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Pearceite from Soviet Union (1922-1991)

Kazakhstan
 
  • East Kazakhstan Region
    • Kurshim District
Глоба В.А. Месторождение Манка - новый геолого-промышленный тип месторождений золота. // Изв. НАН РК, Сер. геол. 2006, 5(403), с.20-28.
  • Kostanay Region
    • Rudny
Pekov, I.V. and Karpenko, V.Yu. (1997) Minerals of the silver-bearing veins of the Sarbay deposit (North Kazakhstan). World of Stones, 12, 2-15.
Evseev, A. A. (1995) Kazakhstan and Middle Asia. A brief Mineralogical Guide. World of Stone, 8, 24-30.
  • Pavlodar Region
    • Bayanaul District
Baibatsha, A., Dyussembayeva, K., & Kassenova, A. (2015). Microparagenetic Associations of Gold in Ore-Forming Minerals from Deposits of Different Geological and Industrial Types of Kazakhstan. In Proceedings of the 11th International Congress for Applied Mineralogy (ICAM) (pp. 1-8). Springer International Publishing.
Baibatsha, A., Dyussembayeva, K., & Kassenova, A. (2015). Microparagenetic Associations of Gold in Ore-Forming Minerals from Deposits of Different Geological and Industrial Types of Kazakhstan. In Proceedings of the 11th International Congress for Applied Mineralogy (ICAM) (pp. 1-8). Springer, Cham.
  • Turkistan Region
    • Kentau
(2005) Mineral Resources Data System (MRDS), US Geological Survey.
Russia
 
  • Bashkortostan
    • Uchalinsky District
Vikentyev, I. V., & Vikentyeva, O. V. (2015). Precious metal minerals and “invisible” gold in sulfide ores of Urals. In Mater. of ХII Int. Sci. Conf.“Advanced Technologies, Equipment and Analytical Systems for Materials and Nano-Materials (Vol. 3, pp. 33-41).
Vikentyev, I. V. (2015). Invisible and microscopic gold in pyrite: Methods and new data for massive sulfide ores of the Urals. Geology of ore deposits, 57(4), 237-265.
Vinokurov, S. F., Vikent’ev, I. V., & Sychkova, V. A. (2010). Determining ionic gold species in massive sulfide ores. Geochemistry International, 48(5), 510-516.
  • Chelyabinsk Oblast
    • Kunashaksky District
Plotinskaya, O. Y., Grabezhev, A. I., & Seltmann, R. (2015). Fahlores compositional zoning in a porphyry-epithermal system: Biksizak occurrence, South Urals, Russia as an example. Geology of Ore Deposits, 57(1), 42-63.
    • Sosnovsky District
      • Bereznyakovskoe ore field
Plotinskaya, O. Y., Grabezhev, A. I., Groznova, E. O., Seltmann, R., & Lehmann, B. (2014). The Late Paleozoic porphyry–epithermal spectrum of the Birgilda–Tomino ore cluster in the South Urals, Russia. Journal of Asian Earth Sciences, 79, 910-931.
  • Chukotka Autonomous Okrug
    • Anadyrsky District
Zhuravkova, T. V., Palyanova, G. A., Kalinin, Y. A., Goryachev, N. A., Zinina, V. Y., & Zhitova, L. M. (2019). Physicochemical conditions of formation of gold and silver parageneses at the valunistoe deposit (Chukchi peninsula). Russian Geology and Geophysics, 60(11), 1247-1256.
Novoselov, K.A., Kotlyarov, V.A., Belogub, E.V. (2010): Silver sulfoselenide from ore of the Valunisty Au-Ag deposit, Chukchi Peninsula. Geology of Ore Deposits, 52(8): 811–814
    • Bilibinsky District
      • Vesenniy
Nagornaya, E. V., Baksheev, I. A., Bryzgalov, I. A., & Yapaskurt, V. O. (2012). Minerals of the Au-Ag-Pb-Te-Se-S system of porphyry-copper-molybdenum deposits from the Nakhodka ore field, Chukchi Peninsula, Russia. Moscow University Geology Bulletin, 67(4), 233-239.
    • Okhotsk-Chukotka belt
Beliaeva, T. V., Kolova, E. E., Savva, N. E., Glukhov, A. N., Palyanova, G. A., & Bortnikov, N. S. (2022). Mineral Composition and Physicochemical Conditions of Formation of the Pepenveem Epithermal Au–Ag Deposit (Chukchi Peninsula). Russian Geology and Geophysics, 63(3), 265-278.
Глухов, А. Н., & Тихомиров, П. Л. (2021). Эргувеемский рудный район Восточной Чукотки: влияние тектоники рудоносных вулканоструктур на состав золото-серебряной минерализации. Отечественная геология, (3-4), 52-59.
  • Kamchatka Krai
    • Bystrinsky District
      • Central Kamchatka mining district
Andreeva, E. D., Matsueda, H., Okrugin, V. M., Takahashi, R., & Ono, S. (2013). Au–Ag–Te Mineralization of the Low‐Sulfidation Epithermal Aginskoe Deposit, Central Kamchatka, Russia. Resource Geology, 63(4), 337-349.
    • Yelizovsky District
Okrugin, V., & Chernev, I. Correlation of Epithermal and Geothermal Deposits (an Example of Mutnovsky Geothermal Area, Southern Kamchatka). Proceedings World Geothermal Congress 2015
Tolstykh, Nadezhda, Shapovalova, Maria, Shaparenko, Elena, Bukhanova, Daria (2022) The Role of Selenium and Hydrocarbons in Au-Ag Ore Formation in the Rodnikovoe Low-Sulfidation (LS) Epithermal Deposit, Kamchatka Peninsula, Russia. Minerals, 12 (11) 1418 doi:10.3390/min12111418
Takahashi, R., Matsueda, H., & Okrugin, V. M. (2002). Hydrothermal gold mineralization at the Rodnikovoe deposit in South Kamchatka, Russia. Resource Geology, 52(4), 359-369.
[Der Aufschluss 1995:4 p.163-180]
  • Khabarovsk Krai
Fats’yanov, I. I., Khomich, V. G., & Boriskina, N. G. (2010, November). Hidden mineralogical and geochemical zonation of low-sulfide gold—silver mineralization (Mnogovershinnoe deposit, lower amur area). In Doklady Earth Sciences (Vol. 435, No. 1, pp. 1456-1459). SP MAIK Nauka/Interperiodica.
  • Magadan Oblast
    • Omsukchansky District
      • Ducat ore field
Thorne, Brent (n.d.) Personal communcation.
    • Severo-Evensky District
Volkov, A. V., Savva, N. E., Ishkov, B. I., Sidorov, A. A., Kolova, E. E., & Murashov, K. Y. (2021). Burgali Epithermal Au–Ag Deposit in the Paleozoic Kedon Volcanic Belt (Northeastern Russia). Geology of Ore Deposits, 63(1), 34-53.
Tauson, V. L., Kravtsova, R. G., Makshakov, A. S., Lipko, S. V., & Arsent’ev, K. Y. (2017). Contrasting Surficial Composition of Native Gold from Two Different Types of Gold Ore Deposits. Minerals, 7(8), 142.
  • Sverdlovsk Oblast
Vikentyev, I. V. (2015). Invisible and microscopic gold in pyrite: Methods and new data for massive sulfide ores of the Urals. Geology of ore deposits, 57(4), 237-265.
  • Tuva
    • Kyzylsky District
      • Kyzyl-Tashtyg ore area
Kuzhuget, R. V., Ankusheva, N. N., Kalinin, Y. A., Pirajno, F., & Reutsky, V. N. (2022). Mineralogical and Geochemical Peculiarities and PT Conditions of Ores from the Kyzyl-Tashtyg VMS polymetallic deposit, Eastern Tuva: Fluid Inclusion and S, O, C Isotopic data. Ore Geology Reviews, 104717.
Ankusheva, N. N., & Kuzhuget, R. V. (2017). PT Conditions of Gold Mineralization Formation in Ores From Kyzyl-Tashtyg VMS-Polymetallic Deposit, Eastern Tuva, Siberia. In Magmatism of the Earth and related strategic metal deposits (pp. 9-12).
  • Zabaykalsky Krai
    • Alexandrovo-Zavodsky District
Kiseleva, G. D., Kovalenker, V. A., Trubkin, N. V., Borisovsky, S. E., & Mokhov, A. V. (2008) RARE MINERALS OF In, Cd, Mo, AND W IN GOLD-BASE METAL VEINS OF THE BUGDAYA Au-Mo (W)-PORPHYRY DEPOSIT, EASTERN TRANSBAIKALIA RUSSIA. New Data on Minerals 43:13-22
 
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