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Oktyabr'sky Mine

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Journal Article
Published: 01 March 2018
European Journal of Mineralogy (2018) 30 (2): 375–382.
... at the Oktyabr'skoe Cu-Ni-Pd-Pt deposit (Oktyabr'sky mine), Talnakh, Norilsk district, Siberia, Russia. It is a late-stage hydrothermal mineral associated with greenalite, chamosite, pectolite, ferroactinolite, calcite and fluorapatite. Genplesite occurs as equant, short prismatic or thick tabular hexagonal crystals...
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Metamorphosed sulfide ores from Noril'sk ore field. (a) Segregations of pneumatogenic PGM from Majak Mine: palladoarsenide microveinlets (gray) replacing majakite (Mjk) at continuation of carbonate–chlorite veinlets with magnetite and serpentine; tetraferroplatinum (white) is seen; (b) pseudomorph of vincentite (white) after majakite in aggregate of prehnite (Prh), chlorite (Chl), and millerite (Mlr), Bear Creek Mine; (c) eutectic ore from Oktyabr'sky Mine. Metasomes of argentopentlandite (Ag-Pn) in an aggregate of chalcopyrite (Cp), galena (Gn), magnetite (Mgt), valleriite (Vlr), and chlorite (Chl); (d) ore enriched in hessite, Oktyabr'sky Mine. Silver (Ag) in aggregate of bornite (Bn) and magnetite (Mgt) with galena (Gn) inclusions. (a–d) BSE image.
Published: 01 March 2016
) pseudomorph of vincentite (white) after majakite in aggregate of prehnite (Prh), chlorite (Chl), and millerite (Mlr), Bear Creek Mine; (c) eutectic ore from Oktyabr'sky Mine. Metasomes of argentopentlandite (Ag-Pn) in an aggregate of chalcopyrite (Cp), galena (Gn), magnetite (Mgt), valleriite (Vlr
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Published: 01 March 2016
TABLE 10. CHEMICAL COMPOSITION AND FORMULA COEFFICIENTS OF Pd-BREITHAUPTITE FROM METAMORPHOSED SULFIDE ORE, TALNAKH ORE CLUSTER, OKTYABR'SKY MINE
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Published: 01 March 2016
TABLE 11. CHEMICAL COMPOSITION AND FORMULA COEFFICIENTS OF CHALCOPYRITE–LENAITE SOLID SOLUTION FROM METAMORPHOSED SULFIDE ORE, TALNAKH ORE CLUSTER, OKTYABR'SKY MINE
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Published: 01 March 2016
TABLE 12. CHEMICAL COMPOSITION AND FORMULA COEFFICIENTS OF BORNITE FROM METAMORPHOSED SULFIDE ORE, DEPLETED IN Ag MINERALS (54, 55) AND ENRICHED IN HESSITE (56–61), TALNAKH ORE CLUSTER, OKTYABR'SKY MINE
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Published: 01 March 2016
TABLE 7. CHEMICAL COMPOSITION AND FORMULA COEFFICIENTS OF Sn-BEARING HYDROGROSSULAR–ANDRADITE (25–28) AND HYDROANDRADITE–GROSSULAR (29) FROM METAMORPHOSED ORE CONTAINED VYSOTSKITE AND ENRICHED IN BORNITE, TALNAKH ORE CLUSTER, OKTYABR'SKY MINE
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Brecciated and metamorphosed PGE–Ni–Cu ores from Noril'sk ore field. (a, b, c, d) Eutectic ore from the Oktyabr'sky Mine. (a, b) Segregation of Sb-paolovite (Plv) with Bi-geversite (Bi-Gev) and “electrum” (Elc) corpuscles, veinlets and metasomatic ingrowths of hisingerite (Hsn) and quartz (Qtz). Sb-paolovite is almost completely replaced by Sb-free paolovite; (c) ore with Ag-rich paolovite veinlets; (d) cassiterite (Cst) metacryst with relics of Bi-geversite lamellae and rims of Te-free sobolevskite (Sob) replaces pneumatogenic Sb-paolovite (Plv) with Bi-geversite lamellae. Pneumatogenic hessite (Hes) is seen; (e, f) metamorphosed sulfide ore from Bear Creek Mine. Intergrowths of vysotskite (Vsk) with millerite (Mlr), babingtonite (Bbg), ilvaite (Ilv), and chalcopyrite (Cp). (a–f) BSE image.
Published: 01 March 2016
Fig. 5. Brecciated and metamorphosed PGE–Ni–Cu ores from Noril'sk ore field. (a, b, c, d) Eutectic ore from the Oktyabr'sky Mine. (a, b) Segregation of Sb-paolovite (Plv) with Bi-geversite (Bi-Gev) and “electrum” (Elc) corpuscles, veinlets and metasomatic ingrowths of hisingerite (Hsn
Journal Article
Published: 01 June 2000
The Canadian Mineralogist (2000) 38 (3): 599–609.
...–tatyanaïte montre un écart vers la cabriite, qui leur est semblable du point de vue structural. Ces minéraux du groupe du platine ont été découverts dans le minerai à métaux de base de la mine Oktyabr’sky, dans le complexe de Noril’sk, en Sibérie, Russie. La série taimyrite–tatyanaïte se présente...
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Journal Article
Published: 01 March 2016
The Canadian Mineralogist (2016) 54 (2): 429–452.
...) pseudomorph of vincentite (white) after majakite in aggregate of prehnite (Prh), chlorite (Chl), and millerite (Mlr), Bear Creek Mine; (c) eutectic ore from Oktyabr'sky Mine. Metasomes of argentopentlandite (Ag-Pn) in an aggregate of chalcopyrite (Cp), galena (Gn), magnetite (Mgt), valleriite (Vlr...
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Published: 01 March 2016
TABLE 5. CHEMICAL COMPOSITION AND FORMULA COEFFICIENTS OF PARKERITE FROM METAMORPHOSED SULFIDE ORES (8–13) AND ANHYDRITE–CALCITE VEINS (14–15), TALNAKH ORE CLUSTER, OKTYABR'SKY AND KOMSOMOL'SKY MINES
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Published: 01 March 2016
TABLE 6. CHEMICAL COMPOSITION AND FORMULA COEFFICIENTS OF PNEUMATOGENIC Sb-PAOLOVITE (16–19), METAMORPHIC-HYDROTHERMAL Sb-FREE PAOLOVITE (20–21), REMOBILIZED METAMORPHIC-HYDROTHERMAL Ag-PAOLOVITE (22–24), TALNAKH ORE CLUSTER, OKTYABR'SKY AND KOMSOMOL'SKY MINES
Journal Article
Published: 15 April 2024
Mineralogical Magazine (2024) 88 (4): 351–368.
...Nadezhda D. Tolstykh; Nadezhda A. Krivolutskaya; Lyudmila S. Canhimbue; Bronislav I. Gongalsky; Ivan A. Kuzmin Abstract Mineralogical features of two orebodies, lenses (C-3 and C-4), at the central part of the Oktyabr'sky deposit have been investigated. Multidirectional mineralogical zoning...
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Journal Article
Published: 01 June 2015
Mineralogical Magazine (2015) 79 (3): 799–808.
... involving distinct sites in the structure, consistent with the formula (Pb,Cd)Cu 4 Fe 4 S 8 . T able 1. Compositions (wt.%) of Cl-free analogues of djerfisherite–thalfenisite from the Oktyabr'sky deposit, Noril'sk, Russia. K Tl Pb Cu Fe Ni Co S Cl Total 1 5.73 6.42...
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Journal Article
Published: 01 April 2019
American Mineralogist (2019) 104 (4): 625–629.
... in cavities in massive chalcopyrite ore at the Oktyabr'skoe Cu-Ni-Pd-Pt deposit (Oktyabr'sky mine), Talnakh, Norilsk district, Siberia, Russia. It is a late-stage low-temperature hydrothermal mineral. It occurs on greenish-gray greenalite crystalline crusts lining walls of roundish caverns (up to 1 cm...
Journal Article
Published: 01 December 2011
Mineralogical Magazine (2011) 75 (6): 2887–2893.
..., V.O., Chukanov, N.V., Belakovskiy, D.I. and Pushcharovsky, D.Y. (2011) Calciolangbeinite, IMA 2011-067. CNMNC Newsletter No. 11, December 2011, page 2890; Mineralogical Magazine , 75 , 2887–2893. IMA No. 2011-068 Ferrovalleriite 2(Fe,Cu)S·1.5Fe(OH) 2 Oktyabr'sky mine, Talnakh...
Journal Article
Published: 13 December 2021
The Canadian Mineralogist (2021) 59 (6): 1437–1451.
... are consistent with the idea that different stages of multi-pulse intrusions of mafic-ultramafic magmas with different compositions formed the picritic and taxitic gabbro-dolerites of the Norilsk region. Fig. 1. (a) Schematic location map showing the projected contours of the Norilsk mining district...
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Journal Article
Published: 01 March 1997
Russ. Geol. Geophys. (1997) 38 (3): 648–660.
... and their numbers, 20 – location of geological profiles, 21 – areas of exploration: 1 – Ozerny; 2 – Turkul; 3 – Arishinskii; 4 – Solnechny; 5 – Taezhny; 6 – Ulzutui I; 7 – Ulzutui II; 8 – Oktyabr’sky; 9 – Zvezdny; 10 – Maisky; 11 – Magnetitovy; 12 – Solongo; 13 – Nazarovka; 14 – Yubileiny. The contact...
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Journal Article
Published: 01 April 2011
Mineralogical Magazine (2011) 75 (2): 289–294.
... 2011, page 293; Mineralogical Magazine , 75 , 289–294. IMA No. 2010-080 Ferrotochilinite 6FeS·5Fe(OH) 2 No. 1 Shaft, Oktyabr'sky mine, Talnakh, Norilsk area, Krasnoyarsk Krai, Siberia, Russia Igor V. Pekov * , Evgeny V. Sereda, Yury S. Polekhovsky, Sergey N. Britvin, Nikita V...
Journal Article
Published: 01 February 2003
The Canadian Mineralogist (2003) 41 (1): 207–220.
.... 1994 ), and the Victor Deep deposit ( Jago et al. 1994 ) in the Sudbury Igneous Complex (SIC) of Ontario, Canada, and the Oktyabr’sky mine in the Noril’sk district of Russia ( Karpenkov et al. 1981 , Saini-Eidukat et al. 1998 ). Additional phases reported from magmatic sulfides in minor...
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Journal Article
Journal: Economic Geology
Published: 01 September 2020
Economic Geology (2020) 115 (6): 1245–1266.
... Likhachev, 1994 ). From the nine Cu-poor samples ( Fig. 2 ), two come from the Norilsk 1 intrusion (Medvezhy mine), one comes from the Talnakh intrusion (Komsolmolsky mine), and six come from the Kharaelakh intrusion (four from the Oktyabr’sky mine and two from the Taymyrsky mine). In these samples...
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