Tin in the base metal sulphide deposits at Geco, Manitouwadge, Ontario Canada
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Tin in the base metal sulphide deposits at Geco, Manitouwadge, Ontario Canada

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Published by Geological Survey of India in [New Delhi] .
Written in English

Subjects:

Places:

  • Ontario.

Subjects:

  • Sulphides -- Ontario.,
  • Tin -- Ontario.

Book details:

Edition Notes

Statementby Syamdas Banerjee.
SeriesBulletins of the Geological Survey of India : Series A, Economic Geology ;, no. 40
ContributionsGeco, Manitouwadge, Ontario, Canada.
Classifications
LC ClassificationsTN103 .A375 no. 40, QE389.2 .A375 no. 40
The Physical Object
Paginationvii, 40 p., [21] leaves of plates :
Number of Pages40
ID Numbers
Open LibraryOL4713222M
LC Control Number77985450

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Tin and tin-bearing minerals are prominent in the metamorphosed (amphibolite-granulite facies) Geco Cu-Zn volcanogenic massive sulfide deposit as well as in some of the smaller massive sulfides in the Manitouwadge district. Cassiterite and minor Sn-bearing andradite, epidote, rutile, and phlogopite occur within the massive sulfide by: Geco Mine, Gemmell Township, Thunder Bay District, Ontario, Canada: A copper-zinc mine located km East of Thunder Bay near Manitouwadge. Ore is an Archean Cu-Zn massive sulfide deposit. Mine is at least to the 2, level. This volcano-sedimentary deposit has. The Geco volcanic hosted massive sulphide (VHMS) zinc-copper-silver deposit is located near Manitouwadge, km ENE of Thunder Bay in south-western Ontario, Canada (#Location: 49° 09' 15"N, 85° 47' 40"W). It lies within the Manitouwadge (also known as the Schreiber-Hemlo) Greenstone Belt, a highly deformed remnant of upper amphibolite facies supracrustal rocks in the volcano-plutonic . Buy Tin in the base metal sulphide deposits at Geco, Manitouwadge, Ontario, Canada (Bulletins of the Geological Survey of India: Series A, economic geology) by Banerjee, S (ISBN:) from Amazon's Book Store. Everyday low prices and free delivery on eligible : S Banerjee.

Geco, Manitouwadge, Ontario, Canada. Bul!. indicator minerals for base metal sulphide mineralization from the Proterozoic Betul Belt, central India with special emphasis on their genetic. Tin in the base metal sulphide deposits at Geco, Manitouwadge, Ontario Canada / by Syamdas Banerjee Magmatic sulfide deposits / Anthony J. Naldrett Kinetics of sulfide oxidation in green liquor [microform] / Jason J. Farrugia-Roberts. Two Possible Sources Of Tin In The Base Metal Sulphide Deposits At Geco, Manitouwadge, Ontario: Robert Brigham: Ph.D. Structural Geology Of Southwestern Ontario And Southeastern Michigan: Wayne Johnston: Copper-Nickel Sulphides In A Layered Ultramafic Body, Renzy Mine, Southwestern Quebec: Niyazi Kacira: Ph.D. Mineral Deposit Identification; Deposit Name(s) Moshkinabi Lake Sulphides - , Ian Lake Area Project No. - , Manitouwadge Project - , Aquarius Joint Venture Project - , Ice Cream Lake Occurrence -

Högbomite has generally been considered to be a rare accessory phase in metamorphic rocks. While investigating high-grade peraluminous metamorphites in the Benson Mine District, Adirondack Mountains, New York and the Manitouwadge Massive Sulfide District, Ontario, Canada, we have found several högbomite occurrences and believe that högbomite is more widespread in high-grade aluminous rocks. Woodlawn Zn-Pb-Cu sulfide deposit, New South Wales, Australia; an interpretation of ore formation from field observations and metal zoning Economic Geology Tin in volcanogenic massive sulfide deposits; an example from the Geco Mine, Manitouwadge District, Ontario, Canada. The average massive sulphide camp in Canada has about 9 deposits, but ranges from four (Manitowadge) to 21 (Noranda), However, an individual deposit may consist of a number of closely associated, discrete lenses ranging from several thousand to several million tons in size (ea. Millenbach Mine was 16 geologically discrete ore lenses). Petersen, E.U. () Tin in volcanogenic massive sulfide deposits; an example from the Geco Mine, Manitouwadge District, Ontario, Canada. Economic Geology: 81(2): Data.