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Quartz from South Korea

South Korea
 
Cho, H. G., & Kim, S. J. (1994). Li-bearing tosudite from the Bubsoo mine, Korea. Neues Jahrbuch fΓΌr Mineralogie Monatshefte, (3), 130-137.
  • Daejeon
    • Daejeon-gun
Gi Young Jeong (2006): Mineralium Deposita 41, 469-481.
  • Gangwon Province
    • Chuncheon City
Yuhuan, F., Xuemei, H., & Yuntao, J. (2021). A new model for the formation of nephrite deposits: A case study of the Chuncheon nephrite deposit, South Korea. Ore Geology Reviews, 104655.
    • Goseong County
University of Tokyo collection - specimen # IV-122.
    • Hoengseong County
      • Naegumgang-myon
        • Sinpung-ni
Kinosaki, Y. (1940) Jour. Min. Soc. Korea, v. 23, no. 11.
    • Imgye district
Park, H. I., Hwang, J., & Huh, S. D. (1992). Gold-silver mineralizations in the Imgye district. Economic and Environmental Geology, 25(4), 379-395.
Park, H. I., Hwang, J., & Huh, S. D. (1992). Gold-silver mineralizations in the Imgye district. Economic and Environmental Geology, 25(4), 379-395.
Park, H. I., Hwang, J., & Huh, S. D. (1992). Gold-silver mineralizations in the Imgye district. Economic and Environmental Geology, 25(4), 379-395.
    • Jeongseon County
Song, Y. (2020) Mg-Phengite in Carbonate Rock Syngenetically Formed from Hydrothermal Fluid: Micro-Textural Evidence and Mineral Chemistry. Minerals 10, 668.
Park, C.
Kim, N.
Choi, S.-J.
Dongbok Shin et al. , The Canadian Mineralogist, Volume 42, Number 5, October 2004, pp. 1465-1481
    • Samchok City
      • Maewon-gun
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
Park, M. E. (1993). H/F Variation in Wolframites According to Depth and Temperature of Mineralization at Ssangjeon, Weolag, Cheongyang and Sannae Mines, Korea. Economic and Environmental Geology, 26(3), 259-265.
      • Puksam-myon
Kinosaki, Y. (1941) Jour. Min. Soc. Korea, 24, 12.
    • Sangdong-gun
Sint, N. N., Yonezu, K., Tindell, T., Aye, M. T., Win, H., Imai, A., & Watanabe, K. (2019). Geology and Skarn Cu–Bi–Au Mineralization at Shwe Min Bon Area, Kalaw Township, Southern Shan State, Myanmar. Resource Geology, 69(1), 85-106.
Kim, E. J., Yang, S. J., Shin, S., Nam, H. T., Shin, D., Im, H. K., ... & Park, M. E. (2018). New discoveries, skarn zonation, and skarn textures at the Geodo Mine in the Taebaeksan Basin, South Korea. Geosciences Journal, 22(6), 881-889.
Kim, E. J., Park, M. E., & White, N. C. (2012). Skarn gold mineralization at the Geodo mine, South Korea. Economic Geology, 107(3), 537-551.
Kang, J., Choi, S. G., Seo, J., Kim, S. T., Kim, G. B., Cho, S. J., ... & Lee, Y. J. (2022). A genetic model of the giant Sangdong W–Mo skarn deposit in the Taebaeksan Basin, South Korea. Ore Geology Reviews, 105187.
Lee, C. (2020) Sequential Scheelite Mineralization of Quartz–Scheelite Veins at the Sangdong W-Deposit: Microtextural and Geochemical Approach. Minerals 10, 678.
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
Imai, H. (1978) Geological studies of the mineral deposits in Japan and East Asia. pp 196-200 (University of Tokyo Press)
66.249.93.104 (n.d.) http://66.249.93.104/search?q=cache:mg5-mQ7pQgcJ:science.empas.com/search/kisti_detail.html%3Fq%3D%26i%3D328483%26au%3D%26rs%3D%26jn%3D+sangdong+bismuth&hl=fr
Choi, W.
Park, C.
Song, Y.
Park, C.
Kim, H.
  • Gyeonggi Province
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.
Jeong, G. Y & Kim, Y. H. (1999): Goldmanite from the black slates of the Ogcheon belt, Korea. Mineralogical Magazine, 63, 253-256.
    • Hwaseong City
Econ Geol (1984) 79:656-670
    • Pocheon City
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.
Shin, Seungwook, Seongjun Cho, Euijun Kim, and Jihyun Lee. (2021) "Geophysical Properties of Precambrian Igneous Rocks in the Gwanin Vanadiferous Titanomagnetite Deposit, Korea" Minerals 11, no. 10: 1031. https://doi.org/10.3390/min11101031
    • Suwon City
      • Umdong-myon
Tsuda, H. (1969) Supplement to "Minerals of Korea" (in: Geology and Mineral Resources of the Far East, vol. 2 (Tokyo University Press))
Pohwat, P. W. (2013). Connoisseur's Choice: Fluorite, Part 2, Huanggang Mine, Inner Mongolia, China. Rocks & Minerals, 88(3), 250-263.
Takagi, T. et al. (2008): Geology and Hydrothermal Alteration of the Milyang Pyrophyllite Deposit, Southeast Korea. Resource Geology 50(4), 243-256.
  • North Chungcheong Province
    • Boeun County
Gi Young Jeong (2006): Mineralium Deposita 41, 469-481.
Ahn, S., & Shin, D. (2017). Mineralogy and genetic environments of the Seongdo Pb-Zn deposit, Goesan. Economic and Environmental Geology, 50(5), 325-340.
    • Chechon-gun
      • Hansu-myon
Kinosaki, Y. (1942) Miscelaneous Reports of the Geological Survey, Government-General of Korea, no. 11, 35.
      • Susan-myon
Kinosaki, Y. (1943) Jour. Min. Soc. Korea, 26, 8.
Park, M. E. (1993). H/F Variation in Wolframites According to Depth and Temperature of Mineralization at Ssangjeon, Weolag, Cheongyang and Sannae Mines, Korea. Economic and Environmental Geology, 26(3), 259-265.
William T. Holser: Beryllium minerals in the Victorio Mountains, Luna County, New Mexico. AM 38, 519 ff.
    • Chungju City
      • Angseong-myeon
        • Neungam-ri (Neung Am-ri; Noungam-ri)
Econ Geol (1987) 82:471-481
Econ Geol (1992)87:2056-2084
Econ Geol (1992)87:2056-2084
Heo, Chul-Ho (2014) Spectroscopy of Skarn Minerals in Dangdu Pb-Zn Deposit and Assessment of Skarn Exploration Approaches Employing Portable Spectrometer. Journal of the Mineralogical Society of Korea, volume 27, issue 3, 2014, Pages 135-147
Jeong, Yong Sik
Yu, Jaehyung
Koh, Sang-Mo
Econ Geol (1992)87:2056-2084
      • Joongwon-gun
        • Mt. Eorae
Park, M.-E. (2020) The Geochronology and Geochemistry of Zircon as Evidence for the Reconcentration of REE in the Triassic Period in the Chungju Area, South Korea. Minerals 10, 49.
No, S. G., & Park, M. E. (2019). Bands of Zircon, Allanite and Magnetite in Paleozoic Alkali Granite in the Chungju Unit, South Korea, and Origin of REE Mineralizations. Minerals, 9(9), 566.
Pavel.M. Kartashov (n.d.) analytical data.
No, S.-G.
Econ Geol (1992)87:2056-2084
Park, M. E. (1993). H/F Variation in Wolframites According to Depth and Temperature of Mineralization at Ssangjeon, Weolag, Cheongyang and Sannae Mines, Korea. Economic and Environmental Geology, 26(3), 259-265.
So, C.S., Rye, D.M., and Shelton, K.L. (1983) Carbon, hydrogen, oxygen and sulfur isotopic and fluid inclusion study of the Weolag W-Mo deposit, Republic of Korea: Fluid histories of metamorphic and ore-forming events. EconomicGeology 78, 1551-1573.
David Jegou
    • Danyang County
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)
Sugaki, A., Kim, O. J., Kim, W. J. (1986): Gold and silver ores from the Geumwang mine in South Korea and their mineralization. Mining Geol. 36, 555-572.
    • Goesan County
Gi Young Jeong (2006): Mineralium Deposita 41, 469-481.
      • Sangmo-myon
Kinosaki, Y. (1941) Jour. Min. Soc. Korea, v. 24, no. 10.
Yoo, Bong Chul, Brown, Philip E., White, Noel C. (2011) Hydrothermal fluid characteristics and genesis of Cu quartz veins in the Hwanggangri metallogenic district, Republic of Korea: Mineralogy, fluid inclusion and stable isotope studies. Journal of Geochemical Exploration, 110 (3) 245-259 doi:10.1016/j.gexplo.2011.05.012
Econ Geol (1994) 89:246-267
Econ Geol (1994) 89:246-267
Lee, J. H., Seo, J., Choi, S. G., Oh, C. W., & Lee, Y. J. (2022). Different characteristics of barren and W–Mo–productive Cretaceous granites in the Hwanggangri mineralized district, South Korea. Ore Geology Reviews, 141, 104645.
Econ Geol (1994) 89:246-267
Lee, J. H., Seo, J., Choi, S. G., Oh, C. W., & Lee, Y. J. (2022). Different characteristics of barren and W–Mo–productive Cretaceous granites in the Hwanggangri mineralized district, South Korea. Ore Geology Reviews, 141, 104645.
Yoo, Bong Chul, Brown, Philip E., White, Noel C. (2011) Hydrothermal fluid characteristics and genesis of Cu quartz veins in the Hwanggangri metallogenic district, Republic of Korea: Mineralogy, fluid inclusion and stable isotope studies. Journal of Geochemical Exploration, 110 (3) 245-259 doi:10.1016/j.gexplo.2011.05.012
Econ Geol (1994) 89:246-267
    • Jincheon County
[var. Chalcedony] www.orientalminerals.com
[var. Amethyst] Sorrell, Steve (n.d.) Personal communication.
William T. Holser: Beryllium minerals in the Victorio Mountains, Luna County, New Mexico. AM 38, 519 ff.
Yoo, Bong Chul, White, Noel C. (2013) Mineralogy, fluid inclusion and stable isotope constraints on the genesis of the Namseong Au-Ag deposit, Republic of Korea. Geochemical Journal, 47 (3) 285-307 doi:10.2343/geochemj.2.0245
47:285-307
William T. Holser: Beryllium minerals in the Victorio Mountains, Luna County, New Mexico. AM 38, 519 ff.
    • Yeongdong County
Chil-Sup So, Seong-Taek Yun, K. L. Shelton (1995) Mesothermal gold vein mineralization of the Samdong mine, Youngdong mining district, Republic of Korea. Mineralium Deposita 30:384-396
Econ Geol 92 (1997) 92:60-80
Seong-Taek Yun, Chil-Sup So, Sang-Hoon Choi, Kevin L Shelton, and Ja-Hak Koo (1993) Genetic environment of germanium-bearing gold-silver vein ores from the Wolyu mine, Republic of Korea: Mineralium Deposita, 28(2), 107-121.
Chil-Sup So, Seong-Taek Yun, Kevin L. Shelton and De-Quan Zhang (2002) Geochemistry of the Youngbogari deposit, Republic of Korea: An unusual mesothermal gold–silver deposit of the Youngdong area. Geochemical Journal, 36:155-171
  • North Gyeongsang Province
    • Bonghwa County
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
Yun, S. T., Choi, S. H., Heo, C. H., So, C. S., Chae, G. T., & Kim, J. W. (1999). Hydrothermal antimony deposits of the Hyundong mine: Geochemical study. Economic and Environmental Geology, 32(5), 435-444.
Lee, C.H., Lee, H.K., and Kim, S.J. (1998): Mineralium Deposita 33, 379-390.
G. Grundmann collection # 128, originally sold by Kristalldruse.
      • Yeonhwa mines
Lee, Y. U., & Chung, J. I. (2003). Mode of Occurrences and Depositional Conditions of Arsenopyrite from the Yeonhwa 1 Mine, Korea. Journal of the Mineralogical Society of Korea, 16(1), 1-17.
Chil-Sup, So, Seong-Taek, Yun, Yong-Kwon, Koh (1993) Mineralogic, fluid inclusion, and stable isotope evidence for the genesis of carbonate-hosted Pb-Zn(-Ag) orebodies of the Taebaek Deposit, Republic of Korea . Economic Geology, 88 (4) 855-872 doi:10.2113/gsecongeo.88.4.855
Chil-Sup, So, Seong-Taek, Yun, Yong-Kwon, Koh (1993) Mineralogic, fluid inclusion, and stable isotope evidence for the genesis of carbonate-hosted Pb-Zn(-Ag) orebodies of the Taebaek Deposit, Republic of Korea . Economic Geology, 88 (4) 855-872 doi:10.2113/gsecongeo.88.4.855
Koh, Yong-Kwon (1993) Mineralogic, fluid inclusion, and stable isotope evidence for the genesis of carbonate-hosted Pb-Zn(-Ag) orebodies of the Taebaek Deposit, Republic of Korea. Economic Geology, 88(4), 855-872.
So, Chil-Sup
Yun, Seong-Taek
    • Gyeongju City
Choi, H. O., Choi, S. H., Lee, D. C., & Kang, H. C. (2013). Geochemical evolution of basaltic volcanism within the tertiary basins of southeastern Korea and the opening of the East Sea (Sea of Japan). Journal of Volcanology and Geothermal Research, 249, 109-122.
Lee, M. J., Lee, J. I., & Lee, M. S. (1995). Mineralogy and major element geochemistry of A-type alkali granite in the Kyeongju area, Korea. ?????, 31(6), 583-607.
    • Gyeongsan City
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
    • Mungyeong City
      • Mungyong-myon
Kinichi Sakurai (1943) Chigaku-no-Kagaku, 1, 3.
Sadanaga & Bunno (1973)
    • Uljin County
      • Punch'on
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
Sahng Yup Kim (1986) Geochemistry of Ogbang Tungsten Deposits, Southern Korea. Jour. Korean Inst. Mining Geol.V. 19, Spec. Iss., p.53β€”71.
      • Wangbi-ri
Choi, Y. H., Park, Y. R., & Noh, J. H. (2014). Genesis of Boam lithium deposits in Wangpiri, Uljin. Journal of the Geological Society of Korea, 50(4), 489-500.
    • Ulleung County
Atsuo Harumoto (1970) Volcanic Rocks and Associated Rocks of Utsuryoto Island, (Japan Sea). (39pp + geological map)
    • Yeongju City
      • Punggi-myon
Kinosaki, Y. (1943) Jour. Min. Soc. Korea, v. 26, no. 8.
Kinosaki, Y. (1943) Jour. Min. Soc. Korea, v. 26, no. 8.
    • Yeongyang County
      • Ilwol-myon
Kinosaki, Y. (1941) Jour. Min. Soc. Korea, 24, 12.
Kim, S. & Lee, Insung & Jin, M.. (2003). Mineralogical and Fluid Inclusion Studies of the Yugeum Hydrothermal Gold Deposit, Youngdeok Area, Korea. AGU Fall Meeting Abstracts.
  • North Jeolla Province
Economic Geology,(1996) Vol. 91-3, pp.636-646
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
    • Jinan County
      • Mount Munpilbong
Choi, Hyoryeong, Yu, Yeongchun, Cho, Namchul (2024) Chemical Composition, Crystal Structure, and Microstructure of Slags on the Korean Peninsula from the First Copper Production Remains of the 9th Century. Crystals, 14 (4) doi:10.3390/cryst14040327
Choi, Jin-Beom (2011) Occurrence of the Nb-Ta Ore Bodies in Pegmatites, Mujoo. Journal of the Mineralogical Society of Korea, volume 24, issue 2, 2011, Pages 133-143
Kang, Min-Woo
Kim, Ji-Hyun
    • Namwon City
      • Sannae-myon
Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 10.
Economic Geology,(1996) Vol. 91-3, pp.636-646
Bong Chul Yoo, Hyun Koo Lee & Noel C. White (2010): Mineralogical, fluid inclusion, and stable isotope constraints on mechanisms of ore deposition at the Samgwang mine (Republic of Korea)β€” a mesothermal, vein-hosted gold–silver deposit. Mineralium Deposita 45, 161-187.
  • South Chungcheong Province
    • Cheonan City
Economic Geology (1987) 82:987-1000
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
Economic Geology (1987) 82:987-1000
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
    • Cheongyang County
Yoo, B. C., Lee, H. K., White, N. C. (2006) Gold-Bearing Mesothermal Veins from the Gubong Mine, Cheongyang Gold District, Republic of Korea: Fluid Inclusion and Stable Isotope Studies. Economic Geology, 101 (4) 883-901 doi:10.2113/gsecongeo.101.4.883
    • Geumsan County
Park, C.Y. (2020) Liberation of Gold Using Microwave-Nitric Acid Leaching and Separation-Recovery of Native Gold by Hydro-Separation. Minerals 10, 327.
Youn, J. S., Lee, K. Y., So, C. S., & Koh, Y. K. (1988) The Jinsan Gold Mine, Korea: A Mineralogical and Geochemical Study. Economic and Environmental Geology, 21(1), 17-27.
Cho, K.H.
Lee, J.J.
Shin, I., Kim, S., & Shin, D. (2016). Mineralogy and sulfur isotope compositions of the uraniferous black slates in the Ogcheon Metamorphic Belt, South Korea. Journal of Geochemical Exploration, 169, 1-12.
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.
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
    • Taedok-kun
      • Pung-myon
        • Kalchol-li
(2013) The Optimization of Silver Leaching from the Samjo Mine Concentrate by Thiourea. Journal of the Mineralogical Society of Korea, volume 26, issue 1, 2013, Pages 1-8
Nakamura, K. (1943) Journal of the Geographical Society, Tokyo, 55, 652.
Yang, Gwon-Seung
Kim, Bong-Ju
Choi, Nag-Choul
Park, Cheon-Young
Heo, C. H. (2007) Fluid Inclusion Study of Gold Mineralization at the Yuryang Mine, Korea. ν•œκ΅­μ§€κ΅¬μ‹œμŠ€ν…œκ³΅ν•™νšŒμ§€Vol. 44, No. 1 (2007) pp. 20-27
  • South Gyeongsang Province
Yang, K. H., Yun, S. H., & Lee, J. D. (2001). A fluid inclusion study of an amethyst deposit in the Cretaceous Kyongsang Basin, South Korea. Mineralogical Magazine, 65(4), 477-487.
[var. Amethyst] Jamison K. Brizendine photo , Photo id 696618
Shimazaki, H., Lee, M. S., Tsusue, A., & Kaneda, H. (1986). Three epochs of gold mineralization in South Korea. Mining Geology, 36(198), 265-272.
    • Haman County
      • Chungnam-myon
Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 5.
Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 5.
      • Pung-myon
Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 5.
Kinosaki, Y. (1941) Journal of the Mineralogical Society of Korea, 24, 5.
      • Yohang-myon
watanabe, T. : Boron mineral resources in Korea (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)
    • Jinju City
Choi, S. H. (1998). Geochemical Evolution of Hydrothermal Fluids at the Daejang Cu–Zn–Pb Vein Deposit, Korea. Resource Geology, 48(3), 171-182.
Shin, H. J., Kim, M. Y., & So, C. S. (1987). Geochemistry and Genetic Environments of the Daejang Vein Deposits. Economic and Environmental Geology, 20(1), 61-75.
Suzuki, A. (1943) Jour. Min. Soc. Korea, 12.
    • Miryang City
      • Sannae-gun
        • Yangdung
[var. Amethyst] Seo, Jung H., Yevgeniya Kim, Tongha Lee, and Marcel Guillong. 2021. "Periodically Released Magmatic Fluids Create a Texture of Unidirectional Solidification (UST) in Ore-Forming Granite: A Fluid and Melt Inclusion Study of W-Mo Forming Sannae-Eonyang Granite, Korea" Minerals 11, no. 8: 888. https://doi.org/10.3390/min11080888
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
Park, M. E. (1993). H/F Variation in Wolframites According to Depth and Temperature of Mineralization at Ssangjeon, Weolag, Cheongyang and Sannae Mines, Korea. Economic and Environmental Geology, 26(3), 259-265.
Seo, Jung H., Yevgeniya Kim, Tongha Lee, and Marcel Guillong. 2021. "Periodically Released Magmatic Fluids Create a Texture of Unidirectional Solidification (UST) in Ore-Forming Granite: A Fluid and Melt Inclusion Study of W-Mo Forming Sannae-Eonyang Granite, Korea" Minerals 11, no. 8: 888. https://doi.org/10.3390/min11080888
    • Sancheong County
Jo, Jaeguk, Yamanaka, Toshiro, Shin, Dongbok (2023) Nitrogen isotope geochemistry of ion adsorption-type REE mineralization: Insights from the weathered granitoid rocks in the Sancheong district, South Korea. Ore Geology Reviews, 157. 105429 doi:10.1016/j.oregeorev.2023.105429
    • Tongyeong City
      • Ilgwang-myon
Econ Geol (1977) 72:753-768
watanabe, T. : Boron mineral resources in Korea (in: Geology and Mineral Resources of the Far East, University of Tokyo Press, 1969)
Econ Geol (1990) 85:1114-1132
  • South Jeolla Province
    • Jindo County
      • Gasado Island
Ko, Y., Kim, C. S., & Choi, S. H. (2022). Genetic Environments of Au-Ag-bearing Gasado Hydrothermal Vein Deposit. Economic and Environmental Geology, 55(1), 53-61.
"Exploration and utilization of the epithermal gold deposit in Korea."
Yang, S. J., Kim, T., Kim, E. J., Duuring, P., Koh, S. M., Nam, H. T., ... & Kim, Y. S. (2022). Geometry and scale property of a gold-silver-bearing vein system associated with an oblique-slip fault zone at Gasado Island, Korea. Ore Geology Reviews, 104972.
    • Yeongam County
Ryoo, C. R., Park, S. W., & Lee, H. (2014). Geological Structures and Mineralization in the Yeongam Mineralized Zone, Korea. The Journal of the Petrological Society of Korea, 23(1), 1-15.
Heo, Chul-Ho, Seong-Yong Kim, and Il-Hwan Oh. (2021) "Genetic Environments of the Eunjeok Au–Ag Deposit in the Yeongam District: Implications for Cretaceous Epithermal Au–Ag Mineralization in South Korea" Minerals 11, no. 10: 1088. https://doi.org/10.3390/min11101088
Kim, M.Y., Shin, H.J., Kim, C.H. (1991) Mineralization of the Sangeun mine, Jeonnam, Korea. Mining Geology, 42 (3), 201-202.
  • Ulsan
    • Buk District
Choi, S. G., & Lee, J. G. (2002). A Petrochemical Study of Granite and Fe-W Mineralization in the Ulsan Skarn Deposit. In Proceedings of the KSEEG Conference (pp. 344-346). The Korean Society of Economic and Environmental Geology.
Canadian Mineralogist 38:567-584 (2000)
CHOI, S. G., & IMAI, N. (1985). Ni-Fe-Co Arsenides and Sulpharsenides from the Ulsan Mine, Republic of Korea. Mining Geology, 35(189), 1-16.
    • Ulju County
 
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