Fig. 1. Classification of green-blue coloured minerals from the Gukjeon mine into five groups (GJG) according to their occurrence and mineral assemblages. GJG-2, 3, 4 were obtained at the same outcrop.
Fig. 2. X-ray diffraction patterns of five green-blue coloured mineral groups.
Fig. 3. SEM images and EDS spectra of brochantite, schulenbergite, and serpierite from the Gukjeon mine. (A-C) brochantite, (D-F) schulenbergite, (G-I) serpierite.
Fig. 4. SEM images and EDS spectra of hydrowoodwardite, glaucocerinite, and bechererite from the Gukjeon mine. (A, B) hydrowoodwardite, (C, D) glaucocerinite, (E, F) bechererite.
Fig. 5. Ternary diagram of CuO-ZnO-(Al2O3+SiO2+CaO) contents of green-blue coloured minerals from the Gukjeon mine.
Table 1. Representative chemical composition (wt.%) and empirical formula of brochantite from the Gukjeon mine using EDS quantitative analyses
Table 2. Representative chemical composition (wt.%) and empirical formula of schulenbergite from the Gukjeon mine using EDS quantitative analyses
Table 3. Representative chemical composition (wt.%) and empirical formula of serpierite from the Gukjeon mine using EDS quantitative analyses
Table 4. Colour and mineral assemblage of five green-blue coloured mineral groups
References
- Anthony, J.W., Bideaux, R.A., Bladh, K.W., Nichols, M.C. (Eds.) (2006) Handbook of Mineralogy. Mineralogical Society of America, Chantilly, VA 20151-1110, USA. http://www.handbookofmineralogy.org/.
- Braithwaite, R.S.W. (1982) Wroewolfeite in Britain. Mineralogical Record, v.13, p.167-174.
- Braithwaite, R.S.W. and Knight, J.R. (1968) Serpierite from Ecton, Staffordshire. Mineralogical Magazine, v.36, p.882. https://doi.org/10.1180/minmag.1968.036.282.23
- Brideges, T.F. (1987) Serpierite and devilline from the Northern Pennine Orefield. Proceedings of the Yorkshire Geological Society, v.46, no.2, p.169. https://doi.org/10.1144/pygs.46.2.169
- Cook, R.B. (2009) Brochantite Blanchard Mine, Bingham, New Mexico, Rocks & Minerals, v.84, no.1, p.48-53. https://doi.org/10.3200/RMIN.84.1.48-53
- Garcia-Guinea, J., Furio, M., Sanchez-Moral, S., Jurado, V., Correcher, V. and Saiz-Jimenez, C. (2015) Composition and spectra of copper-carotenoid sediments from a pyrite mine stream in Spain. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, v.135, p.203-210. https://doi.org/10.1016/j.saa.2014.07.017
- Gazquez, F., Rull, F., Medina, J., Calaforra, J.M., Forti, P., De Waele, J., Venegas, G. and Sanz, A. (2013a). Glaucocerinite forming gours in Su Zurfuru Mine (Sardinia, Italy). Revista de la Sociedad Espanola de Mineralogia, v.17, p.53-54.
- Giester, G. and Rieck, B. (1996) Bechererite, (Zn,Cu) 6Zn2(OH)13[(S,Si)(O,OH)4]2, a novel mineral species from the Tonopah-Belmont mine, Arizona. Americal Mineralogist, v.81, p.244-248. https://doi.org/10.2138/am-1996-1-230
-
Hodenberg, R.V., Krause, W. and Tauber, H. (1984) Schulenbergite,
$(Cu,Zn)_7(SO_4,CO_3)_2(OH)_{10}{\cdot}3H_2O$ , a new mineral. Neues Jahrbuch Fur Mineralogie, Monatshefte, p.17-24. - Hong, S.H. and Choi, P.Y. (1988) Geological report ofthe Yucheon sheet (scale 1:50,000). Korea Institute of Energy and Resources.
- IMA (International Mineralogical Association) (2018) The New IMA List of Minerals - A Work in Progress - Updated: March 2018. 211p.
- Jeong, G.Y., Cho, H.G. and Do, J.Y. (2018) Occurrence and Mineralogical Propertiesof Green-Blue Inorganic Pigments in Korea. Korea. Journal of the Mineralogical Society of Korea, v.31, no.1, p.33-46. https://doi.org/10.9727/jmsk.2018.31.1.33
- Kim, C.-M., Jeong, J.O., Gu, D. and Han, R. (2017) Identification of materials in principal slip zones of faults by X-ray diffraction analysis using a small amount of sample. Journal of the Geological Society of Korea. v.53, no.6, p.873-883. https://doi.org/10.14770/jgsk.2017.53.6.873
- Kim, K.B. and Hwang, S.G. (1988) Geological report of the Miryang sheet (scale 1:50,000). Korea Institute of Energy and Resources.
- Kingsbury, A.W.G. and Hartley, J. (1957) Serpierite from the Lake District. Mineralogical Magazine, v.31, p.604-605. https://doi.org/10.1180/minmag.1957.031.238.07
- Kojiro, T., Yamada, T., Kikukawa, M. and Hirama, T. (1999) Minerals from Mikawa Mine, Niigata Prefecture. Quartz (Journal of the Friends of Mineral, Tokyo), v.12, p.9-16.
- KORES (Korea Resources Corporation) (1979) Mineral deposits of Korea. KORES.
- KORES (Korea Resources Corporation) (1981) Mineral deposits of Korea. KORES.
- Kwak, J.Y., Kang, C.W., Joo, S.Y., Jeong, J.H. and Choi, J.B. (2015) Occurrence of Zn-Pb Deposits in Danjang- Myeon, Milyang Area. Korea. Journal of the Mineralogical Society of Korea, v.28, no.3, p.279-292. https://doi.org/10.9727/jmsk.2015.28.3.279
- Livingstone, A., Bridges, T.F. and Bevins, R.E. (1990) Schulenbergite and namuwite from Smallcleugh mine, Nenthead, Cumbria. Journal of the Russell Society, v.3, p.23-24.
- Livingstone, A., Jackson, B. and Davidson, P.J. (1992) The zinc analogue of schulenbergite, from Ramsbeck, Germany. Mineralogical Magazine, v.56, p.215-219. https://doi.org/10.1180/minmag.1992.056.383.07
- Livingstone, A., Macpherson, H.G. and Jackson, B. (1976) Wroewolfeite and other langite-group minerals from Blackcraig, Kircudbrightshire. Mineralogical Magazine, v.40, p.893-894. https://doi.org/10.1180/minmag.1976.040.316.12
- Mason, J.S. and Green, D.I. (1995) Supergene minerals including exceptional ramsbeckite from Penrhiw Mine, Ystumtuen, Dyfed. UK Journal of Mines & Minerals, v.15, p.21-27.
- Mumme, W.G., Sarp, H. and Chiappero, P.J. (1994) A note on the crystal structure of schulenbergite. Archives des Sciences (Geneve), v.47, p.117-124.
- NRICH (National research Institute of Cultural Herigate) (2017) Investigation and Analysis of Traditional Pigment Minerals of Dancheong. NRICH, 295p.
- Ohnishi, M., Kusachi, I., Kobayashi, S. and Yamakawa, J. (2007) Mineral chemistry of schulenbergite and its Zn-dominat analogue from the Hirao mine, Osaka, japan. Journal of Mineralogical and Petrological Sciences, v.102, p.233-239. https://doi.org/10.2465/jmps.061130
- Ohnishi, M., Shimobayashi, N. and Kobayashi, S. (2012) Chemical composition of hydrowoodwardite from the Dogamaru mine, Shimane Prefecture and the Oike mine, Shiga Prefecture, Japan. Japanese Magazine of Mineralogical and Petrological Sciences, v.41, p.122-128. https://doi.org/10.2465/gkk.120329
- Ohinishi, M., Shirakami, M. and Yoshimura, T. (2001) Secondary minerals from the Hirao Old Mine, Onsencho, Minoo City, Osaka Prefecture, Japan, Chigaku Kenkyu, v.50, p.137-159.
- Okamoto, H., Morimoto, K., Anraku, S., Sato, T. and Yoneda, T. (2010) A novel remediation method learnt from natural attenuation process for Cu- and Znbearing wastewater. Clay Science, v.14, p.203-210.
- Russell, A. (1927) Notice of an occurrence of niccolite and ullmannite at the Settlingstone mine, Fourstones, Northumberland; and of serpierite at Ross Island mine, Killarney, Co. Kerry, Ireland. Mineralogical Magazine, v.21, p.383-387.
- Sabelli, C. and Zanazzi, P.F. (1968) The Crystal Structure of Serpierite, Acta Crystalographica, v.24, p.1214-1221. https://doi.org/10.1107/S0567740868004000
- Sabelli, C. and Zanazzi, P.F. (1972) The crystal structure of devillite. Acta Crystallographica, v.28, p.1182-1189. https://doi.org/10.1107/S0567740872003929
-
Sarp, H. (1985) Orthoserpierite
$Ca(CuZn)_4(SO_4)_2(OH)_6{\cdot}3H_2O$ , un nouveau-mineral de la Mine de Chessy, France, polymorphe de la serpierite. Swiss Bulletin of Mineralogy and Petrology, v.65, p.1-7. - Watanabe, H., Tazaki, K., Islam, A.B.M.R. and Chaerun, S.K. (2003) Copper biomineralization with banded structure at Dogamaru mine, Shimane Prefecture, Japan. In Water and Solid Environments: Microorganisms paly an important role (Tazaki, K. Ed.). Kanazawa University Press, Kanazawa, p.91-140.
- Yang, C.M. and Choi, J.B. (2010) Occurrence of the Pb-Zn Skarn Deposits in Gukjeon Mine, Korea. Journal of the Mineralogical Society of Korea, v.23, no.4, p.413-428.
- You, K. S. (2013) A Study on paints producing centers supply and demand environment of Chosun dynasty color pigment. Journal of Korean Society of Color Studies, v.27, p.27-37.
-
Zaharia, L. (2003) Serpierite Ca(Cu,Zn)4(OH)6(SO4)2
${\cdot}$ 3H2O - The first occurrence in Romania. Studia Universitatis Babes-Bolyai, Geologia, v.48, no.1, p.77-84. https://doi.org/10.5038/1937-8602.48.1.7 - Zittlau, A.H., Shi, Q., Boerio-Goates, J., Woodfield, B.F. and Majzlan, J. (2013) Thermodynamics of the basic copper sulfates antlerite, posnjakite, and brochantite. Chemie der Erde, v.73, p.39-50. https://doi.org/10.1016/j.chemer.2012.12.002