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Name: Pyrrhotite RRUFF ID: R061127 Ideal Chemistry: Fe7S8 Locality: Morro Velho Gold mine, Nova Umha, Minas Gerais, Brazil Source: Michael Scott S103486 [view label] Owner: RRUFF Description: Brass colored, prismatic crystals associated with quartz and dolomite Status: The identification of this mineral has been confirmed by single-crystal X-ray diffraction. |
| Quick search: [ All Pyrrhotite samples (2) ] | ||
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| RRUFF ID: | R061127.9 | ||||
| Sample Description: | Single crystal, powder profile is calculated | ||||
| Cell Refinement Output: |
a: 11.898(3)Å b: 6.873(2)Å c: 22.812(7)Å alpha: 90° beta: 90.39(1)° gamma: 90° Volume: 1865.4(8) Crystal System: monoclinic |
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| REFERENCES for Pyrrhotite | |
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American Mineralogist Crystal Structure Database Record: [view record] |
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Anthony J W, Bideaux R A, Bladh K W, and Nichols M C (1990) Handbook of Mineralogy, Mineral Data Publishing, Tucson Arizona, USA, by permission of the Mineralogical Society of America. [view file] |
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Breithaupt J F A (1835) Ueber das verhältniss der formen zu den mischungen krystallisirter körper, Journal für Praktische Chemie, 4, 249-271 [view file] |
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Ross C S, Kerr P F (1932) The manganese minerals of a vein near Bald Knob, North Carolina, American Mineralogist, 17, 1-18 [view file] |
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Campbell F A (1963) Sphalerite-pyrrhotite relationships at Quemont mine, The Canadian Mineralogist, 7, 367-374 [view file] |
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Arnold R G (1966) Abstract of paper presented at the eleventh annual meeting: Composition, structure and temperature of stability of natural and synthetic pyrrhotites, The Canadian Mineralogist, 8, 660-661 [view file] |
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Graham A R (1966) Abstract of paper presented at the eleventh meeting: Quantitative determination of monoclinic and hexagonal pyrrhotites by Xray diffraction, The Canadian Mineralogist, 8, 665-666 [view file] |
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Arnold R G (1967) Range in composition and structure of 82 natural terrestrial pyrrhotites, The Canadian Mineralogist, 9, 31-50 [view file] |
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Fleet M E, Macrae N (1968) Two-phase hexagonal pyrrhotites, The Canadian Mineralogist, 9, 699-705 [view file] |
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Graham A R (1969) Quantitative determination of hexagonal and monoclinic pyrrhotites by X-ray diffraction, The Canadian Mineralogist, 10, 4-24 [view file] |
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Clark A H (1970) Quantitative determination of hexagonal and monoclinic pyrrhotites by X-ray diffraction: A discussion, The Canadian Mineralogist, 10, 278-280 [view file] |
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Batt A P (1972) Shorter communications: Nickel distribution in hexagonal and monoclinic pyrrhotite, The Canadian Mineralogist, 11, 892-897 [view file] |
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Vaughan D J (1973) Variation in properties of synthetic "pyrrhotites" of composition Fe1-xS (0≤x≤0.14), The Canadian Mineralogist, 11, 1008-1011 [view file] |
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Ramsden A R (1975) Compositions of coexisting pyrrhotites, pentlandites and pyrites at Spargoville, western Australia, The Canadian Mineralogist, 13, 133-137 [view file] |
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Bailey S W (1977) Report of the I.M.A-I.U.Cr. Joint Committee on Nomenclature, American Mineralogist, 62, 411-415 [view file] |
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Corlett M (1977) Iron oxides and pyrrhotites from Igdlukunguaq, Disko Island, Greenland, The Canadian Mineralogist, 15, 540-545 [view file] |
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Fleet M E (1978) The pyrrhotite - marcasite transformation, The Canadian Mineralogist, 16, 31-35 [view file] |
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Kübler L (1981) Note on the hardness of hexagonal pyrrhotite and a method for measuring the abrasion depth in sulfides, The Canadian Mineralogist, 19, 355-359 [view file] |
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Campbell F A, Ethier V G (1984) Nickel and cobalt in pyrrhotite and pyrite from the Faro and Sullivan orebodies, The Canadian Mineralogist, 22, 503-506 [view file] |
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Jeppsson M (1988) Photochemically accellerated surface-diffusion of silver on chalcopyrite, isocubanite and pyrrhotite, The Canadian Mineralogist, 26, 973-978 [view file] |
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Keller-Besrest F, Collin G (1990) Structural aspects of the α transition in stoichiometric FeS: identification of the high-temperature phase, Journal of Solid State Chemistry, 84, 194-210 |
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Chai G, Naldrett A J, Rucklidge J C, Kilius L R (1993) In situ quantitative analyses for PGE and Au in sulfide minerals of the Jinchuan Ni-Cu deposit by accelerator mass spectrometry, The Canadian Mineralogist, 31, 19-30 [view file] |
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Larocque A C L, Hodgson C J, Cabri L J, Jackman J A (1995) Ion-microprobe analysis of pyrite, chalcopyrite and pyrrhotite from the Mobrun VMS deposit in northwestern Quebec: evidence for metamorphic remobilization of gold, The Canadian Mineralogist, 33, 373-388 [view file] |
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Lynch G, Mengel F (1995) Metamorphism of arsenopyrite-pyrite-sphalerite-pyrrhotite lenses, western Cape Breton Island, Nova Scotia, The Canadian Mineralogist, 33, 105-114 [view file] |
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Barkov A Y, Laajoki K V O, Men'shikov Y P, Alapieti T T, Sivonen S J (1997) First terrestrial occurrence of titanium-rich pyrrhotite, marcasite and pyrite in a fenitized xenolith from the Khibina alkaline complex, Russia, The Canadian Mineralogist, 35, 875-885 [view file] |
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Farrell S P, Fleet M E (2002) Phase separation in (Fe,Co)1-xS monosulfide solid-solution below 450°C, with consequences for coexisting pyrrhotite and pentlandite in magmatic sulfide deposits, The Canadian Mineralogist, 40, 33-46 [view file] |
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Frankel R B, Bazylinski D A (2003) Biologically induced mineralization by bacteria, Reviews in Mineralogy and Geochemistry, 54, 95-114 |
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Froese E (2003) Point defects in pyrrhotite, The Canadian Mineralogist, 41, 1061-1067 [view file] |
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Ondru P, Veselovský F, Gabaová A, Hlouek J, rein V, Vavrín I, Skála R, Sejkora J, Drábek M (2003) Primary minerals of the Jáchymov ore district, Journal of the Czech Geological Society, 48, 19-147 [view file] |
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Wang H, Salveson I (2005) A review on the mineral chemistry of the non-stoichiometric iron sulphide, Fe1-xS (0≤x≤0.125): polymorphs, phase relations and transitions, electronic and magnetic structures, Phase Transitions, 78, 547-567 |
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de Villiers J P R, Liles D C (2010) The crystal-structure and vacancy distribution in 6C pyrrhotite, American Mineralogist, 95, 148-152 |
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