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PbS-FeS-Sb2S3-Bi2S3

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Journal Article
Published: 01 April 2003
The Canadian Mineralogist (2003) 41 (2): 441–456.
..., Siberian Div., Inst. Geol. Geophys., Novosibirsk , 29 – 41 (in Russ.). Goodell , P.C. ( 1975 ): Binary and ternary sulphosalt assemblages in the Cu2S–Ag2S–PbS–As2S3–Sb2S3Bi2S3 system . Can. Mineral . 13 , 27 – 42 . Hillebrand , W.F. ( 1884 ): On an interesting variety...
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References      Anthony ,  J.W.  ,   Bideaux ,  R.A.   &   Bladh ,  K.W...
Published: 01 April 2003
(in Russ.). Goodell , P.C. ( 1975 ): Binary and ternary sulphosalt assemblages in the Cu2S–Ag2S–PbS–As2S3–Sb2S3Bi2S3 system . Can. Mineral . 13 , 27 – 42 . Hillebrand , W.F. ( 1884 ): On an interesting variety of löllingite and other minerals . Am. J. Sci . 127 , 349 – 358
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References      Anthony ,  J.W.  ,   Bideaux ,  R.A.   &   Bladh ,  K.W...
Published: 01 April 2003
(in Russ.). Goodell , P.C. ( 1975 ): Binary and ternary sulphosalt assemblages in the Cu2S–Ag2S–PbS–As2S3–Sb2S3Bi2S3 system . Can. Mineral . 13 , 27 – 42 . Hillebrand , W.F. ( 1884 ): On an interesting variety of löllingite and other minerals . Am. J. Sci . 127 , 349 – 358
Journal Article
Published: 01 February 2000
The Canadian Mineralogist (2000) 38 (1): 11–22.
... zinc–lead district . Econ. Geol . 63 , 655 – 670 . Hoda , S.N. & Chang , L.L.Y. ( 1975 ): Phase relations in the systems PbS–Ag2S–Sb2S3 and PbS–Ag2S–Bi2S3 . Am. Mineral . 60 , 621 – 633 . Hook , H.J.V. ( 1960 ): The ternary system Ag2S–Bi2S3PbS . Econ. Geol . 55...
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Journal Article
Published: 01 April 2012
The Canadian Mineralogist (2012) 50 (2): 201–218.
... Bi2S3 + K PbS )/3, a value of 41.7 GPa is obtained, which is very close to the observed one. In order to test the same relationship for berthierite, a similar equation can be written: K FeSb2S4 = (2 K Sb2S3 + K FeS )/3. In this case, the resulting value is 45.3 GPa, significantly different...
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Journal Article
Published: 01 December 2002
Mineralogical Magazine (2002) 66 (6): 1043–1062.
...}^{}}\ +\ {AgSbS_{2}_{in\ galena}^{}}\ +\ {Pb_{S}_{galena}^{}}\ =\ {CuPbSbS_{3}_{bournonite}^{}}\ +\ \frac{1}{10}{Ag_{10}(Zn,Fe)_{2}Sb_{4}S_{13}_{Ag-fahlore}^{}}\] \end{document} which occurred during cooling following mineralization of a PbS-AgSbS 2 -AgBiS 2 galena and has been documented elsewhere. Secondary PbS...
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Journal Article
Published: 01 June 2002
The Canadian Mineralogist (2002) 40 (3): 849–869.
... α, Fe K α), s-Bi 2 S 3 (Bi L α, S K α), n-PbS (Pb L α), s-CdTe (Cd L β, Te L α), n-Sb 2 S 3 (Sb L α) and pure metal for Ag L α. The raw data were corrected with the on-line ZAF–4 procedure. Standard deviations (error in wt.%) of elements sought for the matrix of bismuthinite derivatives...
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Journal Article
Published: 01 June 2001
The Canadian Mineralogist (2001) 39 (3): 855–872.
...), FeS 2 (Fe K α, S K α), ZnS (Zn K α), Sb 2 S 3 (Sb L α), PbS (Pb M α), HgS (Hg M α), SnO 2 (Sb L α) and MnTiO 3 (Mn K α). Under the current operating conditions, the analytical precision is approximately 1% for all major elements; the detection limit is around 0.1 wt.%. Chalcopyrite, cubanite...
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Journal Article
Published: 01 January 2019
The Canadian Mineralogist (2019) 57 (1): 117–143.
... current of ∼1 nA, accelerating voltage of 20 kV, and live times of 30 s. The standards used were CuFeS 2 (S K α, Cu K α), hematite (Fe K α), ZnS (Zn K α), Pd 8 As 3 (As L α), CB 499 (Ag L α), Cb 489 (Sb L α), Cd (Cd L α), InAs (In L α), Sn (Sn L α), PbF 2 (Pb M α), and PbBi 2 (Bi M α). Sulfosalts...
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Journal Article
Journal: Economic Geology
Published: 01 September 2004
Economic Geology (2004) 99 (6): 1063–1084.
...) Gersdorfite NiAsS 1.4–14.9% Fe High-strain zones 2 Group I Uncommon Harris (1989) Cubanite CuFe 2 S 3   High-strain zones 2 Group I Uncommon Harris (1989)               Tl-Pb-Hg-Cu-Ag–bearing sulfosalts                           Zinkenite Pb 9...
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Journal Article
Published: 01 December 2001
The Canadian Mineralogist (2001) 39 (6): 1641–1652.
.... The operating conditions were as follows: accelerating voltage 25 kV, probe current 12–15 nA, and beam diameter 5 μm. The spectral lines of S K α, Cu K α, Fe K α, Se L α, Ag L α, Pb M α, Bi M α, Sb M α and Te M α were used. Synthetic pure materials of Te, Bi, Ag, Se, Sb and synthetic CuFeS 2 and PbS were used...
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Journal Article
Published: 01 May 2005
American Mineralogist (2005) 90 (5-6): 1000–1007.
... and Fe-Zn partitioning between fahlore and sphalerite, we estimate that fahlore compositions were frozen in by about 235 °C, roughly 40 °C above corresponding temperatures obtained for the Gold Hunter vein of the Lucky Friday Mine. This result and the absence of readily detectable diaphorite (~Pb 2 Ag 3...
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Journal Article
Published: 01 December 2013
The Canadian Mineralogist (2013) 51 (6): 841–850.
... J.A. MacIntosh I.W. Ellis D.J. ( 2001 ) Partial melting of the Broken Hill galena-sphalerite ore: Experimental studies in the system PbS-FeS-ZnS-(Ag 2 S) . Economic Geology and the Bulletin of the Society of Economic Geologists 96 ( 1 ), 205 – 210 . Papunen H. Kopperoinen T...
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Journal Article
Published: 01 March 2019
American Mineralogist (2019) 104 (3): 459–462.
... the exception (e.g., Pring et al. 1999 ; Ciobanu and Cook 2000 ; Ciobanu et al. 2004 ). The kobellite homologous series belongs to the wider family of Pb-(Bi, Sb)-sulfosalts and is defined as: 2(Cu,Fe) 2 M 10N+6 S 11N+13 for a 4 Å-repeat subunit of the structure, where M = Sb and Bi, and N...
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Journal Article
Published: 01 January 2006
Reviews in Mineralogy and Geochemistry (2006) 61 (1): 365–419.
... AgFe 2 S 3 argentopyrite 152 Czamanske (1969) ; Czamanske and Larson (1969) ; Taylor (1970a , b ) AgFe 2 S 3 sternbergite 152 Ag 3 Fe 7 S 11 argyropyrite Ag 2 Fe 5 S 8 frieseite Ag-Pb-S Vogel (1953) ; Van Hook (1960) ; Craig (1967) . Ag-Sb-S Ag 7 SbS 6 Sb...
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Journal Article
Published: 01 April 2012
The Canadian Mineralogist (2012) 50 (2): 219–233.
... with iodine at lower temperatures, 380°C, did not lead to boulangerite ( Kryukova et al. 2005 ). Chemical vapor-transport experiments via NH 4 Cl were described in the system PbS–Bi 2 S 3 by Carlson (1972) and for troilite (FeS) by Krabbes et al. (1976) . So far, systematic details on the CVT...
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Journal Article
Published: 01 April 2012
The Canadian Mineralogist (2012) 50 (2): 371–386.
... )]. The chemical formula of material examined, based on 20.85 large cations (Z = 4) is Cu 0.76 Fe 0.45 Ag 0.12 Pb 8.14 Bi 12.59 S 27.91 ; its unit-cell parameters are a 4.0307(1), b 22.7011(6), and c 54.615(1) Å, space group Pmcn . All the principal features of Kupčík’s structure were confirmed. Three cation sites...
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Journal Article
Published: 01 February 2002
Mineralogical Magazine (2002) 66 (1): 215–229.
... and sulfide compositions (wt.%). Standard deviations (σ) for N analyses are indicated. Label* Phase N Ag(σ) Cu(σ) Fe(σ) Zn(σ) As(σ) Sb(σ) Bi(σ) Pb(σ) S(σ) Sum * WC, LF and GH designate the West Chance, Lucky Friday and Gold Hunter veins, respectively. ** Mineral...
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Journal Article
Published: 01 June 2005
The Canadian Mineralogist (2005) 43 (3): 919–933.
... of some Pb–(Cu, Fe)– (Sb, Bi) sulfosalts from France and Portugal. Implications for the crystal chemistry of lead sulfosalts in the Cu-poor part of the Pb 2 S 2 –Cu 2 S–Sb 2 S 3 –Bi 2 S 3 system . Mineral. Petrol . 53 , 229 – 250 . Mrotzek , A. & Kanatzidis , M.G. ( 2003...
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Journal Article
Published: 01 October 2003
Mineralogical Magazine (2003) 67 (5): 1023–1038.
.... Label* Phase** N Ag σ Cu σ Fe σ Zn σ As σ Sb σ Bi σ Pb σ S σ Sum * PORC, LUCKY, RUBY, DIXIE, HR224, HUSKY and FM designate the Porcupine, Lucky Queen, Ruby, Dixie, Husky Raise 224, Husky and Flame in Moth mines, respectively. ** Abbreviations: fah, fahlore; sph, sphalerite; plb...
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