVA E N,et al.Evolution of Magma Chamber During the Formation of the East Kalguty Rare-metal-granitoid Dike Belt(Gorny Altai)[J].Granites and the Earth's Evolution,2014,17(2):15-17.
[37] BOROVIKOV A A,GOVERDOVSKIY V A,BORISE-NKO A S,et al.Composition and Metal Contents of Ore-forming Fluids of the Kalguty Mo-W(Be)Depo-sit(Gorny Altai)[J].Russian Geology and Geophy-sics,2016,57(4):507-518.
[38] BUSLOV M M,WATANABE T,SMIRNOVA L V,et al.Role of Strike-slip Faulting in Late Paleozoic-Early Mesozoic Tectonics and Geodynamics of the Altai-Sayan and East Kazakhstan Regions[J].Russian Geology and Geophysics,2003,44(1):47-71.
[39] IVANOVA G F,KOLESOV G M,KARPUKHINA V S,et al.Rare-earth Elements and the Genesis of Ore Mineralization at the Kalgutinskoe Tungsten Ore Field,Gornyi Altai[J].Geochemistry International,2006,44(5):508-515.
[40] D'YACHKOV B A,MAIOROVA N P,SHCHERBA G N,et al.Granitoids and Ores Formation of Kalba-Narym Belt:Rudny Altai[M].Almaty:Gylym,1994.
[41] D'YACHKOV B A,TITOV D V,SAPARGALIEV E M.Ore Belts of the Greater Altai and Their Ore Resource Potential[J].Geology of Ore Deposits,2009,51(3):197-211.
[42] D'YACHKOV B A,ZIMANOVSKAYA N,MATAIBAYEVA I.Rare Metal Deposits of East Kazakhstan:Geologic Position and Prognostic Criteria[J].Open Journal of Geology,2013,3(7):404-409.
[43] GUSEV N I.Chronology(SHRIMP Ⅱ)of Magmatism in the Kalguty Rare-metal-tungsten-molybdenum Ore-magmatic System,Gorny Altai,Russia[J].Geology of Ore Deposits,2011,53(3):248-263.
[44] SOKOLOVA E N,SMIRNOV S Z,ASTRELINA E I,et al.Ongonite-elvan Magmas of the Kalguty Ore-magmatic System(Gorny Altai):Composition,Fluid Regime,and Genesis[J].Russian Geology and Geophysics,2011,52(11):1378-1400.
[45] SOKOLOVA E N,SMIRNOV S Z,KHROMYKH S V.Conditions of Crystallization,Composition,and Sources of Rare-metal Magmas Forming Ongonites in the Kalba-Narym Zone,Eastern Kazakhstan[J].Petrology,2016,24(2):153-177.
[46] ZAGORSKY V Y,VLADIMIROV A G,MAKAGON V M,et al.Large Fields of Spodumene Pegmatites in the Settings of Rifting and Postcollisional Shear-pull-apart Dislocations of Continental Lithosphere[J].Russian Geology and Geophysics,2014,55(2):237-251.
[47] GUSEV A I,GUSEV N I.Mesozoic-Cenozoic Geodynamics and Metallogeny of Gorny Altai[J].Sovremennye Naukoemkie Tekhnologii,2014,8:60-65.
[48] YARMOLYUK V V,KUZMIN M I.Late Paleozoic and Early Mesozoic Rare-metal Magmatism of Central Asia:Stages,Provinces,and Formation Settings[J].Geology of Ore Deposits,2012,54(5):313-333.
[49] KHROMYKH S V,SOKOLOVA E N,SMIRNOV S Z,et al.Geochemistry and Age of Rare-metal Dyke Belts in Eastern Kazakhstan[J].Doklady Earth Sciences,2014,459(2):1587-1591.
[50] KHROMYKH S V,TSYGANKOV A A,KOTLER P D,et al.Late Paleozoic Granitoid Magmatism of Eastern Kazakhstan and Western Transbaikalia:Plume Model Test[J].Russian Geology and Geophysics,2016,57(5):773-789.
[51] KHROMYKH S V,KOTLER P D,IZOKH A E,et al.A Review of Early Permian(300-270 Ma)Magma-tism in Eastern Kazakhstan and Implications for Plate Tectonics and Plume Interplay[J].Geodynamics and Tectonophysics,2019,10(1):79-99.
[52] KHROMYKH S V,OITSEVA T A,KOTLER P D,et al.Rare-metal Pegmatite Deposits of the Kalba Region,Eastern Kazakhstan:Age,Composition and Petrogenetic Implications[J].Minerals,2020,10(11):1017.
[53] KRUK N N.Continental Crust of Gorny Altai:Stages of Formation and Evolution; Indicative Role of Gra-nitoids[J].Russian Geology and Geophysics,2015,56(8):1097-1113.
[54] KOTLER P D,KHROMYKH S V,VLADIMIROV A G,et al.New Data on the Age and Geodynamic Interpretation of the Kalba-Narym Granitic Batholith,Eastern Kazakhstan[J].Doklady Earth Sciences,2015,462(2):565-569.
[55] KUZNETSOVA L G.Interaction of Crustal and Mantle Materials,Sources of Trace Elements During the Formation and Evolution of Early Paleozoic Li-rich Granite-pegmatite Systems in Southeastern Tuva[J].Russian Geology and Geophysics,2018,59(12):1660-1678.
[56] GASKOV I V.Features of Magmatim-related Metallogeny of Gorny Altai and Rudny Altai(Russia)[J].Russian Geology and Geophysics,2018,59(8):1010-1021.
[57] KHROMYKH S V,OITSEVA T A,KOTLER P D,et al.Rare-metal Pegmatite Deposits of the Kalba Region,Eastern Kazakhstan:Age,Composition and Petrogenetic Implications[J].Minerals,2020,11(10):1017.
[58] 何国琦,朱永峰.中国新疆及其邻区地质矿产对比研究[J].中国地质,2006,33(3):451-460.
HE Guo-qi,ZHU Yong-feng.Comparative Study of the Geology and Mineral Resources in Xinjiang,China,and Its Adjacent Regions[J].Geology in China,2006,33(3):451-460.
[59] SHEN P,PAN H D,XIAO W J,et al.Two Geodyna-mic-metallogenic Events in the Balkhash(Kazakhstan)and the West Junggar(China):Carboniferous Porphyry Cu and Permian Greisen W-Mo Mineralization[J].International Geology Review,2013,55(13):1660-1687.
[60] 申 萍,周涛发,袁 峰,等.环巴尔喀什—西准噶尔成矿省矿床类型、成矿系统和跨境成矿带对接[J].岩石学报,2015,31(2):285-303.
SHEN Ping,ZHOU Tao-fa,YUAN Feng,et al.Main Deposit Types,Mineral Systems,and Metallogenic Belt Connections in the Circum-Balkhash-West Junggar Metallogenic Province[J].Acta Petrologica Sinica,2015,31(2):285-303.
[61] SHEN P,PAN H D,KEIKO H,et al.Large Paleozoic and Mesozoic Porphyry Deposits in the Central Asian Orogenic Belt:Geodynamic Settings,Magmatic Sour-ces,and Genetic Models[J].Gondwana Research,2018,58:161-194.
[62] 王义天,毛景文.中俄蒙阿尔泰成矿带成矿作用与成矿规律对比研究[R].北京:中国地质科学院矿产资源研究所,2012.
WANG Yi-tian,MAO Jing-wen.Contrastive Study on Mineralization and Metallogenic Regularity of Russia-Mongolia Altai Metallogenic Belt[R].Beijing:Institute of Mineral Resources,Chinese Academy of Geolo-gical Sciences,2012.
[63] 祁志明,李天德.中国和哈萨克斯坦阿尔泰有色金属成矿带的划分和对比[J].有色金属矿产与勘查,1996,5(5):10-16.
QI Zhi-ming,LI Tian-de.The Division of Nonferrous Metallogenetic Belts of Altay in China and Kazakhstan and Comparison Between These Two Regoins[J].Geological Exploration for Non-ferrous Mentals,1996,5(5):10-16.
[64] 王世伟,马 超,张 莉.中蒙阿尔泰区域稀有金属矿床成矿规律[J].西部探矿工程,2019,31(10):151-154.
WANG Shi-wei,MA Chao,ZHANG Li.Metallogenic Regularities of Rare Metal Deposits in China-Mongolia Altai[J].West-China Exploration Engineering,2019,31(10):151-154.
[65] 陈炳蔚,陈延愚.横贯亚洲巨型构造带的基本特征和成矿作用[J].岩石学报,2007,23(5):865-876.
CHEN Bing-wei,CHEN Yan-yu.Trans-Asian Tectonic Mega-belt:Its Principal Characteristics and Me-tallogeny[J].Acta Petrologica Sinica,2007,23(5):865-876.
[66] VLADIMIROV A G,VYSTAVNOI S A,TITOV A V,et al.Petrology of the Early Mesozoic Rare-metal Granites of the Southern Gorny Altay[J].Russian Geology and Geophysics,1998,39(7):909-925.
[67] VLADIMIROV A G,KRUK N,POLYANSKY O,et al.Correlation of Hercynian Deformations,Sediment Formation and Magmatism within Altai Collision System as Reflection of Plate- and Plume-tectonics[M]∥LEONOV M G.Problems of Central Asian Tecto-nics.Moscow:GEOS,2015:277-308.
[68] VLADIMIROV A G,KRUK N N,KHROMYKH S V,et al.Permian Magmatism and Lithospheric Deformation in the Altai Caused by Crustal and Mantle Thermal Processes[J].Russian Geology and Geophysics,2008,49(7):468-479.
[69] OITSEVA T A,D'YACHKOV B A,VLADIMIROV A G,et al.New Data on the Substantial Composition of Kalba Rare Metal Deposits[J].IOP Conference Series:Earth and Environmental Science,2017,110:12018.
[70] CAI K D,SUN M,YUAN C,et al.Keketuohai Mafic-ultramafic Complex in the Chinese Altai,NW China:Petrogenesis and Geodynamic Significance[J].Chemical Geology,2012,294/295:26-41.
[71] ERMOLOV P V.Granite-related Ore Systems of Kazakhstan[M]∥KREMENETSK Y A,LEHMANN B,SELTMANN R.Ore-bearing Granites of Russia and Adjacent Countries.Moscow:IMGRE,2000:83-96.
[72] MURZINTSEV N,ANNIKOVA I,TRAVIN A,et al.Thermochronology and Mathematical Modeling of the Formation Dynamics of Rare-metal-granite Deposits of the Altai Collision System[J].Geodynamics and Tectonophysics,2019,10(2):375-404.
[73] ILYIN V A,KHALILOV V A,KOZLOV M S,et al.Age of the Alakhin Stock of Gorny Altai According to U-Pb and Rb-Sr Dating[J].Geologiya I Geofizika,1994,35(1):79-81.
[74] KOVALENKO V I,TSAREVA G M,KONONKOVA N N,et al.Major Components,Trace Elements,and Water in the Magma of Spodumene Granites:Evidence from Melt Inclusions[J].Doklady Earth Sciences,1998,363(8):1128-1132.
[75] CERNY P.Rare-element Granite Pegmatites,Part Ⅰ:Anatomy and Internal Evolution of Pegmatite Depo-sits[J].Geoscience Canada,1991,18(2):49-67.
[76] CERNY P.Rare-element Granitic Pegmatites,Part Ⅱ:Regional to Global Environments and Petrogenesis[J].Geoscience Canada,1991,18(2):68-81.
[77] LONDON D.The Origin of Primary Textures in Granitic Pegmatites[J].Canadian Mineralogist,2009,47(4):697-724.
[78] LONDON D.Ore-forming Processes Within Granitic Pegmatites[J].Ore Geology Reviews,2018,101:349-383.
[79] SIMMONS W,FOORD E E,FALSTER A,et al.Evidence for an Anatectic Origin of Granitic Pegmatites,Western Maine,USA[J].Abstracts with Programs,Geological Society of America,1995,27:411.
[80] SIMMONS W B,Falster A U.Evidence for an Anatectic Origin of an LCT Type Pegmatite:Mt. Mica,Maine[C]∥The Colorado School of Mines Geology Museum.The Second Eugene E. Foord Pegmatite Symposium.Golden:The Colorado School of Mines Geology Museum,2016:103.
[81] MATHEIS G.Geological Setting of Pegmatoid Rare-metal Mineralization[J].Fortschritte der Mineralogie,1985,15:150-151.
[82] SHOKAL'SKII S P,BABIN G A,VLADIMIROV A G,et al.Korrelyatsiya Magmaticheskikh I Metamorficheskikh Kompleksov Zapadnoi Chasti Altae-Sayanskoi Skladchatoi Oblasti(Correlation of Magmatuc and Metamorphic Complexes of Western Altai-Sayan Fold System)[R].Novosibirsk:SO RAN,2000.
[83] 吴柏青.新疆北部的稀有金属矿产[J].新疆地质,1994,12(1):63-66.
WU Bai-qing.Rare Metal Minerals in Northern Xinjiang[J].Geology of Xinjiang,1994,12(1):63-66.
[84] 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.Intrusive and Mineralization Ages of Pegmatite Rare Element Deposits in Chinese Altay[J].Xinjiang Geology,2013,31(S1):1-7.
[85] 丁 欣,李建康,丁建刚,等.新疆阿斯喀尔特Be-Nb-Mo矿床Re-Os同位素年龄及地质意义[J].桂林理工大学学报,2016,36(1):60-65.
DING Xin,LI Jian-kang,DING Jian-gang,et al.Molybdenite Re-Os Isochron Age and Geological Implication in Asika'erte Be-Nb-Mo Deposit of Xinjiang[J].Journal of Guilin University of Technology,2016,36(1):60-65.
[86] 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 Geolo-gical Implications[J].Acta Petrologica Sinica,2015,31(8):2337-2352.
[87] 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 Da-kalasu Granite in Altay of Xinjiang,China and Their Tectonic Significance[J].Journal of Earth Sciences and Environment,2019,41(4):396-413.
[88] 丁建刚,杨成栋,杨富全,等.新疆阿尔泰别也萨麻斯稀有金属矿床含矿伟晶岩与花岗岩围岩成因关系[J].地球科学与环境学报,2020,42(1):71-85.
DING Jian-gang,YANG Cheng-dong,YANG Fu-quan,et al.Genetic Relationship Between Ore-bearing Pegmatite and the Surrounding Granite of Bieyesamasi Rare Metal Deposit in Altay of Xinjiang, China[J].Journal of Earth Sciences and Environment,2020,42(1):71-85.
[89] 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 Granitoids in Kelan Basin of Altay, Xinjiang, China and Their Geological Implications[J].Journal of Earth Sciences and Environment,2019,41(4):414-430.
[90] 杨成栋,丁建刚,杨富全,等.新疆阿尔泰别也萨麻斯矿区奥陶纪花岗岩岩石地球化学特征及其地质意义[J].地质论评,2020,66(6):1499-1514.
YANG Cheng-dong,DING Jian-gang,YANG Fu-quan,et al.Geochemistry and Its Geological Significance of the Ordovician Granite from the Bieyesamasi Deposit,Altay,Xinjiang[J].Geological Review,2020,66(6):1499-1514.
[91] 田红彪,陈有炘,杨永强,等.中国阿尔泰东北部哈拉尔次花岗岩的年龄、成因及构造意义[J].地球科学,2017,42(10):1658-1672.
TIAN Hong-biao,CHEN You-xin,YANG Yong-qiang,et al.Ages,Origin and Tectonic Significance of Hala-erci Granites from Northeastern Part of Chinese Altay Mountains[J].Earth Science,2017,42(10):1658-1672.
[92] 张亚峰,蔺新望,郭岐明,等.阿尔泰南缘可可托海地区阿拉尔花岗岩体LA-ICP-MS锆石U-Pb定年、岩石地球化学特征及其源区意义[J].地质学报,2015,89(2):339-354.
ZHANG Ya-feng,LIN Xin-wang,GUO Qi-ming,et al.LA-ICP-MS Zircon U-Pb Dating and Geochemistry of Aral Granitic Plutons in Koktokay Area in the Southern Altay Margin and Their Source Significance[J].Acta Geologica Sinica,2015,89(2):339-354.
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YANG Hang,LAI Shao-cong*,ZHANG Zhi-hua,et al.Geochemical Characteristics and Forming Mechanism of Late Triassic Guanshan Pluton in North Qinling, China[J].Journal of Earth Sciences and Environment,2019,41(03):170.
[2]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(04):414.
ZHANG Zhong-li,YANG Cheng-dong*,ZHANG Bin,et al.Geochronological Characteristics of Devonian Granitoids in Kelan Basin of Altay, Xinjiang, China and Their Geological Implications[J].Journal of Earth Sciences and Environment,2019,41(03):414.
[3]凤永刚,梁 婷,雷如雄,等.稀有金属伟晶岩过度冷却与侵位之关系——基于野外地质观察及年代学的思考[J].地球科学与环境学报,2021,43(01):100.[doi:10.19814/j.jese.2020.11027]
FENG Yong-gang,LIANG Ting,LEI Ru-xiong,et al.Relationship Between Undercooling and Emplacement of Rare-element Pegmatites—Thinking Based on Field Observations and Pegmatite Geochronology[J].Journal of Earth Sciences and Environment,2021,43(03):100.[doi:10.19814/j.jese.2020.11027]
[4]耿英英,刘章月*,黄少华,等.准噶尔盆地东北缘卡拉麦里花岗质岩体年代学、地球化学特征及铀成矿潜力[J].地球科学与环境学报,2022,44(01):20.[doi:10.19814/j.jese.2021.08054]
GENG Ying-ying,LIU Zhang-yue*,HUANG Shao-hua,et al.Geochronology and Geochemistry of Kalamaili Granitic Rocks and Uranium Ore-forming Potential at the Northeastern Margin of Junggar Basin, China[J].Journal of Earth Sciences and Environment,2022,44(03):20.[doi:10.19814/j.jese.2021.08054]
[5]张 健,何雨蓓,范艳霞.松辽盆地地壳热结构与深部热源条件[J].地球科学与环境学报,2023,45(02):157.[doi:10.19814/j.jese.2022.07035]
ZHANG Jian,HE Yu-bei,FAN Yan-xia.Crustal Thermal Structure and Deep Heat Source Conditions in Songliao Basin, NE China[J].Journal of Earth Sciences and Environment,2023,45(03):157.[doi:10.19814/j.jese.2022.07035]
[6]赵 强,汤静如*,杨恒毅,等.佳木斯地块中部晚三叠世埃达克岩年代学、地球化学特征及其地质意义[J].地球科学与环境学报,2023,45(02):240.[doi:10.19814/j.jese.2022.02007]
ZHAO Qiang,TANG Jing-ru*,YANG Heng-yi,et al.Geochronology and Geochemistry of Late Triassic Adakite in the Central Jiamusi Block, China and Their Geological Significance[J].Journal of Earth Sciences and Environment,2023,45(03):240.[doi:10.19814/j.jese.2022.02007]
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DING Jian-gang,YANG Cheng-dong*,YANG Fu-quan,et al.Genetic Relationship Between Ore-bearing Pegmatite and the
Surrounding Granite of Bieyesamasi Rare Metal Deposit
in Altay of Xinjiang, China[J].Journal of Earth Sciences and Environment,2020,42(03):71.[doi:10.19814/j.jese.2019.07021]