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

Knorsch, Manuel, Deditius, Artur P., Xia, Fang, Pearce, Mark A., Uvarova, Yulia (2020) The impact of hydrothermal mineral replacement reactions on the formation and alteration of carbonate-hosted polymetallic sulfide deposits: A case study of the Artemis prospect, Queensland, Australia. Ore Geology Reviews, 116. 103232 doi:10.1016/j.oregeorev.2019.103232

Advanced
   -   Only viewable:
Reference TypeJournal (article/letter/editorial)
TitleThe impact of hydrothermal mineral replacement reactions on the formation and alteration of carbonate-hosted polymetallic sulfide deposits: A case study of the Artemis prospect, Queensland, Australia
JournalOre Geology Reviews
AuthorsKnorsch, ManuelAuthor
Deditius, Artur P.Author
Xia, FangAuthor
Pearce, Mark A.Author
Uvarova, YuliaAuthor
Year2020 (January)Volume116
Page(s)103232
PublisherElsevier BV
DOIdoi:10.1016/j.oregeorev.2019.103232Search in ResearchGate
Mindat Ref. ID236141Long-form Identifiermindat:1:5:236141:7
GUID8789ddba-5a57-449c-9072-54ffe4e5c876
Full ReferenceKnorsch, Manuel, Deditius, Artur P., Xia, Fang, Pearce, Mark A., Uvarova, Yulia (2020) The impact of hydrothermal mineral replacement reactions on the formation and alteration of carbonate-hosted polymetallic sulfide deposits: A case study of the Artemis prospect, Queensland, Australia. Ore Geology Reviews, 116. 103232 doi:10.1016/j.oregeorev.2019.103232
Plain TextKnorsch, Manuel, Deditius, Artur P., Xia, Fang, Pearce, Mark A., Uvarova, Yulia (2020) The impact of hydrothermal mineral replacement reactions on the formation and alteration of carbonate-hosted polymetallic sulfide deposits: A case study of the Artemis prospect, Queensland, Australia. Ore Geology Reviews, 116. 103232 doi:10.1016/j.oregeorev.2019.103232
In(2020) Ore Geology Reviews Vol. 116. Elsevier BV

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.

Anderson (2008) Geofluids The role of thermochemical sulfate reduction in the origin of Mississippi Valley-type deposits. II. Carbonateā€“sulfide relationships 8, 27
Anderson (1983)
Austin (2016)
Baker (2001) Econ. Geol. Radiogenic and stable isotope constraints on the genesis of the Eloise Cu-Au deposit, Cloncurry district, northwest Queensland 96, 723
Beardsmore (1992)
Blake (1987)
Carson, C., 2013. sample 1945980 (Toole Creek Volcanics), Data in Geoscience Australiaā€™s OZCHRON geochronology database. Online. .
Carter (1961)
Not Yet Imported: One Hundredth Anniversary Volume - book-chapter : 10.5382/AV100.15

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Derrick, G.M., Wilson, I.H., Hill, R.M., 1976. Revision of stratigraphic nomenclature in the Precambrian of northwestern Queensland. V. Soldiers Cap Group. Queensl. Gov. Min. J., 601-604.
Derrick (1977) VI. Mary Kathleen Group. Queensl. Gov. Min. Revision of stratigraphic nomenclature in the Precambrian of northwestern Queensland J, 15
Frank (1982) J. Sediment. Petrol. Cathodoluminescence and Composition of Calcite Cement in the Taum Sauk Limestone (Upper Cambrian), Southeast Missouri 52, 631
Ganguly (1993) Am. Mineral. Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties 78, 583
Hammarstrom, J.M., Kotlyar, B.B., Theodore, T.G., Elliott, J.E., John, D.A., Doebrich, J.L., Nash, J.T., Carlson, R.R., Lee, G.K., Livo, K.E., 1995. Cu, Au, and Zn-Pb Skarn Deposits, in du Bray, E.A., (Ed.), Preliminary compilation of descriptive geoenvironmental mineral deposit models. U.S. Geological Survey Open File Report 95-831, pp. 90ā€“111.
Hiatt, E., Pufahl, P., 2014. Cathodoluminescence petrography of carbonate rocks: a review of applications for understanding diagenesis, reservoir quality and pore system evolution, in Coulson, I., (Ed.), Cathodoluminescence and its application to geoscience: Mineralogical Association of Canada, Short Course Series 45, pp. 75-96.
Klemm (1965) Neues Jahrb. Mineral. Abh. Synthesen und Analysen in den Dreickdiagrammen FeAsS-CoAsS-NiAsS und FeS_2-CoS_2-NiS_2 103, 205
Kositcin (2009)
Kretschmar (1976) Can. Mineral. Phase relations involving arsenopyrite in the system Fe-As-S and their application 14, 364
Leach (2005) Econ. Geol. Sediment-hosted Pb-Zn deposits: a global perspective 100, 561
Li (2004) Econ. Geol. Replacement of base metal sulfides by actinolite, epidote, calcite, and magnetite in the UG2 and merensky reef of the Bushveld Complex, South Africa 99, 173
Machel (1991) Factors governing cathodoluminescence in calcite and dolomite, and their implications for studies of carbonate diagenesis , 271
Meinert (1992) Geosci. Can. Skarns and Skarn Deposits 19, 145
Not Yet Imported: One Hundredth Anniversary Volume - book-chapter : 10.5382/AV100.11

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Olsen (1992) Am. Mineral. Possible prograde fluid inclusions in recrystallized chert nodules in a contact aureole, Christmas Mountains, Texas 77, 1031
Pan (1993) Can. Mineral. Pyrosmalite in Canadian Precambrian Sulfide Deposits ā€“ Mineral Chemistry, Petrogenesis and Significance 31, 695
Paradis (1988) Can. Mineral. Two zinc-rich chimneys from the Plume Site, southern Juan de Fuca Ridge 26, 637
Robie (1962) Geological Survey Molar volumes and densities of minerals. Report TEl-822. United States Department of the Interior , 1
Not Yet Imported: Journal of Instrumentation - journal-article : 10.1088/1748-0221/13/03/C03020

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 43262
Sharp (1985) Can. Mineral. A re-examination of the arsenopyrite geothermometer; pressure considerations and applications to natural assemblages 23, 517
Spry (1989) Can. Mineral. Manganese-Rich Garnet Rocks Associated with the Broken Hill Lead-Zinc-Silver Deposit, New-South-Wales, Australia 27, 275
Stephens, A., 2017. Geological characteristics and paragenesis of the polymetallic Artemis prospect, Cloncurry district, northwest Queensland, Australia (Honours Thesis). James Cook University.
Not Yet Imported: ASEG Extended Abstracts - journal-article : 10.1071/ASEG2016ab260

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 7128
Titley (1996) Soc Econ Geol Spec Publ Characteristics of high temperature, carbonate-hosted replacement ores and some comparisons with Mississippi Valley-type ores, carbonate-hosted leadā€“zinc deposits 4, 244
Williams (2000) Overview of iron oxide-copper-gold deposits in the Curnamona Province and Cloncurry district (Eastern Mount Isa Block), Australia , 105
Withnall (2013) North Australian Craton


See Also

These are possibly similar items as determined by title/reference text matching only.

 
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: May 2, 2024 10:55:01
Go to top of page