[1] XU C,KYNICKY J,CHAKHMOURADIAN A R,et al.A Case Example of the Importance of Multi-analytical Approach in Deciphering Carbonatite Petrogenesis in South Qinling Orogen:Miaoya Rare-metal Deposit,Central China[J].Lithos,2015,227:107-121.
[2] 舒小超,刘 琰,李德良,等.川西冕宁—德昌稀土矿带霓长岩的地球化学特征及地质意义[J].岩石学报,2019,35(5):1372-1388.
SHU Xiao-chao,LIU Yan,LI De-liang,et al.Geochemical Characteristics and Geological Significance of Fenites in the Mianning-Dechang REE Belt,Western Sichuan Province[J].Acta Petrologica Sinica,2019,35(5):1372-1388.
[3] WENG Z,JOWITT S M,MUDD G M,et al.A Detailed Assessment of Global Rare Earth Element Resources:Opportunities and Challenges[J].Economic Geology,2015,110(8):1925-1952.
[4] BAIN W M,STEELE-MACINNIS M,LI K,et al.A Fundamental Role of Carbonate-sulfate Melts in the Formation of Iron Oxide-apatite Deposits[J].Nature Geoscience,2020,13(11):751-757.
[5] CUI H,ZHONG R,XIE Y,et al.Forming Sulfate and REE-rich Fluids in the Presence of Quartz[J].Geology,2020,48:145-148.
[6] WALTER B F,STEELE-MACINNIS M,GIEBEL R J,et al.Complex Carbonate-sulfate Brines in Fluid Inclusions from Carbonatites:Estimating Compositions in the System H2O-Na-K-CO3-SO4-Cl[J].Geochimica et Cosmochimica Acta,2020,277:224-242.
[7] CHEN H,CUI H,ZHONG R,et al.Solubility of Na2SO4 in Silica-saturated Solutions:Implications for REE Mineralization[J].American Mineralogist,2020,105(11):1686-1694.
[8] MIGDISOV A,WILLIAMS-JONES A E,BRUGGER J,et al.Hydrothermal Transport,Deposition,and Fractio-nation of the REE:Experimental Data and Thermodynamic Calculations[J].Chemical Geology,2016,439:13-42.
[9] LIU Y,HOU Z Q,ZHANG R Q,et al.Zircon Alteration as a Proxy for Rare Earth Element Mineralization Processes in Carbonatite-nordmarkite Complexes of the Mianning-Dechang Rare Earth Element Belt,China[J].Economic Geology,2019,114(4):719-744.
[10] ZHENG X,LIU Y,ZHANG L S.The Role of Sulfate-,Alkali- and Halogen-rich Fluids in Mobilization and Mineralization of Rare Earth Elements:Insights from Bulk Fluid Compositions in the Mianning-Dechang Carbonatite-related REE Belt,Southwestern China[J].Lithos,2021,386/387:106008.
[11] 李 勇,王小武,马昭建,等.山东省微山县郗山稀土矿普查报告[R].济宁:山东省鲁南地质工程勘察院,2002.
LI Yong,WANG Xiao-wu,MA Zhao-jian,et al.Ge-neral Survey Report of Xishan Rare Earth Deposit in Weishan County,Shandong Province[R].Jining:Shandong Lunan Geological Engineering Survey Institute,2002.
[12] 刘邦君,张 旭,冯超臣.山东省微山县郗山矿区稀土矿深部资源储量核实报告[R].济宁:山东省鲁南地质工程勘察院,2012.
LIU Bang-jun,ZHANG Xu,FENG Chao-chen.Verification Report on Deep Resource Reserves of Rare Rarth Deposits in Xishan Mining Area,Weishan County,Shandong Province[R].Jining:Shandong Lunan Geological Engineering Survey Institute,2012.
[13] 孔庆友,张天祯,于学峰,等.山东矿床[M].济南:山东科学技术出版社,2006.
KONG Qing-you,ZHANG Tian-zhen,YU Xue-feng,et al.Shandong Deposit[M].Jinan:Shandong Science and Technology Press,2006.
[14] 王艳慧.山东沂南金铜铁矿床的矿石特征及成矿期次研究[D].北京:中国地质大学,2009.
WANG Yan-hui.The Study of the Ore Characters and Metallogenic Phases of the Au-Cu-Fe Deposit in Yinan of Shandong Province[D].Beijing:China University of Geosciences,2009.
[15] 董树义,顾雪祥,杨永强,等.地物化综合方法在危机矿山成矿预测中的应用:以山东沂南金矿为例[J].地学前缘,2010,17(2):198-208.
DONG Shu-yi,GU Xue-xiang,YANG Yong-qiang,et al.Application of Comprehensive Geological-geophysical-geochemical Methods on Metallogenic Prediction of Crisis Mines:A Case Study in Yinan Gold Deposit[J].Earth Science Frontiers,2010,17(2):198-208.
[16] 刘 丽.山东沂南金矿床成矿流体特征及地质意义[D].北京:中国地质大学,2009.
LIU Li.The Characteristics of Ore-forming Fluids and Geological Significance from the Yinan Gold Deposit,Shandong Province[D].Beijing:China Univer-sity of Geosciences,2009.
[17] 蓝廷广,范宏瑞,胡芳芳,等.山东微山稀土矿矿床成因:来自云母Rb-Sr年龄,激光Nd同位素及流体包裹体的证据[J].地球化学,2011,40(5):428-442.
LAN Ting-guang,FAN Hong-rui,HU Fang-fang,et al.Genesis of the Weishan REE Deposit,Shandong Pro-vince:Evidences from Rb-Sr Isochron Age,LA-MC-ICPMS Nd Isotopic Compositions and Fluid Inclusions[J].Geochimica,2011,40(5):428-442.
[18] 吴利仁.中国东部中生代花岗岩类[J].岩石学报,1985,1(1):1-10.
WU Li-ren.Mesozoic Granitoids in East China[J].Acta Petrologica Sinica,1985,1(1):1-10.
[19] 刘建明,张宏福,孙景贵,等.山东幔源岩浆岩的碳-氧和锶-钕同位素地球化学研究[J].中国科学:D辑,地球科学,2003,33(10):921-930.
LIU Jian-ming,ZHANG Hong-fu,SUN Jing-gui,et al.C-O and Sr-Nd Isotopic Geochemistry of Mantle Derived Magmatic Rocks in Shandong[J].Science in China:Series D,Earth Sciences,2003,33(10):921-930.
[20] 李童斐,夏庆霖,汪新庆,等.中国稀土矿资源成矿地质特征与资源潜力分析[J].地学前缘,2018,25(3):95-106.
LI Tong-fei,XIA Qing-lin,WANG Xin-qing,et al.Metallogenic Geological Characteristics and Mineral Resource Potential of Rare Earth Element Resources in China[J].Earth Science Frontiers,2018,25(3):95-106.
[21] 于学峰,唐好生,韩作振,等.山东郗山—龙宝山地区与碱性岩有关的稀土矿床地质特征及成因[J].地质学报,2010,84(3):407-417.
YU Xue-feng,TANG Hao-sheng,HAN Zuo-zhen,et al.Geological Characteristics and Origin of Rare Earth Elements Deposits Related with Alkaline Rock in the Chishan-Longbaoshan Area,Shandong Province[J].Acta Geologica Sinica,2010,84(3):407-417.
[22] 王继芳,孙茂田,杜显彪,等.山东省郗山稀土矿地质特征及找矿前景分析[J].山东国土资源,2016,32(6):32-40.
WANG Ji-fang,SUN Mao-tian,DU Xian-biao,et al.Geological Characteristics and Prospecting Potentia-lity of Xishan Rare Earth Deposit in Shandong Provi-nce[J].Shandong Land and Resources,2016,32(6):32-40.
[23] LIU Y S,HU Z C,ZONG K Q,et al.Reappraisement and Refinement of Zircon U-Pb Isotope and Trace Element Analyses by LA-ICP-MS[J].Chinese Science Bulletin,2010,55:1535-1546.
[24] 邢 凯,舒启海.磷灰石在矿床学研究中的应用[J].矿床地质,2021,40(2):189-205.
XING Kai,SHU Qi-hai.Applications of Apatite in Study of Ore Deposits:A Review[J].Mineral Depo-sits,2021,40(2):189-205.
[25] O'REILLY S Y,GRIFFIN W L.Apatite in the Mantle:Implication for,Metasomatic Processes and High Heat Production in Phanerozoic Pantle[J].Lithos,2000,53(3/4):217-232.
[26] 邱检生,张晓琳,胡 建,等.鲁西碳酸岩中磷灰石的原位激光探针分析及其成岩意义[J].岩石学报,2009,25(11):2855-2865.
QIU Jian-sheng,ZHANG Xiao-lin,HU Jian,et al.In-situ LA-ICP-MS Analyses of Apatites from Carbona-tites in Western Shandong Province:Implications for Petrogenesis[J].Acta Petrologica Sinica,2009,25(11):2855-2865.
[27] HUGHES J M,ERTL A,BERNHARDT H J,et al.Mn-rich Fluorapatite from Austria:Crystal Structure,Chemical Analysis,and Spectroscopic Investigations[J].American Mineralogist,2004,89(4):629-632.
[28] 韩 丽,黄小龙,李 洁,等.江西大湖塘钨矿花岗岩的磷灰石特征及其氧逸度变化指示[J].岩石学报,2016,32(3):746-758.
HAN Li,HUANG Xiao-long,LI Jie,et al.Oxygen Fugacity Variation Recorded in Apatite of the Granite in the Dahutang Tungsten Deposit,Jiangxi Province,South China[J].Acta Petrologica Sinica,2016,32(3):746-758.
[29] 付浩邦,刘 琰,郑 旭,等.川西木落寨稀土矿床年代学、地球化学与成矿特征[J].矿床地质,2019,38(3):491-508.
FU Hao-bang,LIU Yan,ZHENG Xu,et al.Geochronology,Geochemistry and Metallogenic Characteristics of Muluozhai Deposit in Southwestern Sichuan Province[J].Mineral Deposits,2019,38(3):491-508.
[30] 田京祥,张日田,范跃春,等.山东郗山碱性杂岩体地质特征及与稀土矿的关系[J].山东地质,2002,18(1):21-25.
TIAN Jing-xiang,ZHANG Ri-tian,FAN Yue-chun,et al.Geological Characteristics and Relation with Ra-re Earth Elements of Alkalic Complex in Chishan of Shandong Province[J].Shandong Geology,2002,18(1):21-25.
[31] FLEET M E,PAN Y M.Site Preference of Rare Earth Elements in Fluorapatite[J].American Mineralogist,1995,80(3/4):329-335.
[32] 刘慧卿,杨玉龙,李葆华,等.甘肃干沙鄂博稀土矿床萤石成因研究[J].中国稀土学报,2019,37(4):507-516.
LIU Hui-qing,YANG Yu-long,LI Bao-hua,et al.Genesis of Fluorite in the Gansha-Ebo Rare Earth Deposit,Gansu Province,China[J].Journal of the Chinese Society of Rare Earths,2019,37(4):507-516.
[33] MÖLLER P,PAREKH P P,SCHNEIDER H J.The Application of Tb/Ca-Tb/La Abundance Ratios to Problems of Fluorspar Genesis[J].Mineralium Deposita,1976,11:111-116.
[34] 许 成,黄智龙,漆 亮,等.四川牦牛坪稀土矿床萤石稀土元素、同位素地球化学[J].地球化学,2002,31(2):180-190.
XU Cheng,HUANG Zhi-long,QI Liang,et al.REE and Isotopic Geochemistry of Fluorites in the Maoniu-ping Rare-earth Deposit,Sichuan Province[J].Geo-chimica,2002,31(2):180-190.
[35] BAU M,DULSKI P.Comparative Study of Yttrium and Rare-earth Element Behaviours in Fluorine-rich Hydrothermal Fluids[J].Contributions to Mineralogy and Petrology,1995,119:213-223.
[36] 邹 灏,方 乙,陈合毛,等.浙江天台盆地下陈萤石矿稀土元素地球化学特征及成因[J].中国地质,2014,41(4):1375-1386.
ZOU Hao,FANG Yi,CHEN He-mao,et al.REE Geochemistry and Genesis of the Xiachen Fluorite Deposit in Tiantai Basin,Zhejiang Province[J].Geology in China,2014,41(4):1375-1386.
[37] 罗丽萍,谭洪旗,胡军亮,等.布拖小洞子萤石矿床稀土元素地球化学特征及意义[J].四川地质学报,2020,40(1):45-50.
LUO Li-ping,TAN Hong-qi,HU Jun-liang,et al.REE Geochemistry of the Xiaodongzi Fluorite Deposit in Butuo[J].Acta Geologica Sichuan,2020,40(1):45-50.
[38] 杨学明,杨晓勇,王允庆,等.白云鄂博磷灰石的矿物化学特征及其成因意义[J].地质论评,1999,45(增1):1155-1165.
YANG Xue-ming,YANG Xiao-yong,WANG Yun-qing,et al.Chemical Compositions of Apatites from Bayan Obo and Their Petrogenetic Implications[J].Geolo-gical Review,1999,45(S1):1155-1165.
[39] 聂爱国.广西茶山锑矿区萤石成因的稀土元素地球化学研究[J].矿物学报,1998,18(2):250-253.
NIE Ai-guo.REE Geochemistry and Origin of Fluorites from Chashan Antimony Deposit[J].Acta Mi-neralogica Sinica,1998,18(2):250-253.
[40] 杨子荣,刘敬党,孙 祥,等.阜新萤石成矿区稀土元素地球化学特征及指示意义[J].现代地质,2008,22(5):751-756.
YANG Zi-rong,LIU Jing-dang,SUN Xiang,et al.REE Geochemical Characteristics of Fluorite in Fuxin Metallogenic Region and Its Geological Implications[J].Geoscience,2008,22(5):751-756.
[41] 孙 祥,杨子荣,刘敬党,等.义县萤石矿床稀土元素地球化学特征及其指示意义[J].矿床地质,2008,27(5):579-586.
SUN Xiang,YANG Zi-rong,LIU Jing-dang,et al.REE Geochemistry of Fluorite from Yixian Fluorite Depo-sit and Its Geological Implications[J].Mineral Depo-sits,2008,27(5):579-586.
[42] 宋文磊,许 成,王林均,等.与碳酸岩-碱性杂岩体相关的内生稀土矿床成矿作用研究进展[J].北京大学学报(自然科学版),2013,49(4):725-740.
SONG Wen-lei,XU Cheng,WANG Lin-jun,et al.Review of the Metallogenesis of the Endogenetic Rare Earth Elements Deposits Related to Carbonatite-alkaline Complex[J].Acta Scientiarum Naturalium Uni-versitatis Pekinensis,2013,49(4):725-740.
[43] 李建康,袁忠信,白 鸽,等.山东微山稀土矿床成矿流体的演化及对成矿的制约[J].矿物岩石,2009,29(3):60-68.
LI Jian-kang,YUAN Zhong-xin,BAI Ge,et al.Ore-forming Fluid Evolvement and Its Controlling to REE(Ag)Mineralizing in the Weishan Deposit,Shandong[J].Journal of Mineralogy and Petrology,2009,29(3):60-68.
[44] 郑 旭,刘 琰,欧阳怀,等.川西冕宁木落寨碳酸岩型稀土矿床流体演化对成矿的制约:来自包裹体和稳定同位素的证据[J].岩石学报,2019,35(5):1389-1406.
ZHENG Xu,LIU Yan,OUYANG Huai,et al.The Evolution of Ore-forming Fluid Constraints on Mine-ralization of the Muluozhai Carbonatite-related REE Deposit in Western Sichuan:Evidence from Fluid Inclusions and Stable Isotopes[J].Acta Petrologica Si-nica,2019,35(5):1389-1406.
[45] 范宏瑞,牛贺才,李晓春,等.中国内生稀土矿床类型、成矿规律与资源展望[J].科学通报,2020,65(33):3778-3793.
FAN Hong-rui,NIU He-cai,LI Xiao-chun,et al.The Types,Ore Genesis and Resource Perspective of Endogenic REE Deposits in China[J].China Science Bulletin,2020,65(33):3778-3793.
[46] 李胜虎,于学峰,田京祥,等.碳酸岩型稀土矿床成矿流体演化机制研究现状及展望[J].中国地质,2021,48(2):447-459.
LI Sheng-hu,YU Xue-feng,TIAN Jing-xiang,et al.Research Status and Prospect of the Evolution Mechanism of Ore-forming Fluids for Carbonatite-hosted REE Deposits[J].Geology in China,2021,48(2):447-459.
[47] 谢玉玲,夏加明,崔 凯,等.中国碳酸岩型稀土矿床:时空分布与成矿过程[J].科学通报,2020,65(33):3794-3808.
XIE Yu-ling,XIA Jia-ming,CUI Kai,et al.Rare Earth Elements Deposits in China:Spatio-temporal Distribution and Ore-forming Processes[J].China Science Bulletin,2020,65(33):3794-3808.
[48] LIU Y,CHAKHMOURADIAN A R,HOU Z Q,et al.Development of REE Mineralization in the Giant Mao-niuping Deposit(Sichuan,China):Insights from Mi-neralogy,Fluid Inclusions,and Trace-element Geochemistry[J].Mineral Deposita,2019,54:701-718.
[49] ZHENG X,LIU Y.Mechanisms of Element Precipitation in Carbonatite-related Rare-earth Element Depo-sits:Evidence from Fluid Inclusions in the Maoniu-ping Deposit,Sichuan Province,Southwestern China[J].Ore Geology Reviews,2019,107:218-238.