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

Illite from New Zealand

New Zealand
 
  • Auckland Region
    • Great Barrier Island
Christie, T., Brathwaite, B. Mineral Commodity Report 13 - Silver, Institute of Geological and Nuclear Science Ltd.
  • Bay of Plenty Region
    • Kawerau District
www.mightyriver.co.nz (n.d.) http://www.mightyriver.co.nz/content/599/CR%202005-20%20-%20Geoscientific%20Review%20of%20Kawerau%20Geothermal%20Field.pdf
  • Canterbury Region
    • Selwyn District
      • Coalgate
Carlson, J.R., Rodgers, K.A. (1974) The Coalgate Bentonite. A Ferriferrous-Beidellite Deposit from Canterbury, New Zealand. Clay Minerals: 10: 153-172.
  • Marlborough Region
    • Wakamarina Goldfield (Canvastown)
Skinner, D.N.B., Brathwaite, R.L. (1999) Mesozoic mesothermal quartz-gold-scheelite Lodes, Wakamarina, Marlborough, New Zealand. New Zealand Journal of Geology and Geophysics, 42:3, 335-348.
Skinner, D.N.B., Brathwaite, R.L. (1999) Mesozoic mesothermal quartz-gold-scheelite Lodes, Wakamarina, Marlborough, New Zealand. New Zealand Journal of Geology and Geophysics, 42:3, 335-348.
  • New Zealand Outlying Islands
    • Campbell Island group
Mac Beggs, J. (1978) Geology of the metamorphic basement and late Cretaceous Oligocene sedimentary sequence of Campbell Island, Southwest Pacific Ocean. Journal of the Royal Society of New Zealand, 8:2, 161-177.
    • Kermadec Islands
Martin, Andrew J., Jamieson, John W., Ronde, Cornel E.J., Humphris, Susan E., Roberts, Stephen, MacLeod, Christopher J., Cai, Yuanfeng, Zhang, Chao, Schlicht, Lucy E.M., Nozaki, Tatsuo (2023) Hydrothermal Alteration Within the Brothers Submarine Arc Volcano, Kermadec Arc, New Zealand. Economic Geology, 118 (7) 1657-1679 doi:10.5382/econgeo.4962
A. G. Reyes, C.E.J. DE Ronde, and C. W. R. Soong (2004) a Submarine Magmatic-hydrothermal System at Brothers Volcano, Kermadecs. Proceedings 26th NZ Geothermal Workshop pp 46-52
  • Northland Region
    • Kaipara District
      • Kaipara Harbour
Jones, Brian G. (1972) Sedimentology of the Waitemata Group (Lower Miocene) at Pakaurangi Point, Kaipara, New Zealand. Journal of the Royal Society of New Zealand, 2 (2). 187-209 doi:10.1080/03036758.1972.10429374
  • Tasman Region
    • Golden Blocks Goldfield
Soong, R., Olivecrona, J.A. (1975) An occurrence of cymrite in black shale, North-west Nelson, South Island, New Zealand. Mineralogical Magazine, 40, 311-312.
  • Waikato Region
    • Hauraki District
      • Karangahake
Simpson, M.P., Mauk, J.L. (2011) Hydrothermal Alteration and Veins at the Epithermal Au-Ag Deposits and Prospects of the Waitekauri area, Hauraki Goldfield, New Zealand. Economic Geology, 106:6, 945-973.
Simpson, M.P., Mauk, J.L. (2011) Hydrothermal Alteration and Veins at the Epithermal Au-Ag Deposits and Prospects of the Waitekauri area, Hauraki Goldfield, New Zealand. Economic Geology, 106:6, 945-973.
Simpson, M.P., Stevens, M.R., Mauk, J.L., Harris, M.C., Stuart, A.G.J. (2016) Mineral Deposits of New Zealand: Exploration and Research, AusiMM Monograph 31: Exploration and Geology of the Karangahake and Rahu Epithermal Gold-silver Deposits, Hauraki Goldfield, pp 283-292.
Simpson, M.P., Stevens, M.R., Mauk, J.L., Harris, M.C., Stuart, A.G.J. (2016) Mineral Deposits of New Zealand: Exploration and Research, AusiMM Monograph 31: Exploration and Geology of the Karangahake and Rahu Epithermal Gold-silver Deposits, Hauraki Goldfield, pp 283-292.
      • Paeroa
Christie, A.B., Brathwaite, R.L. (1996) Mineral Commodity Report 13-Silver. New Zealand mining 20: 16-23.
Simpson, M.P., Mauk, J.L., Kendrick, R.G. (2004) Telescoped porphyry-style and epithermal veins and alteration at the central Maratoto valley prospect, Hauraki Goldfield, New Zealand. New Zealand Journal of Geology and Geophysics, 47:1, 39-56.
www.rsnz.org (2004) http://www.rsnz.org/publish/nzjgg/2004/009.php
crownminerals.med.govt.nz (2004) http://crownminerals.med.govt.nz/minerals/docs/nzmining/nzmining_up014.pdf
members.segweb.org (n.d.) http://members.segweb.org/PDF97-2/269_Brth.pdf
Christie, A.B., Mauk, J.L., Simpson, M.P., Brathwaite, R.L., Simmons, S.F. (2007) Epithermal Au-Ag and Related Deposits of the Hauraki Goldfield, Coromandel Volcanic Zone, New Zealand. Economic Geology, 102:5, 785-816.
Christie, A.B., Mauk, J.L., Simpson, M.P., Brathwaite, R.L., Simmons, S.F. (2007) Epithermal Au-Ag and Related Deposits of the Hauraki Goldfield, Coromandel Volcanic Zone, New Zealand. Economic Geology, 102:5, 785-816.
      • Waihi
Singh, R.S. (2015) Identifying Mineralogical and Geochemical Vectors towards the Epithermal Au-Ag Correnso Mine, Waihi. (unpublished thesis, MSc), Univerity of Waikato.
Simpson, M.P., Mauk, J.L. (2007) The Favona epithermal gold-silver deposit, Waihi, New Zealand. Economic Geology 102, 817-839.
Brathwaite, R.L., Faure, K. (2002) The Waihi Epithermal Gold-Silver-Base Metal Sulfide-Quartz Vein System, New Zealand: Temperature and Salinity Controls on Electrum and Sulfide Deposition. Economic Geology 97:2, 269-290.
Simpson, M. P., & Mauk, J. L. (2011). Hydrothermal alteration and veins at the epithermal Au-Ag deposits and prospects of the Waitekauri area, Hauraki goldfield, New Zealand. Economic Geology, 106(6), 945-973.
R.L. Brathwaite and K. Faure, Economic Geology, Vol. 97, 2002, pp. 269-290.
      • Waitekauri
Simmons, S.F., Arehart, G., Simpson, M.P., Mauk, J.L. (2000) Origin of Massive Calcite Veins in the Golden Cross Low-Sulfidation, Epithermal Au-Ag Deposit, New Zealand. Economic Geology 95:1, 99-112.
Simpson, M.P., Mauk, J.L. (2011) Hydrothermal Alteration and Veins at the Epithermal Au-Ag Deposits and Prospects of the Waitekauri area, Hauraki Goldfield, New Zealand. Economic Geology, 106:6, 945-973.
Simpson, M.P., Mauk, J.L. (2011) Hydrothermal Alteration and Veins at the Epithermal Au-Ag Deposits and Prospects of the Waitekauri area, Hauraki Goldfield, New Zealand. Economic Geology, 106:6, 945-973.
Simpson, M. P., & Mauk, J. L. (2011). Hydrothermal alteration and veins at the epithermal Au-Ag deposits and prospects of the Waitekauri area, Hauraki goldfield, New Zealand. Economic Geology, 106(6), 945-973.
Simpson, M.P., Mauk, J.L. (2011) Hydrothermal Alteration and Veins at the Epithermal Au-Ag Deposits and Prospects of the Waitekauri area, Hauraki Goldfield, New Zealand. Economic Geology, 106:6, 945-973.
Simpson, M.P., Mauk, J.L. (2011) Hydrothermal Alteration and Veins at the Epithermal Au-Ag Deposits and Prospects of the Waitekauri area, Hauraki Goldfield, New Zealand. Economic Geology, 106:6, 945-973.
Rabone, S. D. C., Moore, D. H., & Barker, R. G. (1989). Geology of the Wharekirauponga epithermal gold deposit, Coromandel region. Australasian Institute of Mining and Metallurgy Monograph, 25, 93-99.
Rabone, S.D.C., Moore, D.H., Barker, R.G. Geology of the Wharekirauponga peithermal gold deposit Coromandel Region. Mineral Deposits of New Zealand, Australiasian Institite of Mining and Metallurgy, ed. 2, 93-97.
Mark P. Simpson , Jeffrey L. Mauk & Ross G. Kendrick (2004) Telescoped porphyry‐style and epithermal veins and alteration at the central Maratoto valley prospect, Hauraki Goldfield, New Zealand. New Zealand Journal of Geology and Geophysics, 47:1, 39-56.
    • Matamata-Piako District
      • Te Aroha
Courtney, S.F., King, P. & Rodgers, K.A., (1990). A Check List of Minerals from the Tui Mine, Te Aroha, New Zealand. New Zealand Natural Sciences 17: 95-98.
    • Taupo District
Simmons, S.F. Browne, P.L. (1997) Saline fluid inclusions in sphalerite from the Broadlands-Ohaaki geothermal system
a coincidental trapping of fluids being boiled toward drynes. Economic Geology, 92:4, 485-489.
Mauriohooho, K, Barker S.L.L, Rae A.J. and Simpson M.P. 2014 HYDROTHERMAL ALTERATION AND WHOLE ROCK GEOCHEMISTRY OF THE TAUHARA GEOTHERMAL FIELD: TRADITIONAL VERSUS RAPID TECHNIQUES. Proceedings 36th New Zealand Geothermal Workshop 24 - 26 November 2014 Auckland, New Zealand
      • Wairakei
Rae, A.J. (2007) Rotokawa geology and geophysics. GNS Science consultancy report 2007/83. Confidential Report. 11 pages.
Chambefort, I., Lewis, B., Simpson, M.P., Bignall, G., Rae, A.J., Ganefanto, N. (2017) Ngatamariki Geothermal System: Magmatic to Epithermal Transition in the Taupo Volcanic Zone, New Zealand. Economic Geology, 112:2, 319-346.
    • Thames-Coromandel District
      • Coromandel Peninsula
        • Coromandel
Simpson, M.P., Mauk, J.L., Merchant, R. (2011) Bonanza grade epithermal veins from the Coromandel and Thames districts Hauraki Goldfield, Proceedings 2011 AusiMM New Zealand branch annual conference, 27-30 August 2011, Queenstown, New Zealand.
      • Hikuai
Moore, C.R. (1979) Geology and mineralisation of the former Broken Hills gold mine, Hikuai, Coromandel, New Zealand. New Zealand Journal of Geology and Geophysics, 22:3, 339-351.
Agricola Mining Consultants Pty Ltd (2017), Independent Geologists Report on Mineral Projects in New South Wales and New Zealand, Replacement Prospectus (2017), E2Metals Limited, 15 February 2017
      • Tararu
Brathwaite, R.L., Simpson, M.P., Faure, K., Skinner, D.N.B. (2001) Telescoped porphyry Cu-Mo-Au mineralisation, advanced argillic alteration and quartz-sulphide-gold-anhydrite veins in the Thames district, New Zealand. Mineralium deposita, 36
7, 623-640.
Brathwaite, R.L., Simpson, M.P., Faure, K., Skinner, D.N.B. (2001) Telescoped porphyry Cu-Mo-Au mineralisation advanced argillic alteration and quartz-sulphide-gold-anhydrite veins in the Thames district New Zealand, Mineralium Deposita, 36:7, 623-640.
Corbett, G.J., Leach, T.M. (1996) South-West Pacific Rim Gold-Copper Systems: structure alteration and mineralization, Workshop Manual. Manual for an exploration short course presented in Baguio Philippines November 1996 p84
Brathwaite, R.L., Simpson, M.P., Faure, K., Skinner, D.N.B. (2001) Telescoped porphyry Cu-Mo-Au mineralisation, advanced argillic alteration and quartz-sulphide-gold-anhydrite veins in the Thames district, New Zealand. Mineralium deposita, 36
7, 623-640.
    • Waikato District
      • Rotowaro
Masalehdani, M.N.N., Black, P.M., Kobe, H.W. (2007) Mineralogy and petrography of iron rich slags and paralavas formed by spontaneous combustion Rotowaro Coalfield New Zealand, in Geology of Coal Fires: Case Studies from Around the World (ed. Stracher, G.B.), The Geological Society of America, Reviews in Engineering Geology, Vol. XVIII, 119-131.
  • West Coast Region
    • Buller District
      • Reefton
crownminerals.med.govt.nz (2004) http://crownminerals.med.govt.nz/minerals/docs/comreports/report11_tin.pdf
 
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 © 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 20, 2024 03:22:25
Go to top of page