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Gyeonggi Province, South Koreai
Regional Level Types
Gyeonggi ProvinceProvince
South KoreaCountry

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PhotosMapsSearch
Locality type:
Other/historical names associated with this locality:
Gyeonggi-do; Kyonggi-do
Other Languages:
French:
Gyeonggi, Corée du Sud
German:
Gyeonggi-do, Südkorea
Italian:
Gyeonggi, Corea del Sud
Korean:
경기도, 대한민국
Russian:
Кёнгидо, Республика Корея
Simplified Chinese:
京畿道, 大韩民国
Spanish:
Gyeonggi, Corea del Sur
Achinese:
Gyeonggi, Korèa Seulatan
Arabic:
غيونغي , كوريا الجنوبية
Armenian:
Գյոնգի, Հարավային Կորեա
Azeri:
Köngido vilayəti, Cənubi Koreya
Basque:
Gyeonggi, Hego Korea
Bengali:
গিয়েওনগি, দক্ষিণ কোরিয়া
Bulgarian:
Кьонги-до, Южна Корея
Catalan:
Gyeonggi-do, Corea del Sud
Cebuano:
Gyeonggi-do, Habagatang Korea
Central Kurdish/Sorani:
پارێزگای گیۆنگگی, کۆریای باشوور
Classical Chinese:
京畿道, 大韓民國
Czech:
Kjonggi, Jižní Korea
Danish:
Gyeonggi Province, Sydkorea
Dutch:
Gyeonggi-do, Zuid-Korea
Estonian:
Kyŏnggi provints, Lõuna-Korea
Farsi/Persian:
گیونگی-دو, کره جنوبی
Finnish:
Gyeonggi, Korean tasavalta
Georgian:
კიონგიდო, სამხრეთი კორეა
Greek:
Γκιόνγκι-ντο, Νότια Κορέα
Gujarati:
ગ્યોંગી પ્રાંત, દક્ષિણ કોરિયા
Hakka:
Kîn-ki-tho, Thai-hòn Mìn-koet
Hebrew:
גיונגי, קוריאה הדרומית
Hindi:
गियॉन्गी प्रांत, दक्षिण कोरिया
Hungarian:
Kjonggi, Dél-Korea
Iloko:
Gyeonggi, Abagatan a Korea
Indonesian:
Gyeonggi, Korea Selatan
Japanese:
京畿道, 大韓民国
Kannada:
ಜಿಯಾಂಗ್ಗಿ ಪ್ರಾಂತ್ಯ, ದಕ್ಷಿಣ ಕೊರಿಯಾ
Kazakh (Cyrillic Script):
Кёңгидо, Корея Республикасы
Latvian:
Kjongido, Dienvidkoreja
Lithuanian:
Kiongi provincija, Pietų Korėja
Lombard:
Gyeonggi-do, Curea del Süd
Malay:
Gyeonggi, Korea Selatan
Marathi:
ग्याँगी प्रांत, दक्षिण कोरिया
Min Dong Chinese:
Gyeonggi Dô̤, Dâi-hàng Mìng-guók
Minnan / Hokkien-Taiwanese:
Kiaⁿ-ki-tō, Hân-kok
Mongolian:
Кёнги, Өмнөд Солонгос
Northern Frisian:
Gyeonggi-do, Süüdkorea
Norwegian:
Gyeonggi, Sør-Korea
Polish:
Gyeonggi, Korea Południowa
Portuguese:
Gyeonggi, Coreia do Sul
Romanian:
Gyeonggi-do, Coreea de Sud
Scots:
Gyeonggi-do, Sooth Korea
Sinhalese:
ජියෝන්ගි පළාත, දකුණු කොරියාව
Slovak:
Kjonggi, Kórejská republika
Sundanese:
Gyeonggi-do, Koréa Kidul
Swahili:
Gyeonggi-do, Korea Kusini
Swedish:
Gyeonggi, Sydkorea
Tagalog:
Gyeonggi, Timog Korea
Tamil:
இக்யாங்கி மாநிலம், தென் கொரியா
Telugu:
జయోంగి ప్రావిన్స్, దక్షిణ కొరియా
Thai:
จังหวัดคย็องกี, ประเทศเกาหลีใต้
Tok Pisin:
Gyeonggi, Saut Koria
Traditional Chinese:
京畿道, 大韓民國
Turkish:
Gyeonggi, Güney Kore
Ukrainian:
Кьонгі , Південна Корея
Urdu:
گیئونگی صوبہ, جنوبی کوریا
Venetian:
Gyeonggi, Corea del Sud
Vietnamese:
Gyeonggi, Hàn Quốc
Waray:
Gyeonggi, Salatan nga Korea
Welsh:
Talaith Gyeonggi, De Corea
Western Punjabi:
صوبہ گیونگی, دکھنی کوریا
Wu Chinese:
京畿道, 大韩民国


Kyonggi-do Gyeonggido (variant); Keiki-do (Japanese); Kyunggi (variant)

Select Mineral List Type

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

64 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

Select Rock List Type

Alphabetical List Tree Diagram

Detailed Mineral List:

Alabandite
Formula: MnS
Reference: Econ Geol (1984) 79:656-670
Albite
Formula: Na(AlSi3O8)
Reference: Shibata, H.: Lithia mica deposits in Korea with special reference to spodumene and amblygonite. (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969; pp 158-168)
'Allanite Group'
Formula: {A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
Reference: Takubo, J. and Saito, M. (1969) Allanite in Korea. (in: Geology and Mineral Resources of the Far East, vol. 2; University of Tokyo Press)
'Amphibole Supergroup'
Formula: AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Reference: Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 10.
Andalusite
Formula: Al2(SiO4)O
Reference: Yamaguchi, T. (1943) Miscellaneous Reports, Geological Survey of Korea, 11.
Anorthite
Formula: Ca(Al2Si2O8)
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
'Apatite'
Formula: Ca5(PO4)3(Cl/F/OH)
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Armenite
Formula: BaCa2Al6Si9O30 · 2H2O
Reference: Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Augite
Formula: (CaxMgyFez)(Mgy1Fez1)Si2O6
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Azurite
Formula: Cu3(CO3)2(OH)2
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Baryte
Formula: BaSO4
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Beryl
Formula: Be3Al2(Si6O18)
Reference: Hideo Tsuda: "Supplement to "Minerals of Korea"" (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)
'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: USGS Open File Report 2005-1252 p36
Brannerite
Formula: UTi2O6
Reference: Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Calcite
Formula: CaCO3
Reference: Econ Geol (1984) 79:656-670
Celsian
Formula: Ba(Al2Si2O8)
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.
Cerussite
Formula: PbCO3
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
'Chabazite'
Reference: Sadanaga & Bunno (1973)
Chalcopyrite
Formula: CuFeS2
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
'Chlorite Group'
Reference: Econ Geol (1984) 79:656-670
Clinochlore
Formula: Mg5Al(AlSi3O10)(OH)8
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.
Corundum
Formula: Al2O3
Description: blue
Reference: Yamaguchi, T. (1943) Miscellaneous Reports, Geological Survey of Korea, 11.
Covellite
Formula: CuS
Reference: Econ Geol (1984) 79:656-670
Dickite
Formula: Al2(Si2O5)(OH)4
Reference: Econ Geol (1984) 79:656-670
Digenite
Formula: Cu9S5
Reference: Econ Geol (1984) 79:656-670
Diopside
Formula: CaMgSi2O6
Reference: Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Dolomite
Formula: CaMg(CO3)2
Reference: Econ Geol (1984) 79:656-670
Epidote
Formula: {Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
'Fayalite-Forsterite Series'
Reference: Hideo Tsuda (1969) Supplement to "Minerals of Korea".
'Feldspar Group'
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Fluorite
Formula: CaF2
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Forsterite
Formula: Mg2SiO4
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Galena
Formula: PbS
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
'Garnet Group'
Formula: X3Z2(SiO4)3
Reference: Takubo, J. and Saito, M. (1969) Allanite in Korea. (in: Geology and Mineral Resources of the Far East, vol. 2; University of Tokyo Press)
Goldmanite
Formula: Ca3V3+2(SiO4)3
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Graphite
Formula: C
Reference: Rocks & Min.: 22:120-121.; USGS Open File Report 2005-1252 p36
'Hornblende'
Reference: Kinosaki, Y. (1941) Chohsen Kohgyoh, 8, 10.
Ilmenite
Formula: Fe2+TiO3
Reference: Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 10.
Jamborite
Formula: Ni2+1-xCo3+x(OH)2-x(SO4)x · nH2O
Reference: Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
Kaznakhtite
Formula: Ni6Co3+2(CO3)(OH)16 · 4H2O
Reference: [AmMin 84:687]
'Kerolite'
Formula: (Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
Reference: Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
'Lepidolite'
Reference: Shibata, H.: Lithia mica deposits in Korea with special reference to spodumene and amblygonite. (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969; pp 158-168)
'Limonite'
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Magnetite
Formula: Fe2+Fe3+2O4
Reference: [AmMin 84:687]; Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
Magnetite var. Titanium-bearing Magnetite
Formula: Fe2+(Fe3+,Ti)2O4
Reference: Shin, Youngjae, and Seungwook Shin. (2022) "Rock Classification in a Vanadiferous Titanomagnetite Deposit Based on Supervised Machine Learning" Minerals 12, no. 4: 461. https://doi.org/10.3390/min12040461
'Mica Group'
Reference: Hideo Tsuda: "Supplement to "Minerals of Korea"" (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)
Microcline var. Hyalophane
Formula: (K,Ba)[Al(Si,Al)Si2O8]
Reference: Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Millerite
Formula: NiS
Reference: [AmMin 84:687]; Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
Molybdenite
Formula: MoS2
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
'Monazite'
Formula: REE(PO4)
Reference: Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Muscovite
Formula: KAl2(AlSi3O10)(OH)2
Reference: Yamaguchi, T. (1943) Miscellaneous Reports, Geological Survey of Korea, 11.
Muscovite var. Sericite
Formula: KAl2(AlSi3O10)(OH)2
Reference: Econ Geol (1984) 79:656-670
Népouite
Formula: (Ni,Mg)3(Si2O5)(OH)4
Reference: Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
'Olivine Group'
Formula: M2SiO4
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Orthoclase
Formula: K(AlSi3O8)
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Pargasite
Formula: NaCa2(Mg4Al)(Si6Al2)O22(OH)2
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Pecoraite
Formula: Ni3(Si2O5)(OH)4
Reference: [AmMin 84:687]; Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
Pentlandite
Formula: (NixFey)Σ9S8
Reference: Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 10.
Phlogopite
Formula: KMg3(AlSi3O10)(OH)2
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Pigeonite
Formula: (CaxMgyFez)(Mgy1Fez1)Si2O6
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
'Pimelite'
Formula: Ni3Si4O10(OH)2 · 4H2O
Reference: Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
'Plagioclase'
Formula: (Na,Ca)[(Si,Al)AlSi2]O8
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Polydymite
Formula: Ni2+Ni3+2S4
Reference: Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
Pyrite
Formula: FeS2
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Pyromorphite
Formula: Pb5(PO4)3Cl
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
'Pyroxene Group'
Formula: ADSi2O6
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Pyrrhotite
Formula: Fe1-xS
Reference: Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 10.
Quartz
Formula: SiO2
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Quartz var. Chalcedony
Formula: SiO2
Reference: Econ Geol (1984) 79:656-670
Reevesite
Formula: Ni6Fe3+2(OH)16(CO3) · 4H2O
Reference: Song, Y., Moon, H. S., & Chon, H. T. (1995). New occurrence and characterization of Niserpentines in the Kwangcheon area, Korea. Clay Minerals, 30(3), 211-224.
Rhodochrosite
Formula: MnCO3
Reference: Econ Geol (1984) 79:656-670
Rutile
Formula: TiO2
Reference: Hideo Tsuda: "Supplement to "Minerals of Korea"" (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)
Rutile var. Ilmenorutile
Formula: (Ti,Nb)O2
Reference: Hideo Tsuda: "Supplement to "Minerals of Korea"" (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)
Saponite
Formula: Ca0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Reference: Hideo Tsuda (1969) Supplement to "Minerals of Korea".
Saponite var. Bowlingite
Formula: Ca0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Reference: Hideo Tsuda (1969) Supplement to "Minerals of Korea".
Scheelite
Formula: Ca(WO4)
Reference: Werner, A.B.T., Sinclair, W.D., and Amey, E.B. (1998): US Geological Survey Circular 930-O.
Siderite
Formula: FeCO3
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Silver
Formula: Ag
Reference: Econ Geol (1984) 79:656-670
Sphalerite
Formula: ZnS
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Spinel
Formula: MgAl2O4
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Talc
Formula: Mg3Si4O10(OH)2
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.
Titanite
Formula: CaTi(SiO4)O
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
'Tourmaline'
Formula: AD3G6 (T6O18)(BO3)3X3Z
Reference: Shibata, H.: Lithia mica deposits in Korea with special reference to spodumene and amblygonite. (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969; pp 158-168)
'Tourmaline var. Rubellite'
Formula: A(D3)G6(T6O18)(BO3)3X3Z
Reference: Shibata, H.: Lithia mica deposits in Korea with special reference to spodumene and amblygonite. (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969; pp 158-168)
Tremolite
Formula: ◻{Ca2}{Mg5}(Si8O22)(OH)2
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Tschermakite
Formula: ◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
Reference: Lee, J. H., Yang, S. J., White, N. C., Shin, D., & Kim, E. J. (2022). Whole-rock geochemistry and mineral compositions of gabbroic rocks and the associated Fe–Ti (–V) oxide deposit in the Gonamsan intrusion, South Korea. Ore Geology Reviews, 148, 105054.
Uraninite
Formula: UO2
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.; Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
Uranocircite
Formula: Ba(UO2)2(PO4)2 · 10H2O
Reference: Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.
Violarite
Formula: Fe2+Ni3+2S4
Reference: Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 10.
'Wolframite Group'
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Wulfenite
Formula: Pb(MoO4)
Reference: Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
'Xenotime'
Reference: Cheong, C. S., Jeong, G. Y., Kim, H., Choi, M. S., Lee, S. H., & Cho, M. (2003). Early Permian peak metamorphism recorded in U–Pb system of black slates from the Ogcheon metamorphic belt, South Korea, and its tectonic implication. Chemical Geology, 193(1), 81-92.
'Zinnwaldite'
Reference: Shibata, H.: Lithia mica deposits in Korea with special reference to spodumene and amblygonite. (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969; pp 158-168)
Zircon
Formula: Zr(SiO4)
Reference: Hideo Tsuda: "Supplement to "Minerals of Korea"" (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
Graphite1.CB.05aC
Silver1.AA.05Ag
Group 2 - Sulphides and Sulfosalts
Alabandite2.CD.10MnS
Chalcopyrite2.CB.10aCuFeS2
Covellite2.CA.05aCuS
Digenite2.BA.10Cu9S5
Galena2.CD.10PbS
Millerite2.CC.20NiS
Molybdenite2.EA.30MoS2
Pentlandite2.BB.15(NixFey)Σ9S8
Polydymite2.DA.05Ni2+Ni3+2S4
Pyrite2.EB.05aFeS2
Pyrrhotite2.CC.10Fe1-xS
Sphalerite2.CB.05aZnS
Violarite2.DA.05Fe2+Ni3+2S4
Group 3 - Halides
Fluorite3.AB.25CaF2
Group 4 - Oxides and Hydroxides
Brannerite4.DH.05UTi2O6
Corundum4.CB.05Al2O3
Ilmenite4.CB.05Fe2+TiO3
Jamborite4.FL.05Ni2+1-xCo3+x(OH)2-x(SO4)x · nH2O
Magnetite4.BB.05Fe2+Fe3+2O4
var. Titanium-bearing Magnetite4.BB.05Fe2+(Fe3+,Ti)2O4
Quartz4.DA.05SiO2
var. Chalcedony4.DA.05SiO2
Rutile4.DB.05TiO2
var. Ilmenorutile4.DB.05(Ti,Nb)O2
Spinel4.BB.05MgAl2O4
Uraninite4.DL.05UO2
'Wolframite Group'4.DB.30 va
Group 5 - Nitrates and Carbonates
Azurite5.BA.05Cu3(CO3)2(OH)2
Calcite5.AB.05CaCO3
Cerussite5.AB.15PbCO3
Dolomite5.AB.10CaMg(CO3)2
Kaznakhtite5.DA.50Ni6Co3+2(CO3)(OH)16 · 4H2O
Reevesite5.DA.50Ni6Fe3+2(OH)16(CO3) · 4H2O
Rhodochrosite5.AB.05MnCO3
Siderite5.AB.05FeCO3
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
Baryte7.AD.35BaSO4
Scheelite7.GA.05Ca(WO4)
Wulfenite7.GA.05Pb(MoO4)
Group 8 - Phosphates, Arsenates and Vanadates
Pyromorphite8.BN.05Pb5(PO4)3Cl
Uranocircite8.EB.05Ba(UO2)2(PO4)2 · 10H2O
Group 9 - Silicates
Albite9.FA.35Na(AlSi3O8)
Andalusite9.AF.10Al2(SiO4)O
Anorthite9.FA.35Ca(Al2Si2O8)
Armenite9.CM.05BaCa2Al6Si9O30 · 2H2O
Augite9.DA.15(CaxMgyFez)(Mgy1Fez1)Si2O6
Beryl9.CJ.05Be3Al2(Si6O18)
Celsian9.FA.30Ba(Al2Si2O8)
Clinochlore9.EC.55Mg5Al(AlSi3O10)(OH)8
Dickite9.ED.05Al2(Si2O5)(OH)4
Diopside9.DA.15CaMgSi2O6
Epidote9.BG.05a{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Forsterite9.AC.05Mg2SiO4
Goldmanite9.AD.25Ca3V3+2(SiO4)3
Microcline
var. Hyalophane
9.FA.30(K,Ba)[Al(Si,Al)Si2O8]
Muscovite9.EC.15KAl2(AlSi3O10)(OH)2
var. Sericite9.EC.15KAl2(AlSi3O10)(OH)2
Népouite9.ED.15(Ni,Mg)3(Si2O5)(OH)4
Orthoclase9.FA.30K(AlSi3O8)
Pargasite9.DE.15NaCa2(Mg4Al)(Si6Al2)O22(OH)2
Pecoraite9.ED.15Ni3(Si2O5)(OH)4
Phlogopite9.EC.20KMg3(AlSi3O10)(OH)2
Pigeonite9.DA.10(CaxMgyFez)(Mgy1Fez1)Si2O6
'Pimelite'9.EC.22Ni3Si4O10(OH)2 · 4H2O
Saponite9.EC.45Ca0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
var. Bowlingite9.EC.45Ca0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Talc9.EC.05Mg3Si4O10(OH)2
Titanite9.AG.15CaTi(SiO4)O
Tremolite9.DE.10◻{Ca2}{Mg5}(Si8O22)(OH)2
Tschermakite9.DE.10◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
Zircon9.AD.30Zr(SiO4)
Unclassified Minerals, Rocks, etc.
'Allanite Group'-{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
'Amphibole Supergroup'-AB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
'Apatite'-Ca5(PO4)3(Cl/F/OH)
'Biotite'-K(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
'Chabazite'-
'Chlorite Group'-
'Fayalite-Forsterite Series'-
'Feldspar Group'-
'Garnet Group'-X3Z2(SiO4)3
'Hornblende'-
'Kerolite'-(Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
'Lepidolite'-
'Limonite'-
'Mica Group'-
'Monazite'-REE(PO4)
'Olivine Group'-M2SiO4
'Plagioclase'-(Na,Ca)[(Si,Al)AlSi2]O8
'Pyroxene Group'-ADSi2O6
'Tourmaline'-AD3G6 (T6O18)(BO3)3X3Z
'var. Rubellite'-A(D3)G6(T6O18)(BO3)3X3Z
'Xenotime'-
'Zinnwaldite'-

List of minerals for each chemical element

HHydrogen
H KaznakhtiteNi6Co23+(CO3)(OH)16 · 4H2O
H PecoraiteNi3(Si2O5)(OH)4
H AzuriteCu3(CO3)2(OH)2
H Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
H MuscoviteKAl2(AlSi3O10)(OH)2
H Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
H Allanite Group{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
H ClinochloreMg5Al(AlSi3O10)(OH)8
H Tremolite◻{Ca2}{Mg5}(Si8O22)(OH)2
H UranocirciteBa(UO2)2(PO4)2 · 10H2O
H PhlogopiteKMg3(AlSi3O10)(OH)2
H ApatiteCa5(PO4)3(Cl/F/OH)
H TalcMg3Si4O10(OH)2
H Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
H DickiteAl2(Si2O5)(OH)4
H JamboriteNi2+1-xCox3+(OH)2-x(SO4)x · nH2O
H Kerolite(Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
H PimeliteNi3Si4O10(OH)2 · 4H2O
H ReevesiteNi6Fe23+(OH)16(CO3) · 4H2O
H Népouite(Ni,Mg)3(Si2O5)(OH)4
H BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
H SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
H ArmeniteBaCa2Al6Si9O30 · 2H2O
H Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
H PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
H Tschermakite◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
BeBeryllium
Be BerylBe3Al2(Si6O18)
BBoron
B Tourmaline var. RubelliteA(D3)G6(T6O18)(BO3)3X3Z
B TourmalineAD3G6 (T6O18)(BO3)3X3Z
CCarbon
C KaznakhtiteNi6Co23+(CO3)(OH)16 · 4H2O
C GraphiteC
C SideriteFeCO3
C CerussitePbCO3
C AzuriteCu3(CO3)2(OH)2
C RhodochrositeMnCO3
C CalciteCaCO3
C DolomiteCaMg(CO3)2
C ReevesiteNi6Fe23+(OH)16(CO3) · 4H2O
OOxygen
O MagnetiteFe2+Fe23+O4
O KaznakhtiteNi6Co23+(CO3)(OH)16 · 4H2O
O PecoraiteNi3(Si2O5)(OH)4
O WulfenitePb(MoO4)
O QuartzSiO2
O SideriteFeCO3
O CerussitePbCO3
O PyromorphitePb5(PO4)3Cl
O AzuriteCu3(CO3)2(OH)2
O AlbiteNa(AlSi3O8)
O Tourmaline var. RubelliteA(D3)G6(T6O18)(BO3)3X3Z
O BerylBe3Al2(Si6O18)
O ZirconZr(SiO4)
O Rutile var. Ilmenorutile(Ti,Nb)O2
O IlmeniteFe2+TiO3
O Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
O CorundumAl2O3
O AndalusiteAl2(SiO4)O
O MuscoviteKAl2(AlSi3O10)(OH)2
O Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
O Allanite Group{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
O Garnet GroupX3Z2(SiO4)3
O ScheeliteCa(WO4)
O ClinochloreMg5Al(AlSi3O10)(OH)8
O Tremolite◻{Ca2}{Mg5}(Si8O22)(OH)2
O CelsianBa(Al2Si2O8)
O BaryteBaSO4
O GoldmaniteCa3V23+(SiO4)3
O UranocirciteBa(UO2)2(PO4)2 · 10H2O
O UraniniteUO2
O PhlogopiteKMg3(AlSi3O10)(OH)2
O ApatiteCa5(PO4)3(Cl/F/OH)
O TitaniteCaTi(SiO4)O
O TalcMg3Si4O10(OH)2
O RhodochrositeMnCO3
O CalciteCaCO3
O DolomiteCaMg(CO3)2
O Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
O DickiteAl2(Si2O5)(OH)4
O Quartz var. ChalcedonySiO2
O JamboriteNi2+1-xCox3+(OH)2-x(SO4)x · nH2O
O Kerolite(Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
O PimeliteNi3Si4O10(OH)2 · 4H2O
O ReevesiteNi6Fe23+(OH)16(CO3) · 4H2O
O Népouite(Ni,Mg)3(Si2O5)(OH)4
O BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
O TourmalineAD3G6 (T6O18)(BO3)3X3Z
O RutileTiO2
O SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
O Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
O BranneriteUTi2O6
O MonaziteREE(PO4)
O ArmeniteBaCa2Al6Si9O30 · 2H2O
O DiopsideCaMgSi2O6
O Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
O AnorthiteCa(Al2Si2O8)
O Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
O Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
O ForsteriteMg2SiO4
O Olivine GroupM2SiO4
O OrthoclaseK(AlSi3O8)
O PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
O Pigeonite(CaxMgyFez)(Mgy1Fez1)Si2O6
O Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
O Pyroxene GroupADSi2O6
O SpinelMgAl2O4
O Tschermakite◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
FFluorine
F FluoriteCaF2
F Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
F ApatiteCa5(PO4)3(Cl/F/OH)
F BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
NaSodium
Na AlbiteNa(AlSi3O8)
Na PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
Na Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
MgMagnesium
Mg Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Mg ClinochloreMg5Al(AlSi3O10)(OH)8
Mg Tremolite◻{Ca2}{Mg5}(Si8O22)(OH)2
Mg PhlogopiteKMg3(AlSi3O10)(OH)2
Mg TalcMg3Si4O10(OH)2
Mg DolomiteCaMg(CO3)2
Mg Kerolite(Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
Mg Népouite(Ni,Mg)3(Si2O5)(OH)4
Mg BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Mg SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Mg DiopsideCaMgSi2O6
Mg Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Mg ForsteriteMg2SiO4
Mg PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
Mg Pigeonite(CaxMgyFez)(Mgy1Fez1)Si2O6
Mg SpinelMgAl2O4
Mg Tschermakite◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
AlAluminium
Al AlbiteNa(AlSi3O8)
Al BerylBe3Al2(Si6O18)
Al Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Al CorundumAl2O3
Al AndalusiteAl2(SiO4)O
Al MuscoviteKAl2(AlSi3O10)(OH)2
Al Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Al ClinochloreMg5Al(AlSi3O10)(OH)8
Al CelsianBa(Al2Si2O8)
Al PhlogopiteKMg3(AlSi3O10)(OH)2
Al Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Al DickiteAl2(Si2O5)(OH)4
Al BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Al SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Al Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Al ArmeniteBaCa2Al6Si9O30 · 2H2O
Al AnorthiteCa(Al2Si2O8)
Al Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Al OrthoclaseK(AlSi3O8)
Al PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
Al Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Al SpinelMgAl2O4
Al Tschermakite◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
SiSilicon
Si PecoraiteNi3(Si2O5)(OH)4
Si QuartzSiO2
Si AlbiteNa(AlSi3O8)
Si BerylBe3Al2(Si6O18)
Si ZirconZr(SiO4)
Si Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Si AndalusiteAl2(SiO4)O
Si MuscoviteKAl2(AlSi3O10)(OH)2
Si Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Si Allanite Group{A12+REE3+}{M13+M23+M32+}(Si2O7)(SiO4)O(OH)
Si Garnet GroupX3Z2(SiO4)3
Si ClinochloreMg5Al(AlSi3O10)(OH)8
Si Tremolite◻{Ca2}{Mg5}(Si8O22)(OH)2
Si CelsianBa(Al2Si2O8)
Si GoldmaniteCa3V23+(SiO4)3
Si PhlogopiteKMg3(AlSi3O10)(OH)2
Si TitaniteCaTi(SiO4)O
Si TalcMg3Si4O10(OH)2
Si Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
Si DickiteAl2(Si2O5)(OH)4
Si Quartz var. ChalcedonySiO2
Si Kerolite(Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
Si PimeliteNi3Si4O10(OH)2 · 4H2O
Si Népouite(Ni,Mg)3(Si2O5)(OH)4
Si BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Si SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Si Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Si ArmeniteBaCa2Al6Si9O30 · 2H2O
Si DiopsideCaMgSi2O6
Si AnorthiteCa(Al2Si2O8)
Si Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Si Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Si ForsteriteMg2SiO4
Si Olivine GroupM2SiO4
Si OrthoclaseK(AlSi3O8)
Si PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
Si Pigeonite(CaxMgyFez)(Mgy1Fez1)Si2O6
Si Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Si Pyroxene GroupADSi2O6
Si Tschermakite◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
PPhosphorus
P PyromorphitePb5(PO4)3Cl
P UranocirciteBa(UO2)2(PO4)2 · 10H2O
P ApatiteCa5(PO4)3(Cl/F/OH)
P MonaziteREE(PO4)
SSulfur
S MilleriteNiS
S PolydymiteNi2+Ni23+S4
S MolybdeniteMoS2
S ChalcopyriteCuFeS2
S PyriteFeS2
S GalenaPbS
S SphaleriteZnS
S PyrrhotiteFe1-xS
S ViolariteFe2+Ni23+S4
S Pentlandite(NixFey)Σ9S8
S BaryteBaSO4
S CovelliteCuS
S AlabanditeMnS
S DigeniteCu9S5
S JamboriteNi2+1-xCox3+(OH)2-x(SO4)x · nH2O
ClChlorine
Cl PyromorphitePb5(PO4)3Cl
Cl Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Cl ApatiteCa5(PO4)3(Cl/F/OH)
KPotassium
K MuscoviteKAl2(AlSi3O10)(OH)2
K PhlogopiteKMg3(AlSi3O10)(OH)2
K Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
K BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
K Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
K OrthoclaseK(AlSi3O8)
CaCalcium
Ca FluoriteCaF2
Ca Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Ca ScheeliteCa(WO4)
Ca Tremolite◻{Ca2}{Mg5}(Si8O22)(OH)2
Ca GoldmaniteCa3V23+(SiO4)3
Ca ApatiteCa5(PO4)3(Cl/F/OH)
Ca TitaniteCaTi(SiO4)O
Ca CalciteCaCO3
Ca DolomiteCaMg(CO3)2
Ca SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Ca ArmeniteBaCa2Al6Si9O30 · 2H2O
Ca DiopsideCaMgSi2O6
Ca AnorthiteCa(Al2Si2O8)
Ca Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Ca Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Ca PargasiteNaCa2(Mg4Al)(Si6Al2)O22(OH)2
Ca Pigeonite(CaxMgyFez)(Mgy1Fez1)Si2O6
Ca Plagioclase(Na,Ca)[(Si,Al)AlSi2]O8
Ca Tschermakite◻(Ca2)(Mg3Al2)(Al2Si6O22)(OH)2
TiTitanium
Ti Rutile var. Ilmenorutile(Ti,Nb)O2
Ti IlmeniteFe2+TiO3
Ti Amphibole SupergroupAB2C5((Si,Al,Ti)8O22)(OH,F,Cl,O)2
Ti TitaniteCaTi(SiO4)O
Ti BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Ti RutileTiO2
Ti BranneriteUTi2O6
Ti Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
VVanadium
V GoldmaniteCa3V23+(SiO4)3
MnManganese
Mn RhodochrositeMnCO3
Mn AlabanditeMnS
FeIron
Fe MagnetiteFe2+Fe23+O4
Fe ChalcopyriteCuFeS2
Fe PyriteFeS2
Fe SideriteFeCO3
Fe IlmeniteFe2+TiO3
Fe PyrrhotiteFe1-xS
Fe ViolariteFe2+Ni23+S4
Fe Pentlandite(NixFey)Σ9S8
Fe Saponite var. BowlingiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Fe ReevesiteNi6Fe23+(OH)16(CO3) · 4H2O
Fe BiotiteK(Fe2+/Mg)2(Al/Fe3+/Mg/Ti)([Si/Al/Fe]2Si2O10)(OH/F)2 or Simplified: K(Mg,Fe)3AlSi3O10(OH)2
Fe SaponiteCa0.25(Mg,Fe)3((Si,Al)4O10)(OH)2 · nH2O
Fe Magnetite var. Titanium-bearing MagnetiteFe2+(Fe3+,Ti)2O4
Fe Augite(CaxMgyFez)(Mgy1Fez1)Si2O6
Fe Epidote{Ca2}{Al2Fe3+}(Si2O7)(SiO4)O(OH)
Fe Pigeonite(CaxMgyFez)(Mgy1Fez1)Si2O6
CoCobalt
Co KaznakhtiteNi6Co23+(CO3)(OH)16 · 4H2O
Co JamboriteNi2+1-xCox3+(OH)2-x(SO4)x · nH2O
NiNickel
Ni MilleriteNiS
Ni KaznakhtiteNi6Co23+(CO3)(OH)16 · 4H2O
Ni PecoraiteNi3(Si2O5)(OH)4
Ni PolydymiteNi2+Ni23+S4
Ni ViolariteFe2+Ni23+S4
Ni Pentlandite(NixFey)Σ9S8
Ni JamboriteNi2+1-xCox3+(OH)2-x(SO4)x · nH2O
Ni Kerolite(Mg,Ni)3Si4O10(OH)2 · nH2O (n ~ 1)
Ni PimeliteNi3Si4O10(OH)2 · 4H2O
Ni ReevesiteNi6Fe23+(OH)16(CO3) · 4H2O
Ni Népouite(Ni,Mg)3(Si2O5)(OH)4
CuCopper
Cu ChalcopyriteCuFeS2
Cu AzuriteCu3(CO3)2(OH)2
Cu CovelliteCuS
Cu DigeniteCu9S5
ZnZinc
Zn SphaleriteZnS
ZrZirconium
Zr ZirconZr(SiO4)
NbNiobium
Nb Rutile var. Ilmenorutile(Ti,Nb)O2
MoMolybdenum
Mo WulfenitePb(MoO4)
Mo MolybdeniteMoS2
AgSilver
Ag SilverAg
BaBarium
Ba CelsianBa(Al2Si2O8)
Ba BaryteBaSO4
Ba UranocirciteBa(UO2)2(PO4)2 · 10H2O
Ba Microcline var. Hyalophane(K,Ba)[Al(Si,Al)Si2O8]
Ba ArmeniteBaCa2Al6Si9O30 · 2H2O
WTungsten
W ScheeliteCa(WO4)
PbLead
Pb WulfenitePb(MoO4)
Pb GalenaPbS
Pb CerussitePbCO3
Pb PyromorphitePb5(PO4)3Cl
UUranium
U UranocirciteBa(UO2)2(PO4)2 · 10H2O
U UraniniteUO2
U BranneriteUTi2O6

Fossils

There are 17 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.

Occurrences60
Youngest Fossil Listed93.9 Ma (Late/Upper Cretaceous)
Oldest Fossil Listed228 Ma (Late/Upper Triassic)
Stratigraphic Units
UnitNo. OccurrencesAge
Tando beds1113 - 100.5 Ma (Early/Lower Cretaceous)
Shiwha37125 - 93.9 Ma (Cretaceous)
Tongjin22228 - 208.5 Ma (Late/Upper Triassic)
Fossils from RegionClick here to show the list.
Accepted NameHierarchy Age
Dinosauria
order
Animalia : Chordata : Reptilia : Dinosauria125 - 93.9 Ma
Cretaceous
Phlebopteris
genus
Plantae : Phlebopteris228 - 208.5 Ma
Late/Upper Triassic
Elatocladus
genus
Plantae : Tracheophyta : Pinopsida : Pinales : Podocarpaceae : Elatocladus228 - 208.5 Ma
Late/Upper Triassic
Cladophlebis
genus
Plantae : Tracheophyta : Polypodiopsida : Osmundales : Osmundaceae : Cladophlebis228 - 208.5 Ma
Late/Upper Triassic
Taeniopteris
genus
Plantae : Tracheophyta : Cycadopsida : Cycadales : Crossozamiaceae : Taeniopteris228 - 208.5 Ma
Late/Upper Triassic
Pterophyllum
genus
Plantae : Tracheophyta : Cycadopsida : Pterophyllum228 - 208.5 Ma
Late/Upper Triassic
Koreaceratops hwaseongensis
species
Animalia : Chordata : Ornithischia : Leptoceratopsidae : Koreaceratops : Koreaceratops hwaseongensis113 - 100.5 Ma
Early/Lower Cretaceous
Phoenicopsis
genus
Plantae : Tracheophyta : Pinopsida : Czekanowskiaceae : Phoenicopsis228 - 208.5 Ma
Late/Upper Triassic
Clathropteris
genus
Clathropteris228 - 208.5 Ma
Late/Upper Triassic
Podozamites
genus
Plantae : Tracheophyta : Pinopsida : Pinales : Podocarpaceae : Podozamites228 - 208.5 Ma
Late/Upper Triassic
Pityophyllum
genus
Plantae : Tracheophyta : Ginkgoopsida : Ginkgoales : Ginkgoaceae : Pityophyllum228 - 208.5 Ma
Late/Upper Triassic
Baiera
genus
Plantae : Tracheophyta : Ginkgoopsida : Ginkgoales : Karkeniaceae : Baiera228 - 208.5 Ma
Late/Upper Triassic
Neocalamites
genus
Plantae : Tracheophyta : Polypodiopsida : Equisetales : Calamitaceae : Neocalamites228 - 208.5 Ma
Late/Upper Triassic
Fossil LocalitiesClick to show 17 fossil localities

Other Databases

Wikipedia:https://en.wikipedia.org/wiki/Gyeonggi_Province
Wikidata ID:Q20937
GeoNames ID:1841610

Localities in this Region

Other Regions, Features and Areas that Intersect

Amur PlateTectonic Plate
China

This page contains all mineral locality references listed on mindat.org. This does not claim to be a complete list. If you know of more minerals from this site, please register so you can add to our database. This locality information is for reference purposes only. You should never attempt to visit any sites listed in mindat.org without first ensuring that you have the permission of the land and/or mineral rights holders for access and that you are aware of all safety precautions necessary.
 
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