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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

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Reference TypeJournal (article/letter/editorial)
TitleThe Distribution of Precious Metals in High-Grade Banded Quartz Veins from Low-Sulfidation Epithermal Deposits: Constraints from µXRF Mapping
JournalMinerals
AuthorsTharalson, ErikAuthor
Monecke, ThomasAuthor
Reynolds, T.Author
Zeeck, LaurenAuthor
Pfaff, KatharinaAuthor
Kelly, NigelAuthor
Year2019 (November 29)Volume9
Page(s)740Issue12
PublisherMDPI AG
URL
Download URLhttps://www.mdpi.com/2075-163X/9/12/740/pdf?version=1576669036
DOIdoi:10.3390/min9120740Search in ResearchGate
Mindat Ref. ID7735680Long-form Identifiermindat:1:5:7735680:8
GUID2a56aba0-66bb-47b1-9a05-4f7ae29d8941
Full ReferenceTharalson, 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
Plain TextTharalson, 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
In(2019, November) Minerals Vol. 9 (12) MDPI AG

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Lipson (2014) SEG Newsl. The promise and perils of porphyry deposits in the future of gold production 98, 14
Hedenquist (2000) Rev. Econ. Geol. Exploration for epithermal gold deposits 13, 245
Simmons (2005) Geological characteristics of epithermal precious and base metal deposits , 485
Bodnar (2014) Fluid inclusions in hydrothermal ore deposits , 119
Takeuchi (1984) Mining Geol. Mineralization of the Arakawa No. 4 vein of the Kushikino mine, Kagoshima Prefecture, Japan 34, 187
Camprubí (2007) Geol. Soc. Am. Spec. Pap. Epithermal deposits in México—Update of current knowledge, and an empirical reclassification 422, 377
()
Suzuki (1966)
Watanabe (1995) Resour. Geol. Spec. Issue A tectonic model for epithermal Au mineralization in NE Hokkaido, Japan 18, 257
Goldstrand (2000) Geology, mineralization, and ore controls at the Ken Snyder gold-silver mine, Elko County, Nevada , 265
()
Shikazono (1982) Mining Geol. K-Ar ages of Hosokura Pb-Zn and Sado Au-Ag vein-type deposits, north eastern part of Japan 32, 479
Bunno (1971) Min. Geol. Hessite from the Sado mine, Niigata Prefecture, Japan 21, 301
Shikazono (1990) Min. Geol. Geochemical, mineralogic and geologic characteristics of Se- and Te-bearing epithermal gold deposits in Japan 40, 337
Jones (1997) J. Sediment. Res. Biogenicity of silica precipitation around geysers and hot-spring vents, North Island, New Zealand 67, 88
Saunders (2011) Colloidal and physical transport textures exhibited by electrum and naumannite in bonanza epithermal veins from western USA, and their significance , 825
()
()
()
Ernst (1969) Am. J. Sci. An experimental study of the recrystallization of porcelanite and its bearing on the origin of some bedded cherts 267-A, 114
Christenson (1995) Hydrothermal eruptions in ore forming reservoirs: Analogues and models , 119
Not Yet Imported: BULLETIN OF THE GEOLOGICAL SURVEY OF JAPAN - journal-article : 10.9795/bullgsj.66.1

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 11167
Bobis (1994) J. Geol. Soc. Philipp. A review of the description, classification and origin of quartz textures in low sulphidation epithermal veins 49, 15
Corbett (2002) AIG News Epithermal gold for explorationists 67, 1
Fournier (1985) Rev. Econ. Geol. The behavior of silica in hydrothermal solutions 2, 45
Giggenbach (1992) Econ. Geol. Magma degassing and mineral deposition in hydrothermal systems along convergent plate boundaries 87, 1927
Seward (1989) Econ. Geol. Monogr. The hydrothermal chemistry of gold and its implications for ore formation: Boiling and conductive cooling as examples 6, 398

Map of Localities

Locality Pages

LocalityCitation Details
Hokuryu mine, Monbetsu City, Okhotsk Subprefecture, Hokkaidō Prefecture, Japan
Sado mine, Sado City, Niigata Prefecture, Japan
Midas Mine (Reco Mine; Big Chief group; King Midas claim; Dixie claim), Gold Circle Mining District (Midas Mining District), Elko County, Nevada, USA

Mineral Occurrences

LocalityMineral(s)
Hokuryu mine, Monbetsu City, Okhotsk Subprefecture, Hokkaidō Prefecture, Japan Acanthite, Adularia, Aguilarite, Calcite, Chalcedony, Electrum, K Feldspar, Naumannite, Pyrargyrite, Quartz
Sado mine, Sado City, Niigata Prefecture, Japan Acanthite, Adularia, Calcite, Chalcopyrite, Chlorargyrite, Electrum, Galena, Hessite, Polybasite, Polybasite-Tac, Pyrargyrite, Pyrite, Quartz, Silver, Sphalerite, Stephanite, Stromeyerite, Tetrahedrite Subgroup
Midas Mine (Reco Mine; Big Chief group; King Midas claim; Dixie claim), Gold Circle Mining District (Midas Mining District), Elko County, Nevada, USA Adularia, Aguilarite, Berzelianite, Chalcopyrite, Clausthalite, Electrum, Eskebornite, Eucairite, Fischesserite, Galena, Marcasite, Naumannite, Pyrite, Quartz, Sphalerite, Stromeyerite


See Also

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