[1]
|
SANGSTER D F. Mississippi Valley-type deposits:a geological mélange[C]//KISVARSANYI K, GRANT S K, PRATT W P, et al. Proceedings of the international conference on Mississippi Valley-type lead-zinc deposits. Missouri:University of Missouri-Rolla, 1983:7-19.
Google Scholar
|
[2]
|
SILLITOE R H. Porphyry copper systems[J]. Economic Geology, 2010, 105(1):3-41.
Google Scholar
|
[3]
|
许建祥,曾载淋,王登红,等.赣南钨矿新类型及"五层楼+地下室"找矿模型[J].地质学报,2008, 82(7):880-887.
Google Scholar
XU J X, ZENG Z L, WANG D H, et al. A new type of tungsten deposit in southern Jiangxi and the new model of "Five Floors+Basement" for prospecting[J]. Acta Geological Sinica, 2008, 82(7):880-887.
Google Scholar
|
[4]
|
王登红,唐菊兴,应立娟,等."五层楼+地下室"找矿模型的适用性及其对深部找矿的意义[J].吉林大学学报(地球科学版), 2010, 40(4):733-738.
Google Scholar
WANG D H, TANG J X, YING L J, et al. Application of "Five Levels+Basement" model for prospecting deposits into depth[J]. Journal of Jilin University (Earth Science Edition), 2010, 40(4):733-738.
Google Scholar
|
[5]
|
WANG D, HUANG F, WANG Y, et al. Regional metallogeny of tungsten-tin-polymetallic deposits in Nanling region, South China[J]. Ore Geology Reviews, 2020, 120:103305.
Google Scholar
|
[6]
|
邱华宁,白秀娟,刘文贵,等.自动化40Ar/39Ar定年设备研制[J].地球化学, 2015, 44(5):477-484.
Google Scholar
QIU H N, BAI X J, LIU W G, et al. Automatic 40Ar/39Ar dating technique using multicollector Argus VI MS with home-made apparatus[J]. Geochimica, 2015, 44(5):477-484.
Google Scholar
|
[7]
|
张健,薛春纪,曹纪虎,等.豫西南高庄金矿床Re-Os定年及S-Pb同位素和REE示踪[J].地学前缘,2019, 26(5):163-173.
Google Scholar
ZHANG J, XUE C J, CAO J H, et al. Re-Os dating and S-Pb isotopic and rare earth elements analyses of the Gaozhuang gold deposit in southwestern Henan, China[J]. Earth Science Frontiers, 2019, 26(5):163-173.
Google Scholar
|
[8]
|
HNATYSHIN D, CREASER R A, MEFFRE S, et al. Understanding the microscale spatial distribution and mineralogical residency of Re in pyrite:examples from carbonate-hosted Zn-Pb ores and implications for pyrite Re-Os geochronology[J]. Chemical Geology, 2020, 533:119427.
Google Scholar
|
[9]
|
刘泽奇,江小均,李超,等.东川播卡Au矿的成矿时代及成矿背景:来自硫化物Re-Os同位素和炭质板岩微量元素证据[J].地球科学,2021, 46(12):4260-4273.
Google Scholar
LIU Z Q, JIANG X J, LI C, et al. Metallogenic age and setting of Boka gold deposit Dongchuan:evidence from Re-Os isotope of sulfide and trace element of carbonaceous slate[J]. Earth Science, 2021, 46(12):4260-4273.
Google Scholar
|
[10]
|
SUN Q, WANG K, WANG Y, et al. Superimposing mineralization in the Zhengguang Au-Zn deposit, NE China:evidence from pyrite Re-Os geochronology, fluid inclusion, and H-O-S-Pb isotopes[J]. Ore Geology Reviews, 2021, 137:104307.
Google Scholar
|
[11]
|
LI W J, PENG Z D, DONG Z G, et al. Direct Re-Os dating of manganese carbonate ores and implications for the formation of the Ortokarnash manganese deposit, northwest China[J]. Economic Geology, 2022, 117(1):237-252.
Google Scholar
|
[12]
|
TANG Y, HAN J, LAN T, et al. Two reliable calibration methods for accurate in situ U-Pb dating of scheelite[J]. Journal of Analytical Atomic Spectrometry, 2022, 37(2):358-368.
Google Scholar
|
[13]
|
赵葵东,蒋少涌.金属矿床的同位素直接定年方法[J].地学前缘,2004, 11(2):425-434.
Google Scholar
ZHAO K D, JIANG S Y. Direct isotope dating for metallic ore deposits[J]. Earth Science Frontiers, 2004, 11(2):425-434.
Google Scholar
|
[14]
|
陈福坤,李秋立,李潮峰,等.高精度质谱计在同位素地球化学的应用前景[J].地球科学,2005, 30(6):639-645.
Google Scholar
CHEN F K, LI Q L, LI C F, et al. Prospect of high precision mass spectrometer in isotope geochemistry[J]. Earth Science, 2005, 30(6):639-645.
Google Scholar
|
[15]
|
李秋立,陈福坤,王秀丽,等.超低本底化学流程和单颗粒云母Rb-Sr等时线定年[J].科学通报,2006, 51(3):321-325.
Google Scholar
LI Q L, CHEN F K, WANG X L, et al. Ultra-low procedural blank and the single-grain mica Rb-Sr isochron dating[J]. Chinese Science Bulletin, 2006,51(3):321-325.
Google Scholar
|
[16]
|
LI Q L, CHEN F K, YANG J H, et al. Single grain pyrite Rb-Sr dating of the Linglong gold deposit, eastern China[J]. Ore Geology Reviews, 2008, 34(3):263-270.
Google Scholar
|
[17]
|
张长青,李向辉,余金杰,等.四川大梁子铅锌矿床单颗粒闪锌矿铷-锶测年及地质意义[J].地质论评,2008, 54(4):532-538.
Google Scholar
ZHANG C Q, LI X H, YU J J, et al. Rb-Sr dating of single sphalerites from the Daliangzi Pb-Zn deposit, Sichuan, and its geological significances[J]. Geological Review, 2008, 54(4):532-538.
Google Scholar
|
[18]
|
祁进平,宋要武,李双庆,等.河南省栾川县西沟铅锌银矿床单矿物铷-锶同位素组成特征[J].岩石学报,2009, 25(11):2843-2854.
Google Scholar
QI J P, SONG Y W, LI S Q, et al. Single-grain Rb-Sr isotopic composition of the Xigou Pb-Zn-Ag deposit, Luanchuan, Henan Province[J]. Acta Petrologica Sinica, 2009, 25(11):2843-2854.
Google Scholar
|
[19]
|
李文博,黄智龙,许德如,等.铅锌矿床Rb-Sr定年研究综[J].大地构造与成矿学,2002, 26(4):436-441.
Google Scholar
LI W B, HUANG Z L, XU D R, et al. Rb-Sr isotopic method on zinc-lead ore deposits:a review[J]. Geotectonica et Metallogenia, 2002, 26(4):436-441.
Google Scholar
|
[20]
|
韩以贵,李向辉,张世红,等.豫西祁雨沟金矿单颗粒和碎裂状黄铁矿Rb-Sr等时线定年[J].科学通报,2007, 52(11):1307-1311.
Google Scholar
HAN Y G, LI X H, ZHANG S H, et al. Single grain Rb-Sr dating of euhedral and cataclastic pyrite from the Qiyugou gold deposit in western Henan, central China[J]. Chinese Science Bulletin, 2007, 52(11):1307-1311.
Google Scholar
|
[21]
|
WEI Q D, YANG M, ROMER R L, et al. In situ U-Pb geochronology of vesuvianite by LA-SF-ICP-MS[J]. Journal of Analytical Atomic Spectrometry, 2022, 37(1):69-81.
Google Scholar
|
[22]
|
XIONG S F, JIANG S Y, CHEN Z H, et al. A Mississippi Valley-type Zn-Pb mineralizing system in south China constrained by in situ U-Pb dating of carbonates and barite and in situ S-Sr-Pb isotopes[J]. GSA Bulletin, 2022, 134(11/12):2880-2890.
Google Scholar
|
[23]
|
陈奇,王长明,祝佳萱,等.斑岩矿床成矿时间尺度的研究进展:以藏东玉龙斑岩铜(钼)矿床为例[J].岩石学报, 2022, 38(1):109-123.
Google Scholar
CHEN Q, WANG C M, ZHU J X, et al. Advances in research of the timescales of porphyry deposits:a case study of the Yulong porphyry Cu-Mo deposit in the eastern Tibet[J]. Acta Petrologica Sinica, 2022, 38(1):109-123.
Google Scholar
|
[24]
|
SHEPHERD T J, DARBYSHIRE D P F. Fluid inclusion Rb-Sr isochrons for dating mineral deposits[J]. Nature, 1981, 290(5807):578-579.
Google Scholar
|
[25]
|
CHRISTENSEN J N, HALLIDAY A N, LEIGH K E, et al. Direct dating of sulfides by Rb-Sr:a critical test using the Polaris Mississippi Valley-type Zn-Pb deposit[J]. Geochimica et Cosmochimica Acta, 1995, 59(24):5191-5197.
Google Scholar
|
[26]
|
PETKE T, DIAMOND L W. Rb-Sr dating of sphalerite based on fluid inclusion-host mineral isochrons:a clarification of why it works[J]. Economic Geology, 1996, 91(5):951-956.
Google Scholar
|
[27]
|
张连昌,沈远超,刘铁兵,等.山东胶莱盆地北缘金矿Ar-Ar法和Rb-Sr等时线年龄与成矿时代[J].中国科学(D辑),2002,32(9):727-734.
Google Scholar
ZHANG L C, SHEN Y C, LIU T B, et al. Ar-Ar and Rb-Sr isochron age and ore-forming ages of gold deposits in northern Jiaolai Basin, Shandong[J]. Science in China (Series D), 2002, 32(9):727-734.
Google Scholar
|
[28]
|
LI Q L, CHEN F, LI X H, et al. Single grain Rb-Sr isotopic analysis of GA-1550 biotite, LP-6 biotite and bern-4m muscovite 40Ar-39Ar dating standards[J]. Geochemical Journal, 2008, 42(3):263-271.
Google Scholar
|
[29]
|
毛光周,华仁民,龙光明,等.江西金山金矿成矿时代探讨——来自石英流体包裹体Rb-Sr年龄的证据[J].地质学报,2008, 82(4):532-539.
Google Scholar
MAO G Z, HUA R M, LONG G M, et al. Discussion on the mineralogenetic epoch of the Jinshan gold deposit, Jiangxi Province-based on the quartz fluids inclusion Rb-Sr dating[J]. Acta Geologica Sinica, 2008, 82(4):532-539.
Google Scholar
|
[30]
|
田世洪,杨竹森,侯增谦,等.玉树地区东莫扎抓和莫海拉亨铅锌矿床Rb-Sr和Sm-Nd等时线年龄及其地质意义[J].矿床地质,2009, 28(6):747-758.
Google Scholar
TIAN S H, YANG Z S, HOU Z Q, et al. Rb-Sr and Sm-Nd isochron ages of Dongmozhazhua and Mohailaheng Pb-Zn ore deposits in Yushu area, southern Qinghai and their geological implications[J]. Mineral Deposits, 2009, 28(6):747-758.
Google Scholar
|
[31]
|
徐贻赣,吴淦国,王长明,等.江西冷水坑银铅锌矿田闪锌矿铷-锶测年及地质意义[J].地质学报,2013, 87(5):621-633.
Google Scholar
XU Y G, WU G G, WANG C M, et al. Rb-Sr dating of sphalerites from the Lengshuikeng Ag-Pb-Zn deposit, Jiangxi, and its geological significances[J]. Acta Geological Sinica, 2013, 87(5):621-633.
Google Scholar
|
[32]
|
廖震文,王生伟,孙晓明,等.黔东北地区MVT型铅锌矿床闪锌矿Rb-Sr定年及其地质意义[J].矿床地质,2015, 34(4):769-785.
Google Scholar
LIAO Z W, WANG S W, SUN X M, et al. Rb-Sr dating of sphalerites from MVT Pb-Zn deposits in northeastern Guizhou Province and its geological implications[J]. Mineral Deposits, 2015, 34(4):769-785.
Google Scholar
|
[33]
|
杨郧城,郭万军,王亚君,等.内蒙古东珺铅锌银矿床闪锌矿Rb-Sr定年及其地质意义[J].地学前缘,2015, 22(3):348-356.
Google Scholar
YANG Y C, GUO W J, WANG Y J, et al. Rb-Sr dating of sphalerites from Dongjun Pb-Zn-Ag deposit, Inner Mongolia and its geological significance[J]. Earth Science Frontiers, 2015, 22(3):348-356.
Google Scholar
|
[34]
|
张宇,邵拥军,全伟,等.铜陵新桥Cu-S-Fe矿床下盘石英黄铁矿脉石英流体包裹体Rb-Sr同位素定年[J].地质论评,2015, 61(5):1168-1176.
Google Scholar
ZHANG Y, SHAO Y J, QUAN W, et al. Rb-Sr isotope dating of the fluid inclusion in quartz from quartz-pyrite veins in the footwall of Xinqiao Cu-S-Fe deposit, Tongling[J]. Geological Review, 2015, 61(5):1168-1176.
Google Scholar
|
[35]
|
郑伟,陈懋弘,徐林刚,等.广东天堂铜铅锌多金属矿床Rb-Sr等时线年龄及其地质意义[J].矿床地质,2013, 32(2):259-272.
Google Scholar
ZHENG W, CHEN M H, XU L G, et al. Rb-Sr isochron age of Tiantang Cu-Pb-Zn polymetallic deposit in Guangdong Province and its geological significance[J]. Mineral Deposits, 2013, 32(2):259-272.
Google Scholar
|
[36]
|
杨向荣,彭建堂,胡瑞忠.闪锌矿铷-锶同位素等时线讨论[J].地质论评,2009, 55(3):370-374.
Google Scholar
YANG X R, PENG J T, HU R Z. A discussion of sphalerite Rb-Sr isotopic isochron[J]. Geological Review, 2009, 55(3):370-374.
Google Scholar
|
[37]
|
CHEN F, ZHU X Y, WANG W, et al. Single-grain detrital muscovite Rb-Sr isotopic composition as an indicator of provenance for the Carboniferous sedimentary rocks in northern Dabie, China[J]. Geochemical Journal, 2009, 43(4):257-273.
Google Scholar
|
[38]
|
张瑞斌,刘建明,叶杰,等.河北寿王坟铜矿黄铜矿铷锶同位素年龄测定及其成矿意义[J].岩石学报,2008, 24(6):1353-1358.
Google Scholar
ZHANG R B, LIU J M, YE J, et al. Chalcopyrite Rb-Sr isochron age dating and its ore-forming significance in Shouwangfen copper deposit, Hebei Province[J]. Acta Geological Sinica, 2008, 24(6):1353-1358.
Google Scholar
|
[39]
|
姚军明,赵太平,李向辉.河南王坪西沟铅锌矿床单颗粒闪锌矿Rb-Sr定年[J].矿床地质,2010, 29(S1):535-536.
Google Scholar
YAO J M, ZHAO T P, LI X H. Rb-Sr dating of single sphalerites from the Xigou Pb-Zn deposit, Wangping, Henan[J]. Mineral Deposits, 2010, 29(S1):535-536.
Google Scholar
|
[40]
|
姜晓辉,范宏瑞,胡芳芳,等.胶东三山岛金矿中深部成矿流体对比及矿床成因[J].岩石学报,2011, 27(5):1327-1340.
Google Scholar
JIANG X H, FAN H R, HU F F, et al. Comparative studies on fluid inclusion in different depths and ore genesis of the Sanshandao gold deposit Jiaodong Peninsula[J]. Acta Petrologica Sinica, 2011, 27(5):1327-1340.
Google Scholar
|
[41]
|
李世勇,李杰,宋明春,等.胶东玲珑金矿田成矿特征和成矿作用[J].地质学报,2022, 96(9):3234-3260.
Google Scholar
LI S Y, LI J, SONG M C, et al. Metallogenic characteritics and mineralization of the Linglong gold field, Jiaodong Peninsula[J]. Acta Geologica Sinica, 2022, 96(9):3234-3260.
Google Scholar
|
[42]
|
范宏瑞,胡芳芳,杨进辉,等.胶东中生代构造体制转折过程中流体演化和金的大规模成矿[J].岩石学报,2005, 21(5):1317-1328.
Google Scholar
FAN H R, HU F F, YANG J H, et al. Fuild evolution and the large-scale gold metallogeny during mesozoic tectonic transition in the eastern Shandong Province[J]. Acta Petrologica Sinica, 2005, 21(5):1317-1328.
Google Scholar
|
[43]
|
杨进辉,周新华.胶东地区玲珑金矿矿石和载金矿物Rb-Sr等时线年龄与成矿时代[J].科学通报,2000, 45(14):1547-1553.
Google Scholar
YANG J H, ZHOU X H. Single grain Rb-Sr isochron age and ore-forming age of Au-bearing mineral and ore mineral from Linglong gold deposit, Jiaodong[J]. Chinese Science Bulletin, 2000, 45(14):1547-1553.
Google Scholar
|
[44]
|
YANG J H, ZHOU X H. Rb-Sr, Sm-Nd, and Pb isotope systematics of pyrite:implications for the age and genesis of lode gold deposits[J]. Geology, 2001, 29(8):711-714.
Google Scholar
|
[45]
|
姜晓辉.胶西北蚀变岩型金矿成矿流体演化与矿床成因[D].北京:中国科学院地质与地球物理研究所,2011.JIANG X H. Ore-forming fluid evolution and gold mineralization of alteration type gold deposits in the northwestern Jiaodong Peninsula[D]. Beijing:Institute of Geology and Geophysics, Chinese Academy of Sciences, 2011.
Google Scholar
|
[46]
|
宋明春,张军进,张丕建,等.胶东三山岛北部海域超大型金矿床的发现及其构造-岩浆背景[J].地质学报,2015, 89(2):365-383.
Google Scholar
SONG M C, ZHANG J J, ZHANG P J, et al. Discovery and tectonic-magmatic background of superlarge gold deposit in offshore of northern Sanshandao, Shandong Peninsula, China[J]. Acta Geologica Sinica, 2015, 89(2):365-383.
Google Scholar
|
[47]
|
鲍淼,周家喜,黄智龙,等.铅锌矿床定年方法及川-滇-黔铅锌成矿域年代学研究进展[J].矿物学报,2011, 31(3):391-396.
Google Scholar
BAO M, ZHOU J X, HUANG Z L, et al. Dating methods for Pb-Zn deposits and chronology research progress of Sichuan-Yunnan-Guizhou Pb-Zn metallogenic province:a review[J]. Acta Mineralogica Sinica, 2011, 31(3):391-396.
Google Scholar
|
[48]
|
张长青,余金杰,毛景文,等.密西西比型(MVT)铅锌矿床研究进展[J].矿床地质,2009, 28(2):195-210.
Google Scholar
ZHANG C Q, YU J J, MAO J W, et al. Advances in the study of Mississippi Valley type deposits[J]. Mineral Deposits, 2009, 28(2):195-210.
Google Scholar
|
[49]
|
王松,王军,宋盼淑,等.全蒸发-热电离质谱法的原理、技术和应用[J].质谱学报,2019, 40(5):434-446.
Google Scholar
WANG S, WANG J, SONG P S, et al. Principle, technology and application of total evaporation thermal ionization mass spectrometry[J]. Journal of Chinese Mass Spectrometry Society, 2019, 40(5):434-446.
Google Scholar
|
[50]
|
李为用,齐泽秋,贺剑峰,等.高性能、低本底的五氟化钽发射剂溶液制备与微量样品Sr同位素测量[J].地球科学与环境学报,2023, 45(2):256-265.
Google Scholar
LI W Y, QI Z Q, HE J F, et al. A preparation method of the TaF5 emitter solution with high ionization efficiency and low Sr blank for the Sr isotopic measurement of micro-samples[J]. Journal of Earth Sciences and Environment, 2023, 45(2):256-265.
Google Scholar
|
[51]
|
黄海波,袁静,凌波,等.电弧发射光谱技术发展及其在地质领域的应用[J].华东地质,2023,44(1):103-117.
Google Scholar
HUANG H B,YUAN J,LING B,et al.Technical development of arc-emission spectroscopy and its application in geological sample analysis[J].East China Geology,2023,44(1):103-117.
Google Scholar
|