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Quartz from Okhotsk Plate

Japan
 
  • Akita Prefecture
    • Akita City
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Daisen City
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Ohnishi, Masayuki, Shimobayashi, Norimasa (2011) Tsumebite from the Kisamori mine, Akita Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 106 (1) 51-56 doi:10.2465/jmps.090904
Minerals in Japan (Field Best Encyclopedia V. 15, 2003)
    • Kazuno City
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Copper Handbook 1911
[var. Ferruginous Quartz] www.petrovrareminerals.com/articles02q.html
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Nishimoto, Naoto, Yosuke Yamamoto, Saburo Yamagata, Toshifumi Igarashi, and Shingo Tomiyama. (2021) "Acid Mine Drainage Sources and Impact on Groundwater at the Osarizawa Mine, Japan" Minerals 11, no. 9: 998. https://doi.org/10.3390/min11090998
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Kitaakita City
      • Ani-machi
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Copper Handbook 1911
Bob Griffith specimen
    • Kosaka
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
www.mineralmundi.com/japan.htm
Nokleberg, W.J., ed., (2010), Metallogenesis and tectonics of northeast Asia: U.S. Geological Survey Professional Paper 1765, 624 p.
www.mineralmundi.com/japan.htm
Sato, T. (1968). Ore Deposit and Mechanism of its Formation of Uchinotai Wwstern Ore Body, Kosaka Mine, Akita Prefecture, Japan. Mining Geology, 18(91), 241-256.
Almeda, R.L. et al (1985) Journal of the Mining College, Akita University, Ser. A, Mining Geology, 6, #4, 293-321.
Urabe, T. (1978). Quartz simultaneously precipitated with Kuroko ores in the Uwamuki No. 4 deposit, Kosaka mine. Mining Geology, 28(151), 337-348.
Natural History Museum Vienna collection (specimen E 6202, SEM-EDS-analysed)
    • Odate
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Dr. Matsuo Nambu collection (curated by the Geological Survey of Japan)
Shunso Ishihara and Yuji Endo (2007): Bulletin of the Geological Survey of Japan 58(1/2), 7-22.
Shikazono, N., Hoshino, M., Utada, M., Nakata, M., and Ueda, A. (1998): Mineralium Deposita 33, 346-358.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Takeo Kato (1924) Japanese Journal of Geology and Geography, 3, #2, 59-69.
Yohei Ishikawa (1990) Journal of the Mining College, Akita University, Ser. A, 7, #3, 125-136.
Hideo Kuroda (1978) Kuroko deposits occurring in mudstone at the Matsuki mine, Akita Prefecture, northeast Japan. Mining Geology 28:313-323.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
MIYAZAKI, T., KATO, K., & IIDA, K. (1978). On the occurrence of the No. 11 ore deposit in the Shakanai mine. Mining Geology, 28(149), 151-162.
www.mineralmundi.com/japan.htm (USGS)
      • Tashiro
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Ohta-machi
[var. Chalcedony] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Semboku District
      • Kyohwa
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
      • Nishiki
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Yurihonjō City
      • Chokai
Kim, Y. U. (1994). Repeated mineralization ages and remobilization of elements in gold ore deposits from the Chonsan, Rumoh, and Chokei mines. Shigen-Chishitsu, 44(247), 339-352.
    • Yuzawa City
      • Ogachi
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Harada, Zyunpéi (1954) Chemical Analyses of Japanese Minerals (III) Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy = 北海道大學理學部紀要, 8(4):289-348
Petrov, Alfredo (n.d.) Personal Communication.
Copper Handbook 1911
  • Aomori Prefecture
Kitamine, M. & Mouri, T. (2001): Schulenbergite from Akitsu mine, Aomori Prefecture. Chigaku Kenkyu 49, 201-204. (in Japanese.)
    • Aomori City
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Goshogawara City
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Hachinohe City
Analyses by Dr Kazumi Yokoyama, National Science Museum, Tokyo
    • Higashitsugaru District
[var. Chalcedony] Chishitsu Chousajo (1902)
      • Imabetsu
[Chalcedony var. Agate] Masutomi Museum specimen (Kyoto)
    • Hirosaki City
[var. Ferruginous Quartz] Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Kamikita District
INOUE, A., & UTADA, M. (1991). Hydrothermal Alteration in the Kamikita Kuroko Mineralization Area. Mining Geology, 41(228), 203-218.
TAKEUCHI, T., NAMBU, M., SUZUKI, M., & OKADA, K. (1956). Germanium bearing black ores from the Kamikita mine, Aomori Prefecture. Mining Geology, 6(22), 231-243.
Plumlee, Geoffrey S., Whitehouse-Veaux, Pamela Heald (1994) Mineralogy, paragenesis, and mineral zoning of the Bulldog Mountain vein system, Creede District, Colorado. Economic Geology, 89 (8). 1883-1905 doi:10.2113/gsecongeo.89.8.1883
1996
v. 91
no. 1
p. 204-212
    • Minamitsugaru District
      • Ikarigaseki
Shimizu, M., Miyawaki, R., Kato, A., Matsubara, S., Matsuyama, F. and Kiyota, K. (1998) Tsugaruite, Pb4As2S7, a new mineral species from the Yunosawa mine, Aomori Prefecture, Japan. Mineralogical Magazine: 62(6): 793-799.
    • Mutsu City
Takeo Kato (1924) Japanese Journal of Geology and Geography, 3, #2, 59-69.
Ishibashi, Masao (1960) Au-Ag-tellurides from the Date mine, Hokkaido, Japan. Memoirs of the Faculty of Engineering, Hokkaido University, 11 (1) Hokkaido University. 73-84
Harada, Zyunpéi (1954) Chemical Analyses of Japanese Minerals (III) Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy = 北海道大學理學部紀要, 8(4):289-348
    • Nakatsugaru District
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
      • Nishimeya-mura
Masutomi Museum specimens
[var. Chalcedony] Norimasa Shimobayashi, Masayuki Takada, Kenji Tsuruta, Ryosuke Tsuruta (2018) Quartz pseudomorph in an unusual crystal shape from the Nishi-meya district, Aomori Prefecture, Japan. in abstracts of the 22nd IMA Meeting Melbourne p 470
    • Nishitsugaru District
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Plumlee, Geoffrey S., Whitehouse-Veaux, Pamela Heald (1994) Mineralogy, paragenesis, and mineral zoning of the Bulldog Mountain vein system, Creede District, Colorado. Economic Geology, 89 (8). 1883-1905 doi:10.2113/gsecongeo.89.8.1883
1996
v. 91
no. 1
p. 204-212
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
    • Sannohe District
      • Nanbu
        • Fukuchi-mura
Dr Kazumi Yokoyama analyses, National Science Museum, Tokyo.
  • Chiba Prefecture
    • Minamiboso city
Momma, Koichi, Ikeda, Takuji, Nagase, Toshiro, Kuribayashi, Takahiro, Honma, Chibune, Nishikubo, Katsumi, Takahashi, Naoki, Takada, Masayuki, Matsushita, Yoshitaka, Miyawaki, Ritsuro, Matsubara, Satoshi (2020) Bosoite, a new silica clathrate mineral from Chiba Prefecture, Japan. Mineralogical Magazine, 84 (6) 941-948 doi:10.1180/mgm.2020.91
XRD and Raman analyses by Marcus Origlieri.
  • Fukushima Prefecture
    • Adachi District
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Date District
      • Kawamata
Am Min 69:196-199
        • Iizaka Village (Iisaka)
SUENO, Shigeho, MATSUURA, Shigeru, BUNNO, Michiaki, KUROSAWA, Masanori (2002) Occurrence and crystal chemical features of protoferro-anthophyllite and protomangano-ferro-anthophyllite from Cheyenne Canyon and Cheyenne Mountain, U.S.A. and Hirukawa-mura, Suisho-yama, and Yokone-yama, Japan. Journal of Mineralogical and Petrological Sciences, 97 (4) 127-136 doi:10.2465/jmps.97.127
Kozo Nagashim & Akira Kato (1966) Chemical Studies of Minerals Containing Rarer Elements from the Far East District. LX. Thalenite from Suishoyama, Kawamata-machi, Fukushima Prefecture, Japan Bulletin of the Chemical Society of Japan 39:925-928
Introduction to Japanese Minerals (Geological Survey of Japan, 1970)
Petrov, Alfredo (n.d.) Personal Communication.
    • Higashishirakawa District
kato, A. (2009) Explanations of distributed specimens at the Ordinary Meeting of Mumeikai Group, #27, 418-419.
[var. Chalcedony] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Dr Yohachiro Okamoto (1876-1960) collection (curated by the Geological Survey of Japan)
    • Ishikawa District
      • Furudono
Miyashiro, A. (1958) Journal of the Faculty of Science, Tokyo University, sec.II, 11, 219.
      • Ishikawa town (Ishikawa-machi)
        • Nekonaki
Koji Koseki & Hanzo Gohara (1956) On the Pegmatite Deposits at Nekonaki Ishikawa Town, Fukushima Prefecture. Bulletin of the Geological Survey of Japan
Koji Koseki & Hanzo Gohara (1956) On the Pegmatite Deposits at Nekonaki Ishikawa Town, Fukushima Prefecture. Bulletin of the Geological Survey of Japan
Koji Koseki & Hanzo Gohara (1956) On the Pegmatite Deposits at Nekonaki Ishikawa Town, Fukushima Prefecture. Bulletin of the Geological Survey of Japan
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
[var. Smoky Quartz] Alfredo Petrov collection (ex- K. Watanabe collection)
    • Iwaki City
Matsubara, S., Kato, A., Shimizu, M., Sekiuchi, K., and Suzuki, M. (1996) Romeite from the Gozaisho mine, Iwaki, Japan. Mineralogical Journal 18, 155-160.
Amer. Mineral. 65:406 (1980)
S. Matsubara, A. Kato, K. Nagashima: Japan. Mineral. J. 9:383-391 (1979)
Shimizu, M., Kato, A., & Sakurai, K. I. (1993). Heyrovskýite, lillianite solid solution and galena from the Yakuki mine, Fukushima Prefecture, Japan. Shigen-Chishitsu, 43(240), 283-290.
Dr. Matsuo Nambu ore collection (curated at Geological Survey of Japan)
USGS Bulletin 1930
Shimizu, M., Kato, A., & Sakurai, K. I. (1993). Heyrovskýite, lillianite solid solution and galena from the Yakuki mine, Fukushima Prefecture, Japan. Shigen-Chishitsu, 43(240), 283-290.
    • Koriyama City
Matsubara, S., Miyawaki, R., Yokoyama, K., Momma, K., Shigeoka, M., and Hashimoto, E. (2013) Pyrochlore and microlite in a pegmatite at Atagoyama, Koriyama City, Fukushima Prefecture, Japan. Bulletin of the National Museum of Nature and Science, Ser. C, 39, 1–6.
Aoki, M. & Minato, H. (1980) Lattice constants of Wairakite as a function of chemical composition. American Mineralogist, 65, 1212-1216
      • Tadano
        • Osemachi
Y. Okazaki specimen and photo.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Minamiaizu District
[var. Amethyst] Amir Akhavan Collection
      • Tateiwa
Matsubara, S. (2003) Minerals in Japan (Field Best Encyclopedia, vol. 15, 251.
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Minamisōma City
    • Ōnuma District
[Chalcedony var. Agate] Takehiro Touge
    • Tabiro
Miyashiro, A. (1958) Journal of the Faculty of Science, Tokyo University, sec. II, 1, 219.
    • Takanuki
Uchiyama, Koji (1985) Dumortierite-Bearing Argillaceous Gneisses from the Abukuma Metamorphic Terrain, Northeast Japan. Jour. Fac. Sci., Hokkaido Univ., Ser. IV, vol. 21, no. 3, Aug. 1985. pp. 465-481.
Takahata, Hiroyuki
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Yama District
      • Nishiaizu-machi
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Chunxie Pu (1978): Geology and Prospecting 14(5), 74-79
  • Gunma Prefecture
    • Agatsuma District
      • Kusatsu
Mineralogical Journal Vol. 20 (1998) , No. 1 pp 1-8
Am Min 67:114-119
Oba, Takanobu (2008): Alabandite and wurtzite from Ishizu, Tsumagoi, Gunma, Japan. Gunma Daigaku Kyoikugakubu Kiyo, Shizenkagaku-hen 56, 27-36 (in Japanese).
Yoshikawa, Kazuo
    • Fujioka City
Hori, H., Nagashima, K., Yamada, M., Miyawaki, R., Marubashi, T. (1986) Ammonioleucite, a new mineral from Tatarazawa, Fujioka, Japan. American Mineralogist, 71 (7-8) 1022-1027
Hori
Ohe Rikosha specimens
    • Kanra District
Petrov, Alfredo (n.d.) Personal Communication.
Y. Okazaki collection
    • Katashina
Yamada, T. (2005) Suisyou, 17, 2-4.
    • Kiryu City
Min.Journ.Japan (1982) 11, 15-20
Fukuoka, M. (1981) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 24, #4, 207-252.
Matsubara Satoshi, Kato, Akira (1980) Nagashimalite, Ba4(V3+,Ti)4[(O,OH)2|Cl|Si8B2O27], a new mineral from the Mogurazawa mine, gumma prefecture, Japan. Mineralogical Journal, 10 (3) 122-130 doi:10.2465/minerj.10.122
      • Tsukubara mine
Nishio-Hamane, Daisuke, Yajima, Takeshi, Ikari, Issei, Ohki, Yoshiya, Hori, Hirofumi, Ohara, Yoshihiro (2023) Kiryuite and gunmaite, two new minerals from Tsukubara, Kiryu City, Gunma Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 118 (1) 230605 doi:10.2465/jmps.230605
Nishio-Hamane, Daisuke, Yajima, Takeshi, Ikari, Issei, Ohki, Yoshiya, Hori, Hirofumi, Ohara, Yoshihiro (2023) Kiryuite and gunmaite, two new minerals from Tsukubara, Kiryu City, Gunma Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 118 (1) 230605 doi:10.2465/jmps.230605
    • Midori City
      • Seta
Soeda, A., Takeno, S., & Watanabe, M. (1979). Mineralogical study on the wolframite series from the Chugoku district, Southwest Japan (I) Relationships between lattice parameters and chemical compositions. The Journal of the Japanese Association of Mineralogists, Petrologists and Economic Geologists, 74(10), 357-375.
Hayashi, S. (1961): Cosalite from the Hagidaira Mine, Gun'ma Prefecture, Japan. Mineral. J. (Tokyo) 3(3), 148-155.
Kato collection
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
    • Numata City
Yamada, Y., Shiobara, Y., Hirama, T.: "Melanotekite and willemite from Numata City, Gunma Prefecture, Japan."
    • Shimonita
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
  • Hokkaidō Prefecture
    • Hidaka Subprefecture
      • Hidaka District
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Hiyama Subprefecture
      • Hiyama District
        • Kaminokuni
ISHIYAMA, D., MATSUEDA, H., & MATSUBAYA, O. (1990). Copper-lead-zinc mineralization at the Hayakawa and Shakako deposits, Jokoku-Katsuraoka mining area, southwestern Hokkaido, Japan. JOURNAL OF MINERALOGY, PETROLOGY AND ECONOMIC GEOLOGY, 85(7), 341-353.
Katsu Kaneko (1956) Symposium del Manganeso, XX Congreso Geologico Internacional, Mexico D.F.
Ishiyama, D. et al (1982) Journal of the Mining College, Akita University, Ser. A, Mining Geology, 6, #2, 149-171.
Hasegawa, Kiyoshi (1979) Contact Metasomatic Zone and Massive Ore Body in Manganese Epithermal Deposits of the Jokoku Mine, Hokkaido, Japan. Jour. Fac. Sci., Hokkaido Univ., Ser. IV, vol. 19, nos. 1-2, March, 1979, pp. 265-272.
Hariya, Yu
Ishiyama, D., Matsueda, H., & Nakamura, T. (1989) Manganese, lead, zinc and silver mineralization at the Matahachi deposit of Jokoku mine, southwestern Hokkaido, Japan. Mining Geology, 39(218), 403-416.
Geology and Mineral Resources of Japan (Geological Survey of Japan, 1960
ISHIYAMA, D., MATSUEDA, H., & MATSUBAYA, O. (1990). Copper-lead-zinc mineralization at the Hayakawa and Shakako deposits, Jokoku-Katsuraoka mining area, southwestern Hokkaido, Japan. JOURNAL OF MINERALOGY, PETROLOGY AND ECONOMIC GEOLOGY, 85(7), 341-353.
      • Setana District
[Chalcedony var. Agate] Petrov, Alfredo (n.d.) Personal Communication.
[Chalcedony var. Agate] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Petrov, Alfredo (n.d.) Personal Communication.
    • Iburi Subprefecture
      • Date City
Yuningsih, E. T., Matsueda, H., & Syafrie, I. (2018). Ore–microscopy and Geochemistry of Gold–Silver Telluride Mineralization in Southwestern Hokkaido, Japan. Journal of Mineralogical and Petrological Sciences, 171017.
Yuningsih, E. T., & Matsueda, H. (2018). Study on the Cu–As–Sb–Ag–Bi–Pb–Te Sulfosalt Minerals from the Hydrothermal System of Southwestern Hokkaido, Japan. Resource Geology, 68(3), 209-226.
Honma, H., Nakata, M., Sakurai, K. (1989) Coloradoite and the associated minerals from the Daté mine, southwestern Hokkaido, Japan. Mineralogical Journal: 14(7): 299-302.
Ishibashi, Masao (1960) Au-Ag-tellurides from the Date mine, Hokkaido, Japan. Memoirs of the Faculty of Engineering, Hokkaido University, 11 (1) Hokkaido University. 73-84
      • Usu District
Africano, F., & Bernard, A. (2000). Acid alteration in the fumarolic environment of Usu volcano, Hokkaido, Japan. Journal of volcanology and geothermal research, 97(1), 475-495.
        • Sobetsu
Takeo Kato, Takeo Watanabe, Akira Nakamoto (1934) On the sulphur deposits associated with iron sulphide ore, found in the Quaternary Formation of Japan. Japan Journal of Geology and Geography, 15, 3-4, 287-324.
Africano & Bernard (2000), Jour. Volcanology & Geothermal Research: 97: 475-495.
      • Yufutsu District
        • Mukawa
Dr Kazumi Yokoyama analyses, National Science Museum, Tokyo.
    • Ishikari Subprefecture
      • Chitose City
Yuningsih, E. T., Matsueda, H., & Syafrie, I. (2018). Ore–microscopy and Geochemistry of Gold–Silver Telluride Mineralization in Southwestern Hokkaido, Japan. Journal of Mineralogical and Petrological Sciences, 171017.
Yuningsih, E. T., & Matsueda, H. (2018). Study on the Cu–As–Sb–Ag–Bi–Pb–Te Sulfosalt Minerals from the Hydrothermal System of Southwestern Hokkaido, Japan. Resource Geology, 68(3), 209-226.
Jajima, J. (1979) Neogene Mineralization of the Teine-Chitose District, West Hokkaido, Bulletin of the Geological Survey, Japan, 30(12), 645-674.
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
Yuningsih, E. T., & Matsueda, H. (2018). Study on the Cu–As–Sb–Ag–Bi–Pb–Te Sulfosalt Minerals from the Hydrothermal System of Southwestern Hokkaido, Japan. Resource Geology, 68(3), 209-226.
Shimizu, T., Matsueda, H., Ishiyama, D., Matsubaya, O. (1998) Genesis of epithermal Au-Ag mineralization of the Koryu mine, Hokkaido, Japan. Economic Geology: 93: 303-325.
SUGAKI, Asahiko, KITAKAZE, Arashi, ISOBE, Kiyoshi (1985) Johannsenite from the Koryu mine, Hokkaido, Japan. Mineralogical Journal, 12 (7) 341-348 doi:10.2465/minerj.12.341
      • Sapporo City
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
        • Minami-ku
Toru Shimizu,(2013) Oxygen isotopic study of vein quartz in Neogene-Quaternary overprinting hydrothermal systems in the Toyoha-Muine area, Hokkaido, Japan. Bull. Geol. Surv. Japan, vol. 64 (7/8), p. 191-200
Ishihara, S., & Matsueda, H. (2011). Chemical characteristics of the indium-polymetallic ores from the Toyoha mine, Hokkaido, Japan. Bulletin of the Geological Survey of Japan, 62(3/4), 131-142.
Eijun Ohta (1991) Polymetallic Mineralization at the Toyoha Mine, Hokkaido, Japan. Mining Geology 41:279-295
矢島淳吉, & 太田英順. (1979). Two-stage mineralization and formation process of the Toyoha deposits, Hokkaido, Japan. 鉱山地質, 29(157), 291-306.
Min. Jour. (Japan): 15:222-232.
        • Nishi-ku
Yuningsih, E. T., Matsueda, H., & Syafrie, I. (2018). Ore–microscopy and Geochemistry of Gold–Silver Telluride Mineralization in Southwestern Hokkaido, Japan. Journal of Mineralogical and Petrological Sciences, 171017.
Komuro, K., & Nakata, M. (2017). (Au, Ag) Te2 minerals from epithermal gold deposits in Japan. Resource Geology, 67(1), 22-34.
Nakata et al (1989) Mineralogical Magazine, 53, 387-388
Ishibashi, Masao (1960) Au-Ag-tellurides from the Date mine, Hokkaido, Japan. Memoirs of the Faculty of Engineering, Hokkaido University, 11 (1) Hokkaido University. 73-84
[var. Chalcedony] Imai, A., Matsueda, H., Yamada, R., Masuta, K. (1999) Polymetallic Mineralization at the Shin‐Ohtoyo Deposit, Harukayama District, Hokkaido, Japan. Resource Geology 49, 75-88.
島倉広至, 三浦貴生, 浜根大輔, 松枝大治, & 三浦裕行. (2015). 北海道手稲鉱山産 Te, Bi, As 鉱物. 北海道大学地球物理学研究報告, 78, 19-35.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Ishibashi, Masao (1960) Au-Ag-tellurides from the Date mine, Hokkaido, Japan. Memoirs of the Faculty of Engineering, Hokkaido University, 11 (1) Hokkaido University. 73-84
Harada, Zyunpéi (1954) Chemical Analyses of Japanese Minerals (III) Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy = 北海道大學理學部紀要, 8(4):289-348
    • Kamikawa Subprefecture
      • Kamii-mura
Suzuki, J. (1953) Explanatory text of the geological map of Japan, scale 1:50,000: Fukagawa (Asahikawa-48) (Geological Survey of Japan).
Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy = 北海道大學理學部紀要, 8(2): 175-210
      • Nakagawa (Teshio) District
        • Onnenai
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
      • Shimokawa
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Schoeman, P. (1996). Overview and comparison of Besshi-type deposits: ancient and recent (Doctoral dissertation, Rhodes University).
Bamba, Takeo (1985) Implication of the Composite Mineralization on the Massive Sulfide Deposits of the Shimokawa Mine. Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy
Vol.XXI, No.3 pp 363-404
    • Kitami Province
Bamba, T. (1980). Quartz-keratophyre including arfvedsonite-trachyte from the Tokoro Belt, Central Axial Zone of Hokkaido. Journal of the Geological Society of Japan, 86, 195-202.
Bamba, T., Iguchi, K., & Tanabe, K. (1979). A Large Scale Feeder Dyke Associated with Arfvedsonite Diabase and its Bearing on the Basement of the Tokoro Belt, Central Axial Zone of Hokkaido, Japan. 北海道大学理学部紀要= Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy, 19(1-2), 169-178.
    • Okhotsk Subprefecture
      • Kitami City
Togari, K., & Akasaka, M. (1987). Okhotskite, a new mineral, an Mn3+-dominant member of the pumpellyite group, from the Kokuriki mine, Hokkaido, Japan. Mineralogical Magazine, 51(62), 611-614.
Kenji Togari, Masahide Akasaka and Yoshiyuki Kawaguchi (1986) INESITE FROM THE KOKURIKI MINE, HOKKAIDO, JAPAN. Jour. Fac. Sci., Hokkaido Univ., Ser. IV, vol. 21, no. 4, Feb., 1986, pp. 669-677.
      • Monbetsu City
Tharalson, Erik, Monecke, Thomas, Reynolds, T., Zeeck, Lauren, Pfaff, Katharina, Kelly, Nigel (2019) The Distribution of Precious Metals in High-Grade Banded Quartz Veins from Low-Sulfidation Epithermal Deposits: Constraints from µXRF Mapping. Minerals, 9 (12) 740 doi:10.3390/min9120740
Tharalson, E.R.
Monecke, T.
Reynolds, T.J.
Zeeck, L.
Pfaff, K.
Nokleberg, W.J., ed., (2010) Metallogenesis and tectonics of northeast Asia: U.S. Geological Survey Professional Paper 1765, 624 p.
Okamoto collection (curated at the Geological Survey museum, Japan)
Petrov, Alfredo (n.d.) Personal Communication.
Mineralogical Journal Vol. 18 (1996) , No. 4 pp 147-153
      • Monbetsu District
        • Omu Camp
Zeeck, Lauren. (2018). The Role of Flashing in The Formation of High-Grade, Low-Sulfidation Epithermal Deposits: A Case Study from The Omu Camp in Hokkaido, Japaan. Master of Science Colorado School of Mines
[var. Chalcedony] Zeeck, Lauren. (2018). The Role of Flashing in The Formation of High-Grade, Low-Sulfidation Epithermal Deposits: A Case Study from The Omu Camp in Hokkaido, Japaan. Master of Science Colorado School of Mines
      • Tokoro District
Masutomi Museum specimen, Kyoto
    • Oshima Subprefecture
      • Futami District
        • Yakumo
Fukuoka, M. (1981) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 24, #4, 207-252.
      • Hakodate City
Dr Kazumi Yokoyama analyses, National Science Museum, Tokyo.
Watanabe, Y., Aoki, M., & Nakajima, N. (1996). Age and style of epithermal gold mineralization in the Minamikayabe area, southwestern Hokkaido. Shigen-Chishitsu, 46(260), 317-326.
Watanabe, Y., Aoki, M., & Nakajima, N. (1996). Age and style of epithermal gold mineralization in the Minamikayabe area, southwestern Hokkaido. Shigen-Chishitsu, 46(260), 317-326.
      • Ofuna river
Scott, A.-M., and Watanabe, Y. (1998): Mineralium Deposita 33, 568-578.
Watanabe, Y., Aoki, M., & Nakajima, N. (1996). Age and style of epithermal gold mineralization in the Minamikayabe area, southwestern Hokkaido. Shigen-Chishitsu, 46(260), 317-326.
Watanabe, Y., Aoki, M., & Nakajima, N. (1996). Age and style of epithermal gold mineralization in the Minamikayabe area, southwestern Hokkaido. Shigen-Chishitsu, 46(260), 317-326.
      • Yamakoshi District
Akira MATSUMURA (1961) Gold-Silver-Copper-Lead-Zinc-Manganese-bearing Pyrite Quartz Veins of Oshamambe Mine, Southwestern Hokkaido. Bulletin of the Geological Survey of Japan Vol.12:930-946.
Watanabe, Y., Aoki, M., & Nakajima, N. (1996). Age and style of epithermal gold mineralization in the Minamikayabe area, southwestern Hokkaido. Shigen-Chishitsu, 46(260), 317-326.
    • Rumoi Subprefecture
      • Tomamae District
Zeeck, Lauren. (2018). The Role of Flashing in The Formation of High-Grade, Low-Sulfidation Epithermal Deposits: A Case Study from The Omu Camp in Hokkaido, Japaan. Master of Sciencee Colorado School of Mines
N. Aikawa (1987) Journal of Geosciences, Osaka City University, 30, 1-13.
    • Shiribeshi Subprefecture
[var. Amethyst] Michel Meder field collected specimens
Katsu Kaneko (1956): Manganese Deposits of Japan
Symposium sobre Yacimientos de Manganeso, Mexico
      • Furuu district
[var. Amethyst] Michael Meder collection
Michael Meder field collected specimens
Nakamoto, a., Urasima, Y., Sugiura, S., Nakano, H., Yachi, T., & Tadokoro, K. (1969). Pyromorphite-mimetite minerals from the Otaru-Matsukura barite mine in Hokkaido, Japan. Mineralogical Journal, 6(1-2), 85-101.
      • Shakotan Peninsula
Fukuoka, M. (1981) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 24, #4, 207-252.
Yuningsih, E. T., Matsueda, H., & Syafrie, I. (2018). Ore–microscopy and Geochemistry of Gold–Silver Telluride Mineralization in Southwestern Hokkaido, Japan. Journal of Mineralogical and Petrological Sciences, 171017.
Yuningsih, E. T., & Matsueda, H. (2018). Study on the Cu–As–Sb–Ag–Bi–Pb–Te Sulfosalt Minerals from the Hydrothermal System of Southwestern Hokkaido, Japan. Resource Geology, 68(3), 209-226.
Ono, S., Hirai, K., Matsueda, H., & Kabashima, T. (2004). Polymetallic Mineralization at the Suttsu Vein‐type Deposit, Southwestern Hokkaido, Japan. Resource Geology, 54(4), 453-464.
      • Yoichi District
Chishitsu Chōsajo (1902) Outlines of the geology of Japan. Imperial Geological Survey. Tokyo
Introduction to Japanese Minerals (Geological Survey of Japan, 1970)
    • Sōya Subprefecture
      • Esashi District
        • Esashi
Sorulen, T. T., Takahashi, R., Tanaka, S., Suzuki, K., Imai, A., Watanabe, Y., & Kikuchi, S. (2019). Mineralogical and Geochemical Characteristics of the Utanobori Gold Deposit in Northern Hokkaido, Japan. Resource Geology.
Fukuoka, M. (1981) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 24, #4, 207-252.
    • Tokachi Subprefecture
      • Ashoro District
        • Ashoro-cho (Asyoro-tyo)
Suzuki, J. et al (1957) Journal of the Faculty of Science, Hokkaido University, Ser. 4, 9, 501-518.
      • Hiroo District
        • Hiroo-mura
Bamba, Takeo (1981) Nickeliferous Pyrrhotite Deposits and Ores from the Oshirabetsu Mine, Tokachi Province, Hokkaido. Jour. Fac. Sci., Hokkaido Univ., Ser. IV, vol. 19, no. 4, Februaly, 1981, pp. 415-438.
John Jaszczak specimen.
      • Nakagawa District
OWADA, M., NANAYAMA, F., SHIMURA, T., & Osanai, Y. (1992). Lamprophyre from the Nakanogawa group in the central zone of Hokkaido, northern Japan. Journal of Mineralogy, Petrology and Economic Geology, 87(2), 62-67.
Nemoto, T. (1934). Preliminary Note on Alkaline Rhyolites from Tokati, Hokkaido. Journal of the Faculty of Science, Hokkaido Imperial University. Ser. 4, Geology and mineralogy, 2(4), 299-321.
  • Ibaraki Prefecture
    • Higashiibaraki District
      • Shirosato-machi
Morishita, Yuichi, and Yoshiro Nishio. (2021) "Ore Genesis of the Takatori Tungsten–Quartz Vein Deposit, Japan: Chemical and Isotopic Evidence" Minerals 11, no. 7: 765. https://doi.org/10.3390/min11070765
Masukawa, K., Nishio, Y., & Hayashi, K. I. (2013). Lithium-strontium isotope and heavy metal content of fluid inclusions and origin of ore-forming fluid responsible for tungsten mineralization at Takatori mine, Japan. Geochemical Journal, 47(3), 309-319.
Soeda, A., Takeno, S., & Watanabe, M. (1979). Mineralogical study on the wolframite series from the Chugoku district, Southwest Japan (I) Relationships between lattice parameters and chemical compositions. The Journal of the Japanese Association of Mineralogists, Petrologists and Economic Geologists, 74(10), 357-375.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Kouno, M. & Watanabe, H. (2007) Chigaku Kenkyu, 56, #1, 11-16.
    • Hitachiōmiya City
[Chalcedony var. Agate] (Special exhibition organized by Masutomi Museum at Osaka show, April-May 2006)
    • Hitachiota City
Matsubara et al (1995) Mineralogical Journal, 17, 338-345
Petrov, Alfredo (n.d.) Personal Communication.
Akira Kato (2011) Reference informations on distributed specimens at the Ordinary Meeting of Mumeikai Group, No. 1 (April, 2011).
    • Kasama City
Petrov, Alfredo (n.d.) Personal Communication.
      • Iwama
M. Haruna et al (2002) Canadian Mineralogist, 40, 1069-1089.
    • Kitaibaraki City
      • Hanazono-river
Uchiyama, Koji (1985) Dumortierite-Bearing Argillaceous Gneisses from the Abukuma Metamorphic Terrain, Northeast Japan. Jour. Fac. Sci., Hokkaido Univ., Ser. IV, vol. 21, no. 3, Aug. 1985. pp. 465-481.
Takahata, Hiroyuki
Uchiyama, Koji (1985) Dumortierite-Bearing Argillaceous Gneisses from the Abukuma Metamorphic Terrain, Northeast Japan. Jour. Fac. Sci., Hokkaido Univ., Ser. IV, vol. 21, no. 3, Aug. 1985. pp. 465-481.
Takahata, Hiroyuki
    • Makabe District
      • Makabe-machi
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Taga District
      • Hitachi-machi
Schoeman, P. (1996). Overview and comparison of Besshi-type deposits: ancient and recent (Doctoral dissertation, Rhodes University).
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Takahagi City
[var. Amethyst] Nagashima,Otokichi(1960)Nihon Kigenso Koubutsu(Rare Earth Minerals in Japan) pp.327-328
Shiba, M. (1982) Journal of the Japan Association of Mineralogists, Petrologists and Economic Geologists, 77, 345-355.
  • Iwate Prefecture
    • Hachimantai City
Kamitani, M., Okumura, K., Teraoka, Y., Miyano, S., Watanabe, Y. (2007) Mineral Resources Map of East Asia, Geological Survey of Japan.
Iichiro Takahashi (1957) Studies on the Sulphur and Iron-Sulphides Deposits of the Matsuo Mine (2). Mining Geology 7:104-111
    • Ichinoseki City
      • Kawasaki-cho
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Kamaishi City
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Yoshihide Shiga (2009) A New Occurrence of Millerite in the Copper Sulphide Ores from the Nippo Ore Deposit of the Kamaishi Mine, Iwate Prefecture, Japan. Mining Geology 25:27-38
Economic Geology (1987) 82:1001-1018
Etsuo Uchida (1986) Relation between Zonal Arrangements of Skarns and Temperatures of Formation at the Kamaishi Mine, Northeastern Japan. Mining Geology, 36(3),195-208.
Etsuo Uchida (1986) Relation between Zonal Arrangements of Skarns and Temperatures of Formation at the Kamaishi Mine, Northeastern Japan. Mining Geology, 36(3),195-208.
Uchida, E. (1983) Grunerite from the Shinyama ore deposit, Kamaishi mine, Japan. Canadian Mineralogist, 21, 517-528.
Etsuo Uchida (1986) Relation between Zonal Arrangements of Skarns and Temperatures of Formation at the Kamaishi Mine, Northeastern Japan. Mining Geology, 36(3),195-208.
    • Karumai
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Kitakami City
Dr Yohachiro Okamoto (1876-1960) collection, curated by the Geological Survey of Japan.
      • Waga
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Copper Handbook 1911
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Kuji City
D Ishiyama, et al (2000) J. Min. Coll. Akita Univ., Ser. A, 3, no. 3, 105-127.
      • Yamagata
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Kunohe-gun
      • Hirono
        • Ono
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Karumai
[var. Ferruginous Quartz] Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Kunohe
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Noda
Watanabe T, Kato A, Ito J, Yoshimura T, Momoi H, Fukuda K (1982) Haradaite, Sr2V4+2[O2 Si4O12], from the Noda Tamagawa mine, Iwate Prefecture and the Yamato mine, Kagoshima Prefecture, Japan, Proceedings of the Japan Academy 58 B, 21-24
Katsu Kaneko (1956) Symposium del Manganeso, XX Congreso Geologico Internacional, Mexico D.F.
    • Kuzumaki
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Miyako City
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Kamineichi
Watanabe et al (1963) Kotoite, Mg3(BO3)2, from the Neichi mine, Iwate prefecture, Japan. Proceedings of the Japan Academy, series B, 39, 164-169.
Dr. Kameki Kinoshita collection
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Nishiwaga
      • Yuda
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Yoshihiro SEKINE, Hideo OTSU, Fumitoshi HIROWATARI, Hisamitsu HARADA and Mitsuo TANEMURA (1961) Study on the Kuroko-like Stockwork Copper Deposits of the Tsuchihata Mine, Iwate Prefecture Part 2. Emplacement of Ore Deposits. Bulletin of the Geological Survey of Japan Vol.12:573-586
Geological Survey of Japan (1960): Geology and Mineral Resources of Japan
Plumlee, Geoffrey S., Whitehouse-Veaux, Pamela Heald (1994) Mineralogy, paragenesis, and mineral zoning of the Bulldog Mountain vein system, Creede District, Colorado. Economic Geology, 89 (8). 1883-1905 doi:10.2113/gsecongeo.89.8.1883
1996
v. 91
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p. 204-212
    • Ofunato City
Yohei Shirose, Seiichiro Uehara (2017) Chemical compositions of tourmaline in Li pegmatite from Sakihama, Myokenzan, Nagatare, and Okueyama, Japan. JpGU-AGU Joint Meeting 2017
    • Oshu City
      • Esashi ward
Dr. Matsuo Nambu ore collection (curated at Geological Survey of Japan)
Harada, S., Suzuki, Y., Miyawaki, R., Momma, K., Shigeoka, M., Matsubara, S. (2017) Bi-bearing minerals at the Jishakuyama ore deposit of the Akagane mine, Iwate Prefecture, Japan.
    • Rikuzentakata City
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Hiroyasu Murakami and Shunso Ishihara (2005) Geochronology and geochemistry of the Tamayama gold deposit hosted in the Hikami granitic rocks, southern Kitakami Mountains, Japan. Bulletin of the Geological Survey of Japan 56:177-182
Ryoji Tanaka collection
Dr. Yohachiro Okamoto collection (conserved by the Geological Survey of Japan)
    • Shimohei District
      • Fudai
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Iwaizumi
Dr. Matsuo Nambu ore collection (curated at Geological Survey of Japan)
Kamitani, M., Okumura, K., Teraoka, Y., Miyano, S., Watanabe, Y. (2007) Mineral Resources Map of East Asia, Geological Survey of Japan.
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Tanohata
Miyahara, M., & Okamoto, A. (2013) Japan Association of Mineralogical Sciences. Elements
Mineral.Journ.Japan (1985) 12, 332-340
H. Momoi (1964) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 15, #1, 39-63.
H. Momoi (1964) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 15, #1, 39-63.
Nagase, Toshiro, Hori, Hidemichi, Kitamine, Mizuya, Nagashima, Mariko, Abduriyim, Ahmadjan, Kuribayashi, Takahiro (2012) Tanohataite, LiMn2Si3O8(OH): a new mineral from the Tanohata mine, Iwate Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 107 (3) 149-154 doi:10.2465/jmps.111130
    • Shiwa District
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Sumita-cho
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
      • Setamai
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Ishibashi, Masao (1960) Au-Ag-tellurides from the Date mine, Hokkaido, Japan. Memoirs of the Faculty of Engineering, Hokkaido University, 11 (1) Hokkaido University. 73-84
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Tono City
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
[var. Smoky Quartz] Petrov, Alfredo (n.d.) Personal Communication.
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
    • Waga District
      • Sawauchi
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Takeo Kato (1928) The Japanese Journal of Geology and Geography, 6, #1-2, 31-48.
  • Kanagawa Prefecture
    • Ashigarakami District
      • Yamakita
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Alfredo Petrov, field observations, May 2011.
    • Ashigarashimo District
      • Yugawara
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Petrov, Alfredo (n.d.) Personal Communication.
Petrov, Alfredo (n.d.) Personal Communication.
  • Miyagi Prefecture
    • Kesennuma City
Geology and Mineral Resources of Japan (Geological Survey of Japan, 1960), pp 187 & 207
      • Motoyoshi
Cristiana L. Ciobanu, John Mavrogenes, Nigel J. Cook and Masaaki Shimizu (2007) Au-Bi-Te melts: Annealing-quenching experiments on material from the Oya gold deposit (Japan). Geologian tutkimuskeskus, Opas 53 – Geological Survey of Finland, Guide 53, pp 15-22
Geology and Mineral Resources of Japan (Geological Survey of Japan, 1960)
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Kurihara City
Urabe, T. (1977) Partition of cadmium and manganese between coexisting sphalerite and galena from some Japanese epithermal deposits. Mineralium Deposita, 12 (3) 319-330 doi:10.1007/bf00206170
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Narita, E. (1961). Wall rock alteration in the kanoko vein Swarm, Hosokura Mine, Miyagi prefecture, north-east Japan. Journal of the Faculty of Science, Hokkaido University. Series 4, Geology and mineralogy= 北海道大學理學部紀要, 11(1), 59-75.
Nokleberg, W.J., ed., 2010, Metallogenesis and tectonics of northeast Asia: U.S. Geological Survey Professional Paper 1765, 624 p.
Yotaro Seki (1973) Distribution and Modes of Occurrence of Wairakites in the Japanese Island Arc The Journal of the Geological Society of Japan 79:521-527
Seki, Y. and Okumura, K. (1968) Yugawaralite from Onikobe active geothermal area, Northeast Japan. Jour. Japan. Assoc. Min. Pet. Economic Geology, 60, #1, 27-33.
    • Sendai City
Kato, A. (2009) Explanations of distributed specimens at the Ordinary Meeting of Mumeikai Group, #27, 420-421.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Shiroishi City
[var. Amethyst] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
  • Nagano Prefecture
    • Chiisagata district
Fujii, N., & Inoue, H. (1971). Geologic Features and Classification of the Pyrophyllite Deposits in the Hokushin District, Central Japan. Mining Geology, 21(110), 407-417.
    • Chino City
Harada, Akira, Takashi Yamada, Satoshi Matsubara, Ritsuro Miyawaki, Masako Shigeoka, Hiroshi Miyajima, and Hiroshi Sakurai. (2012) "Dukeite from the Kinkei mine, Chino City, Nagano Prefecture, Japan." Bull. Natl. Mus. Nat. Sci., Ser. C, 38, pp. 1–5, December 22, 2012
Akira Harada, Takashi Yamada, Satoshi Matsubara, Ritsuro Miyawaki, Masako Shigeoka, Hiroshi Miyajima, Hiroshi Sakurai (2010) Bi-bearing secondary minerals from the Kinkei mine, Chino City, Nagano Prefecture, Japan. (conf. abstr. available at: https://www.jstage.jst.go.jp/article/jakoka/2010/0/2010_0_75/_pdf )
Nakamura, H., et al (2009) Suisyou, 21, 5-6.
Satoshi Matsubara, Ritsuro Miyawaki, Kazumi Yokoyama, Masako Shigeoka, Akira Harada, Takashi Yamada, Kazuko Kawashima, Koichi Shimizu, Hiroshi Miyajima (2010) Bi-Te minerals from the Mukaidani mine, Chino City, Nagano Prefecture, Japan. (Meeting of the Mineralogical Society of Japan)
Fujii, N., & Inoue, H. (1971). Geologic Features and Classification of the Pyrophyllite Deposits in the Hokushin District, Central Japan. Mining Geology, 21(110), 407-417.
    • Minamisaku District
      • Kawakami-mura
Terashima, Y., Ushiyama, N., Shimizu, K. (2004) Chigaku Kenkyu, 53, 1, 29-32.
Petrov, Alfredo (n.d.) Personal Communication.
Petrov, Alfredo (n.d.) Personal Communication.
      • Kitaaiki village
Petrov, Alfredo (n.d.) Personal Communication.
      • Sakuho
        • Kaize-mura
Sakurai collection
Alfredo Petrov specimens, from Yamamoto collection.
    • Shimotakai District
Fujii, N., & Inoue, H. (1971). Geologic Features and Classification of the Pyrophyllite Deposits in the Hokushin District, Central Japan. Mining Geology, 21(110), 407-417.
  • Niigata Prefecture
Dr Yohachiro Okamoto (1876-1960) collection (curated by the Geological Survey of Japan)
[var. Chalcedony] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Naotatsu Shikazono & Masaaki Shimizu (1988) Electrum: Chemical composition, Mode of occurrence, and Depositional environment. Bull 32 The University Museum, The University of Tokyo
    • Higashikambara District
      • Aga
IMAI, N., & WATANABE, K. (1972). Tosudite-bearing Clay Associated with Fluorspar Deposits of the Igashima Mine, Niigata Prefecture, Northeastern Japan. Mining Geology, 22(111), 43-66.
        • Kamikawa village
Matsubara, S. (2003) Minerals in Japan (Field Best Encyclopedia, vol. 15, 252.
        • Kanose
University of Tokyo collection
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Copper Handbook 1911
[var. Amethyst] Minerals in Japan, p. 251 (Field Best Encyclopedia, vol. 15)
        • Mikawa-mura
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
[var. Chalcedony] AM Mizunaka Collection
    • Minamiuonuma City
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
Hiroaki Tano specimens
    • Niigata City
Tschernich, Rudy W. (1992) Zeolites of the World. Geoscience Press, Inc., Phoenix, Arizona. 567pp.
    • Nishikanbara District
      • Yahiko-mura
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Osudo
Takahisa Yoshimura & Yujin Ishizuka (1989) Ferrierite in a hydrothermal alteration zone around the murakami sericite deposit. Journal of the Clay Science Society of Japan (in Japanese)
29:179-186
    • Sado City
Tharalson, Erik, Monecke, Thomas, Reynolds, T., Zeeck, Lauren, Pfaff, Katharina, Kelly, Nigel (2019) The Distribution of Precious Metals in High-Grade Banded Quartz Veins from Low-Sulfidation Epithermal Deposits: Constraints from µXRF Mapping. Minerals, 9 (12) 740 doi:10.3390/min9120740
Nokleberg, W.J., ed., (2010), Metallogenesis and tectonics of northeast Asia: U.S. Geological Survey Professional Paper 1765, 624 p.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Tharalson, E.R.
Monecke, T.
Reynolds, T.J.
Zeeck, L.
Pfaff, K.
    • Shibata City
[var. Chalcedony] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
[var. Chalcedony] Chishitsu Chousajo (1902)
    • Uetsu
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Izumino, Y., & Nakashima, K. (2015). Bismuth minerals from the W–Mo–Sn deposits hosted in the Iwafune granitoids, Niigata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 110(6), 300-312.
Soeda, A., Takeno, S., & Watanabe, M. (1979). Mineralogical study on the wolframite series from the Chugoku district, Southwest Japan (I) Relationships between lattice parameters and chemical compositions. The Journal of the Japanese Association of Mineralogists, Petrologists and Economic Geologists, 74(10), 357-375.
    • Uonuma City
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
  • Saitama Prefecture
    • Chichibu City
Petrov, Alfredo (n.d.) Personal Communication.
      • Ohtaki-mura
        • Nakatsugawa
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Harada, K., Kodama, H., & Sudo, T. (1965). New mineralogical data for xanthophyllite from Japan. The Canadian Mineralogist, 8(2), 255-262.
Harada, K., Sakamoto, O., Nakao, K., & Nagashima, K. (1970). Bournonite from Daikoku, Chichibu Mine, Saitama, Japan. Mineralogical Journal, 6(3), 186-188.
Alfredo Petrov, field observations, june 2011.
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
      • Urayama
K. Nishikubo, T. Yamada, A. Harada, M. Takizawa, K. Tange, Y. Kosuge, R. Miyawaki, and S. Matsubara (2005) "Rambergite from the Hirogawara mine, Urayama, Chichibu City, Saitama Prefecture, Japan"
    • Hanno City
Satoshi Matsubara (1981) Taneyamalite, (Na, Ca)(Mn2+,Mg,Fe3+,Al)12Si12 (O,OH)44, a New Mineral from the Iwaizawa Mine, Saitama Prefecture, Japan. Mineralogical Magazine 44:51-53.
Petrov, Alfredo (n.d.) Personal Communication.
Kato, A. (2010) Mumeikai Group meeting, No. 30.
    • Hidaka City
Akira Kato (2009) Explanations of distributed specimens at the Ordinary Meeting of Mumeikai Group, No. 28 (November 2009).
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
  • Shizuoka Prefecture
    • Fuji City
      • Fujikawa-cho
Analyses by Dr Kazumi Yokoyama, National Science Museum, Tokyo
    • Numazu City
Akira Kato (2009) Explanations of distributed specimens at the Ordinary Meeting of Mumeikai Group, No. 28 (November 2009).
  • Tochigi Prefecture
Färber, Gunnar (n.d.) Personal Communication, Gunnar Färber Mineralien.
    • Kanuma City
      • Awano
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
Frank K. Mazdab collection (thin section FKM-190)
Matsubara, S., Kato, A., Miyawaki, R., Komuro, Y. and Okada, Y. (2007) Natronambulite from the Dohnoiri mine, Kanuma City, Tochigi Prefecture, Japan. Bulletin of the National Museum of Natural Sciences, Ser. C. 33, 1-5.
Petrov, Alfredo (n.d.) Personal Communication.
Mayumi Yoshinaga (1963) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 14, 1, 1-22.
Akira Kato (undated manuscript): Country rock and Minerals of the Kaso mine, Kanuma City, Tochigi Prefecture. (in japanese)
Yotaro Seki (1973) Distribution and Modes of Occurrence of Wairakites in the Japanese Island Arc The Journal of the Geological Society of Japan 79:521-527
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
    • Nikko City
      • Ashio
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Copper Handbook 1911
Copper Handbook 1911
Watanabe, T. and Kato, A. (1961) Manganpyrosmalite from the Kyurazawa mine, Tochigi prefecture. Mineralogical Journal, 3, #3, 130-138.
Kato, A., Shimizu, M., Okada, Y., Komuro, Y., Takeda, K. (1994): Vanadium-bearing Spessartine and Allantie in the Manganese-iron Ore from the Odaki Orebody of the Kyurazawa Mine, Ashio Town, Tochigi Prefecture, Japan. Bull. Nat. Sci. Mus., Tokyo, Ser. C.: 20(1), 1-12
      • Imaichi
Petrov, Alfredo (n.d.) Personal Communication.
      • Kuriyamamura
Shimizu, M., Matsubara, S., Shimizu, M., Kyouno, Y., Harada, A., & Cook, N. J. (2007). High-grade Ag–Cu–Sn–In mineralization in the Nishizawa-Ashio area, Tochigi Prefecture, central Japan. Geochim. Cosmochim. Acta, 71(suppl 1).
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Fukuoka, M. (1981) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 24, #4, 207-252.
[var. Chalcedony] Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Shioya District
      • Shioya
Y. Okazaki collection
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
    • Utsunomiya City
[var. Amethyst] Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
  • Tokyo Metropolis
    • Nishitama district
      • Okutama-cho
University of Tokyo collection
Petrov, Alfredo (n.d.) Personal Communication.
Bull. Kanagawa pref. Mus. (Nat. Sci.), 22, 25-32 (1993)
Matsubara, Satoshi, Miyawaki, Ritsuro, Yokoyama, Kazumi, Shimizu, Masaaki, Imai, Hiroyuki (2004) Tokyoite, Ba2Mn3+(VO4)2(OH), a new mineral from the Shiromaru mine, Okutama, Tokyo, Japan. Journal of Mineralogical and Petrological Sciences, 99 (6) 363-367 doi:10.2465/jmps.99.363
  • Yamagata Prefecture
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
    • Kitamurayama District
      • Oishida
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Dr. Matsuo Nambu collection (curated at Geological Survey of Japan)
Fukuoka, M. (1981) Memoirs of the Faculty of Science, Kyushu University, Series D, Geology, 24, #4, 207-252.
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
Copper Handbook 1911
    • Nishimurayama District
      • Nishikawa
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Izumino, Y., Nakashima, K., & Nagashima, M. (2014). Cuprobismutite group minerals (cuprobismutite, hodrušhite, kupčíkite and padĕraite), other Bi–sulfosalts and Bi–tellurides from the Obari mine, Yamagata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 109(4), 177-190.
Yuya Izumino, Kazuo Nakashima, Mariko Nagashima (2013) Makovickyite and cupromakovickyite from the Obari mine, Yamagata Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 108, #2 (April 2013), 94-100.
Urabe, T. (1977) Partition of cadmium and manganese between coexisting sphalerite and galena from some Japanese epithermal deposits. Mineralium Deposita, 12 (3) 319-330 doi:10.1007/bf00206170
Nambu ore collection (curated at Geological Survey of Japan)
    • Yonezawa City
Kamitani, M., Okumura, K., Teraoka, Y., Miyano, S., Watanabe, Y. (2007) Mineral Resources Map of East Asia, Geological Survey of Japan.
Urabe, T. (1977) Partition of cadmium and manganese between coexisting sphalerite and galena from some Japanese epithermal deposits. Mineralium Deposita, 12 (3) 319-330 doi:10.1007/bf00206170
Dr. Matsuo Nambu ore collection (curated at Geological Survey of Japan)
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
  • Yamanashi Prefecture
[var. Rock Crystal] Chishitsu Chousajo (1902)
      • Hokuto City
        • Sutama-cho
          • Hachiman
(specimens in numerous japanese collections)
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
          • Masutomi
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
      • Kofu City
Quartz, vol. 18 (April 2006), cover photo
        • Kurobera
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
Mineralogical Journal Vol. 20 (1998) , No. 4 pp 179-187
Dana 7: II : 1091
(innumerable specimens in many Japanese museums and private collections)
[var. Amethyst] AM Mizunaka Collection
      • Koshu City
        • Enzan
Dr. Kameki Kinoshita collection (curated at Geological Survey of Japan)
Sadanaga, Ryoichi, Bunno, Michiaki (1974) The Wakabayashi Mineral Collection. Bulletin 7. The University Museum, The University of Tokyo
      • Yamanashi City
        • Makioka-cho
King, Van (n.d.) Personal communcation.
    • Koshu City
Petrov, Alfredo (n.d.) Personal Communication.
    • Minami-Alps City
      • Kohsai
A. Kato et al. , Bull. Minéral., 1981, 104, pp. 396-399, France.
    • Nakakoma district
Chishitsu Chousajo (1902)
    • Nishi-Yamanashi
Chishitsu Chousajo (1902)
    • Otsuki City
Akira Kato (2011) Reference informations on distributed specimens at the Ordinary Meeting of Mumeikai Group, No. 1 (April, 2011).
Mineralogical Journal Vol. 12 (1984) , No. 1 pp 6-14
    • Yamanashi City
Jambor, J.L., Grew, E.S., Roberts, A.C. (2000) New mineral names. American Mineralogist: 85(10): 1561–1565.
Hawthorne, F. C., Selway, J. B., Kato, A., Matsubara, S., Shimizu, M., Grice, J. D., Vajdak, J. (1999) Magnesiofoitite, ◻(Mg2Al)Al6(Si6O18)(BO3)3(OH)4, a new alkali-deficient tourmaline. The Canadian Mineralogist, 37 (6) 1439-1443
Pacific Ocean
 
  • Sea of Japan
    • Honshu Island borderland
[var. Chalcedony] Markov, Y.D., Mozherovskii, A.V., Derkachev, A.N., Barinov, N.N., and Sereda, N.A. (2002): Lithology and Mineral Resources 37(2), 121-129.
Russia
 
  • Kamchatka Krai
    • Bystrinsky District
      • Central Kamchatka mining district
Okrugin, V. M., Andreeva, E. D., Kim, A. U., Moskaleva, S. V., Okrugina, A. M., Filosofova, T. M., ... & Kudaeva, S. S. (2015). Zeolites of the Modern and Paleo-Hydrothermal Systems on Kamchatka. Zeolites, 19, 25.
Okrugina, V. and Elena Andreeva (2014) Volcanic-related epithermal deposits in Kamchatka volcanic arc (North-East of Pacific region). in Abstract Volume IAGR Conference Series No. 20, pp.107–109
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.
Bonev, I. K., Petrunov, R., Cook, N. J., & Ciobanu, C. L. (2005). Kostovite and its argentian varieties: Deposits and mineral associations. Geochem. Mineral. Petrol.(Bulg. Acad. Sci.), 42, 1-22.
        • Baranyevskoe ore field
Tolstykh, Nadezhda, Bukhanova, Daria, Shapovalova, Maria, Borovikov, Andrey, Podlipsky, Maksim (2021) The Gold Mineralization of the Baranyevskoe Au-Ag Epithermal Deposit in Central Kamchatka. Minerals, 11 (11) 1225 doi:10.3390/min11111225
Okrugin, V. M., Andreeva, E. D., Kim, A. U., Moskaleva, S. V., Okrugina, A. M., Filosofova, T. M., ... & Kudaeva, S. S. (2015). Zeolites of the Modern and Paleo-Hydrothermal Systems on Kamchatka. Zeolites, 19, 25.
Okrugina, V. and Elena Andreeva (2014) Volcanic-related epithermal deposits in Kamchatka volcanic arc (North-East of Pacific region). in Abstract Volume IAGR Conference Series No. 20, pp.107–109
Andreeva, E. (2013). Genesis of precious metal mineralization in the Central Kamchatka, Far East of Russia [an abstract of dissertation and a summary of dissertation review].
Soloviev, S. G., Kryazhev, S. G., Shapovalenko, V. N., Collins, G. S., Dvurechenskaya, S. S., Bukhanova, D. S., ... & Voskresensky, K. I. (2021). The Kirganik alkalic porphyry Cu-Au prospect in Kamchatka, Eastern Russia: A shoshonite-related, silica-undersaturated system in a Late Cretaceous island arc setting. Ore Geology Reviews, 128, 103893.
Sidorov, E. G., Ignatyev, E. K., & Chubarov, V. M. (2017, August). First find of platinum group metals in the ore of Kirganik copper–porphyry deposit (Kamchatka). In Doklady Earth Sciences (Vol. 475, No. 2, pp. 883-886). Pleiades Publishing.
    • Koryak Okrug
      • Karaginsky District
Anastasiya SERGEEVA, (2023) Secondary minerals in basalts of the Evevpenta gold occurrence (North Kamchatka, Russia) as indicators of ore forming processes. Earth Science Frontiers, 30 (5) 450-468
Sidorov, Evgeny G., Borovikov, Andrey A., Tolstykh, Nadezhda D., Bukhanova, Daria S., Palyanova, Galina A., Chubarov, Valery M. (2020) Gold Mineralization at the Maletoyvayam Deposit (Koryak Highland, Russia) and Physicochemical Conditions of Its Formation. Minerals, 10 (12) 1093 doi:10.3390/min10121093
Плутахина, Е. Ю., & Шишканова, К. О. СЕРНЫЕ РУДЫ–ОДИН ИЗ ПЕРСПЕКТИВНЫХ ВИДОВ СЫРЬЯ ГОРНОРУДНОЙ ПРОМЫШЛЕННОСТИ КАМЧАТСКОГО КРАЯ.
Sidorov, E.G.
Borovikov, A.A.
Tolstykh, N.D.
Bukhanova, D.S.
Palyanova, G.A.
Kasatkin, Anatoly V., Nestola, Fabrizio, Plášil, Jakub, Sejkora, Jiří, Vymazalová, Anna, Škoda, Radek (2023) Tolstykhite, Au3S4Te6, a new mineral from Maletoyvayam deposit, Kamchatka peninsula, Russia. Mineralogical Magazine, 87 (1) 34-39 doi:10.1180/mgm.2022.109
Tolstykh, , Palyanova, , Bobrova, , Sidorov, (2019) Mustard Gold of the Gaching Ore Deposit (Maletoyvayam Ore Field, Kamchatka, Russia) Minerals, 9 (8) 489 doi:10.3390/min9080489
Spiridonov, E. M., Ivanova, Y. N., & Yapaskurt, V. O. (2014, September). Selenium-bearing goldfieldite and fischesserite AuAg^ sub 3^ Se^ sub 2^-petzite AuAg^ sub 3^ Te^ sub 2^ solid solutions in ores of the Ozernovskoe volcanogenic deposit (Kamchatka). In Doklady Earth Sciences (Vol. 458, No. 1, p. 1139). Springer Science & Business Media.
Spiridonov, E. M., Filimonov, S. V., & Bryzgalov, I. A. (2009, April). Solid solution fisnhesserite-naumannite (Ag, Au) 2 Se in ores of the volcanogenic gold deposit Ozernovskoye, Kamchatka. In Doklady Earth Sciences (Vol. 425, No. 2, pp. 415-418). SP MAIK Nauka/Interperiodica.
V.A. Kovalenker, O.Yu. Plotinskaya (2005): Te and Se mineralogy of Ozernovskoe and Prasolovskoe epithermal gold deposits, Kuril – Kamchatka volcanic belt. Geochemistry, Mineralogy and Petrology 43, 118-123. [http://www.geology.bas.bg/mineralogy/gmp_files/gmp43/Kovalenker.pdf]
      • Tigilsky district
        • Cape Tevi
[Chalcedony var. Agate] Svetova, Evgeniya N., Palyanova, Galina A., Borovikov, Andrey A., Posokhov, Viktor F., Moroz, Tatyana N. (2023) Mineralogy of Agates with Amethyst from the Tevinskoye Deposit (Northern Kamchatka, Russia) Minerals, 13 (8) doi:10.3390/min13081051
[var. Amethyst] Rascheskin EV Flashes of the North. Eastern Siberia through the eyes of a geologist. - Ekaterinburg: GRAFO Studio, 2004.
    • Milkovsky District
      • Tolbachik Volcanic field
        • Great Fissure eruption (Main Fracture)
          • Northern Breakthrough (North Breach)
Bykova, E. Yu. (1998): First finding of exhalative johillerite (Kamchatka). Doklady Akademii Nauk 361, 795-798.
Glavatskikh, S. F.
Chayka, Ivan F., Nikolay I. Baykov, Vadim S. Kamenetsky, Anton V. Kutyrev, Evgenii V. Pushkarev, Adam Abersteiner, and Vasily D. Shcherbakov. (2023) "Volcano–Plutonic Complex of the Tumrok Range (Eastern Kamchatka): An Example of the Ural-Alaskan Type Intrusion and Related Volcanic Series" Minerals 13, no. 1: 126. https://doi.org/10.3390/min13010126
    • Ust-Bolsheretsky District
      • Dukuk complex
Novakov, R. M., Kungurova, V. E., & Moskaleva, S. V. (2021). Formation conditions of noble metal mineralization in sulfide cobalt-copper-nickel ores of Kamchatka (on the example of Annabergitovaya Schel ore occurrence). Записки Горного института, 248, 209-222.
Rychagov, S. N., Sergeeva, A. V., & Chernov, M. S. (2017, November). Specific mineral associations of hydrothermal shale (South Kamchatka). In Doklady Earth Sciences (Vol. 477, pp. 1301-1306). Pleiades Publishing.
Frolova, J. V., Ladygin, V. M., & Rychagov, S. N. (2010, April). Petrophysical alteration of volcanic rocks in hydrothermal systems of the Kuril-Kamchatka Island Arc. In Proceedings World Geothermal Congress (pp. 1-7).
    • Ust-Kamchatsky District
      • Bezymyannyi Volcano
    • Yelizovsky District
Okrugin, V. M., Andreeva, E. D., Kim, A. U., Moskaleva, S. V., Okrugina, A. M., Filosofova, T. M., ... & Kudaeva, S. S. (2015). Zeolites of the Modern and Paleo-Hydrothermal Systems on Kamchatka. Zeolites, 19, 25.
Ono, Shuji (2007): Epithermal gold-​silver mineralization of the Asachinskoe deposit in southern Kamchatka, Russia. Resource Geology 57(4), 354-373.
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.
Takahashi, Ryohei
Natsueda, Hiroharu
Okrugin, Victor M.
Kaminsky, F. V., Wirth, R., Anikin, L. P., Morales, L., & Schreiber, A. (2016). Carbonado-like diamond from the Avacha active volcano in Kamchatka, Russia. Lithos, 265, 222-236.
      • Kronotsky Reserve
Kyle, J. E., Schroeder, P. A., & Wiegel, J. (2007). Microbial silicification in sinters from two terrestrial hot springs in the Uzon Caldera, Kamchatka, Russia. Geomicrobiology Journal, 24(7-8), 627-641.
Active Volcanoes of Kamchatka, vol 2, p 140, S.A. Fedotov
Sergeeva, A., & Kiryukhin, A. (2019). Secondary minerals in the geyserites of the Geysers Valley (Kamchatka). In E3S Web of Conferences (Vol. 98, p. 08019). EDP Sciences.
Sergeeva, A., & Kiryukhin, A. (2019). Secondary minerals in the geyserites of the Geysers Valley (Kamchatka). In E3S Web of Conferences (Vol. 98, p. 08019). EDP Sciences.
[var. Chalcedony] Okrugin, V. M. (2004). Miocene to Quaternary center volcanic, hydrothermal and ore-forming activity in the Southern Kamchatka. In Metallogeny of the Pacific Northwest (Russian Far East)-Tectonics, Magmatism and Metallogeny of Active Continental Margin, Interim IAGOD Conference, Excursion Guidebook, Dalnauka, Vladivostok, 2004 (pp. 147-176).
[Der Aufschluss 1995:4 p163-180]
Bortnikova, S. B., Bortnikova, S. P., Manstein Yu, A., Kiryuhin, A. V., Vernikovskaya, I. V., & Palchik, N. A. (2009, February). Thermal springs hydrogeochemistry and structure at North-Mutnovskoe fumarole field (South Kamchatka, Russia). In Proceedings, thirty–fourth workshop on geothermal reservoir engineering. Stanford University, Stanford, CA, pp SGP-TR-187.
Bortnikova, S. B., Bessonova, E. P., Gavrilenko, G. M., Vernikovskaya, I. V., Bortnikova, S. P., & Palchik, N. A. (2008). HYDROGEOCHEMISTRY OF THERMAL SOURCES, MUTNOVSKY VOLCANO, SOUTH KAMCHATKA (RUSSIA). In Proceedings of the 33rd workshop on geothermal reservoir engineering, Stanford University, Stanford, SGP-TR-185.
Frolova, J. V., Ladygin, V. M., & Rychagov, S. N. (2010, April). Petrophysical alteration of volcanic rocks in hydrothermal systems of the Kuril-Kamchatka Island Arc. In Proceedings World Geothermal Congress (pp. 1-7).
[var. Chalcedony] [Der Aufschluss 1995:4 p.163-180]
  • Magadan Oblast
Voroshin, S.V., Tyukova, E.E., and Gibsher, N.A. (2006): Geology of Ore Deposits 48(3), 215-236.
Goryachev, N. A. and M. L. Gelman (2001) Granitoids of the Okhotsk-Kolyma Divide and Related Ore Mineralization. pp5-28 in Khanchuk, A.I., Gonevchuk, G.A. & Seltmann, R. (Eds) Metallogeny of the Pacific Northwest (Russian Far East): Tectonics, Magmatism and Metallogeny of Active Continental Margins. IAGOD Guidebook series 11, Dalnauka Publishing House, Vladivostok 2004, 176 p
Sidorov, A. A., & Eremin, R. A. (1994). Metallogeny and gold lode deposits of northeastern Russia. ICAM-94 proceedings, 247-256.
    • Omchak gold field
Savva, Natalia E., Raisa G. Kravtsova, Galina S. Anisimova, and Galina A. Palyanova. (2022) "Typomorphism of Native Gold (Geological-Industrial Types of Gold Deposits in the North-East of Russia)" Minerals 12, no. 5: 561. https://doi.org/10.3390/min12050561
Goryachev, N.A., Vikent’eva, O.V., Bortnikov, N.S., Prokof’ev, V.Y., Alpatov, V.A., and Golub, V.V. (2008): Geology of Ore Deposits 50(5), 362-390.
Eilu, Pasi (2003) Exploration for orogenic gold deposits. Fennoscandian Exploration and Mining. Rovaniemi.
Aristov, V. V., Grigorieva, A. V., Savchuk, Y. S., Sidorova, N. V., & Sidorov, V. A. (2021). Forms of Gold and Some Typomorphic Characteristics of Native Gold of the Pavlik Orogenic Deposit (Magadan Oblast). Geology of Ore Deposits, 63(1), 1-33.
    • Omsukchansky District
      • Engteri ore cluster
Palyanova, G.A., Savva, N.E., Zhuravkova, T.V., Kolova, E.E. (2016): Gold and silver minerals in low-sulfidaton ores of the Julietta deposit (northeastern Russia). Russian Geology and Geophysics: 57: 1171-1190
imcg.wr.usgs.gov (n.d.) http://imcg.wr.usgs.gov/usbmak/mej3.html.
    • Sinegorye
imcg.wr.usgs.gov (n.d.) http://imcg.wr.usgs.gov/usbmak/mej3.html.
    • Srednekan ore field
Volkov, A.V., Egorov, V.N., Prokof’ev, V.Y., Sidorov, A.A., Goryachev, N.A., and Biryukov, A.V. (2008): Geology of Ore Deposits 50(4), 275-298.
    • Susumansky District
Savva, Natalia E., Raisa G. Kravtsova, Galina S. Anisimova, and Galina A. Palyanova. (2022) "Typomorphism of Native Gold (Geological-Industrial Types of Gold Deposits in the North-East of Russia)" Minerals 12, no. 5: 561. https://doi.org/10.3390/min12050561
Savva, N. E., Palyanova, G. А., & Kolova, Е. Е. (2014). Gold and silver minerals and conditions of their formation at the Dorozhnoye deposit (Magadan region, Russia). Nat. Resour, 5, 47.
Паламарчук, Р. С., & Степанов, С. Ю. ИЗОТОПНО-ГЕОХИМИЧЕСКИЕ ОСОБЕННОСТИ ЗОЛОТОНОСНЫХ СКАРНОВ РУДОПРОЯВЛЕНИЯ «ДОРОЖНОЕ», ПЕСЧАНСКО-ВОРОНЦОВСКАЯ РУДНАЯ СИСТЕМА, СЕВЕРНЫЙ УРАЛ. Сопредседатели оргкомитета, 446.
Pavel.M. Kartashov (n.d.) analytical data.
imcg.wr.usgs.gov (n.d.) http://imcg.wr.usgs.gov/usbmak/mej3.html.
    • Tenkinsky District

Savva, Natalia E., Raisa G. Kravtsova, Galina S. Anisimova, and Galina A. Palyanova. (2022) "Typomorphism of Native Gold (Geological-Industrial Types of Gold Deposits in the North-East of Russia)" Minerals 12, no. 5: 561. https://doi.org/10.3390/min12050561
Tauson, V., Lipko, S., Kravtsova, R., Smagunov, N., Belozerova, O., & Voronova, I. (2019). Distribution of “Invisible” Noble Metals between Pyrite and Arsenopyrite Exemplified by Minerals Coexisting in Orogenic Au Deposits of North-Eastern Russia. Minerals, 9(11), 660.
Voroshin, S.V., Tyukova, E.E., and Gibsher, N.A. (2006): Geology of Ore Deposits 48(3), 215-236.
Smagunov, N.V. (2020) Platinum Group Elements in Arsenopyrites and Pyrites of the Natalkinskoe Gold Deposit (Northeastern Russia). Minerals 10, 318.
Tauson, V., Lipko, S., Kravtsova, R., Smagunov, N., Belozerova, O., & Voronova, I. (2019). Distribution of “Invisible” Noble Metals between Pyrite and Arsenopyrite Exemplified by Minerals Coexisting in Orogenic Au Deposits of North-Eastern Russia. Minerals, 9(11), 660.
Kravtsova, R.G.
Tauson, V.L.
Makshakov, A.S.
Bryansky, N.V.
Savva, Natalia E., Raisa G. Kravtsova, Galina S. Anisimova, and Galina A. Palyanova. (2022) "Typomorphism of Native Gold (Geological-Industrial Types of Gold Deposits in the North-East of Russia)" Minerals 12, no. 5: 561. https://doi.org/10.3390/min12050561
Eilu, Pasi (2003) Exploration for orogenic gold deposits. Fennoscandian Exploration and Mining. Rovaniemi.
Goryachev, N. A. and M. L. Gelman (2001) Granitoids of the Okhotsk-Kolyma Divide and Related Ore Mineralization. pp5-28 in Khanchuk, A.I., Gonevchuk, G.A. & Seltmann, R. (Eds) Metallogeny of the Pacific Northwest (Russian Far East): Tectonics, Magmatism and Metallogeny of Active Continental Margins. IAGOD Guidebook series 11, Dalnauka Publishing House, Vladivostok 2004, 176 p
Eilu, Pasi (2003) Exploration for orogenic gold deposits. Fennoscandian Exploration and Mining. Rovaniemi.
Tauson, V., Lipko, S., Kravtsova, R., Smagunov, N., Belozerova, O., & Voronova, I. (2019). Distribution of “Invisible” Noble Metals between Pyrite and Arsenopyrite Exemplified by Minerals Coexisting in Orogenic Au Deposits of North-Eastern Russia. Minerals, 9(11), 660.
imcg.wr.usgs.gov (n.d.) http://imcg.wr.usgs.gov/usbmak/mej3.html.
    • Ust' Umchug
Goryachev, N. A. and M. L. Gelman (2001) Granitoids of the Okhotsk-Kolyma Divide and Related Ore Mineralization. pp5-28 in Khanchuk, A.I., Gonevchuk, G.A. & Seltmann, R. (Eds) Metallogeny of the Pacific Northwest (Russian Far East): Tectonics, Magmatism and Metallogeny of Active Continental Margins. IAGOD Guidebook series 11, Dalnauka Publishing House, Vladivostok 2004, 176 p
Goryachev, N. A. and M. L. Gelman (2001) Granitoids of the Okhotsk-Kolyma Divide and Related Ore Mineralization. pp5-28 in Khanchuk, A.I., Gonevchuk, G.A. & Seltmann, R. (Eds) Metallogeny of the Pacific Northwest (Russian Far East): Tectonics, Magmatism and Metallogeny of Active Continental Margins. IAGOD Guidebook series 11, Dalnauka Publishing House, Vladivostok 2004, 176 p
  • Sakhalin Oblast
    • Kuril Islands (Kurile Islands)
      • Kurilsky District
        • Iturup Island
          • Bogatyr' Range
Znamenskii V.S., Lebedev L.M., Sidorenko G.A. (1970) On molybdenite from middle-cretaceous volcanic rocks of Iturup island (Kuril Islands), - DAN USSR, v.193, N4, pp. 898-901 (in Rus.).
Ganino, C., Libourel, G., & Bernard, A. (2019). Fumarolic incrustations at Kudryavy volcano (Kamchatka) as a guideline for high-temperature (> 850 C) extinct hydrothermal systems. Journal of Volcanology and Geothermal Research, 376, 75-85.
      • Yuzhno-Kurilsky District
        • Kunashir Island
L.M. Lebedev data
Kovalenker, V. A., Plotinskaya, O. Yu., Stanley, C. J., Roberts, A. C., McDonald, A. M., Cooper, M. A. (2010) Kurilite – Ag8Te3Se – a new mineral from the Prasolovskoe deposit, Kuril islands, Russian Federation. Mineralogical Magazine, 74 (3) 463-468 doi:10.1180/minmag.2010.074.3.463
Kemkina, R. A. (2007). Fahlores of the Prasolovka Au-Ag volcanogenic deposit, Kunashir Island, Russian Far East. Russian Journal of Pacific Geology, 1(2), 130-143.
V.A. Kovalenker, O.Yu. Plotinskaya (2005): Te and Se mineralogy of Ozernovskoe and Prasolovskoe epithermal gold deposits, Kuril – Kamchatka volcanic belt. Geochemistry, Mineralogy and Petrology 43, 118-123. [http://www.geology.bas.bg/mineralogy/gmp_files/gmp43/Kovalenker.pdf]
Pavel.M. Kartashov (n.d.) analytical data.
    • Sakhalin Island
      • Nevelsky District
Koichi Momma, Toshiro Nagase, Robert Jenkins, Yusuke Miyajima, Kenichiro Tani, Akira Ijiri, Sergei Kasatkin, Igor Chekryzhov, Ritsuro Miyawaki (2018) Occurrences and crystal structures of melanophlogite from Sakhalin, Far East Russia. in abstracts of the 22nd IMA Meeting Melbourne p 238
[var. Chalcedony] Koichi Momma, Toshiro Nagase, Robert Jenkins, Yusuke Miyajima, Kenichiro Tani, Akira Ijiri, Sergei Kasatkin, Igor Chekryzhov, Ritsuro Miyawaki (2018) Occurrences and crystal structures of melanophlogite from Sakhalin, Far East Russia. in abstracts of the 22nd IMA Meeting Melbourne p 238
Sokol, Ella V., Kokh, Svetlana N., Nekipelova, Anna V., Abersteiner, Adam, Seryotkin, Yurii V., Ershov, Valeriy V., Nikitenko, Olga A., Deviatiiarova, Anna S. (2021) Ge-Hg-Rich Sphalerite and Pb, Sb, As, Hg, and Ag Sulfide Assemblages in Mud Volcanoes of Sakhalin Island, Russia: An Insight into Possible Origin. Minerals, 11 (11) 1186 doi:10.3390/min11111186
Sokol, Ella V., Kokh, Svetlana N., Nekipelova, Anna V., Abersteiner, Adam, Seryotkin, Yurii V., Ershov, Valeriy V., Nikitenko, Olga A., Deviatiiarova, Anna S. (2021) Ge-Hg-Rich Sphalerite and Pb, Sb, As, Hg, and Ag Sulfide Assemblages in Mud Volcanoes of Sakhalin Island, Russia: An Insight into Possible Origin. Minerals, 11 (11) 1186 doi:10.3390/min11111186
 
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