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云南南秧田钨矿床电气石的成分和硼同位素特征及成矿意义
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  • 英文篇名:Chemical and boron isotopic composition of hydrothermal tourmaline from Nanyangtian tungsten deposit,Yunnan:Implications for ore genesis
  • 作者:张林奎 ; 张彬 ; 张斌辉 ; 李光明 ; 陈敏华 ; 石洪召 ; 曹华文 ; 张寿庭
  • 英文作者:ZHANG LinKui;ZHANG Bin;ZHANG BinHui;LI GuangMing;CHEN MinHua;SHI HongZhao;CAO HuaWen;ZHANG ShouTing;Chengdu Center,China Geological Survey;School of Earth Sciences and Resources,China University of Geosciences;
  • 关键词:地球化学 ; 钨矿床 ; 电气石 ; B同位素 ; 麻栗坡 ; 滇东南
  • 英文关键词:geochemistry;;tungsten deposit;;tourmaline;;boron isotope;;Malipo;;southeast Yunnan
  • 中文刊名:KCDZ
  • 英文刊名:Mineral Deposits
  • 机构:中国地质调查局成都地质调查中心;中国地质大学地球科学与资源学院;
  • 出版日期:2018-06-15
  • 出版单位:矿床地质
  • 年:2018
  • 期:v.37
  • 基金:中国地质调查局地质调查项目(编号:DD20160015,1212010880402)的资助
  • 语种:中文;
  • 页:KCDZ201803003
  • 页数:21
  • CN:03
  • ISSN:11-1965/P
  • 分类号:44-64
摘要
南秧田矿床是滇东南地区最大的以钨为主的金属矿床。文章以含电气石花岗片麻岩、无矿电气石石英脉和白钨矿矿化电气石石英脉样品为研究对象,结合地质特征、电气石元素地球化学及B同位素,对电气石成因开展研究。研究显示三类电气石均属于碱性电气石中的镁电气石,以富Mg及Y位中无Al或低Al为特征,具有相对高的FeO/(FeO+MgO)比值(平均0.53);其稀土元素(REE)配分曲线与晚白垩世花岗岩稀土元素配分曲线相似;δ~(11)B值集中在-14‰,与地壳平均值非常接近,这些特征表明其与岩浆期后热液成因的电气石特征一致。电气石石英脉中广泛的钨矿化表明晚白垩世岩浆期后热液对矿区主矿体的叠加富集作用明显,据此提出距晚白垩世花岗岩体数百米至一千米的中源距离为有利矿化区,为矿区外围及深部勘查评价指明了找矿方向。
        The Nanyangtian deposit is the largest W-polymetallic deposit in southeastern Yunnan.Tourmaline-bearing granitic gneiss,quartz vein,and scheelite-bearing tourmaline-quartz vein were emphatically studied in this paper.The genesis of tourmaline was identified by the combination of geological characteristics,geochemistry and B isotope.The result reveals that the tourmalines of three types belong to dravite characterized by high-Mg,no or low Al in Y-site,and relatively high FeO/(FeO+MgO) ratios(0.53 on average).The chondrite-normalized REE patterns are comparable with those of the Late Cretaceous granite.The δ11B values are concentrated on-14‰,approximate to the value of average crust.These features show the post-magmatic hydrothermal fluid after magmatism.Extensive W-mineralization in tourmaline quartzite shows that the hydrothermal fluid after Late Cretaceous magmatism was beneficial to re-enrichment for the major orebody in the ore district.Hence,the authors hold that the beneficial mineralized location should be located at the medium distance(from a hundred meters to 1 km) from the Late Cretaceous granite.This study provides the direction for exploration and evaluation of deep ore district.
引文
Baksheev I A,Prokof'ev V Y,Zaraisky G P,Chitalin A F,Yapaskurt VO,Nikolaev Y N,Tikhomirov P L,Nagornaya E V,Lubov'I R and Gorelikova N V.2012.Tourmaline as a prospecting guide for the porphyry-style deposits[J].European Journal of Mineralogy,24(6):957-979.
    Bi M F,Zhang D,Wu G G,Di Y J,Que C Y,Pan J B and Xue W.2015.Mesozoic tectonic deformation and ore-controlling of tungsten polymetallic deposits in Malipo area,southeastern Yunnan[J].Earth Sciences Frontiers,22(4):223-238(in Chinese with English abstract).
    Cheng Y B and Mao J W.2010.Age and geochemistry of granites in Gejiu area,Yunnan province,SW China:Constraints on their petrogenesis and tectonic setting[J].Lithos,120:258-276.
    Deksissa D and Koeberl C.2002.Geochemistry and petrography of goldquartz-tourmaline veins of the Okote area,southern Ethiopia:Implications for gold exploration[J].Mineralogy and Petrology,75(1-2):101-122.
    Feng J R,Mao J W,Pei R F and Li C.2011.A tentative discussion on Indosinian ore-forming events in Laojunshan area of southeastern Yunnan:A case study of Xinzhai tin deposit and Nanyangtian tungsten deposit[J].Mineral Deposits,30(1):57-73(in Chinese with English abstract).
    Feng J R,Mao J W,Pei R F,Zhou Z H and Yang Z X.2010.SHRMPzircon U-Pb dating and geochemical characteristics of Laojunshan granite intrusion from the Wazha tungsten deposit,Yunnan Province and their implications for petrogenesis[J].Acta Petrologica Sinica,26(3):845-857(in Chinese with English abstract).
    Garda G,Trumbull R,Beljavskis P and Wiedenbeck M.2009.Boron isotope composition of tourmalinite and vein tourmalines associated with gold mineralization,Serra do Itaberaba Group,Central Ribeira Belt,SE Brazil[J].Chemical Geology,264(1):207-220.
    Guo L,Liu Y,Li C,Xu W and Ye L.2009.SHRIMP zircon U-Pb geochronology and lithogeochemistry of Caledonian Granites from the Laojunshan area,southeastern Yunnan province,China:Implications for the collision between the Yangtze and Cathaysia blocks[J].Geochemical Journal,43(2):101-122.
    Guo X F,Xiao X P,Wei G J,Wang Q,Zhao Z H,Huang X L,Zhang H X,Yuan C and Li W X.2014.LA-MC-ICPMS in-situ boron isotope analyses of tourmalines from the Shangbao granites(southern Hunan Province)and its geological significance[J].Geochemica,43(1):11-19(in Chinese with English abstract).
    Gupta S,Jayananda M and Fareeduddin.2014.Tourmaline from the Archean G.R.Halli gold deposit,Chitradurga greenstone belt,Dharwar craton(India):Implications for the gold metallogeny[J].Geoscience Frontiers,5(6):877-892.
    Henry D J and Guidotti C V.1985.Tourmaline as a petrogenetic indicator mineral:An example from the staurolite-grade metapelites of NWMaine[J].American Mineralogist,70(1-2):1-15.
    Henry D J and Dutrow B L.1996.Metamorphic tourmaline and its petrologic applications[J].Reviews in Mineralogy and Geochemistry,33(1):503-557.
    Henry D J,Novák M,Hawthorne F C,Ertl A,Dutrow B L,Uher P and Pezzotta F.2011.Nomenclature of the tourmaline-supergroup minerals[J].American Mineralogist,96(5-6):895-913.
    Hou K J,Li Y H,Xiao Y K,Liu F and Tian Y Y.2010.In situ Boron isotope measurements of natural geological materials by LA-MC-ICP-MS[J].Chinese Science bulletin,55(22):2207-2213(in Chinese with English abstract).
    Hu G Y,Fan C F,Li Y H,Hou K J,Liu Y and Chen X.2014.Marine evaporative genesis of Mg-borate deposits in the Zhuanmiao ore district,eastern Liaoning Province:Evidence from B,S,Cisotopes[J].Acta Geoscientica Sinica,35(4):445-453(in Chinese with English abstract).
    Huang X F,Zhang B L,Li X L,Shen X L and Guo Z H.2012.Research progress of Tourmaline and its prospecting significance[J].Gold Science&Technology,20(3):56-65(in Chinese with English abstract).
    Huang X Y,Zhang H,Tang Y and Guan S J.2008.Chemical composition of tourmailines from the B-rich granite and miarolitic cavities in Yinping,Guangxi and its implications for evolution of themagmatichydrothermal system[J].Acta Mineralogica Sinica,28(1):25-34(in Chinese with English abstract).
    Ishikawa T,Tera F and Nakazawa T.2001.Boron isotope and trace element systematics of the three volcanic zones in the Kamchatka arc[J].Geochimica et Cosmochimica Acta,65(24):4523-4537.
    Jiang S Y,Palmer M R,Peng Q M and Yang J H.1997.Chemical and stable isotopic compositions of Proterozoic metamorphosed evaporites and associated tourmalines from the Houxianyu borate deposit,eastern Liaoning,China[J].Chemical Geology,135(3-4):189-211.
    Jiang S Y,Han F,Shen J Z and Palmer M R.1999a.Chemical and RbSr,Sm-Nd isotopic systematics of tourmaline from the Dachang Snpolymetallic ore deposit,Guangxi Province,P.R.China[J].Chemical Geology,157(1-2):49-67.
    Jiang S Y,Palmer M R,Slack J F and Shaw D R.1999b.Boron isotope systematics of tourmaline formation in the Sullivan Pb-Zn-Ag deposit,British Columbia,Canada[J].Chemical Geology,158(1):131-144.
    Jiang S Y.2000.Boron isotope and its geological applications[J].Geological Journal of China Universities,6(1):1-16(in Chinese with English abstract).
    Jiang S Y,Yu J M,Shen H F and Ni P.2000a.Boron isotope as a tracer in the study of crust-mantle evolution and subduction processes[J].Earth Science Frontiers(China University of Geosciences,Beijing),7(2):391-399(in Chinese with English abstract).
    Jiang S Y,Yu J M,Ni P and Lin H F.2000b.Tourmaline-Asensitive tracer for petrogenesis and minerogenesis[J].Geological Review,46(6):594-604(in Chinese with English abstract).
    Jiang S Y.2001.Boron isotope geochemistry of hydrothermal ore deposits in China:A preliminary study[J].Physics and Chemistry of the Earth,Part A:Solid Earth and Geodesy,26(9-10):851-858.
    Jiang S Y,Palmer M R and Yeats C J.2002.Chemical and boron isotopic compositions of tourmaline from the Archean Big Bell and Mount Gibson gold deposits,Murchison Province,Yilgarn Craton,western Australia[J].Chemical Geology,188(3-4):229-247.
    Krienitz M S,Trumbull R,Hellmann A,Kolb J,Meyer F and Wiedenbeck M.2008.Hydrothermal gold mineralization at the Hira Buddini gold mine,India:Constraints on fluid evolution and fluid sources from boron isotopic compositions of tourmaline[J].Mineralium Deposita,43(4):421-434.
    Lepvrier C,Faure M,Van V N,Van Vu T,Lin W,Trong T T and Hoa P T.2011.North-directed Triassic nappes in Northeastern Vietnam(East Bac Bo)[J].Journal of Asian Earth Sciences,46(1):56-68.
    Li D X and Xu S S.2000.Rotation-shearing genesis of metamorphic core complex-Structure analysis of metamorphic core complex in Laojunshan,southeastern Yunnan Province[J].Geological Review,46(2):113-119(in Chinese with English abstract).
    Li J K,Wang D H,Li H Q,Chen Z H and Mei Y P.2013.Late Jurassic-Early Cretaceous mineralization in the Laojunshan mining district,Yunnan Province[J].Earth Science-Journal of China University of Geosciences,38(5):1023-1036(in Chinese with English abstract).
    Liu Y P,Ye L,Song B,Li T S,Guo L G and Pi D H.2006.Discovery of the Neoproterozoic magmatics in southeastern Yunnan:Evidence from SHRIMP zircon U-Pb dating and lithogeochemistry[J].Acta Petrologica Sinica,22(4):916-926(in Chinese with English abstract).
    Liu Y P,Li H M,Guo L G,Ye L,Li C Y and Pi D H.2007.U-Pb geochronology of cassiterite and zircon from the Dulong Sn-Zn deposit:Evidence for Cretaceous large-scale granitic magmatism and mineralization evens in southeastern Yunnan province,China[J].Acta Petrologica Sinica,23(5):967-976(in Chinese with English abstract).
    Liu Y P,Li Z X,Ye L,Tan H Q and Li C Y.2011.Ar-Ar Geochronology of tungsten mineralization in the Laojunshan ore concentration area,Yunnan Province[J].Acta Mineralogica Sinica,S1:617-618(in Chinese).
    London D.2011.Experimental synthesis and stability of tourmaline:Ahistorical overview[J].The Canadian Mineralogist,49(1):117-136.
    Lynch G and Ortega J.1997.Hydrothermal alteration and tourmaline-albite equilibria at the Coxheath porphyry Cu-Mo-Au deposit,Nova Scotia[J].The Canadian Mineralogist,35(1):79-94.
    Maluski H,Lepvrierb C,Jolivetb L,Carterc A,Roquesc D,Beyssacd O,Tang T T,Nguyen D T and Avigadd D.2001.Ar-Ar and fissiontrack ages in the Song Chay Massif:Early Triassic and Cenozoic tectonics in northern Vietnam[J].Journal of Asian Earth Sciences,1-2(19):233-248.
    Mao J W,Wang P A,Wang D H and Bi C S.1993.The tracer of tourmaline for rock-forming and metallogenic environments and its applied conditions[J].Geological Review,39(6):497-507(in Chinese with English abstract).
    Mao J W,Cheng Y B,Guo C L,Yang Z X and Feng J R.2008.Gejiu tin polymetallic ore-field:Deposit model and discussion for several points concerned[J].Acta Geologica Sinica,82(11):1455-1467(in Chinese with English abstract).
    Marschall H R and Jiang S Y.2011.Tourmaline isotopes:No element left behind[J].Elements,7(5):313-319.
    Mc Donough W F and Sun S S.1995.The composition of the Earth[J].Chemical Geology,120(3-4):223-253.
    Miao Y L,Chen Z M,Tu C S and Zhu J J.2013.Geological characteristics and genesis of the Nanlao Cu-W deposit in Laojunshan area,southeastern Yunnan Province[J].Acta Geoscientica Sinica,34(S1):65-70(in Chinese with English abstract).
    Mlynarczyk M S and Williams-Jones A E.2006.Zoned tourmaline associated with cassiterite:Implications for fluid evolution and tin mineralization in the San Rafael Sn-Cu deposit,southeastern Peru[J].The Canadian Mineralogist,44(2):347-365.
    Nie X S,Xia X P,Zhang L,Ren Z Y and Li L.2015.In-situ boron isotopic analyses of tourmalines by LA-MC-ICPMS and its application to provenance analyses:A case study for the Ailaoshan Belt[J].Geochimica,44(5):438-449(in Chinese with English abstract).
    Pal D C,Trumbull R B and Wiedenbeck M.2010.Chemical and boron isotope compositions of tourmaline from the Jaduguda U(-Cu-Fe)deposit,Singhbhum shear zone,India:Implications for the sources and evolution of mineralizing fluids[J].Chemical Geology,277(3):245-260.
    Pan J B,Zhang D,Que C Y,Di Y J,Huang K W,Bi M F and Xu J Z.2015.Geochemistry and ziron U-Pb chronology of the Laochengpo gneissic granite in the Southeast Yunnan area and their implications[J].Bulletin of Mineralogy,Petrology and Geochemistry,34(4),795-803(in Chinese with English abstract).
    Pirajno F and Smithies R H.1992.The Fe O/(Fe O+Mg O)ratio of tourmaline:A useful indicator of spatial variations in granite-related hydrothermal mineral deposits[J].Journal of Geochemical Exploration,42(2-3):371-381.
    Que C Y,Zhang D,Di Y J,Bi M F,Huang K W,Xu J Z,Liu Y B,Li X Z,Zu X Y,Fan Z Z and Wang S.2014.Ore-controlling characteristics of tungsten deposits in the Nanwenhe-Saxi area and deep prospecting breakthrough[J].Earth Science Frontiers,21(2):286-300(in Chinese with English abstract).
    Roger F,Leloup P H,Jolivet M,Lacassin R,Trinh P T,Brunel M and Seward D.2000.Long and complex thermal history of the Song Chay metamorphic dome(Northern Vietnam)by multi-system geochronology[J].Tectonophysics,(321):449-466.
    Shi H Z,Zhang L K,Ren G M,Liu S S,Zhang B,Dai J and Chen MH.2011.The genesis of skarnoid from the Nanyangtian stratabound scheelite deposit in Malipo,Yunnan Province[J].Geology in China,38(3):673-680(in Chinese with English abstract).
    Shi H Z,Zhang L K,Fan W Y and Lin F C.2015.Metallogenic model of Laojunshan area Nanyangtian scheelite deposit in SE Yunnan[J].China Tungsten Industry,30(2):1-6(in Chinese with English abstract).
    Skewes M A,Holmgren C and Stern C.2003.The Donoso copper-rich,tourmaline-bearing breccia pipe in central Chile:Petrologic,fluid inclusion and stable isotope evidence for an origin from magmatic fluids[J].Mineralium Deposita,38(1):2-21.
    Slack J F,Palmer M R and Stevens B P.1989.Boron isotope evidence for the involvement of non-marine evaporites in the origin of the Broken Hill ore deposits[J].Nature,342:21-28.
    Slack J F,Palmer M R,Stevens B P J and Barnes R G.1993.Origin and significance of tourmaline-rich rocks in the Broken Hill District,Australia[J].Econ.Geol.,88(3):505-541.
    Slack J F and Trumbull R B.2011.Tourmaline as a recorder of oreforming processes[J].Elements,7(5):321-326.
    Swihart G H,Carpenter S B,Xiao Y,Mc Bay E H,Smith D H and Xiao Y.2014.A boron isotope study of the Furnace Creek,California,Borate District[J].Econ.Geol.,109(3):567-580.
    Tornos F,Wiedenbeck M and Velasco F.2012.The boron isotope geochemistry of tourmaline-rich alteration in the IOCG systems of northern Chile:Implications for a magmatic-hydrothermal origin[J].Mineralium Deposita,47(5):483-499.
    Wang D H,Chen Z H,Chen Y C,Tang J X,Li J K,Ying L J,Wang CH,Liu S B,Li L X,Qin Y,Li H Q,Qu W J,Wang Y B,Chen Wand Zhang Y.2010.New data of the rock-forming and ore forming chronology for China's important mineral resources areas[J].Acta Geologica Sinica,84(7):1030-1040(in Chinese with English abstract).
    Wang F L,Wang C Y and Zhao T P.2015.Boron isotopic constraints on the Nb and Ta mineralization of the syenitic dikes in the~260 Ma Emeishan large igneous province(SW China)[J].Ore Geology Reviews,65(4):1110-1126.
    Wang J J and Zhao F.2002.Relation beteween tourmaline chemical feature and related deposit[J].Contributions to Geology and Mineral Resources Research,17(3):161-163(in Chinese with English abstract).
    Williamson B J,Mueller A and Shail R K.2010.Source and partitioning of B and Sn in the Cornubian batholith of southwest England[J].Ore Geology Reviews,38(1-2):1-8.
    Xu B,Jiang S Y,Hofmann A W,Wang R,Yang S Y and Zhao K D.2016.Geochronology and geochemical constraints on petrogenesis of Early Paleozoic granites from the Laojunshan district in Yunnan Province of South China[J].Gondwana Research,29(1):248-263.
    Yan D P,Zhou M F,Wang Y,Wang C L and Zhao T P.2005.Structural styles and chronological evidences from Dulong-Song Chay tectonic dome:Earlier spreading of South China Sea basin due to Late Mesozoic to Early Cenozoic extension of South China block[J].Earth Science-Journal of China University of Geosciences,30(4):402-412(in Chinese with English abstract).
    Yan D P,Zhou M F,Wang C Y and Xia B.2006.Structural and geochronological constraints on the tectonic evolution of the Dulong-Song Chay tectonic dome in Yunnan Province,SW China[J].Journal of Asian Earth Sciences,(28):332-353.
    Yang X and Zhang L F.2013.Recent progress in HP-UHP metamorphic tourmaline research[J].Acta Petrologica Et Mineralogica,32(2):251-259(in Chinese with English abstract).
    Yan X and Chen B.2014.Chemical and boron isotopic compositions of tourmaline from the Paleoproterozoic Houxianyu borate deposit,NEChina:Implications for the origin of borate deposit[J].Journal of A-sian Earth Sciences,94:252-266.
    Yang Y Q,Wang Y,LüQ T and Zhao J H.2010.Characteristics of tourmalines from Nanping granitic pegmatites in Fujian Province[J].Acta Petrologica et Mineralogica,29(3):235-242(in Chinese with English abstract).
    Yavuz F,Karakaya N,Y、ld、r、m D K,Karakaya M C and Kumral M.2014.A Windows program for calculation and classification of tourmaline-supergroup(IMA-2011)[J].Computers&Geosciences,63:70-87.
    Zeng Z G,Li C Y,Liu Y P and Tu G Z 1998.REE geochemistry of scheelite of two genetic types from Nanyangtian,southeastern Yunnan[J].Geology Geochemistry,26(2):34-38(in Chinese with English abstract).
    Zeng Z G,Li C Y,Liu Y P and Tu G Z.1999.Geology and geochemistry of metamorphogenic skarn from Laojunshan metallogenic Province[J].Acta Mineralogica Sinica,19(1):48-55(in Chinese with English abstract).
    Zhang B H,Ding J,Zhang L K,Chen M H,Wang P and Dai J.2011.Contact relationships between“Xinzhai Formation-complex”and metamorphic granitic rocks in southeastern Yunnan and their geological significances[J].Geological Review,57(3):316-326(in Chinese with English abstract).
    Zhang B H,Ding J,Ren G M,Zhang L K and Shi H Z.2012.Geochronology and geochemical characteristic of the Laojunshan granites in Maguan County,Yunnan Province,and its geological implications[J].Acta Geologica Sinica,86(4):587-601(in Chinese with English abstract).
    毕珉烽,张达,吴淦国,狄永军,阙朝阳,潘锦波,薛伟.2015.滇东南麻栗坡一带中生代构造变形及其对钨多金属矿床的控制作用[J].地学前缘,22(4):223-238.
    冯佳睿,毛景文,裴荣富,李超.2011.滇东南老君山地区印支期成矿事件初探---以新寨锡矿床和南秧田钨矿床为例[J].矿床地质,30(1):57-73.
    冯佳睿,毛景文,裴荣富,周振华,杨宗喜.2010.云南瓦渣矿区老君山花岗岩体的SHRIMP锆石U-Pb定年、地球化学特征及成因探讨[J].岩石学报,26(3):845-857.
    郭海锋,夏小平,韦刚健,王强,赵振华,黄小龙,张海祥,袁超,李武显.2014.湘南上堡花岗岩中电气石LA-MC-ICP MS原位微区硼同位素分析及地质意义[J].地球化学,43(1):11-19.
    侯可军,李延河,肖应凯,刘峰,田有荣.2010.LA-MC-ICP-MS硼同位素微区原位测试技术[J].科学通报,55(22):2207-2213.
    胡古月,范昌福,李延河,侯可军,刘,陈贤.2014.辽东砖庙矿区硼矿床的海相蒸发成因---来自硼、硫、碳同位素的证据[J].地球学报,35(4):445-453.
    黄小勇,张辉,唐勇,管申进.2008.广西银屏富B花岗岩及其晶洞中电气石的化学组成特征以及对岩浆-热液演化的指示[J].矿物学报,28(1):25-34.
    黄雪飞,张宝林,李晓利,沈晓丽,郭志华.2012.电气石研究进展及其找矿意义[J].黄金科学技术,20(3):56-65.
    蒋少涌.2000.硼同位素及其地质应用研究[J].高校地质学报,6(1):1-16.
    蒋少涌,于际民,凌洪飞,倪培.2000a.壳-幔演化和板块俯冲作用过程中的硼同位素示踪[J].地学前缘,7(2):391-399.
    蒋少涌,于际民,倪培,凌洪飞.2000b.电气石---成岩成矿作用的灵敏示踪剂[J].地质论评,46(6):594-604.
    李东旭,许顺山.2000.变质核杂岩的旋扭成因---滇东南老君山变质核杂岩的构造解析[J].地质论评,46(2):113-119.
    李建康,王登红,李华芹,陈郑辉,梅玉萍.2013.云南老君山矿集区的晚侏罗世-早白垩世成矿事件[J].地球科学(中国地质大学学报),38(5):1023-1036.
    刘玉平,叶霖,李朝阳,宋彪,李铁胜,郭利果,皮道会.2006.滇东南发现新元古代岩浆岩:SHRIMP锆石U-Pb年代学和岩石地球化学证据[J].岩石学报,22(4):916-926.
    刘玉平,李正祥,李惠民,郭利果,徐伟,叶霖,李朝阳,皮道会.2007.都龙锡锌矿床锡石和锆石U-Pb年代学:滇东南白垩纪大规模花岗岩成岩-成矿事件[J].岩石学报,23(5):967-976.
    刘玉平,李正祥,叶霖,谭洪旗,李朝阳.2011.滇东南老君山矿集区钨成矿作用Ar-Ar年代学[J].矿物学报,S1:617-618.
    毛景文,王平安,王登红,毕承思.1993.电气石对成岩成矿环境的示踪性及应用条件[J].地质论评,39(6):497-507.
    毛景文,程彦博,郭春丽,杨宗喜,冯佳睿.2008.云南个旧锡矿田:矿床模型及若干问题讨论[J].地质学报,82(11):1455-1467.
    缪应理,陈智明,涂长寿,朱加景.2013.滇东南老君山南捞铜钨矿床地质特征及成因探讨[J].地球学报,34(S1):65-70.
    聂小松,夏小平,张乐,任钟元,李玲.2015.碎屑电气石的LA-MC-ICPMS硼同位素原位微区分析及其源区示踪:以哀牢山构造带为例[J]:地球化学,44(5):438-449.
    潘锦波,张达,阙朝阳,狄永军,黄孔文,毕珉烽,徐建珍.2015.滇东南老城坡片麻状花岗岩地球化学特征、锆石U-Pb年龄及其意义[J].矿物岩石地球化学通报,34(4):795-803.
    阙朝阳,张.达,狄永军,毕珉烽,黄孔文,徐建珍,刘艳宾,李晓宗,祖世元,范正哲,王森.2014.滇东南麻栗坡南温河-洒西一带钨矿控矿要素及深部找矿突破[J].地学前缘,21(2):286-300.
    石洪召,张林奎,任光明,刘书生,张彬,戴婕,陈敏华.2011.云南麻栗坡南秧田白钨矿床层控似矽卡岩成因探讨[J].中国地质,38(3):673-680.
    石洪召,张林奎,范文玉,林方成.2015.滇东南老君山地区南秧田白钨矿床成矿模式[J].中国钨业,30(2):1-6.
    王登红,陈郑辉,陈毓川,唐菊兴,李建康,应立娟,王成辉,刘善宝,李立兴,秦燕,李华芹,屈文俊,王彦斌,陈文,张彦.2010.我国重要矿产地成岩成矿年代学研究新数据[J].地质学报,84(7):1030-1040.
    王进军,赵枫.2002.电气石的化学特征与相关矿床的关系[J].地质找矿论丛,17(3):161-163.
    颜丹平,周美夫,王焰,汪昌亮,赵太平.2005.都龙-Song Chay变质穹隆体变形与构造年代---南海盆地北缘早期扩张作用始于华南地块张裂的证据[J].地球科学,30(4):402-412.
    杨鑫,张立飞.2013.高压-超高压变质电气石研究的现状和进展[J].岩石矿物学杂志,32(2):251-259.
    杨岳清,王勇,吕庆田,赵金花.2010.福建南平花岗伟晶岩中的电气石研究[J].岩石矿物学杂志,29(3):235-242.
    曾志刚,李朝阳,刘玉平,涂光炽.1998.滇东南南秧田两种不同成因类型白钨矿的稀土元素地球化学特征[J].地质地球化学,26(2):34-38.
    曾志刚,李朝阳,刘玉平,涂光炽.1999.老君山成矿区变质成因矽卡岩的地质地球化学特征[J].矿物学报,19(1):48-55.
    张斌辉,丁俊,张林奎,陈敏华,王鹏,戴婕.2011.滇东南“新寨岩组”与变质花岗质岩的接触关系及其地质意义[J].地质论评,57(3):316-326.
    张斌辉,丁俊,任光明,张林奎,石洪召.2012.云南马关老君山花岗岩的年代学、地球化学特征及地质意义[J].地质学报,86(4):587-601.

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