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Bodaybinsky District, Irkutsk Oblast, Russiai
Regional Level Types
Bodaybinsky DistrictDistrict
Irkutsk OblastOblast
RussiaCountry

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Locality type:
Largest Settlements:
PlacePopulation
Bodaybo15,933 (2012)
Mamakan2,229 (2012)
Kropotkin1,765 (2012)
Balakhninskiy1,675 (2012)
Other Languages:
Russian:
Бодайбинский райо́н, Π˜Ρ€ΠΊΡƒΡ‚ΡΠΊΠ°Ρ ΠΎΠ±Π»Π°ΡΡ‚ΡŒ, Россия


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Standard Detailed Gallery Strunz Chemical Elements

Commodity List

This is a list of exploitable or exploited mineral commodities recorded from this region.


Mineral List

Mineral list contains entries from the region specified including sub-localities

91 valid minerals.

Rock Types Recorded

Note: data is currently VERY limited. Please bear with us while we work towards adding this information!

Rock list contains entries from the region specified including sub-localities

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Alphabetical List Tree Diagram

Detailed Mineral List:

β“˜ Acanthite
Formula: Ag2S
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Albite
Formula: Na(AlSi3O8)
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40
β“˜ Albite var. Oligoclase
Formula: (Na,Ca)[Al(Si,Al)Si2O8]
Reference: https://www.rns-pdf.londonstockexchange.com/rns/9788J_2-2017-7-3.pdf
β“˜ 'Allanite Group'
Formula: {A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ 'Ξ±-Brass'
Formula: Cu3Zn
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ Altaite
Formula: PbTe
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Amphibole Supergroup'
Formula: AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Reference: Chugaev, A. V., Budyak, A. E., Larionova, Y. O., Chernyshev, I. V., Travin, A. V., Tarasova, Y. I., ... & Oleinikova, T. I. (2022). 40Ar-39Ar and Rb-Sr age constraints on the formation of Sukhoi-Log-style orogenic gold deposits of the Bodaibo District (Northern Transbaikalia, Russia). Ore Geology Reviews, 144, 104855.
β“˜ Ankerite
Formula: Ca(Fe2+,Mg)(CO3)2
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Antimony
Formula: Sb
Reference: Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Antimony-bearing Gersdorffite'
Formula: Ni(As,Sb)S
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Apatite'
Formula: Ca5(PO4)3(Cl/F/OH)
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Arsenopyrite
Formula: FeAsS
Localities: Reported from at least 9 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.
β“˜ Baddeleyite
Formula: ZrO2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Berzelianite
Formula: Cu2-xSe (x ≈ 0.12)
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Biotite'
Formula: K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Bismuth
Formula: Bi
Reference: Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Bismuthinite
Formula: Bi2S3
Reference: Chugaev, A. V., Budyak, A. E., Larionova, Y. O., Chernyshev, I. V., Travin, A. V., Tarasova, Y. I., ... & Oleinikova, T. I. (2022). 40Ar-39Ar and Rb-Sr age constraints on the formation of Sukhoi-Log-style orogenic gold deposits of the Bodaibo District (Northern Transbaikalia, Russia). Ore Geology Reviews, 144, 104855.
β“˜ Bornite
Formula: Cu5FeS4
Reference: https://www.rns-pdf.londonstockexchange.com/rns/9788J_2-2017-7-3.pdf
β“˜ Calaverite
Formula: AuTe2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Cassiterite
Formula: SnO2
Reference: Neymark, Leonid A., Anatoly M. Larin, and Richard J. Moscati (2021) "Pb-Pb and U-Pb Dating of Cassiterite by In Situ LA-ICPMS: Examples Spanning ~1.85 Ga to ~100 Ma in Russia and Implications for Dating Proterozoic to Phanerozoic Tin Deposits" Minerals 11, no. 11: 1166. https://doi.org/10.3390/min11111166
β“˜ Cervelleite
Formula: Ag4TeS
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Chalcopyrite
Formula: CuFeS2
Localities: Reported from at least 8 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.
β“˜ 'Chlorite Group'
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.; Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Chromium
Formula: Cr
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Clinochlore
Formula: Mg5Al(AlSi3O10)(OH)8
Reference: Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341
β“˜ Cobaltite
Formula: CoAsS
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Cooperite
Formula: PtS
Reference: - Distler V.V., Yudovskaya M.A., Razvozhaeva E.A., e.a. (2003) New data on platinum mineralization of gold ores of deposit Sukhoi Log (Lena gold mining area, Russia), - Geochimiya (Geochemistry), 393(4), p. 524-527 (in Rus.); Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Copper
Formula: Cu
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Cubanite
Formula: CuFe2S3
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Cylindrite
Formula: Pb3Sn4FeSb2S14
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Dolomite
Formula: CaMg(CO3)2
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37
β“˜ Dyscrasite
Formula: Ag3Sb
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Enargite
Formula: Cu3AsS4
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Epidote
Formula: {Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ 'Feldspar Group'
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Ferberite
Formula: FeWO4
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ Florencite-(Ce)
Formula: CeAl3(PO4)2(OH)6
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37
β“˜ Fluorapatite
Formula: Ca5(PO4)3F
Reference: Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Galena
Formula: PbS
Localities: Reported from at least 8 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.
β“˜ Galenobismutite
Formula: PbBi2S4
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Garnet Group'
Formula: X3Z2(SiO4)3
Reference: Chugaev, A. V., Budyak, A. E., Larionova, Y. O., Chernyshev, I. V., Travin, A. V., Tarasova, Y. I., ... & Oleinikova, T. I. (2022). 40Ar-39Ar and Rb-Sr age constraints on the formation of Sukhoi-Log-style orogenic gold deposits of the Bodaibo District (Northern Transbaikalia, Russia). Ore Geology Reviews, 144, 104855.
β“˜ Gersdorffite
Formula: NiAsS
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Gersdorffite var. Cobalt-bearing Gersdorffite
Formula: (Ni,Co)AsS with Os,Ir,Ru,Rh
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37
β“˜ Goethite
Formula: Ξ±-Fe3+O(OH)
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Gold
Formula: Au
Localities: Reported from at least 9 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Dubinina, E. O., Ikonnikova, T. A., & Chugaev, A. V. (2010, December). Heterogeneity of the sulfur isotopic composition of pyrite at the Sukhoi Log deposit and its controlling factors. In Doklady Earth Sciences (Vol. 435, No. 2, pp. 1665-1669). MAIK Nauka/Interperiodica.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Gold var. Electrum
Formula: (Au,Ag)
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341
β“˜ Graphite
Formula: C
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Greenockite
Formula: CdS
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Heazlewoodite
Formula: Ni3S2
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Hematite
Formula: Fe2O3
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Hessite
Formula: Ag2Te
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Ilmenite
Formula: Fe2+TiO3
Reference: Chugaev, A. V., Budyak, A. E., Larionova, Y. O., Chernyshev, I. V., Travin, A. V., Tarasova, Y. I., ... & Oleinikova, T. I. (2022). 40Ar-39Ar and Rb-Sr age constraints on the formation of Sukhoi-Log-style orogenic gold deposits of the Bodaibo District (Northern Transbaikalia, Russia). Ore Geology Reviews, 144, 104855.
β“˜ Indium
Formula: In
Reference: - Distler V.V., Yudovskaya M.A., Razvozhaeva E.A., e.a. (2003) New data on platinum mineralization of gold ores of deposit Sukhoi Log (Lena gold mining area, Russia), - Geochimiya (Geochemistry), 393(4), p. 524-527 (in Rus.); Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Iodargyrite
Formula: AgI
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Iron
Formula: Fe
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Isoferroplatinum
Formula: Pt3Fe
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ 'JosΓ©ite'
Formula: Bi4TeS2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ 'K Feldspar'
Formula: KAlSi3O8
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Klockmannite
Formula: CuSe
Reference: Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Krennerite
Formula: Au3AgTe8
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Kyanite
Formula: Al2(SiO4)O
Reference: Chugaev, A. V., Budyak, A. E., Larionova, Y. O., Chernyshev, I. V., Travin, A. V., Tarasova, Y. I., ... & Oleinikova, T. I. (2022). 40Ar-39Ar and Rb-Sr age constraints on the formation of Sukhoi-Log-style orogenic gold deposits of the Bodaibo District (Northern Transbaikalia, Russia). Ore Geology Reviews, 144, 104855.
β“˜ Lead
Formula: Pb
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Leucoxene'
Reference: Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Magnesite
Formula: MgCO3
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Magnesite var. Breunnerite
Formula: (Mg,Fe)CO3
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Magnetite
Formula: Fe2+Fe3+2O4
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Marcasite
Formula: FeS2
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Maucherite
Formula: Ni11As8
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Melnikovite'
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ 'Mica Group'
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Microcline
Formula: K(AlSi3O8)
Reference: Neymark, Leonid A., Anatoly M. Larin, and Richard J. Moscati (2021) "Pb-Pb and U-Pb Dating of Cassiterite by In Situ LA-ICPMS: Examples Spanning ~1.85 Ga to ~100 Ma in Russia and Implications for Dating Proterozoic to Phanerozoic Tin Deposits" Minerals 11, no. 11: 1166. https://doi.org/10.3390/min11111166
β“˜ Millerite
Formula: NiS
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Molybdenite
Formula: MoS2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Monazite'
Formula: REE(PO4)
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2016). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers 7, 453-481.
β“˜ Monazite-(Ce)
Formula: Ce(PO4)
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Pavel M. Kartashov data; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341
β“˜ Monazite-(Nd)
Formula: Nd(PO4)
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Pavel M. Kartashov data
β“˜ Muscovite
Formula: KAl2(AlSi3O10)(OH)2
Localities: Reported from at least 8 localities in this region.
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Muscovite var. Barium-bearing Muscovite
Formula: (K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Muscovite var. Phengite
Formula: KAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Muscovite var. Sericite
Formula: KAl2(AlSi3O10)(OH)2
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2016). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers 7, 453-481.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Nickeline
Formula: NiAs
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Paragonite
Formula: NaAl2(AlSi3O10)(OH)2
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Pentlandite
Formula: (NixFey)Ξ£9S8
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341
β“˜ 'Petroleum'
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ 'Petroleum var. Bitumen'
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ Petzite
Formula: Ag3AuTe2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Plagioclase'
Formula: (Na,Ca)[(Si,Al)AlSi2]O8
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Platinum
Formula: Pt
Description: Pure low ferroan platinum - 97-99 %(w/w) Pt.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V.V., Yudovskaya, M.A., Razvozhaeva, E.A., et al. (2003): Geochimiya 393(4), 524-527; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Pyrite
Formula: FeS2
Localities: Reported from at least 8 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Dubinina, E. O., Ikonnikova, T. A., & Chugaev, A. V. (2010, December). Heterogeneity of the sulfur isotopic composition of pyrite at the Sukhoi Log deposit and its controlling factors. In Doklady Earth Sciences (Vol. 435, No. 2, pp. 1665-1669). MAIK Nauka/Interperiodica.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Pyrite var. Bravoite
Formula: (Fe,Ni)S2
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37
β“˜ Pyrite var. Cobalt-bearing Pyrite
Formula: (Fe,Co)S2
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37
β“˜ Pyrrhotite
Formula: Fe1-xS
Localities: Reported from at least 9 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Quartz
Formula: SiO2
Localities: Reported from at least 9 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Dubinina, E. O., Ikonnikova, T. A., & Chugaev, A. V. (2010, December). Heterogeneity of the sulfur isotopic composition of pyrite at the Sukhoi Log deposit and its controlling factors. In Doklady Earth Sciences (Vol. 435, No. 2, pp. 1665-1669). MAIK Nauka/Interperiodica.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2016). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers 7, 453-481.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Rammelsbergite
Formula: NiAs2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Rhodium
Formula: (Rh,Pt)
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ Rutile
Formula: TiO2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2016). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers 7, 453-481.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.
β“˜ Safflorite
Formula: (Co,Ni,Fe)As2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Scheelite
Formula: Ca(WO4)
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Siderite
Formula: FeCO3
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Siderite var. Pistomesite
Formula: (Fe,Mg)CO3
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Siderite var. Sideroplesite
Formula: (Fe,Mg)CO3
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Silver
Formula: Ag
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Silver var. Native Amalgam
Formula: (Ag,Hg)
Description: Hg3Ag
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Skutterudite
Formula: CoAs3
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; http://www.igem.ru/igem/chem/pt/sukhloge.htm; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Sperrylite
Formula: PtAs2
Reference: - Distler V.V., Yudovskaya M.A., Razvozhaeva E.A., e.a. (2003) New data on platinum mineralization of gold ores of deposit Sukhoi Log (Lena gold mining area, Russia), - Geochimiya (Geochemistry), 393(4), p. 524-527 (in Rus.); Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Sphalerite
Formula: ZnS
Localities: Reported from at least 8 localities in this region.
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Seltmann, R., Soloviev, S., Shatov, V., Pirajno, F., Naumov, E., & Cherkasov, S. (2010). Metallogeny of Siberia: tectonic, geologic and metallogenic settings of selected significant deposits*. Australian Journal of Earth Sciences, 57(6), 655-706; Large, R. R., Maslennikov, V. V., Robert, F., Danyushevsky, L. V., & Chang, Z. (2007). Multistage sedimentary and metamorphic origin of pyrite and gold in the giant Sukhoi Log deposit, Lena Gold Province, Russia. Economic Geology, 102(7), 1233-1267.; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.
β“˜ StΓΌtzite
Formula: Ag5-xTe3, x = 0.24-0.36
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Tellurium
Formula: Te
Reference: Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Tellurobismuthite
Formula: Bi2Te3
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ 'Tennantite-Tetrahedrite Series'
Reference: Chugaev, A. V., Plotinskaya, O. Y., Chernyshev, I. V., & Kotov, A. A. (2014, July). Lead isotope heterogeneity in sulfides from different assemblages at the Verninskoe gold deposit (Baikal-Patom Highland, Russia). In Doklady Earth Sciences (Vol. 457, No. 1, pp. 887-892). Pleiades Publishing. Chugaev, A. V., Budyak, A. E., Larionova, Y. O., Chernyshev, I. V., Travin, A. V., Tarasova, Y. I., ... & Oleinikova, T. I. (2022). 40Ar-39Ar and Rb-Sr age constraints on the formation of Sukhoi-Log-style orogenic gold deposits of the Bodaibo District (Northern Transbaikalia, Russia). Ore Geology Reviews, 144, 104855.
β“˜ Tetraferroplatinum
Formula: PtFe
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ 'Tetrahedrite Subgroup'
Formula: Cu6(Cu4C2+2)Sb4S12S
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Tin
Formula: Sn
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Titanite
Formula: CaTi(SiO4)O
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Titanium
Formula: Ti
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Tourmaline'
Formula: AD3G6 (T6O18)(BO3)3X3Z
Reference: Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Tulameenite
Formula: Pt2CuFe
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm
β“˜ Tungsten
Formula: W
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Ullmannite
Formula: NiSbS
Reference: Pavel M. Kartashov data
β“˜ Umangite
Formula: Cu3Se2
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Valleriite
Formula: (Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Reference: Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.
β“˜ Violarite
Formula: Fe2+Ni3+2S4
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Wolframite Group'
Reference: Keren Tan (1998): Gold Science and Technology 6(4), 29-37; Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ 'Xenotime'
Reference: Distler, V. V., Mitrofanov, G. L., Yudovskaya, M. A., Lishnevsky, E. N., & Prokof’ev, V. Y. (2005). Deep structure and ore-forming processes of the Sukhoi Log gold-platinum deposit, Russia. In Mineral Deposit Research: Meeting the Global Challenge (pp. 921-923). Springer Berlin Heidelberg.
β“˜ Xenotime-(Y)
Formula: Y(PO4)
Reference: http://www.igem.ru/igem/chem/pt/sukhloge.htm; Rusinov, V.L., Rusinova, O.V., Kryazhev, S.G., Shchegol’kov, Y.V., Alysheva, E.I., and Borisovsky, S.E. (2008): Geology of Ore Deposits 50(1), 1-40.
β“˜ Zircon
Formula: Zr(SiO4)
Reference: Woodl, B. L., & Popov, N. P. (2006). The Giant Sukhoi Log Gold Deposit, Siberia. Russian Geology and Geophysics Vol. 47, No. 3, pp. 315-341; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2015). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers.; Meffre, S., Large, R. R., Scott, R., Woodhead, J., Chang, Z., Gilbert, S. E., ... & Hergt, J. M. (2008). Age and pyrite Pb-isotopic composition of the giant Sukhoi Log sediment-hosted gold deposit, Russia. Geochimica et Cosmochimica Acta, 72(9), 2377-2391.; Yudovskaya, M. A., Distler, V. V., Prokofiev, V. Y., & Akinfiev, N. N. (2016). Gold mineralisation and orogenic metamorphism in the Lena province of Siberia as assessed from Chertovo Koryto and Sukhoi Log deposits. Geoscience Frontiers 7, 453-481.; Ikonnikova, T. A., Dubinina, E. O., Saroyan, M. R., & Chugaev, A. V. (2009). Oxygen isotopic composition of quartz veins and host rocks at the Sukhoi Log Deposit, Russia. Geology of Ore Deposits, 51(6), 505-512.

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
β“˜Antimony1.CA.05Sb
β“˜Bismuth1.CA.05Bi
β“˜Chromium1.AE.05Cr
β“˜Copper1.AA.05Cu
β“˜Gold1.AA.05Au
β“˜var. Electrum1.AA.05(Au,Ag)
β“˜Graphite1.CB.05aC
β“˜Indium1.AC.05In
β“˜Iron1.AE.05Fe
β“˜Isoferroplatinum1.AG.35Pt3Fe
β“˜Lead1.AA.05Pb
β“˜Platinum1.AF.10Pt
β“˜Rhodium1.AF.10(Rh,Pt)
β“˜Silver1.AA.05Ag
β“˜var. Native Amalgam1.AA.05(Ag,Hg)
β“˜Tellurium1.CC.10Te
β“˜Tetraferroplatinum1.AG.40PtFe
β“˜Tin1.AC.10Sn
β“˜Titanium1.AB.05Ti
β“˜Tulameenite1.AG.40Pt2CuFe
β“˜Tungsten1.AE.05W
β“˜'Ξ±-Brass'1.AB.10aCu3Zn
Group 2 - Sulphides and Sulfosalts
β“˜Acanthite2.BA.35Ag2S
β“˜Altaite2.CD.10PbTe
β“˜'Antimony-bearing Gersdorffite'2.EB.25 vaNi(As,Sb)S
β“˜Arsenopyrite2.EB.20FeAsS
β“˜Berzelianite2.BA.20Cu2-xSe (x β‰ˆ 0.12)
β“˜Bismuthinite2.DB.05Bi2S3
β“˜Bornite2.BA.15Cu5FeS4
β“˜Calaverite2.EA.10AuTe2
β“˜Cervelleite2.BA.60Ag4TeS
β“˜Chalcopyrite2.CB.10aCuFeS2
β“˜Cobaltite2.EB.25CoAsS
β“˜Cooperite2.CC.35bPtS
β“˜Cubanite2.CB.55aCuFe2S3
β“˜Cylindrite2.HF.25aPb3Sn4FeSb2S14
β“˜Dyscrasite2.AA.35Ag3Sb
β“˜Enargite2.KA.05Cu3AsS4
β“˜Galena2.CD.10PbS
β“˜Galenobismutite2.JC.25ePbBi2S4
β“˜Gersdorffite2.EB.25NiAsS
β“˜var. Cobalt-bearing Gersdorffite2.EB.25(Ni,Co)AsS with Os,Ir,Ru,Rh
β“˜Greenockite2.CB.45CdS
β“˜Heazlewoodite2.BB.05Ni3S2
β“˜Hessite2.BA.60Ag2Te
β“˜'JosΓ©ite'2.DC.05Bi4TeS2
β“˜Klockmannite2.CA.05bCuSe
β“˜Krennerite2.EA.15Au3AgTe8
β“˜Marcasite2.EB.10aFeS2
β“˜Maucherite2.AB.15Ni11As8
β“˜Millerite2.CC.20NiS
β“˜Molybdenite2.EA.30MoS2
β“˜Nickeline2.CC.05NiAs
β“˜Pentlandite2.BB.15(NixFey)Ξ£9S8
β“˜Petzite2.BA.75Ag3AuTe2
β“˜Pyrite2.EB.05aFeS2
β“˜var. Bravoite2.EB.05a(Fe,Ni)S2
β“˜var. Cobalt-bearing Pyrite2.EB.05a(Fe,Co)S2
β“˜Pyrrhotite2.CC.10Fe1-xS
β“˜Rammelsbergite2.EB.15aNiAs2
β“˜Safflorite2.EB.15a(Co,Ni,Fe)As2
β“˜Skutterudite2.EC.05CoAs3
β“˜Sperrylite2.EB.05aPtAs2
β“˜Sphalerite2.CB.05aZnS
β“˜StΓΌtzite2.BA.65Ag5-xTe3, x = 0.24-0.36
β“˜Tellurobismuthite2.DC.05Bi2Te3
β“˜'Tetrahedrite Subgroup'2.GB.05Cu6(Cu4C2+2)Sb4S12S
β“˜Ullmannite2.EB.25NiSbS
β“˜Umangite2.BA.25Cu3Se2
β“˜Valleriite2.FD.30(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
β“˜Violarite2.DA.05Fe2+Ni3+2S4
Group 3 - Halides
β“˜Iodargyrite3.AA.10AgI
Group 4 - Oxides and Hydroxides
β“˜Baddeleyite4.DE.35ZrO2
β“˜Cassiterite4.DB.05SnO2
β“˜Ferberite4.DB.30FeWO4
β“˜Goethite4.00.Ξ±-Fe3+O(OH)
β“˜Hematite4.CB.05Fe2O3
β“˜Ilmenite4.CB.05Fe2+TiO3
β“˜Magnetite4.BB.05Fe2+Fe3+2O4
β“˜Quartz4.DA.05SiO2
β“˜Rutile4.DB.05TiO2
β“˜'Wolframite Group'4.DB.30 va
Group 5 - Nitrates and Carbonates
β“˜Ankerite5.AB.10Ca(Fe2+,Mg)(CO3)2
β“˜Dolomite5.AB.10CaMg(CO3)2
β“˜Magnesite5.AB.05MgCO3
β“˜var. Breunnerite5.AB.05(Mg,Fe)CO3
β“˜Siderite5.AB.05FeCO3
β“˜var. Pistomesite5.AB.05(Fe,Mg)CO3
β“˜var. Sideroplesite5.AB.05(Fe,Mg)CO3
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
β“˜Scheelite7.GA.05Ca(WO4)
Group 8 - Phosphates, Arsenates and Vanadates
β“˜Florencite-(Ce)8.BL.13CeAl3(PO4)2(OH)6
β“˜Fluorapatite8.BN.05Ca5(PO4)3F
β“˜Monazite-(Ce)8.AD.50Ce(PO4)
β“˜Monazite-(Nd)8.AD.50Nd(PO4)
β“˜Xenotime-(Y)8.AD.35Y(PO4)
Group 9 - Silicates
β“˜Albite9.FA.35Na(AlSi3O8)
β“˜var. Oligoclase9.FA.35(Na,Ca)[Al(Si,Al)Si2O8]
β“˜Clinochlore9.EC.55Mg5Al(AlSi3O10)(OH)8
β“˜Epidote9.BG.05a{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
β“˜Kyanite9.AF.15Al2(SiO4)O
β“˜Microcline9.FA.30K(AlSi3O8)
β“˜Muscovite9.EC.15KAl2(AlSi3O10)(OH)2
β“˜var. Barium-bearing Muscovite9.EC.15(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
β“˜var. Phengite9.EC.15KAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
β“˜var. Sericite9.EC.15KAl2(AlSi3O10)(OH)2
β“˜Paragonite9.EC.15NaAl2(AlSi3O10)(OH)2
β“˜Titanite9.AG.15CaTi(SiO4)O
β“˜Zircon9.AD.30Zr(SiO4)
Unclassified Minerals, Rocks, etc.
β“˜'Allanite Group'-{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
β“˜'Amphibole Supergroup'-AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
β“˜'Apatite'-Ca5(PO4)3(Cl/F/OH)
β“˜'Biotite'-K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
β“˜'Chlorite Group'-
β“˜'Feldspar Group'-
β“˜'Garnet Group'-X3Z2(SiO4)3
β“˜'K Feldspar'-KAlSi3O8
β“˜'Leucoxene'-
β“˜'Melnikovite'-
β“˜'Mica Group'-
β“˜'Monazite'-REE(PO4)
β“˜'Petroleum'-
β“˜'var. Bitumen'-
β“˜'Plagioclase'-(Na,Ca)[(Si,Al)AlSi2]O8
β“˜'Tennantite-Tetrahedrite Series'-
β“˜'Tourmaline'-AD3G6 (T6O18)(BO3)3X3Z
β“˜'Xenotime'-

List of minerals for each chemical element

HHydrogen
Hβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Hβ“˜ ParagoniteNaAl2(AlSi3O10)(OH)2
Hβ“˜ MuscoviteKAl2(AlSi3O10)(OH)2
Hβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Hβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Hβ“˜ Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Hβ“˜ Florencite-(Ce)CeAl3(PO4)2(OH)6
Hβ“˜ ClinochloreMg5Al(AlSi3O10)(OH)8
Hβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Hβ“˜ Allanite Group{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
Hβ“˜ GoethiteΞ±-Fe3+O(OH)
Hβ“˜ Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Hβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Hβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
BBoron
Bβ“˜ TourmalineAD3G6 (T6O18)(BO3)3X3Z
CCarbon
Cβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
Cβ“˜ Siderite var. Sideroplesite(Fe,Mg)CO3
Cβ“˜ SideriteFeCO3
Cβ“˜ Siderite var. Pistomesite(Fe,Mg)CO3
Cβ“˜ Magnesite var. Breunnerite(Mg,Fe)CO3
Cβ“˜ DolomiteCaMg(CO3)2
Cβ“˜ GraphiteC
Cβ“˜ MagnesiteMgCO3
OOxygen
Oβ“˜ RutileTiO2
Oβ“˜ BaddeleyiteZrO2
Oβ“˜ MagnetiteFe2+Fe23+O4
Oβ“˜ Xenotime-(Y)Y(PO4)
Oβ“˜ ScheeliteCa(WO4)
Oβ“˜ FerberiteFeWO4
Oβ“˜ QuartzSiO2
Oβ“˜ Monazite-(Nd)Nd(PO4)
Oβ“˜ Monazite-(Ce)Ce(PO4)
Oβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Oβ“˜ TourmalineAD3G6 (T6O18)(BO3)3X3Z
Oβ“˜ ParagoniteNaAl2(AlSi3O10)(OH)2
Oβ“˜ MuscoviteKAl2(AlSi3O10)(OH)2
Oβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Oβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
Oβ“˜ Siderite var. Sideroplesite(Fe,Mg)CO3
Oβ“˜ AlbiteNa(AlSi3O8)
Oβ“˜ SideriteFeCO3
Oβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Oβ“˜ Siderite var. Pistomesite(Fe,Mg)CO3
Oβ“˜ Magnesite var. Breunnerite(Mg,Fe)CO3
Oβ“˜ K FeldsparKAlSi3O8
Oβ“˜ DolomiteCaMg(CO3)2
Oβ“˜ Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Oβ“˜ Florencite-(Ce)CeAl3(PO4)2(OH)6
Oβ“˜ ClinochloreMg5Al(AlSi3O10)(OH)8
Oβ“˜ ZirconZr(SiO4)
Oβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Oβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Oβ“˜ TitaniteCaTi(SiO4)O
Oβ“˜ HematiteFe2O3
Oβ“˜ Allanite Group{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
Oβ“˜ GoethiteΞ±-Fe3+O(OH)
Oβ“˜ Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Oβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Oβ“˜ MonaziteREE(PO4)
Oβ“˜ MagnesiteMgCO3
Oβ“˜ FluorapatiteCa5(PO4)3F
Oβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Oβ“˜ CassiteriteSnO2
Oβ“˜ MicroclineK(AlSi3O8)
Oβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Oβ“˜ IlmeniteFe2+TiO3
Oβ“˜ Garnet GroupX3Z2(SiO4)3
Oβ“˜ KyaniteAl2(SiO4)O
FFluorine
Fβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Fβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Fβ“˜ FluorapatiteCa5(PO4)3F
Fβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
NaSodium
Naβ“˜ ParagoniteNaAl2(AlSi3O10)(OH)2
Naβ“˜ AlbiteNa(AlSi3O8)
Naβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Naβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
MgMagnesium
Mgβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Mgβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
Mgβ“˜ Siderite var. Sideroplesite(Fe,Mg)CO3
Mgβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Mgβ“˜ Siderite var. Pistomesite(Fe,Mg)CO3
Mgβ“˜ Magnesite var. Breunnerite(Mg,Fe)CO3
Mgβ“˜ DolomiteCaMg(CO3)2
Mgβ“˜ ClinochloreMg5Al(AlSi3O10)(OH)8
Mgβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Mgβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Mgβ“˜ MagnesiteMgCO3
AlAluminium
Alβ“˜ ParagoniteNaAl2(AlSi3O10)(OH)2
Alβ“˜ MuscoviteKAl2(AlSi3O10)(OH)2
Alβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Alβ“˜ AlbiteNa(AlSi3O8)
Alβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Alβ“˜ K FeldsparKAlSi3O8
Alβ“˜ Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Alβ“˜ Florencite-(Ce)CeAl3(PO4)2(OH)6
Alβ“˜ ClinochloreMg5Al(AlSi3O10)(OH)8
Alβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Alβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Alβ“˜ Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Alβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Alβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Alβ“˜ MicroclineK(AlSi3O8)
Alβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Alβ“˜ KyaniteAl2(SiO4)O
SiSilicon
Siβ“˜ QuartzSiO2
Siβ“˜ ParagoniteNaAl2(AlSi3O10)(OH)2
Siβ“˜ MuscoviteKAl2(AlSi3O10)(OH)2
Siβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Siβ“˜ AlbiteNa(AlSi3O8)
Siβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Siβ“˜ K FeldsparKAlSi3O8
Siβ“˜ Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Siβ“˜ ClinochloreMg5Al(AlSi3O10)(OH)8
Siβ“˜ ZirconZr(SiO4)
Siβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Siβ“˜ TitaniteCaTi(SiO4)O
Siβ“˜ Allanite Group{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
Siβ“˜ Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Siβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Siβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
Siβ“˜ MicroclineK(AlSi3O8)
Siβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Siβ“˜ Garnet GroupX3Z2(SiO4)3
Siβ“˜ KyaniteAl2(SiO4)O
PPhosphorus
Pβ“˜ Xenotime-(Y)Y(PO4)
Pβ“˜ Monazite-(Nd)Nd(PO4)
Pβ“˜ Monazite-(Ce)Ce(PO4)
Pβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Pβ“˜ Florencite-(Ce)CeAl3(PO4)2(OH)6
Pβ“˜ MonaziteREE(PO4)
Pβ“˜ FluorapatiteCa5(PO4)3F
SSulfur
Sβ“˜ PyrrhotiteFe1-xS
Sβ“˜ Pentlandite(NixFey)Ξ£9S8
Sβ“˜ ChalcopyriteCuFeS2
Sβ“˜ CubaniteCuFe2S3
Sβ“˜ CooperitePtS
Sβ“˜ MilleriteNiS
Sβ“˜ HeazlewooditeNi3S2
Sβ“˜ ViolariteFe2+Ni23+S4
Sβ“˜ SphaleriteZnS
Sβ“˜ GalenaPbS
Sβ“˜ MolybdeniteMoS2
Sβ“˜ AcanthiteAg2S
Sβ“˜ CylindritePb3Sn4FeSb2S14
Sβ“˜ GalenobismutitePbBi2S4
Sβ“˜ Antimony-bearing GersdorffiteNi(As,Sb)S
Sβ“˜ Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Sβ“˜ JosΓ©iteBi4TeS2
Sβ“˜ CervelleiteAg4TeS
Sβ“˜ EnargiteCu3AsS4
Sβ“˜ ArsenopyriteFeAsS
Sβ“˜ CobaltiteCoAsS
Sβ“˜ GersdorffiteNiAsS
Sβ“˜ GreenockiteCdS
Sβ“˜ PyriteFeS2
Sβ“˜ Pyrite var. Bravoite(Fe,Ni)S2
Sβ“˜ UllmanniteNiSbS
Sβ“˜ Pyrite var. Cobalt-bearing Pyrite(Fe,Co)S2
Sβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
Sβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Sβ“˜ MarcasiteFeS2
Sβ“˜ BorniteCu5FeS4
Sβ“˜ BismuthiniteBi2S3
ClChlorine
Clβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Clβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
KPotassium
Kβ“˜ MuscoviteKAl2(AlSi3O10)(OH)2
Kβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Kβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
Kβ“˜ K FeldsparKAlSi3O8
Kβ“˜ Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Kβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Kβ“˜ MicroclineK(AlSi3O8)
CaCalcium
Caβ“˜ ScheeliteCa(WO4)
Caβ“˜ ApatiteCa5(PO4)3(Cl/F/OH)
Caβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
Caβ“˜ DolomiteCaMg(CO3)2
Caβ“˜ Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Caβ“˜ TitaniteCaTi(SiO4)O
Caβ“˜ Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Caβ“˜ FluorapatiteCa5(PO4)3F
Caβ“˜ Albite var. Oligoclase(Na,Ca)[Al(Si,Al)Si2O8]
TiTitanium
Tiβ“˜ TitaniumTi
Tiβ“˜ RutileTiO2
Tiβ“˜ TitaniteCaTi(SiO4)O
Tiβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Tiβ“˜ Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Tiβ“˜ IlmeniteFe2+TiO3
CrChromium
Crβ“˜ ChromiumCr
FeIron
Feβ“˜ IronFe
Feβ“˜ IsoferroplatinumPt3Fe
Feβ“˜ TetraferroplatinumPtFe
Feβ“˜ PyrrhotiteFe1-xS
Feβ“˜ Pentlandite(NixFey)Ξ£9S8
Feβ“˜ ChalcopyriteCuFeS2
Feβ“˜ CubaniteCuFe2S3
Feβ“˜ MagnetiteFe2+Fe23+O4
Feβ“˜ ViolariteFe2+Ni23+S4
Feβ“˜ CylindritePb3Sn4FeSb2S14
Feβ“˜ ArsenopyriteFeAsS
Feβ“˜ Safflorite(Co,Ni,Fe)As2
Feβ“˜ PyriteFeS2
Feβ“˜ Pyrite var. Bravoite(Fe,Ni)S2
Feβ“˜ FerberiteFeWO4
Feβ“˜ TulameenitePt2CuFe
Feβ“˜ Muscovite var. PhengiteKAl1.5(Mg,Fe)0.5(Al0.5Si3.5O10)(OH)2
Feβ“˜ AnkeriteCa(Fe2+,Mg)(CO3)2
Feβ“˜ Siderite var. Sideroplesite(Fe,Mg)CO3
Feβ“˜ SideriteFeCO3
Feβ“˜ Siderite var. Pistomesite(Fe,Mg)CO3
Feβ“˜ Magnesite var. Breunnerite(Mg,Fe)CO3
Feβ“˜ Pyrite var. Cobalt-bearing Pyrite(Fe,Co)S2
Feβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Feβ“˜ MarcasiteFeS2
Feβ“˜ HematiteFe2O3
Feβ“˜ GoethiteΞ±-Fe3+O(OH)
Feβ“˜ Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Feβ“˜ BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Feβ“˜ BorniteCu5FeS4
Feβ“˜ IlmeniteFe2+TiO3
CoCobalt
Coβ“˜ CobaltiteCoAsS
Coβ“˜ SkutteruditeCoAs3
Coβ“˜ Safflorite(Co,Ni,Fe)As2
Coβ“˜ Pyrite var. Cobalt-bearing Pyrite(Fe,Co)S2
Coβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
NiNickel
Niβ“˜ Pentlandite(NixFey)Ξ£9S8
Niβ“˜ MilleriteNiS
Niβ“˜ HeazlewooditeNi3S2
Niβ“˜ ViolariteFe2+Ni23+S4
Niβ“˜ Antimony-bearing GersdorffiteNi(As,Sb)S
Niβ“˜ GersdorffiteNiAsS
Niβ“˜ NickelineNiAs
Niβ“˜ MaucheriteNi11As8
Niβ“˜ RammelsbergiteNiAs2
Niβ“˜ Safflorite(Co,Ni,Fe)As2
Niβ“˜ Pyrite var. Bravoite(Fe,Ni)S2
Niβ“˜ UllmanniteNiSbS
Niβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
CuCopper
Cuβ“˜ ChalcopyriteCuFeS2
Cuβ“˜ CubaniteCuFe2S3
Cuβ“˜ Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Cuβ“˜ UmangiteCu3Se2
Cuβ“˜ BerzelianiteCu2-xSe (x ≈ 0.12)
Cuβ“˜ EnargiteCu3AsS4
Cuβ“˜ Ξ±-BrassCu3Zn
Cuβ“˜ CopperCu
Cuβ“˜ TulameenitePt2CuFe
Cuβ“˜ Valleriite(Fe2+,Cu)4(Mg,Al)3S4(OH,O)6
Cuβ“˜ KlockmanniteCuSe
Cuβ“˜ BorniteCu5FeS4
ZnZinc
Znβ“˜ SphaleriteZnS
Znβ“˜ Ξ±-BrassCu3Zn
AsArsenic
Asβ“˜ SperrylitePtAs2
Asβ“˜ Antimony-bearing GersdorffiteNi(As,Sb)S
Asβ“˜ EnargiteCu3AsS4
Asβ“˜ ArsenopyriteFeAsS
Asβ“˜ CobaltiteCoAsS
Asβ“˜ GersdorffiteNiAsS
Asβ“˜ SkutteruditeCoAs3
Asβ“˜ NickelineNiAs
Asβ“˜ MaucheriteNi11As8
Asβ“˜ RammelsbergiteNiAs2
Asβ“˜ Safflorite(Co,Ni,Fe)As2
Asβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
SeSelenium
Seβ“˜ UmangiteCu3Se2
Seβ“˜ BerzelianiteCu2-xSe (x ≈ 0.12)
Seβ“˜ KlockmanniteCuSe
YYttrium
Yβ“˜ Xenotime-(Y)Y(PO4)
ZrZirconium
Zrβ“˜ BaddeleyiteZrO2
Zrβ“˜ ZirconZr(SiO4)
MoMolybdenum
Moβ“˜ MolybdeniteMoS2
RuRuthenium
Ruβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
RhRhodium
Rhβ“˜ Rhodium(Rh,Pt)
Rhβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
AgSilver
Agβ“˜ SilverAg
Agβ“˜ Gold var. Electrum(Au,Ag)
Agβ“˜ Silver var. Native Amalgam(Ag,Hg)
Agβ“˜ AcanthiteAg2S
Agβ“˜ DyscrasiteAg3Sb
Agβ“˜ KrenneriteAu3AgTe8
Agβ“˜ CervelleiteAg4TeS
Agβ“˜ PetziteAg3AuTe2
Agβ“˜ HessiteAg2Te
Agβ“˜ IodargyriteAgI
Agβ“˜ StΓΌtziteAg5-xTe3, x = 0.24-0.36
CdCadmium
Cdβ“˜ GreenockiteCdS
InIndium
Inβ“˜ IndiumIn
SnTin
Snβ“˜ TinSn
Snβ“˜ CylindritePb3Sn4FeSb2S14
Snβ“˜ CassiteriteSnO2
SbAntimony
Sbβ“˜ CylindritePb3Sn4FeSb2S14
Sbβ“˜ DyscrasiteAg3Sb
Sbβ“˜ Antimony-bearing GersdorffiteNi(As,Sb)S
Sbβ“˜ Tetrahedrite SubgroupCu6(Cu4C22+)Sb4S12S
Sbβ“˜ UllmanniteNiSbS
Sbβ“˜ AntimonySb
TeTellurium
Teβ“˜ JosΓ©iteBi4TeS2
Teβ“˜ KrenneriteAu3AgTe8
Teβ“˜ CervelleiteAg4TeS
Teβ“˜ PetziteAg3AuTe2
Teβ“˜ HessiteAg2Te
Teβ“˜ CalaveriteAuTe2
Teβ“˜ AltaitePbTe
Teβ“˜ StΓΌtziteAg5-xTe3, x = 0.24-0.36
Teβ“˜ TellurobismuthiteBi2Te3
Teβ“˜ TelluriumTe
IIodine
Iβ“˜ IodargyriteAgI
BaBarium
Baβ“˜ Muscovite var. Barium-bearing Muscovite(K,Ba)(Al,Mg)2(AlSi3O10)(OH)2
CeCerium
Ceβ“˜ Monazite-(Ce)Ce(PO4)
Ceβ“˜ Florencite-(Ce)CeAl3(PO4)2(OH)6
NdNeodymium
Ndβ“˜ Monazite-(Nd)Nd(PO4)
WTungsten
Wβ“˜ TungstenW
Wβ“˜ ScheeliteCa(WO4)
Wβ“˜ FerberiteFeWO4
OsOsmium
Osβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
IrIridium
Irβ“˜ Gersdorffite var. Cobalt-bearing Gersdorffite(Ni,Co)AsS with Os,Ir,Ru,Rh
PtPlatinum
Ptβ“˜ SperrylitePtAs2
Ptβ“˜ PlatinumPt
Ptβ“˜ IsoferroplatinumPt3Fe
Ptβ“˜ TetraferroplatinumPtFe
Ptβ“˜ CooperitePtS
Ptβ“˜ TulameenitePt2CuFe
Ptβ“˜ Rhodium(Rh,Pt)
AuGold
Auβ“˜ Gold var. Electrum(Au,Ag)
Auβ“˜ KrenneriteAu3AgTe8
Auβ“˜ PetziteAg3AuTe2
Auβ“˜ CalaveriteAuTe2
Auβ“˜ GoldAu
HgMercury
Hgβ“˜ Silver var. Native Amalgam(Ag,Hg)
PbLead
Pbβ“˜ LeadPb
Pbβ“˜ GalenaPbS
Pbβ“˜ CylindritePb3Sn4FeSb2S14
Pbβ“˜ GalenobismutitePbBi2S4
Pbβ“˜ AltaitePbTe
BiBismuth
Biβ“˜ GalenobismutitePbBi2S4
Biβ“˜ JosΓ©iteBi4TeS2
Biβ“˜ TellurobismuthiteBi2Te3
Biβ“˜ BismuthBi
Biβ“˜ BismuthiniteBi2S3

Geochronology

Mineralization age: Paleozoic : 500 Ma to 450 Ma

Important note: This table is based only on rock and mineral ages recorded on mindat.org for this locality and is not necessarily a complete representation of the geochronology, but does give an indication of possible mineralization events relevant to this locality. As more age information is added this table may expand in the future. A break in the table simply indicates a lack of data entered here, not necessarily a break in the geologic sequence. Grey background entries are from different, related, localities.

Geologic TimeRocks, Minerals and Events
Phanerozoic
 Paleozoic
  Ordovician
   Late/Upper Ordovician
β“˜ Zircon (youngest age)450 MaSukhoi Log deposit, Kropotkinsky ore cluster, Lena Gold District, Bodaibo, Bodaybinsky District, Irkutsk Oblast, Russia
    
   
  Cambrian
   Miaolingian
β“˜ Zircon (oldest age)500 MaSukhoi Log deposit, Kropotkinsky ore cluster, Lena Gold District, Bodaibo, Bodaybinsky District, Irkutsk Oblast, Russia

Fossils

There are 1 fossil localities from the PaleoBioDB database within this region.

BETA TEST - These data are provided on an experimental basis and are taken from external databases. Mindat.org has no control currently over the accuracy of these data.

Occurrences58
Youngest Fossil Listed466 Ma (Middle Ordovician)
Oldest Fossil Listed485 Ma (Early/Lower Ordovician)
Stratigraphic Units
UnitNo. OccurrencesAge
Tochil’naya - Lower11478.6 - 466 Ma (Ordovician)
Ust'-Kut10485.4 - 477.7 Ma (Paleozoic)
Ust’Kut - Lower15485.4 - 485 Ma (Paleozoic)
Ust’Kut - Upper15485.4 - 477.7 Ma (Paleozoic)
Mansiiskii7485.4 - 477.7 Ma (Paleozoic)
Fossils from RegionClick here to show the list.
Accepted NameHierarchy Age
Phosphannulus
genus
Animalia : Hyolithelminthida : Phosphannulus485.4 - 485 Ma
Paleozoic
Calvinella
genus
Animalia : Arthropoda : Trilobita : Asaphida : Saukiidae : Calvinella485.4 - 485 Ma
Paleozoic
Platypeltoides
genus
Animalia : Arthropoda : Trilobita : Asaphida : Nileidae : Platypeltoides485.4 - 477.7 Ma
Paleozoic
Saukiella
genus
Animalia : Arthropoda : Trilobita : Asaphida : Saukiidae : Saukiella485.4 - 477.7 Ma
Paleozoic
Diceratocephalina
genus
Animalia : Arthropoda : Trilobita : Ptychopariida : Acrocephalitidae : Diceratocephalina485.4 - 485 Ma
Paleozoic
Paenebeltella
genus
Animalia : Arthropoda : Trilobita : Aulacopleurida : Hystricuridae : Paenebeltella478.6 - 466 Ma
Ordovician
Pseudoacrocephalites
genus
Animalia : Arthropoda : Trilobita : Ptychopariida : Eulomidae : Pseudoacrocephalites485.4 - 485 Ma
Paleozoic
Pseudokoldinia
genus
Animalia : Arthropoda : Trilobita : Corynexochida : Cheilocephalidae : Pseudokoldinia485.4 - 485 Ma
Paleozoic
Obliteraspis
genus
Animalia : Arthropoda : Trilobita : Phacopida : Pliomeridae : Obliteraspis478.6 - 466 Ma
Ordovician
Finkelnburgia
genus
Animalia : Brachiopoda : Rhynchonellata : Orthida : Finkelnburgiidae : Finkelnburgia485.4 - 466 Ma
Paleozoic
Nanorthis
genus
Animalia : Brachiopoda : Rhynchonellata : Orthida : Plectorthidae : Nanorthis485.4 - 466 Ma
Paleozoic
Callograptus
genus
Animalia : Hemichordata : Pterobranchia : Dendrograptidae : Callograptus485.4 - 485 Ma
Paleozoic
Dictyonema
genus
Animalia : Hemichordata : Pterobranchia : Dendrograptidae : Dictyonema485.4 - 485 Ma
Paleozoic
Furnishina
genus
Animalia : Chordata : Conodonta : Paraconodontida : Furnishina485.4 - 485 Ma
Paleozoic
Prooneotodus
genus
Animalia : Chordata : Conodonta : Paraconodontida : Prooneotodus485.4 - 477.7 Ma
Paleozoic
Clavohamulus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Clavohamulus485.4 - 477.7 Ma
Paleozoic
Cordylodus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Proconodontidae : Cordylodus485.4 - 477.7 Ma
Paleozoic
Drepanodus
genus
Animalia : Chordata : Distacodontidae : Drepanodus485.4 - 466 Ma
Paleozoic
Eoconodontus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Eoconodontus485.4 - 477.7 Ma
Paleozoic
Hirsutodontus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Hirsutodontus485.4 - 477.7 Ma
Paleozoic
Loxodus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Loxodus485.4 - 477.7 Ma
Paleozoic
Oneotodus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Oneotodus485.4 - 466 Ma
Paleozoic
Paltodus
genus
Animalia : Chordata : Conodonta : Protopanderodontida : Paltodus485.4 - 466 Ma
Paleozoic
Proconodontus
genus
Animalia : Chordata : Conodonta : Conodontophorida : Proconodontus485.4 - 477.7 Ma
Paleozoic
Scolopodus
genus
Animalia : Chordata : Strachanognathidae : Scolopodus485.4 - 466 Ma
Paleozoic
Semiacontiodus
genus
Animalia : Chordata : Conodonta : Euconodonta : Semiacontiodus485.4 - 477.7 Ma
Paleozoic
Teridontus
genus
Animalia : Chordata : Conodonta : Protopanderodontida : Oneotodontidae : Teridontus485.4 - 466 Ma
Paleozoic
Ulrichodina
genus
Animalia : Chordata : Conodonta : Conodontophorida : Ulrichodina485.4 - 477.7 Ma
Paleozoic
Acodus
genus
Animalia : Chordata : Acodus485.4 - 477.7 Ma
Paleozoic
Parapliomera
genus
Animalia : Arthropoda : Trilobita : Phacopida : Pliomeridae : Parapliomera485.4 - 466 Ma
Paleozoic
Plethopeltoides
genus
Animalia : Arthropoda : Trilobita : Ptychopariida : Plethopeltidae : Plethopeltoides485.4 - 485 Ma
Paleozoic
Scandodus
genus
Animalia : Chordata : Conodonta : Scandodus485.4 - 466 Ma
Paleozoic
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Localities in this Region

Other Regions, Features and Areas that Intersect


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