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Giester, G., Rieck, B., Brandstätter, F. (1998) Niedermayrite, Cu4Cd(SO4)2(OH)6·4H2O, a new mineral from the Lavrion Mining District, Greece. Mineralogy and Petrology, 63 (1) 19-34 doi:10.1007/bf01162766

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Reference TypeJournal (article/letter/editorial)
TitleNiedermayrite, Cu4Cd(SO4)2(OH)6·4H2O, a new mineral from the Lavrion Mining District, Greece
JournalMineralogy and Petrology
AuthorsGiester, G.Author
Rieck, B.Author
Brandstätter, F.Author
Year1998Volume63
Page(s)19-34Issue1
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/bf01162766Search in ResearchGate
Classification
Not set
LoC
Not set
Mindat Ref. ID16293Long-form Identifiermindat:1:5:16293:3
GUID8fac4625-16ca-498d-8396-f7ca68142483
Full ReferenceGiester, G., Rieck, B., Brandstätter, F. (1998) Niedermayrite, Cu4Cd(SO4)2(OH)6·4H2O, a new mineral from the Lavrion Mining District, Greece. Mineralogy and Petrology, 63 (1) 19-34 doi:10.1007/bf01162766
Plain TextGiester, G., Rieck, B., Brandstätter, F. (1998) Niedermayrite, Cu4Cd(SO4)2(OH)6·4H2O, a new mineral from the Lavrion Mining District, Greece. Mineralogy and Petrology, 63 (1) 19-34 doi:10.1007/bf01162766
In(1998) Mineralogy and Petrology Vol. 63 (1) Springer Science and Business Media LLC
Abstract/NotesNiedermayrite, Cu4Cd(SO4)2(OH)6 · 4H2O, is a new mineral discovered in 1995 in the Km3-area of the Lavrion mining district, Greece. It forms tiny euhedral plates, commonly intergrown as green crusts up to several cm2 in size on a matrix consisting of a brecciated marble with sphalerite, chalcopyrite, galena, greenockite, hawleyite and pyrite. Associated secondary minerals are gypsum, malachite, chalcanthite, brochantite, hemimorphite, hydrozincite, aurichalcite, one unknown Cd-sulfate, monteponite and otavite. Niedermayrite is non-fluorescent and has a bluish-green colour with vitreous lustre, the streak is white. The crystals are brittle with perfect cleavage parallel {010}. Optics: biaxial (−) with nα(calc.), nβ, and nγ =1.609, 1.642(2), and 1.661(2), respectively; orientation nα//b. The calculated density is 3.292 gcm−3. The most prominent form is {010}. Analysis by electron microprobe gives CdO 16.5, CuO 45.7, SO3 21.6, H2O 16.2 wt.% (calc. to 100% sum) and the empirical formula Cu4.29Cd0.96S2.01O11.28 · 6.71 H2O (based on 18 oxygens p.f.u.). By TGA an H2O content of 18.9 wt.% was obtained. The ideal formula (confirmed by the crystal structure refinement) is Cu4Cd(SO4)2(OH)6 · 4H2O with a theoretical H2O content of 17.2 wt.%. The strongest lines in the X-ray powder diffraction pattern (Gandolfi camera, visually estimated I, refined lattice parameters a = 5.535(2), b = 21.947(9), c = 6.085(2) Å,β = 91.98(3)°) are: (dobs[Å]/Iobs/hkl) (11.02/90/0 2 0), (5.874/20/0 1 1), (5.496/100/0 4 0), (5.322/25/0 2 1), (4.079/50/0 4 1), (3.660/20/0 6 0), (3. 437/30/1 5 0), (3.243/40/1 4 1), (2.470/30/2 4 0), (2.425/20/1 4 −2), (2.205/20/2 6 0) and (1.897/20/1 8 2). The mineral is monoclinic, P21/m, Z = 2, a = 5.543(1) Å, b = 21.995(4) Å, c = 6.079(1) Å,β = 92.04(3)°, V = 740.7(2) Å3. The crystal structure was determined by single crystal X-ray methods and was refined to R1= 0.026, wR2 = 0.056. The structure of niedermayrite is characterized by 2∞ [Cu4(OH)6O2]2− sheets of edgesharing Cu coordination octahedra parallel to (010) with attached SO4 tetrahedra, and intercalated CdO2(H2O)4 octahedra with a system of hydrogen bonds. Close relationships to the crystal structures of christelite and campigliaite exist. The new mineral is named for Dr. Gerhard Niedermayr, Naturhistorisches Museum Wien, Austria.

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.

Dowty E (1997) ATOMS for Windows and Macintosh, V 4.0. Shape Software, Kingsport,
Mandarino JA (1981) The Gladstone-Dale relationship, part IV. The compatibility concept and its application. Can Mineral 70: 441?450
Medenbach O, Gebert W (1993) Lautenthalite, PbCu4[(OH)6|(SO4)2] � 3H20, the Pb analogue of devillite ? a new mineral from the Harz mountains, Germany. N Jb Miner Mh 1993: 401?407
Menchetti S, Sabelli C (1982) Campigliaite, Cu4Mn(SO4)2(OH)6 � 4H2O, a new mineral from Campiglia Marittima, Tuscany, Italy. Am Mineral 67: 385?393
Mighell AD, Hubbard CR, Stalick JK (1981) NBS*AIDS83. A FORTRAN program for crystallographic data evaluation. NBS Technical Note 1141
Rieck B (1998) Neue Minerale aus Lavrion. Lapis (in press)
Sheldrick GM (1997a) SHELXS-97, a program for the solution of crystal structures. University of G�ttingen, Federal Republic of Germany
Sheldrick GM (1997b) SHELXL-97, a program for crystal structure refinement. University of G�ttingen, Federal Republic of Germany

Map of Localities

Locality Pages

LocalityCitation Details
Esperanza Mine, Kaminiza mines, Km 3, Lavrion Mining District, Lavreotiki, East Attica, Attica, Greece

Mineral Pages

MineralCitation Details
Niedermayrite

Mineral Occurrences

LocalityMineral(s)
Esperanza Mine, Kaminiza mines, Km 3, Lavrion Mining District, Lavreotiki, East Attica, Attica, Greece Monteponite, Niedermayrite, Otavite


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