Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (2024)

Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (1) https://doi.org/10.18654/1000-0569/2022.02.13

Видання: Acta Petrologica Sinica, 2022, №2, с.495-512

Видавець: Chinese Society for Mineralogy, Petrology, and Geochemistry

Автори:

  1. ZHENG YuLin
  2. 自然资源部成矿作用与资源评价重点实验室, 中国地质科学院矿产资源研究所, 北京 100037,MNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China
  3. ZHAO Zheng
  4. ZHANG ChangQing
  5. LI HongWei
  6. LI Biao
  7. 合肥工业大学资源与环境工程学院, 合肥 230009,School of Resources and Environmental Engineering, Hefei University of Technology, Hefei 230009, China
  8. 中国地质大学(北京)地球科学与资源学院, 北京 100083,School of Earth Sciences and Resources, China University of Geosciences(Beijing), Beijing 100083, China
  9. 河北省地矿局第五地质大队, 唐山 063000,The Fifth Geological Brigade of Hebei Bureau of Geology and Mineral Resources, Tangshan 063000, China

Список літератури

  1. Abdel-Rahman AFM. 1994. Nature of biotites from alkaline, calc-alkaline, and peraluminous magmas. Journal of Petrology, 35(2):525-541
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (2) https://doi.org/10.1093/petrology/35.2.525
  2. Audt'at A, Gnther D and Heinrich CA. 2000. Magmatic-hydrothermal evolution in a fractionating granite:A microchemical study of the Sn-W-F-mineralized Mole Granite (Australia). Geochimica et Cosmochimica Acta, 64(19):3373-3393
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (3) https://doi.org/10.1016/S0016-7037(00)00428-2
  3. Azadbakht Z, Lentz DR, McFarlane CRM and Whalen JB. 2020. Using magmatic biotite chemistry to differentiate barren and mineralized Silurian-Devonian granitoids of New Brunswick, Canada. Contributions to Mineralogy and Petrology, 175(7):69
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (4) https://doi.org/10.1007/s00410-020-01703-2
  4. Barrière M and Cotton J. 1979. Biotites and associated minerals as markers of magmatic fractionation and deuteric equilibration in granites. Contributions to Mineralogy and Petrology, 70(2):183-192
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (5) https://doi.org/10.1007/BF00374447
  5. Blevin PL and Chappell BW. 1992. The role of magma sources, oxidation states and fractionation in determining the granite metallogeny of eastern Australia. Earth and Environmental Science Transactions of the Royal Society of Edinburgh, 83(1-2):305-316
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (6) https://doi.org/10.1017/S0263593300007987
  6. Breiter K, Vaňková M, Galiová MV, Korbelová Z and Kanicky V. 2017. Lithium and trace-element concentrations in trioctahedral micas from granites of different geochemical types measured via laser ablation ICP-MS. Mineralogical Magazine, 81(1):15-33
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (7) https://doi.org/10.1180/minmag.2016.080.137
  7. Burnham CW and Ohmoto H. 1980. Late-stage processes of felsic magmatism. Mining Geology, 8:1-11
  8. Candela PA. 1992. Controls on ore metal ratios in granite-related ore systems:An experimental and computational approach. Earth and Environmental Science Transactions of the Royal Society of Edinburgh, 83(1-2):317-326
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (8) https://doi.org/10.1017/S0263593300007999
  9. Cao JY, Yang XY, Zhang DX and Yan FB. 2020. In situ trace elements and Sr isotopes in scheelite and S-Pb isotopes in sulfides from the Shiweidong W-Cu deposit, giant Dahutang ore field:Implications to the fluid evolution and ore genesis. Ore Geology Reviews, 125:103696
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (9) https://doi.org/10.1016/j.oregeorev.2020.103696
  10. Chang YF, Li JH and Song CZ. 2019. The regional tectonic framework and some new understandings of the Middle-Lower Yangtze River Valley Metallogenic Belt. Acta Petrologica Sinica, 35(12):3579-3591 (in Chinese with English abstract)
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (10) https://doi.org/10.18654/1000-0569/2019.12.01
  11. Chen JF, Sheng D, Shao YJ, Zhang JX, Liu ZF, Wei HT, Yang QD, Luo XY and Du Y. 2019. Silurian S-type granite-related W-(Mo) mineralization in the Nanling Range, South China:A case study of the Pingtan W-(Mo) deposit. Ore Geology Reviews, 107:186-200
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (11) https://doi.org/10.1016/j.oregeorev.2019.02.020
  12. David RW and Hans PE. 1965. Stability of biotite:Experiment, theory, and application. American Mineralogist, 50(9):1228-1272
  13. De Albuquerque CAR. 1973. Geochemistry of biotites from granitic rocks, Northern Portugal. Geochimica et Cosmochimica Acta, 37(7):1779-1802
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (12) https://doi.org/10.1016/0016-7037(73)90163-4
  14. Fan XK, Mavrogenes J, Hou ZQ, Zhang ZY, Wu XY and Dai JL. 2019. Petrogenesis and metallogenic significance of multistage granites in Shimensi tungsten polymetallic deposit, Dahutang giant ore field, South China. Lithos, 336-337:326-344
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (13) https://doi.org/10.1016/j.lithos.2019.04.001
  15. Förster HJ, Tischendorf G, Trumbull RB and Gottesmann B. 1999. Late-collisional granites in the Variscan Erzgebirge, Germany. Journal of Petrology, 40(11):1613-1645
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (14) https://doi.org/10.1093/petroj/40.11.1613
  16. Foster MD. 1960. Interpretation of the composition of trioctahedral micas. Washington:US Government Printing Office, 1-49
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (15) https://doi.org/10.3133/pp354B
  17. Guo NX, Zhao Z, Gao JF, Chen W, Wang DH and Chen YC. 2018. Magmatic evolution and W-Sn-U-Nb-Ta mineralization of the Mesozoic Jiulongnao granitic complex, Nanling Range, South China. Ore Geology Reviews, 94:414-434
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (16) https://doi.org/10.1016/j.oregeorev.2018.02.015
  18. Guo YY, He WY, Li ZC, Ji X Z, Han Y, Fang WK and Yin C. 2015. Petrogenesis of Geerkuohe porphyry granitoid, western Qinling:Constraints from mineral chemical characteristics of biotites. Acta Petrologica Sinica, 31(11):3380-3390 (in Chinese with English abstract)
  19. Henry DJ, Guidotti CV and Thomson JA. 2005. The Ti-saturation surface for low-to-medium pressure metapelitic biotites:Implications for geothermometry and Ti-substitution mechanisms. American Mineralogist, 90(2-3):316-328
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (17) https://doi.org/10.2138/am.2005.1498
  20. Huang LC and Jiang SY. 2014. Highly fractionated S-type granites from the giant Dahutang tungsten deposit in Jiangnan Orogen, Southeast China:Geochronology, petrogenesis and their relationship with W-mineralization. Lithos, 202-203:207-226
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (18) https://doi.org/10.1016/j.lithos.2014.05.030
  21. Huang XL, Wang RC, Chen XM, Hu H and Liu CS. 2002. Vertical variations in the mineralogy of the Yichun topaz-lepidolite granite, Jiangxi Province, southern China. The Canadian Mineralogist, 40(4):1047-1068
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (19) https://doi.org/10.2113/gscanmin.40.4.1047
  22. Ishihara S. 1977. The magnetite-series and ilmenite-series granitic rocks. Mining Geology, 27(145):293-305
  23. Jia DL, Zhang WY, Li L and Yu XF. 2018. Mineral resource potential and key exploration areas of Jiangnan metallogenic belt. IOP Conference Series:Earth and Environmental Science, 199(4):042012
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (20) https://doi.org/10.1088/1755-1315/199/4/042012
  24. Jiang H, Zhang DY, Zhou TF, Chen XF, Ye LX, Yu ZD and Xing XK. 2018. Geochemical characteristics of biotite from igneous rocks in Dahutang tungsten ore district and its implications. Mineral Deposits, 37(6):1147-1167 (in Chinese with English abstract)
  25. Jiang SY, Peng NJ, Huang LC, Xu YM, Zhan GL and Dan XH. 2015. Geological characteristic and ore genesis of the giant tungsten deposits from the Dahutang ore-concentrated district in northern Jiangxi Province. Acta Petrologica Sinica, 31(3):639-655 (in Chinese with English abstract)
  26. Jiang YH, Jiang SY, Ling HF, Zhou XR, Rui XJ and Yang WZ. 2002. Petrology and geochemistry of shoshonitic plutons from the western Kunlun orogenic belt, Xinjiang, northwestern China:Implications for granitoid geneses. Lithos, 63(3-4):165-187
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (21) https://doi.org/10.1016/S0024-4937(02)00140-8
  27. Keppler H and Wyllie PJ. 1991. Partitioning of Cu, Sn, Mo, W, U, and Th between melt and aqueous fluid in the systems haplogranite-H<sub>2</sub>O-HCl and haplogranite-H<sub>2</sub>O-HF. Contributions to Mineralogy and Petrology, 109(2):139-150
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (22) https://doi.org/10.1007/BF00306474
  28. Keppler H. 1993. Influence of fluorine on the enrichment of high field strength trace elements in granitic rocks. Contributions to Mineralogy and Petrology, 114(4):479-488
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (23) https://doi.org/10.1007/BF00321752
  29. Li BL, Xie YH, Zhao R and Li RM. 1985. Magmatic process and geochemistry of calc-alkaline complex from Yangchuling, Jiangxi Province. Acta Petrologica Sinica, 1(2):1-16 (in Chinese with English abstract)
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (24) https://doi.org/10.1007/BF02872060
  30. Li HW, Zhao Z, Chen ZY, Guo NX, Gan JW, Li XW and Yin Z. 2021. Genetic relationship between the two-period magmatism and W mineralization in the Dahutang ore-field, Jiangxi Province:Evidence from zircon geochemistry. Acta Petrologica Sinica, 37(5):1508-1530 (in Chinese with English abstract)
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (25) https://doi.org/10.18654/1000-0569/2021.05.11
  31. Li J, Huang XL, He PL, Li WX, Yu Y and Chen LL. 2015. In situ analyses of micas in the Yashan granite, South China:Constraints on magmatic and hydrothermal evolutions of W and Ta-Nb bearing granites. Ore Geology Reviews, 65:793-810
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (26) https://doi.org/10.1016/j.oregeorev.2014.09.028
  32. Li WX, Li XH, Li ZX and Lou FS. 2008. Obduction-type granites within the NE Jiangxi ophiolite:Implications for the final amalgamation between the Yangtze and Cathaysia blocks. Gondwana Research, 13(3):288-301
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (27) https://doi.org/10.1016/j.gr.2007.12.010
  33. Li XY, Chi GX, Zhou YZ, Deng T and Zhang JR. 2017. Oxygen fugacity of Yanshanian granites in South China and implications for metallogeny. Ore Geology Reviews, 88:690-701
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (28) https://doi.org/10.1016/j.oregeorev.2017.02.002
  34. Lin WW and Peng LJ. 1994. The estimation of Fe<sup>3+</sup> and Fe<sup>2+</sup> contents in amphibole and biotite from EMPA data. Journal of Changchun University of Earth Sciences, 24(2):155-162 (in Chinese with English abstract)
  35. Man FS and Wang XS. 1988. Study on the isotopic geochronology of Yangchuling porphyry type of tungsten and molybdenum deposit. Mineral Resources and Geology, 2(4):61-67 (in Chinese with English abstract)
  36. Manning DAC and Henderson P. 1984. The behaviour of tungsten in granitic melt-vapour systems. Contributions to Mineralogy and Petrology, 86(3):286-293
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (29) https://doi.org/10.1007/BF00373674
  37. Mao JW, Hua RM and Li XB. 1999. A preliminary study of large-scale metallogenesis and large clusters of mineral deposits. Mineral Deposits, 18(4):291-299 (in Chinese with English abstract)
  38. Mao JW, Xie GQ, Guo CL and Chen YC. 2007. Large-scale tungsten-tin mineralization in the Nanling region, South China:Metallogenic ages and corresponding geodynamic processes. Acta Petrologica Sinica, 23(10):2329-2338 (in Chinese with English abstract)
  39. Mao JW, Xie GQ, Guo CL, Yuan SD, Cheng YB and Chen YC. 2008. Spatial-temporal distribution of Mesozoic ore deposits in South China and their metallogenic settings. Geological Journal of China Universities, 14(4):510-526 (in Chinese with English abstract)
  40. Mao JW, Pirajno F and Cook N. 2011. Mesozoic metallogeny in East China and corresponding geodynamic settings:An introduction to the special issue. Ore Geology Reviews, 43(1):1-7
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (30) https://doi.org/10.1016/j.oregeorev.2011.09.003
  41. Mao JW, Xiong BK, Liu J, Pirajno F, Cheng YB, Ye HS, Song SW and Dai P. 2017. Molybdenite Re/Os dating, zircon U-Pb age and geochemistry of granitoids in the Yangchuling porphyry W-Mo deposit (Jiangnan tungsten ore belt), China:Implications for petrogenesis, mineralization and geodynamic setting. Lithos, 286-287:35-52
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (31) https://doi.org/10.1016/j.lithos.2017.05.023
  42. Mao JW, Wu SH, Song SW, Dai P, Xie GQ, Su QW, Liu P, Wang XG, Yu ZZ, Chen XY and Tang WX. 2020. The world-class Jiangnan tungsten belt:Geological characteristics, metallogeny, and ore deposit model. Chinese Science Bulletin, 65(33):3746-3762 (in Chinese)
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (32) https://doi.org/10.1360/TB-2020-0370
  43. Mao ZH, Liu JJ, Mao JW, Deng J, Zhang F, Meng XY, Xiong BK, Xiang XK and Luo XH. 2015. Geochronology and geochemistry of granitoids related to the giant Dahutang tungsten deposit, Middle Yangtze River region, China:Implications for petrogenesis, geodynamic setting, and mineralization. Gondwana Research, 28(2):816-836
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (33) https://doi.org/10.1016/j.gr.2014.07.005
  44. Mo MZ. 1988. A preliminary study on alteration zoning of the Yangchuling porphyry W-Mo deposit and its relationship to mineralization. Mineral Deposits, 7(3):50-59 (in Chinese with English abstract)
  45. Munoz JL and Swenson A. 1981. Chloride-hydroxyl exchange in biotite and estimation of relative HCl/HF activities in hydrothermal fluids. Economic Geology, 76(8):2212-2221
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (34) https://doi.org/10.2113/gsecongeo.76.8.2212
  46. Munoz JL. 1984. F-OH and Cl-OH exchange in micas with applications to hydrothermal ore deposits. Reviews in Mineralogy and Geochemistry, 13(1):469-493
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (35) https://doi.org/10.1515/9781501508820-015
  47. Munoz JL. 1992. Calculation of HF and HCl fugacities from biotite compositions:Revised equations. Geological Society of American Abstracts with Programs, 24:221
  48. Mysen BO. 1990. Relationships between silicate melt structure and petrologic processes. Earth-Science Reviews, 27(4):281-365
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (36) https://doi.org/10.1016/0012-8252(90)90055-Z
  49. Nachit H, Ibhi A, Abia EH and Ohoud MB. 2005. Discrimination between primary magmatic biotites, reequilibrated biotites and neoformed biotites. Comptes Rendus Geoscience, 337(16):1415-1420
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (37) https://doi.org/10.1016/j.crte.2005.09.002
  50. Qiu KF and Deng J. 2017. Petrogenesis of granitoids in the Dewulu skarn copper deposit:Implications for the evolution of the Paleotethys ocean and mineralization in western Qinling, China. Ore Geology Reviews, 90:1078-1098
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (38) https://doi.org/10.1016/j.oregeorev.2016.09.027
  51. Ren&#233; M, Holtz F, Luo C, Beermann O and Stelling J. 2008. Biotite stability in peraluminous granitic melts:Compositional dependence and application to the generation of two-mica granites in the South Bohemian Batholith (Bohemian Massif, Czech Republic). Lithos, 102(3-4):538-553
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (39) https://doi.org/10.1016/j.lithos.2007.07.022
  52. Richards JP. 2003. Tectono-magmatic precursors for porphyry Cu-(Mo-Au) deposit formation. Economic Geology, 98(8):1515-1533
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (40) https://doi.org/10.2113/gsecongeo.98.8.1515
  53. Ridolfi F, Puerini M, Renzulli A, Menna M and Toulkeridis T. 2008. The magmatic feeding system of El Reventador volcano (Sub-Andean zone, Ecuador) constrained by texture, mineralogy and thermobarometry of the 2002 erupted products. Journal of Volcanology and Geothermal Research, 176(1):94-106
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (41) https://doi.org/10.1016/j.jvolgeores.2008.03.003
  54. Rieder M, Cavazzini G, D'Yakonov YS, Frank-Kamenetskii VA, Gottardi G, Guggenheim S, Koval PV, Mueller G, Neiva AMR, Radoslovich EW, Robert JL, Sassi FP, Takeda H, Weiss Z and Wones DR. 1998. Nomenclature of the micas. The Canadian Mineralogist, 36(3):905-912
  55. Shu LS. 2012. An analysis of principal features of tectonic evolution in South China Block. Geological Bulletin of China, 31(7):1035-1053 (in Chinese with English abstract)
  56. Song SW, Mao JW, Zhu YF, Yao ZY, Chen GH, Rao JF and Ouyang YP. 2018a. Partial-melting of fertile metasedimentary rocks controlling the ore formation in the Jiangnan porphyry-skarn tungsten belt, South China:A case study at the giant Zhuxi W-Cu skarn deposit. Lithos, 304-307:180-199
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (42) https://doi.org/10.1016/j.lithos.2018.02.002
  57. Song SW, Mao JW, Xie GQ, Yao ZY, Chen GH, Rao JF and Ouyang YP. 2018b. The formation of the world-class Zhuxi scheelite skarn deposit:Implications from the petrogenesis of scheelite-bearing anorthosite. Lithos, 312-313:153-170
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (43) https://doi.org/10.1016/j.lithos.2018.05.002
  58. Speer JA. 1984. Micas in igneous rocks. Reviews in Mineralogy and Geochemistry, 13(1):299-356
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (44) https://doi.org/10.1515/9781501508820-013
  59. Stepanov A, Mavrogenes JA, Meffre S and Davidson P. 2014. The key role of mica during igneous concentration of tantalum. Contributions to Mineralogy and Petrology, 167(6):1009
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (45) https://doi.org/10.1007/s00410-014-1009-3
  60. Stone D. 2000. Temperature and pressure variations in suites of Archean felsic plutonic rocks, Berens River area, Northwest Superior Province, Ontario, Canada. The Canadian Mineralogist, 38(2):455-470
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (46) https://doi.org/10.2113/gscanmin.38.2.455
  61. Su HM and Jiang SY. 2017. A comparison study of tungsten-bearing granite and related mineralization in the northern Jiangxi-southern Anhui provinces and southern Jiangxi Province in South China. Science China (Earth Sciences), 60(11):1942-1958
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (47) https://doi.org/10.1007/s11430-016-9071-6
  62. Sun WD, Huang RF, Li H, Hua YB, Zhang CC, Sun SJ, Zhang LP, Ding X, Li CY, Zartman RE and Ling MX. 2015. Porphyry deposits and oxidized magmas. Ore Geology Reviews, 65:97-131
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (48) https://doi.org/10.1016/j.oregeorev.2014.09.004
  63. Van Lichtervelde M, Gr&#233;goire M, Linnen RL, B&#233;ziat D and Salvi S. 2008. Trace element geochemistry by laser ablation ICP-MS of micas associated with Ta mineralization in the Tanco pegmatite, Manitoba, Canada. Contributions to Mineralogy and Petrology, 155(6):791-806
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (49) https://doi.org/10.1007/s00410-007-0271-z
  64. Van Middelaar WT and Keith JD. 1990. Mica chemistry as an indicator of oxygen and halogen fugacities in the Can Tung and other W-related granitoids in the North American Cordillera. In:Stein HJ and Hannah JL (eds.). Ore-bearing Granite Systems; Petrogenesis and Mineralizing Processes. Geological Society of America, 246:205-220
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (50) https://doi.org/10.1130/SPE246-p205
  65. Wang XL, Zhao GC, Zhou JC, Liu YS and Hu J. 2008. Geochronology and Hf isotopes of zircon from volcanic rocks of the Shuangqiaoshan Group, South China:Implications for the Neoproterozoic tectonic evolution of the eastern Jiangnan orogen. Gondwana Research, 14(3):355-367
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (51) https://doi.org/10.1016/j.gr.2008.03.001
  66. Wang XL, Zhou JC, Griffin WL, Zhao GC, Yu JH, Qiu JS, Zhang YJ and Xing GF. 2014. Geochemical zonation across a Neoproterozoic orogenic belt:Isotopic evidence from granitoids and metasedimentary rocks of the Jiangnan orogen, China. Precambrian Research, 242:154-171
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (52) https://doi.org/10.1016/j.precamres.2013.12.023
  67. Wang XL, Zhou JC, Chen X, Zhang FF and Sun ZM. 2017. Formation and evolution of the Jiangnan orogen. Bulletin of Mineralogy, Petrology and Geochemistry, 36(5):714-735 (in Chinese with English abstract)
  68. Wang YJ, Fan WM, Zhang GW and Zhang YH. 2013. Phanerozoic tectonics of the South China Block:Key observations and controversies. Gondwana Research, 23(4):1273-1305
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (53) https://doi.org/10.1016/j.gr.2012.02.019
  69. Webster J, Thomas R, F&#246;rster HJ, Seltmann R and Tappen C. 2004. Geochemical evolution of halogen-enriched granite magmas and mineralizing fluids of the Zinnwald tin-tungsten mining district, Erzgebirge, Germany. Mineralium Deposita, 39(4):452-472
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (54) https://doi.org/10.1007/s00126-004-0423-2
  70. Whalen JB and Chappell BW. 1988. Opaque mineralogy and mafic mineral chemistry of I- and S-type granites of the Lachlan fold belt, Southeast Australia. American Mineralogist, 73(3-4):281-296
  71. Wood SA and Samson IM. 2000. The hydrothermal geochemistry of tungsten in granitoid environments:Ⅰ. Relative solubilities of ferberite and scheelite as a function of T, P, pH, and mNaCl. Economic Geology, 95(1):143-182
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (55) https://doi.org/10.2113/gsecongeo.95.1.143
  72. Wu FY, Liu XC, Ji WQ, Wang JM and Yang L. 2017. Highly fractionated granites:Recognition and research. Science China (Earth Sciences), 60(7):1201-1219
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (56) https://doi.org/10.1007/s11430-016-5139-1
  73. Xiang XK, Chen MS, Zhan GN, Qian ZY, Li H and Xu JH. 2012. Metallogenic geological conditions of Shimensi tungsten-polymetallic deposit in North Jiangxi Province. Contributions to Geology and Mineral Resources Research, 27(2):143-155 (in Chinese with English abstract)
  74. Yin R, Han L, Huang XL, Li J, Li WX and Chen LL. 2019. Textural and chemical variations of micas as indicators for tungsten mineralization:Evidence from highly evolved granites in the Dahutang tungsten deposit, South China. American Mineralogist, 104(7):949-965
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (57) https://doi.org/10.2138/am-2019-6796
  75. Yin Z, Zhao Z, Tao JL, Wu SH, Li HW, Gan JW, Chen W and Li XW. 2021. Deposit geology, geochronology and metallogenic model of Helong W deposit in southern Jiangxi Province. Acta Petrologica Sinica, 37(5):1531-1552 (in Chinese with English abstract)
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (58) https://doi.org/10.18654/1000-0569/2021.05.12
  76. Zhao JH, Zhou MF, Yan DP, Zheng JP and Li JW. 2011. Reappraisal of the ages of Neoproterozoic strata in South China:No connection with the Grenvillian orogeny. Geology, 39(4):299-302
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (59) https://doi.org/10.1130/G31701.1
  77. Zhao Z, Chen YC, Zeng ZL, Guo NX, Chen ZH, Wang DH, Liu CH, Liu ZY, Wang PA and Li JD. 2017. Jiangxi Yinkeng W-Ag-Au ore field's metallogenic regularity and prospecting direction:As well as the superposition of two metallogenic series in southern China. Earth Science Frontiers, 24(5):54-61 (in Chinese with English abstract)
  78. Zhao Z, Liu C, Guo NX, Zhao WW, Wang PA and Chen ZH. 2018a. Temporal and spatial relationships of granitic magmatism and W mineralization:Insights from the Xingguo orefield, South China. Ore Geology Reviews, 95:945-973
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (60) https://doi.org/10.1016/j.oregeorev.2018.03.022
  79. Zhao Z, Zhao WW, Lu L and Wang HY. 2018b. Constraints of multiple dating of the Qingshan tungsten deposit on the Triassic W(-Sn) mineralization in the Nanling region, South China. Ore Geology Reviews, 94:46-57
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (61) https://doi.org/10.1016/j.oregeorev.2018.01.009
  80. Zhao Z, Zhou XP, Guo NX, Zhang HY, Liu ZY, Zheng YL, Zeng ZL and Chen YC. 2018c. Superimposed W and Ag-Pb-Zn(-Cu-Au) mineralization and deep prospecting:Insight from a geophysical investigation of the Yinkeng orefield, South China. Ore Geology Reviews, 93:404-412
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (62) https://doi.org/10.1016/j.oregeorev.2018.01.017
  81. Zhao Z, Fu TY, Gan JW, Liu C, Wang DH, Sheng JF, Li WB, Wang PA, Yu ZF and Chen YC. 2021. A synthesis of mineralization style and regional distribution and a proposed new metallogenic model of Mesozoic W-dominated polymentallic deposits in South China. Ore Geology Reviews, 133:104008
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (63) https://doi.org/10.1016/j.oregeorev.2021.104008
  82. Zheng YL, Zhang CQ, Jia FD, Liu H and Yan QG. 2021. Apatite and zircon geochemistry in Yao'an alkali-rich porphyry gold deposit, Southwest China:Implications for petrogenesis and mineralization. Minerals, 11(11):1293
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (64) https://doi.org/10.3390/min11111293
  83. Zheng YL, Zhou GW, Zhang CQ, Hu JM and Zhang PP. 2021. Chemical characteristics of hornblende and biotite in barren syenite porphyry from Yaoan gold deposit in western Yunnan and geological significance. Mineral Deposits, 40(5):963-976 (in Chinese with English abstract)
  84. Zhong YF, Ma CQ, She ZB, Lin GC, Xu HJ, Wang RJ, Yang KG and Liu Q. 2005. SHRIMP U-Pb zircon geochronology of the Jiuling granitic complex batholith in Jiangxi Province. Earth Science (Journal of China University of Geosciences), 30(6):685-691 (in Chinese with English abstract)
  85. Zhou JC, Wang XL and Qiu JS. 2009. Some Neoproterozoic Geological events involved in the development of the Jiangnan Orogen. Geological Journal of China Universities, 15(4):453-459 (in Chinese with English abstract)
  86. Zhu C and Sverjensky DA. 1992. F-Cl-OH partitioning between biotite and apatite. Geochimica et Cosmochimica Acta, 56(9):3435-3467
    Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (65) https://doi.org/10.1016/0016-7037(92)90390-5

Публікації, які цитують цю публікацію

Geochronology, geochemistry, and mineral chemistry of the Lingshan-Huangshan complex, South China: Insights into Nb and Ta enrichment

Xuena Wang, Xilian Chen, Shaohao Zou, Zhiwen Jia, Bo Li, Hua Wang, Deru Xu

Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (66) https://doi.org/10.1016/j.oregeorev.2023.105433 · Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (67)

2023, Ore Geology Reviews, с.105433

Scopus

WoS

Цитувань Crossref:1

Transformation of Mesozoic dynamic systems and superposition of metallogenic series of W-Sn-Li-Be-Nb-Ta-REE mineral deposits in South China

ZHAO Zheng, 自然资源部成矿作用与资源评价重点实验室, 中国地质科学院矿产资源研究所, 北京 100037,MNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China, CHEN YuChuan, WANG DengHong, LI JianKang, LIU ShanBao, CHEN ZhenYu, GUO ChunLi, WANG PingAn, 中国地质科学院, 北京 100037,Chinese Academy of Geological Sciences, Beijing 100037, China

Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (68) https://doi.org/10.18654/1000-0569/2022.02.01

2022, Acta Petrologica Sinica, №2, с.301-322

Scopus

WoS

Цитувань Crossref:5

Знайти всі цитування публікації

Дані публікації

Кількість цитувань 2
Кількість джерел у списку літератури: 86
Видання індексується в Scopus Так
Видання індексується в Web of Science Так
Genetic relationship between the two-period magmatism and tungsten mineralization in the Yangchuling deposit, Jiangxi P… (2024)

References

Top Articles
Qrordle
+25 Barry Has A Secret 76
Scooter Tramps And Beer
BEL MOONEY: Should I leave this boorish, bullying layabout?
NBA 2K25 Best LaMelo Ball Build: 4-WAY GOD - Magic Game World
Eric Rohan Justin Obituary
Mapgeo Nantucket
Does Publix Pharmacy Accept Sunshine Health
Orange Craigslist Free Stuff
Timeless - Complete Series Rewatch! / BLOGS | SCIFITVSHOWS
How To Get Mega Ring In Pokemon Radical Red
Best Bread for Gut Health
Valeriewhitebby Footjob
102 Weatherby Dr Greenville Sc 29615
Elizabeth Holmes Fappening
Havasu Lake residents boiling over water quality as EPA assumes oversight
Costco Plaza Alhambra Photos
Ktbs Payroll Login
Kellifans.com
Craigslist For Cars Los Angeles
Experience the Convenience of Po Box 790010 St Louis Mo
3850 Colonial Blvd Suite 100 Fort Myers Fl 33966
Logisticare Transportation Provider Login
Minor-Morris Recent Obituaries
June Month Weather
Importing Songs into Clone Hero: A Comprehensive Tutorial
Lids Locker Room Vacaville Photos
Lux Nails Columbia Mo
Gwcc Salvage
Hyb Urban Dictionary
Does Walmart have Affirm program? - Cooking Brush
Theater X Orange Heights Florida
Power Outage Map National Grid
Craigslist Labor Gigs Albuquerque
Pain Out Maxx Kratom
This Is The Right Order To Watch Every X-Men Movie - Looper
From Iceland — Northern Comfort: A Turbulent Ride Of Comedy
Ken Garff Collision St George
10 Teacher Tips to Encourage Self-Awareness in Teens | EVERFI
L898 Pill Blue Capsule
DePaul joins nationwide pro-Palestinian college protests as encampment continues at University of Chicago
Viewfinder Mangabuddy
Blog:Vyond-styled rants -- List of nicknames (blog edition) (TouhouWonder version)
Chuck Wagon Café, le restaurant de l'hôtel Cheyenne à Disneyland Paris : prix et infos
German American Bank Owenton Ky
German American Bank Owenton Ky
Ohio (OH) Lottery Results & Winning Numbers
Yi Asian Chinese Union
C-Reactive Protein (CRP) Test Understand the Test & Your Results
Csuf Mail
Edible Arrangements Track
Latest Posts
Article information

Author: Carlyn Walter

Last Updated:

Views: 6063

Rating: 5 / 5 (50 voted)

Reviews: 81% of readers found this page helpful

Author information

Name: Carlyn Walter

Birthday: 1996-01-03

Address: Suite 452 40815 Denyse Extensions, Sengermouth, OR 42374

Phone: +8501809515404

Job: Manufacturing Technician

Hobby: Table tennis, Archery, Vacation, Metal detecting, Yo-yoing, Crocheting, Creative writing

Introduction: My name is Carlyn Walter, I am a lively, glamorous, healthy, clean, powerful, calm, combative person who loves writing and wants to share my knowledge and understanding with you.