Log InRegister
Quick Links : The Mindat ManualThe Rock H. Currier Digital LibraryMindat Newsletter [Free Download]
Home PageAbout MindatThe Mindat ManualHistory of MindatCopyright StatusWho We AreContact UsAdvertise on Mindat
Donate to MindatCorporate SponsorshipSponsor a PageSponsored PagesMindat AdvertisersAdvertise on Mindat
Learning CenterWhat is a mineral?The most common minerals on earthInformation for EducatorsMindat ArticlesThe ElementsThe Rock H. Currier Digital LibraryGeologic Time
Minerals by PropertiesMinerals by ChemistryAdvanced Locality SearchRandom MineralRandom LocalitySearch by minIDLocalities Near MeSearch ArticlesSearch GlossaryMore Search Options
Search For:
Mineral Name:
Locality Name:
Keyword(s):
 
The Mindat ManualAdd a New PhotoRate PhotosLocality Edit ReportCoordinate Completion ReportAdd Glossary Item
Mining CompaniesStatisticsUsersMineral MuseumsClubs & OrganizationsMineral Shows & EventsThe Mindat DirectoryDevice SettingsThe Mineral Quiz
Photo SearchPhoto GalleriesSearch by ColorNew Photos TodayNew Photos YesterdayMembers' Photo GalleriesPast Photo of the Day GalleryPhotography

Electrum from
Tongyoung Mine, Tongyeong City, South Gyeongsang Province, South Korea


Locality type:Mine
Classification
Species:Gold var: Electrum
Formula:(Au,Ag)
Confirmation
Validity:Believed Valid
Data
Mineral Data:Click here to view Electrum data
Locality Data:Click here to view Tongyoung Mine, Tongyeong City, South Gyeongsang Province, South Korea
Data Identifiers
Mindat Occurrence Record ID:568897
Long-form Identifier:1:3:568897:5
GUID (UUID V4):56816af3-8de8-43ac-987a-75b516777324
Nearest other occurrences of Electrum
44.9km (27.9 miles) ā“˜Daejang mine, Jinju City, South Gyeongsang Province, South Korea
69.2km (43.0 miles) ā“˜Yangpo mine, South Korea
References
Reference Search (possible matching items)
Journal (article/letter/editorial)
Sunshin epithermal gold-silver ore deposits, South Korea Kyu Han Kim a,āŽ, Seungyeol Lee b, Keisuke Nagao...Seoul 120ā€750, South Korea Pusan National University, Geumjeong-gu, Busan 609ā€735, South Korea Geochemical...Japan d Korea Polar Research Institute, KORDI, Songdo Techno Park, Incheon 406ā€840, South Korea b c a...Sunshin epithermal gold-silver ore deposits in South Korea were analyzed to investigate the magmatic contribution...mined for Au and Ag in the Haenam metallogenic province. These deposits have no previously documented
Journal (article/letter/editorial)
GeochemicalStudiesof the TongyoungGold-SilverDeposits,Republic of Korea: Evidence of Meteoric Water Dominance in a ...CHIL-SUP So, Departmentof Geology,Korea University,Seoul136-701, Republicof Korea G. TED HAEUSSLER, StableIsotopeGeologyand...KYEONG-YONGLEE Departmentof Geology,Korea University,Seoul136-701, Republicof Korea Abstract Epithermalgold-silvervein...fault planesin Cretaceous volcanicrocksof the Gyeongsang basin.K-Ar datingof alterationsericite (72.9...increasingparagenetictime: electrum (68 wt % Au) --ā€¢ electrum (65 wt % Au) + argentitc--ā€¢ electrum(50 wt % Au) + Ag
Journal (article/letter/editorial)
Au-Te Deposit in the Cheonan Metallogenic Province, Korea Sang Joon PAK, Seon-Gyu CHOI, Chang-Whan OH*...Earth and Environmental Sciences, Korea University, Seoul 136-701, Korea [e-mail (SGC): seongyu@korea.ac...National University, Chonju, 561-756, Republic of Korea **Department of Earth and Environmental Sciences...National University, Cheongju, 361-763, Republic of Korea Received on December 20, 2005; accepted on February...located in the Cheonan area of the Republic of Korea. The deposit is hosted in Precambrian gneiss and
Journal (article/letter/editorial)
gold-silver vein deposits in the Taebaeksan district, Korea: Distal relatives of a porphyry system S. J. PAK...Earth and Environmental Sciences, Korea University, Seoul 136-701, Korea Department of Earth and Environmental...Cheongju 361-736, Korea ABSTR ACT Gold-silver vein deposits in the Taebaeksan district, Korea, coexist in...paragenetically early Pb-Zn basemetal sulphides with electrum and late, rare Ag-sulphides and Ag-sulphosalts...Group III. The Au contents and FeS contents of electrum and sphalerite, respectively, from all of the
Journal (article/letter/editorial)
mechanisms of ore deposition at the Samgwang mine (Republic of Korea)ā€”a mesothermal, vein-hosted goldā€“silver...The Samgwang mine is located in the Cheongyang gold district (Cheonan Metallogenic Province) of the Republic...Republic of Korea. It consists of eight massive, goldbearing quartz veins that filled NE- and NW-striking...carbonates. Sulfide minerals deposited along with electrum during this stage include arsenopyrite, pyrite...National University, Daejon 305-764, Republic of Korea e-mail: phklee@cnu.ac.kr N. C. White PO Box 5181
Journal (article/letter/editorial)
Mesothermal Veins from the Gubong Mine, Cheongyang Gold District, Republic of Korea: Fluid Inclusion and Stable...National University, Daejon 305-764, Republic of Korea AND NOEL C. WHITE P.O. Box 5181, Kenmore East...carbonates. Sulfide minerals deposited along with electrum during this stage include arsenopyrite, pyrite...marcasite, chalcopyrite, galena, and argentite. Electrum also was deposited during stage II mineralization...mixing with meteoric water. Introduction THE GUBONG MINE is located in the Cheongyang gold district, one
Journal (article/letter/editorial)
Presently, active subduction is taking place in the south of Java (Clements and Hall, 2007). Tuff breccias...Cipanengen and Cibatarua Rivers, which ļ¬‚ow from north to south (Fig. 2B). The main Arinem vein is located along... (c) Massive chalcopyrite with sphalerite and electrum inclusions (substage IIA/L440m). (d) Chalcopyrite...arsenopyrite; Cpy, chalcopyrite; Cv, covellite; El, electrum; Gn, galena; Hs, hessite: Po, pyrrhotite; Py,...chalcopyrite, arsenopyrite, marcasite, pyrrhotite, and electrum occur in stage I mineralization. Stage I mineralization
Journal (article/letter/editorial)
the Gyeongnam mineralized district, Korea Sang-Hoon Choi, Korea With 6 figures and 4 tables Abstract:...district, Gyeongsang basin, Korea. Introduction The entire Korean Peninsula is a metallogenic province which...deposits in Korea are representative of hydrothermal veins and occur mainly in the Gyeongsang basin. The...The Gyeongsang basin 0077-7757/07/0065 $ 3.75 Ā© 2007 E. Schweizerbartā€™sche Verlagsbuchhandlung, D-70176...Republic of Korea shows the location of the Gyeomgnam mineralized district (GN) and Gyeongsang basin (GB)
Journal (article/letter/editorial)
Deposits of the Daerae Mine, Sangju Area, Central-Northern Sobaegsan Massif, Korea Seong-Taek YUN, Seung-Jun...KOH** Abstract: Gold mineralization of the Daerae mine represents the first recognized example of the Jurassic...Jurassic gold mineralization in the Sangju area, Korea. It occurs as a single stage of quartz veins that...relatively gold-rich (65ā€“72 atomic % Au) nature of electrum, as well as the CO2-rich and low salinity nature...ā€°), which have been very rarely reported in South Korea, and possibly indicate the derivation of sulfur
Journal (article/letter/editorial)
Deposit, Korea Sang Hoon CHOI* Abstract: The Daejang mine is located within the Cretaceous Gyeongsang basin...the basin varied with time and space. The Daejang mine is located approximately 380 km southeast of Seoul...portion of the Gyeongsang basin (Fig. 1), and was one of the famous copper deposits in Korea. The deposit...deposit of the Daejang mine contains a complex sequence of Cu-Zn-Pb and precious metal mineralization with...copper-bearing deposits in Korea are representative of hydrothermal veins and occur in the Gyeongsang basin. The Gyeongsang
Journal (article/letter/editorial)
Vein Mineralization of the Seolhwa Mine, Asan Mining District, Korea Chul-Ho Heo,1 Se-Jung Chi1 and Chil-Sup...Resources Group, Geology and Geoinformation Division, Korea Institute of Geoscience and Mineral Resources (KIGAM)...Sciences, Korea University, Seongbuk-gu, Seoul, Korea Abstract Gold mineralization of the Seolhwa mine occurs...0.4ā€“4.9 wt.% NaCl. The T-X data for the Seolhwa mine suggest that the hydrothermal system has been probably...consistent with their deep igneous source. The Seolhwa mine was probably formed by extensive fracturing and
Journal (article/letter/editorial)
germanium-bearing gold-silver vein ores from the Wolyu mine, Republic of Korea Seong-Taek Yun ~'*, Chil-Sup So 1, Sang-Hoon...3 Department of Geology, Korea University, Seoul 136-701, Republic of Korea 2 Stable Isotope Geology...Mineral Resources Research, Korea University, Seoul 136-701, Republic of Korea Received: September 24, ...1991/Accepted:August 26, 1992 Abstract. The Wolyu mine is one of the largest vein-type gold-silver-bearing...district and is the first gold-silver deposit in Korea found to contain significant germanium, in the form
Journal (article/letter/editorial)
mineralization of the Samdong mine, Youngdong mining district, Republic of Korea A geochemical and fluid inclusion...Sheiton 3 1Department of Geology, Korea University, Seoul 136-701, Korea 2 Department of Mineral and Energy...Engineering,Semyung University, Jecheon 390-230, Korea 3 Stable Isotope Geology and Geochemistry Group... Mesothermal gold mineralization at the Samdong mine (5.5-13.5 g/ton Au), Youngdong mining district,...consisting of iron- and base-metal sulfides and electrum, and are associated with weak hydrothermal alteration
Journal (article/letter/editorial)
inclusion and mineralogical studies of the Acupan gold mine, a large gold-silver-tellurium-bearing low-sulfidation...during boiling (e.g., H2S, H2Te, Te2) enhanced electrum and base metal sulfide deposition and inhibited...similar to those observed in shallow levels of the mine and in deep-level, late-stage barren vein fill....from adularia-carbonate vein assemblages in deep mine levels to sericite-bearing assemblages in shallow...waters. This could lead to vertical zonation of electrum and tellurium-bearing minerals, which may be of
Journal (article/letter/editorial)
Sawaya'erdun gold deposit in the western segment of the South Tianshan, Xinjiang, China, is a large, low-grade...extension of the Tianshan Mountains in Xinjiang Province, China (Liu et al., 1999). It is worth noting...Chinese Tianshan Mountains are a portion of the ā€˜South Tianshan Sbā€“Hgā€“Au Metallogenic Subprovinceā€™. This...e., North, Middle and South Belts, corresponding to the Junggar, North and South Tianshan Belts on the...largest recognized orogenic gold deposit in Xinjiang Province, with N3 Moz Au proven reserves, and a geologically-inferred
Journal (article/letter/editorial)
Mesothermal GoldMineralization of the Samhwanghak Mine,Youngdong Area,Republic of Korea:Constraints on...liepublicof Korea Abstract Jurassic (166 _ 2 Ma) goldvein deposits of the Samhwanghak mine,Youngdong area...Granite.Goldoccurs asgold-rich (avg 72 at. % Au)electrum intimately associated withsulfideminerals, andprecipitated...series)granitism(Shimazakiet al., spondto mesothermalAu mine,thelargestgoldproducer in 1981,1986;Sheltonet al...cal conditions of ore formation at the Samhwanghak mine, et al., 1995),andlittleis knownabouttheirgenesis
Journal (article/letter/editorial)
Geology Vol. 88, 1993, pp. 1017-1052 The PorgeraGold Mine, PapuaNew Guinea:MagmaticHydrothermalto EpithermalEvolutionof...1990 hasexceeded1 millionouncesAu per year. The mine alsocontainssubstantial reservesof ā€¢ i i i , ....dalshapes Miocene-Pliocene collision event. To the south of the rarelycrosscut one another(Fleminget al...acanthite,gold or anhydrite,vug-filling gypsum electrum Highlylocalized Veins, veinlets, breccia matrix... brecciamatrix; usuallyvuggy Pyrite, gold or electrum Marcasite, chalcopyrite, tetrahedrite, Au-Ag
Journal (article/letter/editorial)
calcite), andtypeE (coarse-grained anhydrite). Electrum andAu-Agtellurides have beenrecognized in typeB...epithermaland porphyrysystems at Acupanand Acupan South(CookeandBloom,1990),thegeology andgeochemis* Present...oneof several centralandsouthern sections of the mine(Fig. 2). It is the epithermal deposits in the B...0Mahasbeen porphyry toepithermal veins atAcupan South andpossibly obtained fromthedaciteplug(JapanInternational...ghout themine,butparticularly in the partof the mine,in andaroundthe Balatocdiatreme. immediately adjacent
Journal (article/letter/editorial)
hematite- gold, native silver, native tellurium, electrum, sylmagnetite-pyrite triple point.The overlapincreases...usionCharacteristics of Au-AgTellurideDeposits Mine Stage I Au-Ag-Temineralogy 2 Fluidinclusion Tha...IV Sy,Au,Pe,He, Em Ashanti,Ghana IIa IIb Tongyoung, Korea IId ][Ie Kochbulak,Kazakhstan 3 stages Gies...mineralization 'ā€¢Mineralnames: Au -- nativegoldor electrum,Ag -- nativesilver,Ca -- calaverite, Em -- empressRe
Journal (article/letter/editorial)
the Bulgagsa Series that hosts the Tongyoung deposit, South Korea (Shelton et al., 1990), and granodiorite...Casadevall, T., and Ohmoto, H., 1977, Sunnyside mine, Eureka mining district, San Juan Country, Colorado:...3453ā€“3468. ā€”ā€”1995b, Hydrothermal geochemistry of electrum: Thermodynamic constraints: ECONOMIC GEOLOGY,...breccia pipe Cu-W mineralization of the Dalseong mine, Korea: Neues Jahrbuch fĆ¼r Mineralogie Abhandlungen...Richards, J.P., and Kerrich, R., 1993. The Porgera gold mine, Papua New Guinea: Magmatic hydrothermal to epithermal
Journal (article/letter/editorial)
Engineering, University of Adelaide, Adelaide, South Australia 5005, Australia Abstract The Sandaowanzi...Abbreviations: NCC = North China craton, SECOB = South East China orogenic belt, YC = Yangtze craton. (B)...from alkaline in the north to subalkaline in the south (Liu et al., 2011). Based on results of U-Pb age...(Au1.8Ag0.2Te) from stage III (CM23/130m), 7a = electrum from stage II (CM28/130m), 7b = native gold from...detection limit, CM = transverses drifts used at the mine 1Te + Se = 2 9Au + Ag + Bi = 1 2Te + Se + S = 1
Report (issue)
Siberia, Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . .................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral...Sciences, Ulaanbaatar. China Geological Survey; the Korea Institute of Geosciences 3 Russian Academy of Sciences...- East Angara (Riphean and older basement; ST - South Taimyr (Ordovician through Jurassic); VR - Verkhoyansk...AB - Atasbogd (Ordovician through Permian); SM - South Mongolia-Khingan (Ordovician through Carboniferous);
Report (issue)
Siberia, Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . .................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral...Sciences, Ulaanbaatar. China Geological Survey; the Korea Institute of Geosciences 3 Russian Academy of Sciences...- East Angara (Riphean and older basement; ST - South Taimyr (Ordovician through Jurassic); VR - Verkhoyansk...AB - Atasbogd (Ordovician through Permian); SM - South Mongolia-Khingan (Ordovician through Carboniferous);
Report (issue)
Siberia, Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . .................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral...Sciences, Ulaanbaatar. China Geological Survey; the Korea Institute of Geosciences 3 Russian Academy of Sciences...- East Angara (Riphean and older basement; ST - South Taimyr (Ordovician through Jurassic); VR - Verkhoyansk...AB - Atasbogd (Ordovician through Permian); SM - South Mongolia-Khingan (Ordovician through Carboniferous);
Report (issue)
Siberia, Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . .................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral...Sciences, Ulaanbaatar. China Geological Survey; the Korea Institute of Geosciences 3 Russian Academy of Sciences...- East Angara (Riphean and older basement; ST - South Taimyr (Ordovician through Jurassic); VR - Verkhoyansk...AB - Atasbogd (Ordovician through Permian); SM - South Mongolia-Khingan (Ordovician through Carboniferous);
 
Mineral and/or Locality  
Mindat Discussions Facebook Logo Instagram Logo Discord Logo
Mindat.org is an outreach project of the Hudson Institute of Mineralogy, a 501(c)(3) not-for-profit organization.
Copyright © mindat.org and the Hudson Institute of Mineralogy 1993-2024, except where stated. Most political location boundaries are Ā© OpenStreetMap contributors. Mindat.org relies on the contributions of thousands of members and supporters. Founded in 2000 by Jolyon Ralph.
Privacy Policy - Terms & Conditions - Contact Us / DMCA issues - Report a bug/vulnerability Current server date and time: April 23, 2024 13:30:22
Go to top of page