$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Fractional crystallization-induced variations in sulfides from the Noril’sk-Talnakh mining district (polar Siberia, Russia) 원문보기

Ore geology reviews, v.90, 2017년, pp.326 - 351  

Duran, C.J. (Sciences de la Terre, Université) ,  Barnes, S-J. (du Qué) ,  Pleše, P. (bec à) ,  Kudrna Prašek, M. (Chicoutimi, QC G7H 2B1, Canada) ,  Zientek, M.L. (Sciences de la Terre, Université) ,  Pagé, P. (du Qué)

Abstract AI-Helper 아이콘AI-Helper

Abstract The distribution of platinum-group elements (PGE) within zoned magmatic ore bodies has been extensively studied and appears to be controlled by the partitioning behavior of the PGE during fractional crystallization of magmatic sulfide liquids. However, other chalcophile elements, especiall...

주제어

참고문헌 (125)

  1. Ames 329 2007 Metallogeny of the Sudbury Mining Camp 

  2. Econ. Geol. Arndt 98 495 2003 Geochemistry and origin of the intrusive hosts of the Noril’skTalnakh Cu-Ni-PGE sulphide deposits 

  3. Econ. Geol. Arndt 100 5 2005 Mantle-derived magmas and magmatic Ni-Cu-(PGE) deposits 

  4. Contrib. Mineral. Petrol. Ballhaus 122 241 1995 10.1007/s004100050124 Platinum-group elements in the Merensky reef. I. PGE in solid solution in base metal sulphides and the down-temperature equilibration history of Merensky ores 

  5. Geochim. Cosmochim. Acta Ballhaus 59 4881 1995 10.1016/0016-7037(95)00355-X Platinum-group elements in the Merensky reef: II. Experimental solubilities of platinum and palladium in Fe1-xS from 950 to 450°C under controlled fS2 and fH2 

  6. 10.1007/978-3-319-39193-9_220-1 Barnes, S-J., 2016. Chalcophile elements. In: White, W.M., (Ed.) Encyclopedia of Geochemistry: A Comprehensive Reference Source on the Chemistry of the Earth, Part of the Series Encyclopedia of Earth Sciences Series, 1-5. 

  7. Econ. Geol. Barnes 100th Anniversary Volume 179 2005 Formation of magmatic nickel sulfide ore deposits and processes affecting their copper and platinum group element contents 

  8. Rev. Mineral. Geochem. Barnes 81 725 2016 10.2138/rmg.2016.81.12 Highly siderophile and strongly chalcophile elements in magmatic ore deposits 

  9. Econ. Geol. Barnes 88 1402 1993 10.2113/gsecongeo.88.6.1402 Nickel-copper occurrences in the Belleterre-Angliers Belt of the Pontiac Subprovince and the use of Cu-Pd ratios in interpreting platinum-group element distributions 

  10. Can. J. Earth Sci. Barnes 34 337 1997 10.1139/e17-030 Ni, Cu, Au, and platinum group elements contents of sulphides associated with intraplate magmatism: a synthesis 

  11. Can. J. Earth Sci. Barnes 34 366 1997 10.1139/e17-032 Partition coefficients for Ni, Cu, Pd, Pt, Rh and Ir between monosulfide solid solution and sulfide liquid and the implications for the formation of compositionally zoned Ni-Cu sulfide bodies by fractional crystallization of sulfide liquid 

  12. Russia. Contrib. Mineral. Petrol. Barnes 152 187 2006 10.1007/s00410-006-0100-9 Platinum-group element, gold, silver and base metal distribution in compositionally zoned sulfide droplets from the Medvezky Creek Mine, Noril’sk 

  13. Chem. Geol. Barnes 248 295 2008 10.1016/j.chemgeo.2007.08.004 The location of the chalcophile and siderophile elements in platinum group element ore deposits (a textural, microbeam and whole rock geochemical study): implications for the formation of the deposits 

  14. Mineral. Deposita Barnes 39 752 2004 10.1007/s00126-004-0440-1 Komatiites and nickel sulfide ores of the Black Swan area, Yilgarn Craton, Western Australia. 4. Platinum group element distribution in the ores, and genetic implications 

  15. Ore Geol. Rev. Barnes 76 296 2015 10.1016/j.oregeorev.2015.06.012 The mineral system approach applied to magmatic Ni-Cu-PGE sulphide deposits 

  16. Earth Planet. Sci. Lett. Brenan 422 45 2015 10.1016/j.epsl.2015.04.011 Se-Te fractionation by sulfde-silicate melt partitioning: Implications for the composition of mantle-derived magmas and their melting residues 

  17. Russia. Geochim. Cosmochim. Acta Brügmann 57 2001 1993 10.1016/0016-7037(93)90089-F Siderophile and chalcophile metals as tracers of the evolution of the Siberian trap in the Noril’sk region 

  18. Nucl. Instr. Methods A Brun 615 326 2010 10.1016/j.nima.2010.02.063 Pore3D: a software library for quantitative analysis of porous media 

  19. J. Petrol. Buddington 5 310 1964 10.1093/petrology/5.2.310 Iron-titanium oxide minerals and synthetic equivalents 

  20. Proc. Natl. Acad. Sci. Burgess 111 3316 2014 10.1073/pnas.1317692111 High-precision timeline for Earth's most severe extinction 

  21. Econ. Geol. Cabri 62 910 1967 10.2113/gsecongeo.62.7.910 A new copper-iron sulfide 

  22. Econ. Geol. Cabri 68 443 1973 10.2113/gsecongeo.68.4.443 New data on phase relations in the Cu-Fe-S system 

  23. Cafagna 206 2015 The geochemical behavior of metalloids and their effect on the highly siderophile elements during the crystallization of a magmatic sulfide liquid in relation to the formation of Ni-Cu-PGE Magmatic sulfide deposits 

  24. Econ. Geol. Campbell 74 1503 1979 10.2113/gsecongeo.74.6.1503 The influence of silicate:sulphide ratios on the geochemistry of magmatic sulphides 

  25. Mineral. Deposita Cave 2016 A metamorphic mineral source for tungsten in the turbidite-hosted orogenic gold deposits of the Otago Schist, New Zealand 

  26. Ore Geol. Rev. Chen 65 955 2014 10.1016/j.oregeorev.2014.07.011 A laser ablation ICP-MS study of platinum-group and chalcophile elements in base metal sulfide minerals of the Jinchuan Ni-Cu sulfide deposit, NW China 

  27. Can. Mineral. Czamanske 30 249 1992 A proton-microprobe study of magmatic sulphide ores from the Noril’sk-Talnakh district, Siberia 

  28. Mineral. Deposita Dare 45 765 2010 10.1007/s00126-010-0295-6 The distribution of platinum group elements and other chalcophile elements among sulfides from the Creighton Ni-Cu-PGE sulfide deposit, Sudbury, Canada, and the origin of Pd in pentlandite 

  29. Mineral. Deposita Dare 46 381 2011 10.1007/s00126-011-0336-9 Chalcophile and platinum-group element (PGE) concentrations in the sulfide minerals from the McCreedy East deposit, Sudbury, Canada, and the origin of PGE in pyrite 

  30. Econ. Geol. Dare 109 343 2014 10.2113/econgeo.109.2.343 Mineralogy and geochemistry of Cu-rich ores from the McCreedy East Ni-Cu-PGE Deposit (Sudbury, Canada): Implications for the behavior of platinum group and chalcophile elements at the end of crystallization of a sulfide liquid 

  31. Mineral. Deposita Ding 47 89 2012 10.1007/s00126-011-0350-y PGE geochemistry of the Eagle Ni-Cu-(PGE) deposit, Upper Michigan: constraints on ore genesis in a dynamic magma conduit 

  32. Distler, V.V., 1994. Platinum mineralization of the Noril’sk deposits. In: Lightfoot, P.C., Naldrett, A.J. (Eds.), Proceedings of the Sudbury-Noril’sk Symposium, Ontario Geological Survey, special publication issue 5. Ontario Geological Survey, Greater Sudbury, pp 243-260. 

  33. Geochem. Int. Distler 14 30 1977 Distribution of platinoids between pyrrhotite and pentlandite in crystallization of sulfide melt 

  34. Dokl. Earth Sci. Distler 469 811 2016 10.1134/S1028334X1608002X Behavior of noble metals upon fractional crystallization of copper-rich sulfide melts 

  35. Mineral. Deposita Djon 47 875 2012 10.1007/s00126-012-0401-z Changes in sulphides and platinum-group minerals with the degree of alteration in the Roby, Twilight, and High Grade Zones of the Lac des Iles Complex, Ontario, Canada 

  36. Mineral. Deposita Duan 51 557 2016 10.1007/s00126-015-0626-8 Multiple S isotopes, zircon Hf isotopes, whole-rock Sr-Nd isotopes, and spatial variations of PGE tenors in the Jinchuan Ni-Cu-PGE deposit, NW China 

  37. Mineral. Deposita Duran 51 509 2016 10.1007/s00126-015-0622-z Geology, petrography, geochemistry, and genesis of sulfide-rich pods in the Lac des Iles palladium deposits, western Ontario, Canada 

  38. J. Geochem. Explor. Duran 166 45 2016 10.1016/j.gexplo.2016.04.005 

  39. Can. Mineral. Dutrizac 14 172 1976 Reactions in cubanite and chalcopyrite 

  40. Econ. Geol. Ebel 91 607 1996 10.2113/gsecongeo.91.3.607 Fractional crystallization of sulfide ore liquids at high temperature 

  41. Eckstrand, O.R., Hulbert, L.J., 1987. Selenium and the source of sulfur in magmatic nickel and platinum deposits. Geol. Assoc. Can. - Min. Assoc. Can. Abstr. Programs 12, p. 40. 

  42. Fedorenko, V.A., 1994. Evolution of magmatism as reflected in the volcanic sequence of the Noril’sk region. In: Lightfoot, P.C., Naldrett, A.J. (Eds), Proceedings of the Sudbury-Noril’sk Symposium, Ontario Geological Survey, special publication issue 5. Ontario Geological Survey, Greater Sudbury, pp 171-184. 

  43. Int. Geol. Rev. Fedorenko 39 479 1997 10.1080/00206819709465286 Results of new field and geochemical studies of the volcanic and intrusive rocks of the Maymecha-Kotuy area, Siberian Flood-Basalt Province, Russia 

  44. App. Geochem. Floor 27 517 2012 10.1016/j.apgeochem.2011.11.010 Selenium in volcanic environments: a review 

  45. Econ. Geol. Genkin 81 1203 1986 10.2113/gsecongeo.81.5.1203 Associations of platinum-group minerals of the Noril’sk copper-nickel sulfide ores 

  46. Chem. Geol. Godel 248 272 2008 10.1016/j.chemgeo.2007.05.006 Platinum-group elements in sulfide minerals and the whole rocks of the J-M Reef (Stillwater Complex): implication for the formation of the reef 

  47. J. Petrol. Godel 48 1569 2007 10.1093/petrology/egm030 Platinum-group elements in sulfide minerals, platinum-group minerals, and whole-rocks of the Merensky Reef (Bushveld Complex, South Africa): implications for the formation of the reef 

  48. Geology Godel 38 1127 2010 10.1130/G31265.1 Platinum ore in three dimensions: insights from high-resolution X-ray computed tomography 

  49. Econ. Geol. Godel 107 275 2012 10.2113/econgeo.107.2.275 Sulfides and sulfarsenides from the Rosie Nickel Prospect, Duketon greenstone belt, Western Australia 

  50. Lithos Godel 190-191 27 2014 10.1016/j.lithos.2013.11.019 New constraints on the origin of the Skaergaard Intrusion Cu-Pd-Au mineralization: insights from high-resolution X-ray computed tomography 

  51. Geol. Ore Deposits Gorbachev 48 473 2006 10.1134/S1075701506060031 Mineralogical and geochemical zoning and genesis of massive sulfide ores at the Oktyabr’sky deposit 

  52. Geokhimiya Gorbachev 8 1127 1973 The sulfur-isotope ratios of the sulfides and sulfates of the Oktyabr'sky sulfide deposit, Noril'sk region, and the problem of its origin 

  53. Int. Geol. Rev. Grinenko 27 695 1985 10.1080/00206818509466457 Sources of sulfur of the nickeliferous and barren gabbro-dolerite intrusions of the northwestern Siberian platform 

  54. Hanley, J.J., 2005. The aqueous geochemistry of the platinum group elements (PGE) in surficial, low-T hydrothermal and high-T magmatic-hydrothermal environments. In: Mungall, J.E. (Ed.), Exploration for Deposits of Platinum-group Elements, Mineralogical Association of Canada, short course series volume 35, 35-56. 

  55. Contrib. Mineral. Petrol. Hammerli 171 1 2016 10.1007/s00410-016-1239-7 Element redistribution and mobility during upper crustal metamorphism of metasedimentary rocks: an example from the eastern Mount Lofty Ranges, South Australia 

  56. Contrib. Mineral. Petrol. Helmy 153 577 2007 10.1007/s00410-006-0163-7 Formation of Pt, Pd and Ni tellurides; experiments in sulfide-telluride systems 

  57. Geochim. Cosmochim. Acta Helmy 74 6174 2010 10.1016/j.gca.2010.08.009 Partitioning of Se, As, Sb, Te and Bi between monosulfide solid solution and sulfide melt - application to magmatic sulfide deposits 

  58. Contrib. Mineral. Petrol. Helmy 166 1725 2013 10.1007/s00410-013-0951-9 Fractionation of platinum, palladium, nickel, and copper in sulfide-arsenide systems at magmatic temperature 

  59. Contrib. Mineral. Petrol. Holwell 154 171 2007 10.1007/s00410-007-0185-9 Distributions of platinum-group elements in the Platreef at Overysel, northern Busveld Complex: a combined PGM and LA-ICP-MS study 

  60. Platin. Met. Rev. Holwell 54 26 2010 10.1595/147106709X480913 A review of the behaviour of platinum group elements within natural magmatic sulfide ore systems: the importance of semimetals in governing partitioning behaviour 

  61. Lithos Holwell 256-257 55 2016 10.1016/j.lithos.2016.03.020 3D textural evidence for the formation of ultra-high tenor precious metal bearing sulphide microdroplets in offset reefs: an extreme example from the Platinova Reef, Skaergaard Intrusion, Greenland 

  62. Huminicki 386 2007 A comprehensive geological, petrological, and geochemical evaluation of the Voisey's Bay Ni-Cu-Co sulfide deposit: an integration of empirical data and process mechanics 

  63. Econ. Geol. Huminicki 100 1631 2005 10.2113/gsecongeo.100.8.1631 Quantitative mass balance of platinum-group elements in the Kelly Lake Ni-Cu-PGE deposit, Copper Cliff Offset, Sudbury 

  64. Mineral. Deposita Hutchinson 43 695 2008 10.1007/s00126-008-0190-6 Laser ablation ICP-MS study of platinum-group elements in sulphides from the Platreef at Turfspruit, northern limb of the Bushveld Complex, South Africa 

  65. Mineral. Deposita Junge 50 41 2015 10.1007/s00126-014-0561-0 Mineralogical siting of platinum-group elements in pentlandite from the Bushveld Complex, South Africa 

  66. Mineral. Mag. Kawohl 80 1041 2016 10.1180/minmag.2016.080.055 Isoferroplatinum-pyrrhotite-troilite intergrowth as evidence of desulfurization in the Merensky Reef at Rustenburg (western Bushveld Complex, South Africa) 

  67. Mineral. Mag. Kelly 47 453 1983 10.1180/minmag.1983.047.345.06 Pyrrhotine-pentlandite ore textures: a mechanistic approach 

  68. Econ. Geol. Kerr 100 311 2005 Self-destructive sulfide segregation systems and the formation of high-grade magmatic ore deposits 

  69. Inorg. Mater. Kosyakov 48 671 2012 10.1134/S0020168512060076 Zonal structure of directionally solidified Fe-Ni-Cu-S materials 

  70. Dokl. Earth Sci. Kosyakov 381 1113 2001 A mechanism of pentlandite formation in the Fe-Ni-S system 

  71. Geol. Ore Deposits Kosyakov 54 179 2012 10.1134/S1075701512030051 Experimental simulation of phase relationships and zoning of magmatic nickel-copper sulfide Ores, Russia 

  72. Krivolutskaya 377 2015 Siberian traps and Pt-Cu-Ni deposits in the Noril’sk area 

  73. Econ. Geol. Monograph Kullerud 4 323 1969 Phase relations in the Cu-Fe-S, Cu-Ni-S, and Fe-Ni-S system 

  74. Contrib. Mineral. Petrol. Latypov 143 438 2002 10.1007/s00410-002-0355-8 Phase equilibria constraints on relations of ore-bearing intrusions with flood basalts in the Noril’sk region, Russia 

  75. Lesher 579 2002 The geology, geochemistry, mineralogy, and mineral beneficiation of the platinum-group elements Komatiite-associated Ni-Cu-(PGE) deposits: mineralogy, geochemistry, and genesis 

  76. Lehmann 211 1990 Metallogeny of tin 

  77. Econ. Geol. Le Vaillant 110 505 2015 10.2113/econgeo.110.2.505 A hydrothermal Ni-As-PGE geochemical halo around the Miitel komatiite-hosted nickel sulfide deposit, Yilgarn Craton, Western Australia 

  78. PNAS Le Vaillant 114 2485 2017 10.1073/pnas.1611086114 Role of degassing of the Noril’sk nickel deposits in the Permian-Triassic mass extinction event 

  79. Econ. Geol. Li 89 1599 1994 10.2113/gsecongeo.89.7.1599 A numerical model for the compositional variations of Sudbury sulfide ores and its application of exploration 

  80. Geochim. Cosmochim. Acta Li 60 1231 1996 10.1016/0016-7037(96)00009-9 Partitioning of Ni, Cu, Ir, Rh, Pt and Pd between monosulfide solid solution and sulfide liquid: effects of composition and temperature 

  81. Econ. Geol. Li 98 69 2003 Compositional variations of olivine and sulfur isotopes in the Noril’sk and Talnakh intrusions, Siberia: implications for ore-forming processes in dynamic magma conduits 

  82. Econ. Geol. Li 99 173 2004 Replacement of base metal sulfides by actinolite, epidote, calcite, and magnetite in the UG2 and Merensky Reef of the Bushveld Complex, South Africa 

  83. Earth Planet. Sci. Lett. Li 355 327 2012 10.1016/j.epsl.2012.08.008 Partitioning of V, Mn Co, Ni, Cu, Zn, As, Mo, Ag, Sn, Sb, W, Au, Pb, and Bi between sulfde phases and hydrous basanite melt at upper mantle conditions 

  84. Lightfoot, P.C., Naldrett, A.J., 1994. Proceedings of the Sudbury-Noril’sk symposium, Ontario Geological Survey, special publication issue 5. Ontario Geological Survey, Greater Sudbury, 457 pp. 

  85. Contrib. Mineral. Petrol. Lightfoot 104 631 1990 10.1007/BF01167284 Geochemistry of the Siberian trap of the Noril’sk area, USSR, with implications for the relative contributions of crust and mantle to flood basalt magmatism 

  86. Contrib. Mineral. Petrol. Lightfoot 114 171 1993 10.1007/BF00307754 Remobilisation of continental lithosphere by mantle plumes: Major, trace element, and Sr-, Nd-, and Pb-isotope evidence for picritic and tholeiitic basalts of the Noril’sk district, Siberian trap, Russia 

  87. Likhachev, A.P. 1994. Ore-bearing intrusions of the Noril’sk region. In: Lightfoot, P.C., Naldrett, A.J. (Eds.), Proceedings of the Sudbury-Noril’sk Symposium, Ontario Geological Survey, special publication issue 5. Ontario Geological Survey, Greater Sudbury, pp 185-201. 

  88. Geochim. Cosmochim. Acta Liu 159 139 2015 10.1016/j.gca.2015.03.021 Partitioning of platinum-group elements (PGE) and chalcogens (Se, Te, As, Sb, Bi) between monosulfide-solid solution (MSS), intermediate solid solution (ISS) and sulfide liquid at controlled fO2-fS2 conditions 

  89. Chem. Geol. Lorand 278 120 2010 10.1016/j.chemgeo.2010.09.007 Determination of selenium and tellurium concentrations in Pyrenean peridotites (Ariege, France): new insight into S/Se/Te systematics of the upper in mantle samples 

  90. J. Geophys. Res. Lyubetskaya 112 B03211 2007 Chemical composition of Earth’s primitive mantle and its variance: 1. Method and results 

  91. Lithos Malitch 204 172 2014 10.1016/j.lithos.2014.05.014 Insights into ore genesis of Ni-Cu-PGE sulfide deposits of the Noril’sk Province (Russia): evidence from copper and sulfur isotopes 

  92. Makovicky, E., 2002. Ternary and quaternary phase systems with PGE. In: Cabri, L.J. (Ed.), The Geology, Geochemistry, Mineralogy, and Mineral Beneficiation of Platinum-group Elements, Canadian Institute of Mining, Metallurgy, and Petroleum special volume 54, 131-175. 

  93. Int. Geol. Rev. Milanovskiy 18 619 1976 10.1080/00206817609471257 Rift zones of the geological past and their associated formations, report 2 

  94. Geochim Cosmochim. Acta Mungall 69 4349 2005 10.1016/j.gca.2004.11.025 Partitioning of Cu, Ni, Au, and platinum-group elements between monosulfide solid solution and sulfide melt under controlled oxygen and sulfur fugacities 

  95. J. Petrol. Naldrett 10 171 1969 10.1093/petrology/10.2.171 A portion of the system Fe-S-O between 900 and 1080°C and its application to sulfide ore magmas 

  96. Naldrett 727 2004 Magmatic sulfide deposits: geology, geochemistry and exploration 

  97. Econ. Geol. Naldrett 87 975 1992 10.2113/gsecongeo.87.4.975 Geology and geochemistry of intrusions and flood basalts of the Noril’sk region, USSR, with implications for the origin of the Ni-Cu Ores 

  98. Naldrett, A.J., Pessaran, R., Asif, M., Li, C., 1994. Compositional variation in the Sudbury ores and prediction of the proximity of footwall copper-PGE orebodies. In: Lightfoot, P.C., Naldrett, A.J. (Eds.), Proceedings of the Sudbury-Noril’sk Symposium, Ontario Geological Survey, special publication issue 5. Ontario Geological Survey, Greater Sudbury, pp 133-143. 

  99. Econ. Geol. Naldrett 91 751 1996 10.2113/gsecongeo.91.4.751 Controls on the composition of Ni-Cu sulfide deposits as illustrated by those at Noril'sk, Siberia 

  100. Econ. Geol. Naldrett 95 889 2000 The mineralogy of the Voisey’s Bay Ni-Cu-Co deposit, northern Labrador, Canada: influence of oxidation state on textures and mineral compositions 

  101. Mineral. Deposita Osbahr 48 211 2013 10.1007/s00126-012-0413-8 Platinum-group element distribution in base-metal sulfides of the Merensky Reef from the eastern and western Bushveld Complex, South Africa 

  102. Mineral. Deposita Osbahr 49 655 2014 10.1007/s00126-014-0538-z Platinum-group element distribution in base-metal sulfides of the UG2 chromitite, Bushveld Complex, South Africa - a reconnaissance study 

  103. Chem. Geol. Peregoedova 208 247 2004 10.1016/j.chemgeo.2004.04.015 The formation of Pt-Ir alloys and Cu-Pd-rich sulfide melts by partial desulfurization of Fe-Ni-Cu sulfides: results of experiments and implications for natural systems 

  104. Chem. Geol. Piña 302-303 61 2012 10.1016/j.chemgeo.2011.02.010 Distribution of platinum-group and chalcophile elements in the Aguablanca Ni-Cu sulfide deposit (SW Spain): evidence from a LA-ICP-MS study 

  105. Econ. Geol. Pitcairn 101 1525 2006 10.2113/gsecongeo.101.8.1525 Sources of metals in orogenic gold deposits: insights from the Otago and Alpine Schists, New Zealand 

  106. Can. Mineral. Pitcairn 48 1267 2010 10.3749/canmin.48.5.1267 Sulfide evolution during prograde metamorphism of the Otago and Alpine Schists, New Zealand 

  107. Mineral. Deposita Pitcairn 50 373 2015 10.1007/s00126-014-0547-y Metabasalts as sources of metals in orogenic gold deposits 

  108. Palaeogeogr. Palaeoclimat. Palaeoecol. Polozov 441 51 2016 10.1016/j.palaeo.2015.06.035 The basalt pipes of the Tunguska Basin (Siberia, Russia): High temperature processes and volatile degassing into the end-Permian atmosphere 

  109. Ore Geol. Rev. Queffurus 69 301 2015 10.1016/j.oregeorev.2015.02.019 A review of sulfur to selenium ratios in magmatic nickel-copper and platinum-group element deposits 

  110. Earth Planet. Sci. Lett. Reichow 277 9 2009 10.1016/j.epsl.2008.09.030 The timing and extent of the eruption of the Siberian traps large igneous province: implications for the end-Permian environmental crisis 

  111. Geochim. Cosmochim. Acta Ripley 67 2805 2003 10.1016/S0016-7037(03)00102-9 Sulfur isotopic studies of continental basalts in the Noril’sk region: implications for the association between lavas and ore-bearing intrusions 

  112. Geochim. Cosmochim. Acta Ripley 74 634 2010 10.1016/j.gca.2009.10.003 Micro-scale S isotope studies of the Kharaelakh intrusion, Noril’sk region, Siberia: constraints on the genesis of coexisting anhydrite and sulfide minerals 

  113. Ryabov 408 2014 Trap magmatism and ore formation in the Siberian Noril’sk region. Volume 1: Trap petrology 

  114. Ore Geol. Rev. Samalens 81 173 2017 10.1016/j.oregeorev.2016.09.030 The role of black shales as a source of sulfur and semimetals in magmatic nickel-copper deposits: Example from the Partridge River Intrusion, Duluth Complex, Minnesota, USA 

  115. Geostand. Newsl. Savard 34 281 2010 10.1111/j.1751-908X.2010.00090.x Comparison between nickel sulfur fire-assay Te co-precipitation and isotopic-dilution with high pressure asher techniques for determination of platinum group elements, rhenium and gold 

  116. Nat. Methods Schindelin 9 676 2012 10.1038/nmeth.2019 Fiji: an open-source platform for biological-image analysis 

  117. Dokl. Earth Sci. Sinyakova 417 1380 2007 10.1134/S1028334X0709019X Experimental modeling of zoning in copper-nickel sulfide ores 

  118. Russ. J. Basic. Chem. Sluzhenikin 81 1288 2011 10.1134/S1070363211060351 Platinum-copper-nickel and platinum ores of Noril’sk region and their ore mineralisation 

  119. Sluzhenikin, S.F., Krivolutskaya, N.A., Rad'ko, V., Malitch, K.N., Distler, V.V., Fedorenko, V.A., 2014. Ultramafic-Mafic Intrusions, Volcanic Rocks and PGE-Cu-Ni Sulfide Deposits of the Noril'sk Province, Polar Siberia, Field Trip Guidebook. Institute of Geology of Ore Deposits, Petrography, Mineralogy and Geochemistry, Yekaterinburg, Russia. 

  120. Mineral. Deposita Smith 49 667 2014 10.1007/s00126-014-0515-6 Precious and base metal geochemistry and mineralogy of the Grasvally Norite-Pyroxenite-Anorthosite (GNPA) member, northern Bushveld Complex, South Africa: implications for a multistage emplacement 

  121. Mineral. Deposita Taranovic 51 937 2016 10.1007/s00126-016-0643-2 Chalcophile element (Ni, Cu, PGE, and Au) variations in the Tamarack magmatic sulfide deposit in the Midcontinent Rift System: implications for dynamic ore-forming processes 

  122. Nature Wang 499 328 2013 10.1038/nature12285 Ratios of S, Se and Te in the silicate Earth require a volatile-rich late veneer 

  123. Can. Mineral. Watkinson 30 121 1992 Hydrothermal origin of platinum-group mineralization in the Two Duck Lake Intrusion, Coldwell Complex, Northwestern Ontario 

  124. Wood, S.A., 2002. The aqueous geochemistry of the platinum group elements with applications to ore deposits. In: Cabri, L.J. (Ed.), The geology, Geochemistry, Mineralogy, and Mineral Beneficiation of Platinum-group Elements, Canadian Institute of Mining, Metallurgy, and Petroleum special volume 54, 211-249. 

  125. Zientek, M.L., Likhachev, A.P., Kunilov, V.E., Barnes, S-J., Meier, A.L., Carlson, R.R., Briggs, P.H., Fries, T.L., Adrian, B.M., 1994. Cumulus processes and the composition of magmatic ore deposits: examples from the Talnakh District, Russia. In: Lightfoot, P.C., Naldrett, A.J. (Eds.), Proceedings of the Sudbury-Noril’sk Symposium, Ontario Geological Survey, special publication issue 5. Ontario Geological Survey, Greater Sudbury, pp 373-392. 

관련 콘텐츠

오픈액세스(OA) 유형

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로