Skip to main content
Have a personal or library account? Click to login
An overview of the association between lamprophyric intrusions and rare-metal mineralization Cover

An overview of the association between lamprophyric intrusions and rare-metal mineralization

Open Access
|Jul 2012

References

  1. Abdullaev, Kh.M. (1954).Moskva: Gosud. Nauchno. Tekh. Izd. Literatury po Geol. i Okhr. Nedr (in Russian).
  2. Abdullaev, Kh.M. (1957).Moskva: Gosud. Nauchno. Tekh. Izd. Literatury po Geol. i Okhr. Nedr (in Russian).
  3. Abushkevich, V. S. (2005).Extended abstract of unpublished doctoral disseration, Sankt Petersburg State University, Sankt Petersburg, Russia (in Russian).
  4. Abushkevich, V. S., & Syritso, L. F. (2007).St. Petersburg: Izd. Nauka (in Russian).
  5. Ačejev, B. N., & Harlass, E. (1968). Zum Problem der Alterstellung von Lamprophyren im westlichen Erzgebirge., 1178-1194.
  6. Amato, J. M., Miller, L.E, Wright, J. E., & Mc Intosh, W. C. (2003). Dike swarms on Seward Penninsula, Alaska and their implications for the kinematics of Cretaceous extension in the Bering Strait region.(6), 865-886. DOI: 10.1139/e03-019.
  7. Ashley, P.M, Cook, N. D. J., Hill, R. L., & Kent, A. J. R. (1994). Shoshonitic lamprophyre dykes and their relation to mesothermal Au-Sb veins at Hillgrove, New South Wales, Australia.(3-4), 249-272.
  8. Barabanov, V. F. (1961).Leningrad: Izd. Leningrad Universiteta (in Russian).
  9. Baskina, V. A. (1980). Relation of tin, lead-zinc and boron deposits of the Sikhote-Alin range to cratonal volcanic association. Proceedings of the 5IAGOD Symposium, vol. 1 (pp. 225-245), Stuttgart: Schweitzerbartsche Verlagsbuchhandlung.
  10. Baumann, L., & Gorny, S. (1964): Neue tektonische und petrographische Untersuchungsergebnisse in der Zinnlagerstätte Tannenberg-Mühlleiten., 89-117.
  11. Baumann, L., Kuschka, E., & Seifert, Th. (2000).Stuttgart, New York: Enke in Georg Thieme Verlag.
  12. Bea, F., Montero, P., & Molina, J. F. (1999). Mafic precursors, peraluminous granitoids, and late lamprophyres in the Avila batholith: A model for the generation of Variscan batholiths in Iberia.(4), 399-419. DOI: 10.1086/314356.
  13. Beskin, S. M., Larin, V. N., & Marin, Yu.B. (1979).Leningrad: Izd. Nedra (in Russian).
  14. Beus, A. A., Severov, E. A., & Sitnin, A. A. (1962).Moskva: Izd. Nauka (in Russian).
  15. Bolduan, H., & Hoffmann, M. (1963). Geologie und Erkundugsergebnisse der Zinnerzlagerstätte "Vierung" bei Ehrenfriedersdorf., 65 - 83.
  16. Bookstrom, A. A., Carten, R. B., Shannon, J. R., & Smith, R. P. (1988). Origins of bimodal leucogranite-lamprophyre suites, Climax and Red Mountain porphyry molybdenum systems, Colorado: petrological and strontium isotope evidence., 1-22.
  17. Burnol, L., Autran, A., Bonnici, J. P., & Geffroy, J. (1974). Acid granites and associated mineralization in the north-western part of the French Central Massif. Excursion guide book C, IGCP No. 26, Metallization Associated with Acid Magmatism (pp. 1-205). Karlovy Vary, Czechoslovakia, Paris, France: BRGM.
  18. Cai, Minghai, He, Longqing, Liu, Guoqing, Wu, Decheng, & Huang, Huimin (2006). SHRIMP zircon U-Pb dating of the intrusive rocks in the Dachang tin-polymetallic ore field, Guanxi and their geological significance., 409-414 (in Chinese with English abstract).
  19. Candela, P. A., & Picolli, P. (2005). Magmatic processses in the development of porphyry ore systems. Economic Geology,, 25-37.
  20. Chappel, B. W., & White, A. J. R. (1974). Two contrasting granite types., 173-174.
  21. Cheng Yanbo, & Mao Jingwen (2010). Age and geochemistry of granites in Gejiu area, Yunnan province, SW China: Constraints on their petrogenesis and tectonic setting.(3-4), 258-276. DOI: 10.1016/j.lithos.2010.08.013
  22. Cheng Yanbo, Mao Jingwen, Chen Maohong, Yang Zongxi, Feng Jiaru, & Zhao-Haijie (2008). LA-ICP-MS zircon dating of the alkaline rocks and lamprophyres in Gejiu area and its implications., 2008-06, per http://en.cnki.com.cn/Article_en/CJFDTOTAL-DIZI200806013.htm
  23. Cloete, H. C. C. (1992).Geological Survey of South Africa. Annual Technical Report (LAB 90/7), Pretoria: Geol. Survey of South Africa, 128-132.
  24. Conde, L. N., Pereira, V., Ribeira, A., Thadeau, E. D., & Thadeau, D. (1971). Jazigos hipogénicas de estanho e volframio. Livro-guia de excursao, No.7. I Congresso Hispano-Luso-Americana de geologia económica. 19-23 September 1971, Madrid, 24-25 September 1971 Lisboa (pp. 1-81). Lisboa: Direccao-Geral de Minas e Servicos Geologicos.
  25. Darbyshire, D. P. F., & Shepherd, T. J. (1985). Chronology of granite magmatism and associated mineralization, SW England., 1159-1177. DOI: 10.1144/gsjgs.142.6.1159.
  26. Denisenko, V. K. (1978). Tungsten deposits. Leningrad: Izd. Nedra (in Russian).
  27. Denisenko, V. K. (1986). Tungsten-bearing provinces of the USSR. In A. A. Beus (Ed.), Geology of tungsten (pp. 127-156),, 18. International Geological Correlation Programme, Project 26 MAWAM.
  28. Dietrich, A., Lehmann, B., Wallianos, A., Traxel, K., & Palacios, C. (1999). Magma mixing in Bolivian tin porphyries.(1), 40-43.
  29. Dobson, D. C. (1982). Geology and alteration of the Lost River tin-tungsten-fluorine deposit. Economic Geology,(4), 1033-1052.
  30. Dzhenchuraeva A. V., Borisov F. I., & Shaidullina E. A. (2007). Geological, geophysical, geochemical and mineralogical models of the Trudovoe deposit. Report, State Agency on Geology and Mineral Resources of Kirgyzstan Republic. (written communication by G. G. Pavlova).
  31. Efremova, C. V. (1983).Moskva: Izd. Nedra (in Russian).
  32. Flerov, B. L. (1976).Novosibirsk: Izd. Nauka, Siberian Branch (in Russian).
  33. Fortey, N. J. (1992).Keyworth, Nottingham, UK: British Geological Survey (Technical report No WG/92/7, Mineralogical and Petrology series).
  34. Frost, B. R., Barnes, C. G., Collins, W. J., Arculus, R. J., Ellis, D. J., & Frost, C. D. (2001). A geochemical classification for granitic rocks.(11), 2033-2048. DOI: 10.1093/petrology/42.11.2033.
  35. Geragthy, E. P., Carten, R. B., & Walker, B. M. (1988). Timing of Urad-Henderson and Climax porphyrymolybdenum systems, Central Colorado, as related to northern Rio Grande Rift tectonics.(11), 1780-1786. DOI: 10.1130/0016-7606(1988)100<1780:TOUHAC>2.3.CO;2.
  36. Gorsky, V. (1958).Pretoria, South Africa: Council for Geoscience (internal report, No. 1958-0036).
  37. Govorov, I. N. (1977).Moskva: Izd. Nauka. (in Russian).
  38. Groves, D. I., & Taylor, R. G. (1973). Greisenization and mineralization in the Anchor tin mine, NE Tasmania. Transactions of the Institution of Mining and Metallurgy, section B (Applied Earth Science),, B135-146.
  39. Hawkes, J. R. (1981). A tectonic ‘watershed’ of fundamental consequence in the post-Westphalian evolution of Cornubia.(1), 128-131.
  40. Hattori, K. H., & Keith, J. D. (2001). Contribution of mafic melt to porphyry copper mineralization: evidence from Mount Pinatubo, Philipines, and Bingham Canyon, Utah, USA.(8), 799-806. DOI 10.1007/s001260100209.
  41. Higgings, N. C., Solomon, M., & Varne, R. (1985). The genesis of the Blue Tier Batholith, northeastern Tasmania.(3-4), 129-149. DOI:org/10.1016/0024-4937(85)90015-5.
  42. Höll, R., Borisenko, A., Obolenskiy, A., Grechistchev, O., & Shcherbakov, Yu. (2000). Sn and Ta granitoidrelated ore-magmatic systems: Deputatsky and Ulug-Tanzek deposits, Russia. In A. A. Krementsky, B. Lehmann, & R. Seltmann (Eds.).IMGRE, Moscow, 1783 Project Intas 93, IGCP Project 373, 127-141.
  43. Holub, F. V., & Štemprok, M. (1999). Variscan lamprophyres and granitoid-related mineralizations: Comparison of the Krušné hory-Erzgebirge and Central Bohemian batholiths. In: C. J. Stanley et al. (Eds.),Rotterdam: A. A. Balkema, 365-368.
  44. Hudson, T., & Arth, G. (1983). Tin granites of Seward Penninsula., 768-790.
  45. Hughes, D. (1997). The minette of South West England.(1) per http://www.the-conference.com/JconfAbs/2/38.html
  46. Indolev, L. N. (1979).Moskva: Izd. Nauka (in Russian).
  47. Indolev, L. N., & Nevoisa, G. G. (1974).Novosibirsk: Izd. Nauka (in Russian).
  48. Ivanov, V. S., Buryanova I. Z., Zalishchak, V. L., Stepanov, G. N., & Strizhokova, A. A. (1980).Moskva: Izd. Nauka (in Russian).
  49. Izokh, E. P., Kolmak, L. M., Nagovkaya, G. I., & Russ, V. V. (1957).Trudy VSEGEI, new series,, Moskva: Gosud. Nauchno. Tekh. Izd. Literatury po Geol. i Okhr. Nedr (in Russian).
  50. Kaemmel, Th. (1961). Geologie, Petrographie und Geochemie der Zinnlagerstätte Tannenberg (Vogtland).(Beiheft 30), 1-105.
  51. Kaneda, H., & Takeuchi, S. (1988). Rare metals mineralogy of some Sn-W deposits in Southern China. Report of the Fifth Int. Symposium on tin and tungsten granites in Southeast Asia and Western Pacific, 17 - 19 October 1987, IGCP Project 220, 65-69.
  52. Kempe, U., Bombach, K., Matukov, D., Schlothauer, T., Hutschenreuther, J., Wolf, D., & Sergeev, S. (2004). Pb/Pb and U/Pb zircon dating of subvolcanic rhyolite as a time marker for Hercynian granite magmatism and Sn mineralization in the Eibenstock granite, Erzgebirge, Germany: Considering effects of zircon alteration.(5-6), 646-669. DOI: org/10.1007/s00126-004-0435-y.
  53. Kerrich, R., Goldfarb, R. J., & Richards, J. P. (2005). Metallogenic provinces in an evolving geodynamic framework. Economic Geology,, 1097-1136.
  54. Khrushchov, N. A. (1961).Moskva: Gos. Nauchno-Tech. Izd. literatury po geologii i okhrane nedr (in Russian).
  55. Kirkham, R. V., & Chorlton, L. B. (2005).Geological Survey of Canada. http://gdr.nrcan.gc.ca/minres/data_e.php
  56. Korostelev, V. I. (1977). Dike complex of the Upper-Khandygskii granitoid massif of granodiorites. In V. I. Korostelev, S. D. Dmitriev I. I., Kolodeznikov, N. M. Savvinov, I. A. Tomtozov, & F. I. Tschurbaev (Eds.),Yakutsk: Izd. Yakutsk State University (in Russian).
  57. Kovalenko, V. I., Kuzmin, M. I., Zonenshain, L. P., Nagibina, L. T., Pavlenko, A. S., Vladykin, N. V., Tseden, T., Gundsambu, T., & Goreglyad, A. V. (1971).Moskva: Izd. Nauka (in Russian).
  58. Kozlov, V. D. (1985).Moskva: Izd. Nauka (in Russian).
  59. Kozlov, V. D., & Efremov, S. V. (1999). Potassic alkali basaltoids and geochemical specialization of associated rare-metal granites., 973-983.
  60. Kramer, W. (1976). Genese der Lamprophyre im Bereich der Fichtelgebirgisch-Erzgebirgischen Antiklinalzone., 1-49.
  61. Kramer, W. (1988).Series in Geological Sciences, Berlin: Akademie-Verlag.
  62. Kremenetsky, A. A., Beskin, S. M., Lehmann, B., & Seltmann, R. (2000).In A. A. Kremenetsky, B. Lehmann, & R. Seltmann (Eds.), Ore-bearing granites of Russia and adjacent countries, IMGRE, Intas 93-1783 Project, IGCP Project 373, 3-60.
  63. Krymsky, R. S., & Belaytsky, B. V. (2001). The genesis of rare metal-fluorite mineralization (Voznesenka orefield, Far East, Russia): Nd-Sr isotope constraints. Eleventh Annual Goldschmidt Conference, May 20-24, 2001, Hot Springs, Virginia, USA (Abstracts, pdf. 3546).
  64. Layer P. W., Newberry R., Fujita K., Parfenov L. M., Trunilina V. A., & Bakharev A. G. (2001). Tectonic setting of the plutonic belts of Yakutia, Northeast Russia, based on 40Ar/39Ar and trace element geochemistry.(2), 167-170. DOI: 10.1130/0091-7613(2001)029<0167:TSOTPB>2.0.CO;2.
  65. Le Bas, M. (2007). Igneous classification revisited 4: Lamprophyres., 167-168.
  66. Le Maitre, R. V. (Ed.) (1989).Oxford: Blackwell.
  67. Leat, P. T., Thomspon, R. N., Morrison, M. A., Hendry, G. L., & Trayhorn, S. C. (1987). Geodynamic significance of post-Variscan intrusive and extrusive potassic magmatism in SW England.(4), 349-360. DOI: 10.1017/S0263593300023221.
  68. Lehmann, B. (1990). Metallogeny of tin., Berlin: Springer Verlag.
  69. Levitskii, O. V., Aristov, V. V., Konstatinov, R. M., & Stankeev, E. A. (1963): The Etyka tin deposit of Eastern Transbaikalia., 100, Moskva: Izd. AN SSSR (in Russian).
  70. Lindgren, W. (1933).(4edition). New York: Mc Graw-Hill.
  71. Litvinovskii, B., Antipin, V.V, Reyf, F., & Kuzmin, M. (1995). Rare metal and palyngenetic granitoids of Transbaikalia and related mineralization.Transbaikalia Field Meeting, August 1-15, 1995, Irkutsk-Ulan Ude-Moskva.
  72. Lugov, S. F., Kryuchkov, A. A., & Makeev, B. V. (Eds.) (1986).1 & 2, Moskva: Izd. Nedra (in Russian).
  73. Magakyan, I. G. (1974).Moskva: Izd. Nedra (in Russian)
  74. Makeev, B. V., Pavlovskii, A. B., Pokalov, V. T., Frolov A. A., Chernov, B. S., Belov, S. V., & Valkov, V. O. (1983).Moskva: Izd. Nedra (in Russian).
  75. Mamadzhanov, Yu. (2001). Geodynamic development and magmatic formations of the Kurama zone of Middle Tien Shan., 156-169.
  76. Manning, D. A. C. (1998). Granites and associated igneous activity. In E. B. Selwood., E. M. Durrance, & C. M. Bristow (Eds.),(pp. 120-135). Exeter, UK: University of Exeter Press.
  77. Mao Jingwen, Chen Yuchuan, Bi Chensi, & Li Hongyan (1995). Geology of tin deposits in China.(2), 121-177.
  78. Marinov, N. A., Khasin, R. A., & Khurts, Ch. (1977)., vol. 3, Mineral Resources. Moskva: Izd. Nedra (in Russian).
  79. Maughan, D. T., Keith, J. D., Christiansen, E. H., Pulsipher, T., Hattori, K., & Evans, N. J. (2002). Contributions from mafic alkaline magmas to the Bingham porphyry Cu-Au-Mo deposit, Utah, USA., 14-37. DOI: 10.1007/s00126-001-0228-5.
  80. Mc Clenaghan, M. P., & Baillie, P. W. (1975). Geological atlas 1:250.000 series, sheet no. SK 55/4, Explan. Report. Launceston: Geol. Survey of Tasmania.
  81. Métais, D., & Chayes, F. (1963): Varieties of lamprophyres., 156-157.
  82. Métais, D., & Chayes, F. (1964). Kersantites and vogesites: a possible example of group heteromorphism., 63, 196-199.
  83. Mikhaleva, L. A. (1989).Trudy Inst. Geol. & Geophys., 71, Novosibirsk: Izd. Nauka (Siberian branch) (in Russian).
  84. Mikhaleva, L. A., & Tychinskii, A. A. (1972). Dikes and mineralization of the Klichkin ore district (Eastern Transbaikalia).(1), (Siberian Branch, AN SSSR), 44-49 (in Russian).
  85. Milov, A. P., & Ivanov, V. S. (1965). Late Mesozoic granitoids of Central Chukotka. In N. A. Shilo et al. (Eds.)(pp. 141-187). Trudy Severo-vostochnogo Kompleksnogo Nauchno Issledovatel'skogo Instituta, 12, Magadan. Siberian Branch of the Academy of Sciences SSSR (in Russian).
  86. Müller, C. H. (1848). Die Erzlagerstätten der Umgegend von Marienberg. Unpublished manuscript, Geologische Landesuntersuchung Sachsen; Sächsisches Staatsarchiv, Bergarchiv Freiberg.
  87. Müller, D., & Groves, D. I. (1993). Direct and indirect associations between potassic igneous rocks, shoshonites and gold-copper deposits., 383-406.
  88. Müller, D., & Groves, D. I. (1997): Potassic igneous rocks and associated gold-copper mineralization., (2ed.). Berlin-New York: Springer Verlag.
  89. Novák, J., Pivec, E., Holub, F. V., & Štemprok, M. (2001). Greisenization of lamprophyres in the Krupka Sn-W district in the eastern Krušné hory/Erzgebirge, Czech Republic. In A. Piestrzynski et al. (Eds),(pp. 465-467). Rotterdam: A. A. Balkema.
  90. Obolenskaya, R. V. (1971).Novosibirsk: Izd. Nauka (Siberian branch) (in Russian).
  91. Ontoev, D. O. (1974).Moskva: Izd. Nauka (in Russian).
  92. Osipova, G. A. (1974). The relationship between mineralization and magmatism and the source of ore substance. In M. Štemprok (Ed.),, vol. 1, (338-343). Praha, Czechoslovakia: Central Geol. Institute.
  93. Pavlova, G. G., & Borisenko, A. S. (2009). The age of Ag-Sb deposits of Central Asia and their correlation with other types of ore systems and magmatism., 164-185. DOI: 10.1016/j.oregeorev.2008.11.006.
  94. Pavlova, G. G., & Borovikov, A. A. (2010). Silver-antimony deposits of Central Asia: physico-chemical model of formation and sources of mineralisation.(6), 755-775. DOI: 10.1080/08120091003736540.
  95. Pavlova, G. G., Borisenko, A. S., Goverdovskii, V.A, Travin, A.V, Zhukova, I. A., & Tretyakova, I. G. (2008). Permian-Triassic magmatism and Ag-Sb mineralization in the southeatern Altai and northwestern Mongolia., 545-555.
  96. Pavlova G. G., Kholmogorov A. I., Travin A. V., Trunilina V. A., Borisenko A. S., Prokopiev A. V., & Ivanov A. I. (2009). The chronology of magmatic and ore-forming processes of the Deputatsky ore cluster (Yakutia). IV Russian Conference on Isotope Geochronology. Abstract volume (pp. 71-74). St. Petersburg: Publishing House SPb (in Russian).
  97. Pavlova G. G., Borisenko A. S., Kruk N. N., & Rudnev S. N. (2010). The age of Ag-Sb mineralization of the SE Pamir and its relation to magmatism., volume 1 (36), 60-67.
  98. Petersen, W. E., Neumann, E. R., & Jensen, B. B. (1996). The upper mantle under La Palma, Canary Islands: formation of Si-K-Na-rich melt and its importance as a metasomatic agent.(2-3), 113-139. DOI: 10.1007/s004100050210.
  99. Pirajno, F. (2009).Berlin, Heidelberg: Springer Verlag.
  100. Pivec, P., Holub, F. V., Lang, M., Novák, J. K., & Štemprok, M. (2002). Rock-forming minerals of lamprophyres and associated mafic dykes from the Krušné hory/Erzgebirge (Czech Republic)., 23-32.
  101. Popov, V. S., Belevitin, V. V., & Semina, V. A. (1981).Moskva: Izd. Nauka (in Russian).
  102. Povilaitis, M. M. (1960).Trudy IGEM, 24, Moskva: Izd. AN SSSR (in Russian).
  103. Povilaitis, M. M. (1981).Moskva: Izd. Nauka (in Russian).
  104. Prelevic, D., Foley, S. F., Cvetkovic, V., & Romer, R. L. (2004). Origin of minette by mixing of lamproite and dacite magmas in Veliki Majdan, Serbia.(4), 759-792. DOI: 10.1093/petrology/egg109.
  105. Radkevich, E. A., Gonevchuk, V. G., Kokorin, A. M., & Korostelev, P. G. (1974). The age and space relation of tin deposits of the cassiterite-silicate formation to granites (Far East USSR). In M. Štemprok (Ed.),, vol. 1 (pp. 348-350). Praha, Czechoslovakia: Central Geol. Institute. DOI:10.2113/gscanmin.38.4.915.
  106. Reif, F. G. (2000). The role of magmatic processes in the formation of banded Li, F enriched granites from the Orlovkatantalum deposit, Transbaikalia, Russia: micrometric evidence., 915-936.
  107. Robb, L. (2005).Oxford: Blackwell Publishing Co.
  108. Rock, N. M. S. (1991).(with contributions by D. R. Bowes & A. E. Wright). Glasgow & London: Blackie, New York: Van Nostrand, Reinhold.
  109. Rock, N. M. S., Groves, D. I., Perring, C. S., & Golding, S. D. (1989). Gold, lamprophyres, and porphyries: What does their association mean?, 609-625.
  110. Rodionov, S. M. & 37 co-authors (2004). Descriptions of Northeast Asia metallogenic belts.
  111. Rundkvist, D. V., Denisenko, V. K., & Pavlova, I. G. (1971).Leningrad: Izd. Nedra (in Russian).
  112. Sainsbury, C. L. (1969). Geology and ore deposits of the Central York Mountains, Western Seward Penninsula, Alaska., Washington: U. S. Government Printing Office.
  113. Sainsbury, C. L., & Hamilton, J. C. (1967).1st Technical Conference on Tin, International Tin Council, London, 317-349.
  114. Sainsbury, C. L., Hamilton, J., & Hoffman, C. Jr. (1968). Geochemical cycle of selected trace elements in the tin-tungsten-beryllium district., Washington: U. S. Government Printing Office.
  115. Scambelluri, M., & Phillippot, P. (2001). Deep fluids in subduction zones.(1-4), 213-227.
  116. Seifert, Th. (1994). Zur Metallogenie des Lagerstättendistriktes Marienberg (Ostteil des Mittelerzgebirgischen Antiklinalbereiches). Dissertation, TU Bergakademie Freiberg. (published in microfiche format by Verlag Hänsel-Hohenhausen, Frankfurt, Germany, 1996).
  117. Seifert, Th. (1999). Relationship between late Variscan lamprophyres and hydrothermal vein mineralization in the Erzgebirge. In C. J. Stanley et al. (Eds.),(pp. 429-432). Rotterdam: A. A. Balkema.
  118. Seifert, Th. (2007).Kumulative Habilitation an der Fakultät für Geowissenschaften, Geotechnik und Bergbau der TU Bergakademie Freiberg (in English).
  119. Seifert, Th. (2008).Amsterdam: IOS Press BV.
  120. Seifert, Th. (2010). Contributions to the metallogenetic importance of lamprophyres - examples from polymetallic Au-, Sn-W-Mo-Li-In-, As-Zn-Sn-Cu-In-Pb-Ag-/Ag-Sb-, and U-ore clusters., 55-58.
  121. Seifert, Th., Baumann, L. (1994). On the Metalllogeny of the Central Erzgebirge Anticlinal Area (Marienberg District), Saxony, Germany. In: von Gehlen, K., & Klemm, D. D. (Eds.), Mineral deposits of the Erzgebirge/Krusné hory (Germany/Czech Republic): Reviews and results of recent investigations.(pp. 169-190). Berlin-Stuttgart: Gebrüder Bornträger.
  122. Seifert, Th., & Kempe, U. (1994). Sn-W-Lagerstätten und spätvariszische Magmatite des Erzgebirges.(2), 125-172.
  123. Seifert, Th., & Sandmann, D. (2006). Mineralogy and geochemistry of indium-bearing polymetallic vein-type deposits: Implications for host minerals from the Freiberg district, Eastern Erzgebirge, Germany.(1), 1-31. http://www.sciencedirect.com/science/article/pii/S0169136805000867.
  124. Seifert, Th., Pavlova, G. G., & Borisenko, A. S. (2011). Types of Ag-polymetallic/Ag-Sb vein-type mineralization in the European Variscides, Yakutia, Altai, Tien Shan, and Pamir. International Conference "Geology, Tectonics and Minerageny of Central Asia", VSEGEI, St. Petersburg, Russia, June 6-8, 2011,, 5 pages (conference CD).
  125. Shail, R. K., & Wilkinson, J. J. (1994). Late to post-Variscan extensional tectonics in South Cornwall.(2), 262-270.
  126. Shannon, J. R., Nelson, E. P., & Golden, R. J. Jr. (2004). Surface and underground geology of the world-class Henderson molybdenum porphyry mine, Colorado. In E. P. Nelson, & E. A. Erslev (Eds.),Geological Society of America, Field Guide 5, 207-218.
  127. Shcherba, G. N. (1957).Alma Ata: Izd. AN Kazakh. SSR (in Russian).
  128. Shcherba, G. N. (1960).Alma Ata: Izd. AN Kazakh. SSR (in Russian).
  129. Shchukin, S. I. (1974). Lamprophyres and ores.(6), 97-101 (in Russian).
  130. Shipulin, F. K. (1968).Moskva: Izd. Nauka (in Russian).
  131. Sinclair, W. D. (2007). Porphyry deposits. In W. D. Goodfellow, (Ed.),Geological Association of Canada, Mineral Deposits Division, Special Publication No. 5, Ottawa, 223-243.
  132. Sinclair, W. D., Gonevchuk, G. A., Korostelev, P. G., Semenyak, B. I., Rodinov, S., Seltmann, R., & Stemprok, M. (2011):, Ottawa: Geological Survey of Canada.
  133. Sillitoe, R. H. (1974). Tin mineralization above mantle hot spots., 497-499.
  134. Smirnov V. I., & 41 coauthors (1978)., vol. 3, Moskva: Izd. Nedra (in Russian).
  135. Steininger, R. C. (1985). Geology of the Kitsault molybdenum deposit, British Columbia., 57-71.
  136. Štemprok, M. (1967). Genetische Probleme der Zinnvererzung im Erzgebirge., 102-118.
  137. Štemprok, M. (1978). Classification criteria of tin, tungsten and molybdenum deposits., 119-143.
  138. Štemprok, M. (1987). Greisenization (a review)., 169-175.
  139. Štemprok, M. (1990). Intrusion sequences within ore-bearing granitoid plutons., 413-418.
  140. Štemprok, M. (1995). Genetic significance of lamproite dykes in the Sn-W-Mo districts related to granitoids. In J. Pašava & B. Kříbek,(pp. 531-534). Rotterdam: A. A. Balkema.
  141. Štemprok, M. (1998). Magmatic zonation of rare metal-bearing granitoid bodies in orogenic belts. Proceedings of the 9th Quadrenial IAGOD Symposium, Schweitzerbartsche Verlagsbuchhandlung, Stuttgart, 441-461.
  142. Štemprok, M., & Seltmann, R. (1994). The metallogeny of the Erzgebirge/Krušné hory. In R. Seltmann, H. Kämpf & P. Möller (Eds.),(pp. 61-69). Praha: Czech Geological Survey.
  143. Štemprok, M., & Seifert, Th. (2010). The association of lamprophyric intrusions and rare metal mineralization., 61-62.
  144. Štemprok, M., Novák, J. K., & David, J. (1994). The association of the granites and tin-tungsten mineralization in the eastern Krušné hory (Erzgebirge), Czech Republic. In: von Gehlen, K., & Klemm, D. D. (Eds.), Mineral deposits of the Erzgebirge/Krusné hory (Germany/Czech Republic): Reviews and results of recent investigations.(pp. 97-129). Berlin-Stuttgart: Gebrüder Bornträger.
  145. Štemprok, M., Seifert, Th., Holub, F. V., Chlupáčová, M., Dolejš, D., Novák, J. K., Pivec E., & Lang, M. (2008). Petrology and geochemistry of Variscan dykes from the Jáchymov (Joachimstahl) ore district, Czech Republic., 65-104. DOI: 10.3190/jgeosci.020.
  146. Sun, S. S., & Higgings, N. C. (1996). Neodymium and strontium study of the Blue Tier Batholith, NE Tasmania, and its bearing on the origin of tin-bearing alkali feldspar granites., 339-365.
  147. Syritso, L. F. (2002).St. Petersburg: Izd. St. Petersburg University.
  148. Tauson, L. V. (1977).Moskva: Izd. Nauka (in Russian).
  149. Tauson, L. V., Antipin, V. S., Sacharov, M. N., & Subkov, V. S. (1984). Mineralogisch-geochemische Kriterien des Ursprungs und des Erzgehaltes magmatischer Gesteine der Latitserie., Leipzig, Germany, 277-283.
  150. Taylor, R. (1979). Geology of tin deposits., Amsterdam, Oxford, New York: Elsevier Scientific Publishing Co.
  151. Tischendorf, G. (1977). Geochemical and petrogenetic characteristics of silicic magmatic rocks associated with rare element mineralization. In M. Štemprok, L. Burnol, & G. Tischendorf (Eds.)2, (pp. 41-96). Praha: Central Geol. Institute.
  152. Troshin, Yu.P. (1978).Novosibirsk: Izd. Nauka (RAS Siberian branch) (in Russian)
  153. Turpin, L., Velde, D., & Pinte, G. (1988). Geochemical comparison between minettes and kersantites from the Western European Hercynian orogen: trace element and Pb-Sr-Nd isotope constraints on their origin., 73-86.
  154. Vasyukova, E. (2010). Petrology of lamprophyres of Chuya complex (SE Altai)., 63-64.
  155. Velde, D. (1968). Les transformations de l'olivine dans les lamprophyres et lamproites., 601-612.
  156. Verschure, R. H., & Bon, E. H. (1972).Reflections Report, Laboratorium voor Isotopen Geologie, The Netherlands, 177-198.
  157. Wallace, S., Mc Kenzie, W., Blair, R., & Muncaster, N. (1978). Geology of the Urad and Henderson molybdenite deposits, Clear Creek County, Colorado with a section on a comparison of these deposits with those of Climax, Colorado., 325-368.
  158. Watznauer, A. (1964). Der heutige Stand des Lamprophyrproblems., 812-820.
  159. Weppe, M. (1951). Contribution a l' etude des gites de tungstene francais., (1), 21-130.
  160. Wimmenauer, W. (1973). Granites et lamprophyres., 195-198.
  161. Wooley, A. R., Bergman, S. C., Edgar, A. D., Le Bas, M. J., Mitchell, R. H., Rock, N. M. S., & Smith, B. H. S. (1996). Classification of lamprophyres, lamproites, kimberlites, and the kalsilitic, melilitic, and leucitic rocks., 175-186.
  162. Zagruzina, I. A. (1965). Late Mesozoic granitoids of the Eastern coast of the Chaun bay (Western Chukotka). In N. A. Shilo et al. (Eds.).(pp. 4-140). Trudy Severo-vostochnogo Kompleksnogo Nauchno Issledovatel'skogo Instituta, 12, Magadan. Siberian Branch of the Academy of Sciences SSSR (in Russian).
  163. Zhilinskii, G. V. (1959).Alma Ata: Izd. AN Kazakh. SSR (in Russian).
  164. Zil'bermints, A. V. (1966).Moskva: Izd. Nauka (in Russian).
DOI: https://doi.org/10.2478/v10002-011-0011-x | Journal eISSN: 1899-8526 | Journal ISSN: 1899-8291
Language: English
Page range: 121 - 162
Published on: Jul 4, 2012
Published by: Mineralogical Society of Poland
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Related subjects:

© 2012 Miroslav Štemprok, Thomas Seifert, published by Mineralogical Society of Poland
This work is licensed under the Creative Commons License.