[1] LINNEN R L,VAN LICHTERVELDE M,CERNY P.Granitic Pegmatites:Granitic Pegmatites as Sources of Strategic Metals[J].Elements,2012,8(4):275-280.
[2] LINNEN R L,SAMSON I M,WILLIAMS-JONES A E,et al.Geochemistry of the Rare-earth Element,Nb,Ta,Hf,and Zr Deposits[J].Treatise on Geochemisty(Second Edition),2014,13:543-564.
[3] LONDON D.Ore-forming Processes Within Granitic Pegmatites[J].Ore Geology Reviews,2018,101:349-383.
[4] MCCAULEY A,BRADLEY D C.The Global Age Distribution of Granitic Pegmatites[J].The Canadian Mi-neralogist,2014,52(2):183-190.
[5] MüLLER A,SPRATT J,THOMAS R,et al.Alkali-F-rich Albite Zones in Evolved NYF Pegmatites:The Product of Melt-melt Immiscibility[J].The Canadian Mineralogist,2018,56(4):657-687.
[6] 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:Geo-logical Publishing House,2006.
[7] 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.Minerogenetic Series and Regularity of Minerali-zation in the Altai Metallogenetic Province,China[M].Beijing:Atomic Energy Press,2002.
[8] 周 兵,孙义选,孔德懿.新疆大红柳滩地区稀有金属矿成矿地质特征及找矿前景[J].四川地质学报,2011,31(3):288-292.
ZHOU Bing,SUN Yi-xuan,KONG De-yi.Geological Features and Prospecting Potential of Rare Metallic Deposits in the Dahongliutan Region,Xinjiang[J].Acta Geologica Sichuan,2011,31(3):288-292.
[9] 王 核,王 茜,闫庆贺,等.新疆和田县白龙山超大型伟晶岩型锂铷多金属矿床的发现及其意义[J].大地构造与成矿学,2017,41(6):1053-1062.
WANG He,WANG Qian,YAN Qing-he,et al.Discovery of the Bailongshan Superlarge Lithium-rubidium Deposit in Karakorum,Hetian,Xinjiang,and Its Prospecting Implication[J].Geotectonica et Metallogenia,2017,41(6):1053-1062.
[10] 马占龙,张 辉,唐 勇,等.新疆卡鲁安矿区伟晶岩锆石U-Pb定年、Hf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.
[11] CERNY P,ERCIT T S.The Classification of Granitic Pegmatites Revisited[J].The Canadian Mineralogist,2005,43(6):2005-2026.
[12] CERNY P,LONDON D,NOVAK M.Granitic Pegmatites as Reflections of Their Sources[J].Elements,2012,8(4):289-294.
[13] MüLLER A,KEARSLEY A,SPRATT J,et al.Petrogenetic Implications of Magmatic Garnet in Granitic Pegmatites from Southern Norway[J].The Canadian Mineralogist,2012,50(4):1095-1115.
[14] FENG Y G,LEI R X,JU M H,et al.Origin and Petrogenetic Implications of Garnet from Rb-rich Pegmatites in North Qinling Orogen,China[J].Geological Journal,2017,52(S1):215-237.
[15] LONDON D.The Application of Experimental Petro-logy to the Genesis and Crystallization of Granitic Pegmatites[J].The Canadian Mineralogist,1992,30(3):499-540.
[16] SIMMONS W B S,WEBBER K L.Pegmatite Genesis:State of the Art[J].European Journal of Mineralogy,2008,20(4):421-438.
[17] LONDON D.Pegmatites[M].Québec:Mineralogical Association of Canada,2008.
[18] LONDON D.A Petrologic Assessment of Internal Zonation in Granitic Pegmatites[J].Lithos,2014,184/185/186/187:74-104.
[19] CHAKOUMAKOS B C,LUMPKIN G R.Pressure-temperatue Constraints on the Crystallization of the Harding Pegmatite,Taos County,New Mexico[J].The Canadian Mineralogist,1990,28(2):287-298.
[20] MORGAN VI G B,LONDON D.Crystallization of the Little Three Layered Pegmatite-aplite Dike,Ramona District,California[J].Contributions to Mineralogy and Petrology,1999,136:310-330.
[21] WEBBER K L,SIMMONS W B.Crystallization Dynamics[C]∥MARTINS T,VIEIRA R.Granitic Pegmatites:The State of the Art.Porto:Universidade do Porto,2007:17-19.
[22] SIRBESCU M L C,HARTWICK E E,STUDENT J J.Rapid Crystallization of the Animikie Red Ace Pegmatite,Florence County,Northeastern Wisconsin:Inclusion Microthermometry and Conductive-cooling Modeling[J].Contributions to Mineralogy and Petro-logy,2008,156:289-305.
[23] SNEE L W,FOORD E E,MORTON D M,et al.Pegmatite Genesis Complex or Simple Emplacement?Revisiting Southern California[J].Gems and Gemology,2006,12:151-152.
[24] 陈郑辉,王登红,龚羽飞,等.新疆哈密镜儿泉伟晶岩型稀有金属矿床40Ar-39Ar年龄及其地质意义[J].矿床地质,2006,25(4):470-476.
CHEN Zheng-hui,WANG Deng-hong,GONG Yu-fei,et al.40Ar-39Ar Isotope Dating of Muscovite from Jing’erquan Pegmatite Rare Metal Deposit in Hami,Xinjiang,and Its Geological Significance[J].Mineral Deposits,2006,25(4):470-476.
[25] GEISLER T,PIDGEON R T,VAN BRONSWIJK W,et al.Transport of Uranium,Thorium,and Lead in Metamict Zircon Under Low-temperature Hydrothermal Conditions[J].Chemical Geology,2002,191(1):141-154.
[26] GEISLER T,SCHALTEGGER U,TOMASCHEK F.Re-equilibration of Zircon in Aqueous Fluids and Melts[J].Elements,2007,3(1):43-50.
[27] CHE X D,WU F Y,WANG R C,et al.In-situ U-Pb Isotopic Dating of Columbite-tantalite by LA-ICPMS[J].Ore Geology Reviews,2015,65(4):979-989.
[28] FENG Y G,LIANG T,LINNEN R,et al.LA-ICP-MS Dating of High-uranium Columbite from No.1 Pegmatite at Dakalasu,the Chinese Altay Orogen:Assessing Effect of Metamictization on Age Concordance[J].Lithos,2020,362/363:105461.
[29] ROMER R L,WRIGHT J E.U-Pb Dating of Columbites:A Geochronologic Tool to Date Magmatism and Ore Deposits[J].Geochimica et Cosmochimica Acta,1992,56(5):2137-2142.
[30] SMITH S R,FOSTER G L,ROMER R L,et al.U-Pb Columbite-tantalite Chronology of Rare-element Pegmatites Using TIMS and Laser Ablation Multi Collector-ICP-MS[J].Contributions to Mineralogy and Petrology,2004,147:549-64.
[31] ROMER R L,SMEDS S A.Implications of U-Pb Ages of Columbite-tantalites from Granitic Pegmatites for the Palaeoproterozoic Accretion of 1.90-1.85 Ga Magmatic Arcs to the Baltic Shield[J].Precambrian Research,1994,67(1/2):141-158.
[32] BAUMGARTNER R,ROMER R L,MORITZ R,et al.Columbite-tantalite Bearing Granitic Pegmatites from the Seridó Belt,Northeastern Brazil:Genetic Constraints from U-Pb Dating and Pb Isotopes[J].The Canadian Mineralogist,2006,44(1):69-86.
[33] MELLETON J,GLOAGUEN E,FREI D,et al.How Are the Emplacement of Rare-element Pegmatites,Regional Metamorphism and Magmatism Interrelated in the Moldanubian Domain of the Variscan Bohemian Massif,Czech Republic?[J].The Canadian Mineralogist,2012,50(6):1751-1773.
[34] DENG X D,LI J W,ZHAO X F,et al.U-Pb Isotope and Trace Element Analysis of Columbite-(Mn)and Zircon by Laser Ablation ICP-MS:Implications for Geochronology of Pegmatite and Associated Ore Deposits[J].Chemical Geology,2013,344:1-11.
[35] MELCHER F,GRAUPNER T,G?BLER H E,et al.Tantalum-(Niobium-tin)Mineralisation in African Pegmatites and Rare Metal Granites:Constraints from Ta-Nb Oxide Mineralogy,Geochemistry and U-Pb Geochronology[J].Ore Geology Review,2015,64:667-719.
[36] LUPULSECU M V,CHIARENZELLI J R,PECHA M E,et al.Columbite-group Minerals from New York Pegmatites:Insights from Isotopic and Geochemical Analyses[J].Geosciences,2018,8(5):169.
[37] YAN Q H,QIU Z W,WANG H,et al.Age of the Dahongliutan Rare Metal Pegmatite Deposit,West Kunlun,Xinjiang(NW China):Constraints from LA-ICP-MS U-Pb Dating of Columbite-(Fe)and Cassiterite[J].Ore Geology Reviews,2018,100:561-573.
[38] 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.
[39] 王登红,陈毓川,徐志刚.新疆阿尔泰印支期伟晶岩的成矿年代学研究[J].矿物岩石地球化学通报,2003,22(1):14-17.
WANG Deng-hong,CHEN Yu-chuan,XU Zhi-gang.40Ar/39Ar Isotope Dating on Muscovite from Indosinian Rare Metal Deposits in Central Altay,Northwestern China[J].Bulletin of Mineralogy,Petrology and Geochemistry,2003,22(1):14-17.
[40] 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.
[41] 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 Pa-leozoic Granitoids from the Altai Orogen in China and Their Geological Significance[D].Beijing:Chinese Academy of Geological Sciences,2006.
[42] 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.
[43] MUHTAR M N,WU C H,SANTOSH M,et al.Pera-luminous Granitoid Magmatism from Isotopically Depleted Sources:The Case of Jing’erquanbei Pluton in Eastern Tianshan,Northwest China[J].Geological Journal,2020,55(1):117-132.
[44] LIU S Y,WANG R,JEON H,et al.Indosinian Magmatism and Rare Metal Mineralization in East Tian-shan Orogenic Belt:An Example Study of Jing’erquan Li-Be-Nb-Ta Pegmatite Deposit[J].Ore Geology Reviews,2020,116:103265.
[45] LI P,LI J,CHOU I M,et al.Mineralization Epochs of Granitic Rare-metal Pegmatite Deposits in the Songpan-Ganzi Orogenic Belt and Their Implications for Orogeny[J].Minerals,2019,9(5):280.
[46] REYNOLDS P H.Low Temperature Thermochrono-logy by the 40Ar/39Ar Method[M]∥ZENTILLI M,REYNOLDS P H.Low Temperature Thermochrono-logy.Québec:Mineralogical Association of Canada,1992:3-20.
[47] J?GER E.Introduction to Geochronology[M]∥J?GER E,HUNZIKER H.Lectures in Isotope Geology.Berlin:Springer-Verlag,1979:56-76.
[48] PIDGEON R T,AFTALION M.Cogenetic and Inherited Zircon U-Pb Systems in Granites:Paleozoic Grani-tes of Scotland and England[J].Geology Journal,1978,10:183-220.
[49] MEZGER K.Geochronology in Granulites[M]∥VIELZEUF D,VIDAL P.Granulites and Crustal Evo-lution.Dordrecht:Springer,1990:451-470.
[50] LEE J K W,WILLIAMS I S,ELLIS D J.Pb,U and Th Diffusion in Natural Zircon[J].Nature,1997,390:159-161.
[51] DAHL P S.A Crystal-chemical Basis for Pb Retention and Fission-track Annealing Systematics in U-bearing Minerals,with Implications for Geochronology[J].Earth and Planetary Science Letters,1997,150(3/4):277-290.
[52] PARRISH R R.U-Pb Dating of Monazite and Its Application to Geological Problems[J].Canadian Journal of Earth Sciences,1990,27(11):1431-1450.
[53] WINDLEY B F,KR?NER 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.
[54] 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(1):31-47.
[55] XIAO W J,WINDLEY B F,BADARCH G,et al.Palaeozoic Accretionary and Convergent Tectonics of the Southern Altaids:Implications for the Growth of Central Asia[J].Journal of the Geological Society,2004,161(3):339-342.
[56] LONG X P,SUN M,YUAN C,et al.U-Pb and Hf Isotopic Studies of Zircons for Metasedimentary Rocks from the Chinese Altai:Implications for the Early Palaeozoic Tectonic Evolution of the Central Asian Orogenic Belt[J].Tectonics,2007,26(5):TC5015.
[57] LONG X P,SUN M,YUAN C,et al.Early Paleozoic Sedimentary Record of the Chinese Altai:Implications for Its Tectonic Evolution[J].Sedimentary Geology,2008,208(3/4):88-100.
[58] LONG X P,YUAN C,SUN M,et al.Detrital Zircon Ages and Hf Isotopes of the Early Paleozoic Flysch Sequence in the Chinese Altai,NW China:New Constraints on Depositional Age,Provenance and Tectonic Evolution[J].Tectonophysics,2010,480(1/2/3/4):213-231.
[59] 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 Paleozoic[J].Chemical Geology,2008,247(3/4):352-383.
[60] 孙 敏,龙晓平,蔡克大,等.阿尔泰早古生代末期洋中脊俯冲:锆石Hf同位素组成突变的启示[J].中国科学:D辑,地球科学,2009,39(7):935-948.
SUN Min,LONG Xiao-ping,CAI Ke-da,et al.Early Paleozoic Ridge Subduction in the Chinese Altai:Insight from the Abrupt Change in Zircon Hf Isotopic Compositions[J].Science in China:Series D,Earth Sciences,2009,39(7):935-948.
[61] 唐俊华,顾连兴,张遵忠,等.东天山黄山—镜儿泉过铝花岗岩矿物学、地球化学及年代学研究[J].岩石学报,2008,24(5):921-946.
TANG Jun-hua,GU Lian-xing,ZHANG Zun-zhong,et al.Peraluminous Granite in Huangshan-Jing’erquan Area of Eastern Tianshan:Geochemistry,Mineralogy and Geochronology[J].Acta Petrologica Sinica,2008,24(5):921-946.
[62] 顾连兴,张遵忠,吴昌志,等.东天山黄山—镜儿泉地区二叠纪地质-成矿-热事件:幔源岩浆内侵及其地壳效应[J].岩石学报,2007,23(11):2869-2880.
GU Lian-xing,ZHANG Zun-zhong,WU Chang-zhi,et al.Permian Geological,Metallurgical and Geothermal Events of the Huangshan-Jing’erquan Area,Eastern Tianshan:Indications for Mantle Magma Intraplating and Its Effect on the Crust[J].Acta Petrologica Sinica,2007,23(11):2869-2880.
[63] 周涛发,袁 峰,张达玉,等.新疆东天山觉罗塔格地区花岗岩类年代学、构造背景及其成矿作用研究[J].岩石学报,2010,26(2):478-502.
ZHOU Tao-fa,YUAN Feng,ZHANG Da-yu,et al.Geochronology,Tectonic Setting and Mineralization of Granitoids in Jueluotage Area,Eastern Tianshan,Xinjiang[J].Acta Petrologica Sinica,2010,26(2):478-502.
[64] 张 亮,吴 飞,王丹阳,等.浅谈新疆哈密市镜儿泉锂铍矿矿床特征及成矿模型[J].西部探矿工程,2017,29(8):145-147,150.
ZHANG Liang,WU Fei,WANG Dan-yang,et al.A Preliminary Discussion on the Deposit Geology and Genetic Model of Jing’erquan Li-Be Deposit near Hami,Xinjiang[J].West-China Exploration Engineering,2017,29(8):145-147,150.
[65] TINDLE A G,BREAKS F W.Oxide Minerals of the Separation Rapids Rare-element Granitic Pegmatite Group,Northwestern Ontario[J].The Canadian Mi-neralogist,1998,36(2):609-635.
[66] HELLSTROM J,PATON C,WOODHEAD J,et al.Iolite:Software for Spatially Resolved LA-(Quad and MC)-ICP-MS Analysis[M]∥SYLVESTOR P.Laser Ablation ICP-MS in the Earth Sciences:Current Practices and Outstanding Issues.Québec:Mineralogical Association of Canada,2008:343-348.
[67] LUDWIG K R.User’s Manual for Isoplot 3.00:A Geo-chronological Toolkit for Microsoft Excel[R].Berkeley:Berkeley Geochronology Center,2003.
[68] TINDEL A G,BERAKS F W.Columbite-tantalite Mi-neral Chemistry from Rare-element Granitic Pegmatites:Separation Lakeh Area,NW Ontario,Canada[J].Mineralogy and Petrology,2000,70(3/4):165-198.
[69] VAN LICHTERVELD M,SALVI S,BEZIAT D,et al.Textural Features and Chemical Evolution in Tantalum Oxides:Magmatic Versus Hydrothermal Origins for Ta Mineralization in the Tanco Lower Pegmatite,Manitoba,Canada[J].Economic Geology,2007,102(2):257-276.
[70] FENG Y G,LIANG T,YANG X Q,et al.Chemical Evolution of Nb-Ta Oxides and Cassiterite in Phosphorus-rich Albite-spodumene Pegmatites in the Kangxiwa-Dahongliutan Pegmatite Field,Western Kunlun Orogen,China[J].Minerals,2019,9(3):166.
[71] BADANINA E V,SITNIKOVA M A,GORDIENKO V V,et al.Mineral Chemistry of Columbite-tantalite from Spodumene Pegmatites of Kolmozero,Kola Pe-ninsula(Russia)[J].Ore Geology Review,2015,64:720-735.
[72] GRAUPNER T,MELCHER F,G?BLER H E,et al.Rare Earth Element Geochemistry of Columbite-group Minerals:LA-ICP-MS Data[J].Mineralogical Magazine,2010,74(4):691-713.
[73] MARTEL S J.Progress in Understanding Sheeting Joints over the Past Two Centuries[J].Journal of Structural Geology,2017,94:68-86.
[74] NADAN B J,ENGELDER T.Microcracks in New England Granitoids:A Record of Thermoelastic Relaxation During Exhumation of Intracontinental Crust[J].GSA Bulletin,2009,121(1/2):80-99.
[75] SCH?RER U,COPELAND P,HARRISON T M,et al.Age,Cooling History,and Origin of Post-collisional Leucogranites in the Karakoram Batholith; A Multi-System Isotope Study[J].The Journal of Geology,1990,98(2):233-251.
[76] LIM H S,LEE Y I.Cooling History of the Upper Cretaceous Palgongsan Granite,Gyeongsang Basin,SE Korea and Its Tectonic Implication for Uplift on the Active Continental Margin[J].Tectonophysics,2005,403(1/2/3/4):151-165.
[77] 李 杭,洪 涛,杨智全,等.稀有金属花岗伟晶岩锆石、锡石与铌钽铁矿U-Pb和白云母40Ar/39Ar测年对比研究:以阿尔金中段吐格曼北锂铍矿床为例[J].岩石学报,2020,36(9):2869-2892.
LI Hang,HONG Tao,YANG Zhi-quan,et al.Comparative Studying on Zircon,Cassiterite and Coltan U-Pb Dating and 40Ar/39Ar Dating of Muscovite Rare-metal Granitic Pegmatites:A Case Study of the Northern Tugeman Lithium-beryllium Deposit in the Middle of Altyn Tagh[J].Acta Petrologica Sinica,2020,36(9):2869-2892.
[78] WEBBER K L,FALSTER A U,SIMMONS W B,et al.The Role of Diffusion-controlled Oscillatory Nucleation in the Formation of Line Rock in Pegmatite-aplite Dikes[J].Journal of Petrology,1997,38(12):1777-1791.
[79] MAUTHNER M H F,MORTENSEN J K,GROAT L A,et al.Geochronology of the Little Nahanni Pegmatite Group,Selwyn Mountains,Southwestern Northwest Territories[J].Canadian Journal of Earth Sciences,2011,32(12):2090-2097.
[80] HARRISON T M,WATSON E B.Kinetics of Zircon Dissolution and Zirconium Diffusion in Granitic Melts of Variable Water Content[J].Contributions to Mine-ralogy and Petrology,1983,84:66-72.
[1]杨航,赖绍聪*,张志华,等.北秦岭晚三叠世关山岩体地球化学特征及成因机制[J].地球科学与环境学报,2019,41(02):170.
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(01):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.
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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(01):71.[doi:10.19814/j.jese.2019.07021]
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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]
[5]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(01):20.[doi:10.19814/j.jese.2021.08054]
[6]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(01):157.[doi:10.19814/j.jese.2022.07035]
[7]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(01):240.[doi:10.19814/j.jese.2022.02007]