Goldhillite, Cu5Zn(AsO4)2(OH)6⋅H2O, a new mineral species, and redefinition of philipsburgite, Cu5Zn[(AsO4)(PO4)](OH)6⋅H2O, as an As–P ordered species. (13th June 2022)
- Record Type:
- Journal Article
- Title:
- Goldhillite, Cu5Zn(AsO4)2(OH)6⋅H2O, a new mineral species, and redefinition of philipsburgite, Cu5Zn[(AsO4)(PO4)](OH)6⋅H2O, as an As–P ordered species. (13th June 2022)
- Main Title:
- Goldhillite, Cu5Zn(AsO4)2(OH)6⋅H2O, a new mineral species, and redefinition of philipsburgite, Cu5Zn[(AsO4)(PO4)](OH)6⋅H2O, as an As–P ordered species
- Authors:
- Ismagilova, Rezeda M.
Rieck, Branko
Kampf, Anthony R.
Giester, Gerald
Zhitova, Elena S.
Lengauer, Christian L.
Krivovichev, Sergey V.
Zolotarev, Andrey A.
Ciesielczuk, Justyna
Mikhailova, Julia A.
Belakovsky, Dmitry I.
Bocharov, Vladimir N.
Shilovskikh, Vladimir V.
Vlasenko, Natalia S.
Nash, Barbara P.
Adams, Paul M. - Abstract:
- Abstract: Philipsburgite has been redefined as the intermediate member of the goldhillite–philipsburgite–kipushite isomorphous series with the ideal formula Cu5 Zn[(AsO4 )(PO4 )](OH)6 ⋅H2 O due to the site-selective As–P substitution. The new mineral goldhillite, ideally Cu5 Zn(AsO4 )2 (OH)6 ⋅H2 O [or Cu5 Zn(AsO4 )(AsO4 )(OH)6 ⋅H2 O], is the arsenate end-member of this series. Goldhillite occurs on fracture surfaces in a rock comprised mostly of quartz with iron hydroxides in association with mixite, cornwallite and conichalcite. Goldhillite forms transparent, bright emerald-green, tabular crystals with vitreous lustre, flattened on {100}, up to 1 mm across and in rosettes up to 1.5 mm. The mineral is brittle with uneven fracture and perfect cleavage on {100}; the Mohs hardness is 3.5. The calculated density for the holotype is 4.199 g cm –3 . The Raman spectrum is consistent with the presence of H2 O-molecules, OH-groups, AsO4 tetrahedra and traces of PO4 . Electron microprobe analyses of goldhillite (H2 O content based on the crystal structure) provided: CuO 48.91, ZnO 13.18, As2 O5 26.06, P2 O5 3.25, H2 O 8.97, total 100.37 wt.%. The empirical formula for goldhillite based on O = 15 apfu is (Cu4.69 Zn1.23 )Σ5.92 (As0.86 P0.18 O4 )2 (OH)5.61 ⋅H2 O. The crystal structures of goldhillite and philipsburgite were determined using single-crystal X-ray diffraction data and refined to R 1 = 0.054 (for 2365 I > 2σ I reflections) and 0.052 (for 2308 I > 2σ I reflections),Abstract: Philipsburgite has been redefined as the intermediate member of the goldhillite–philipsburgite–kipushite isomorphous series with the ideal formula Cu5 Zn[(AsO4 )(PO4 )](OH)6 ⋅H2 O due to the site-selective As–P substitution. The new mineral goldhillite, ideally Cu5 Zn(AsO4 )2 (OH)6 ⋅H2 O [or Cu5 Zn(AsO4 )(AsO4 )(OH)6 ⋅H2 O], is the arsenate end-member of this series. Goldhillite occurs on fracture surfaces in a rock comprised mostly of quartz with iron hydroxides in association with mixite, cornwallite and conichalcite. Goldhillite forms transparent, bright emerald-green, tabular crystals with vitreous lustre, flattened on {100}, up to 1 mm across and in rosettes up to 1.5 mm. The mineral is brittle with uneven fracture and perfect cleavage on {100}; the Mohs hardness is 3.5. The calculated density for the holotype is 4.199 g cm –3 . The Raman spectrum is consistent with the presence of H2 O-molecules, OH-groups, AsO4 tetrahedra and traces of PO4 . Electron microprobe analyses of goldhillite (H2 O content based on the crystal structure) provided: CuO 48.91, ZnO 13.18, As2 O5 26.06, P2 O5 3.25, H2 O 8.97, total 100.37 wt.%. The empirical formula for goldhillite based on O = 15 apfu is (Cu4.69 Zn1.23 )Σ5.92 (As0.86 P0.18 O4 )2 (OH)5.61 ⋅H2 O. The crystal structures of goldhillite and philipsburgite were determined using single-crystal X-ray diffraction data and refined to R 1 = 0.054 (for 2365 I > 2σ I reflections) and 0.052 (for 2308 I > 2σ I reflections), respectively. Goldhillite is monoclinic, P 21 / c, a = 12.3573(5), b = 9.2325(3), c = 10.7163(4) Å, β = 97.346(4)°, V = 1212.59(8) Å 3 and Z = 4. Philipsburgite is monoclinic, P 21 / c, a = 12.3095(9), b = 9.2276(3), c = 10.7195(3) Å, β = 97.137(7)°, V = 1208.16(10) Å 3 and Z = 4. The strongest lines of the powder X-ray diffraction pattern of goldhillite [ d, Å ( I, %)( hkl )] are: 4.09 (28)(300), 3.41 (23)(12$\bar{2}$, 221, 311), 2.57 (100)(132, 11$\bar{4}$, 20$\bar{4}$ ), 2.17 (18)(42$\bar{3}$, 332), 1.95 (22)(432) and 1.54 (20)(13$\bar{6}$, 060). Goldhillite is named after its type locality, the Gold Hill mine, Tooele County, Utah, USA. … (more)
- Is Part Of:
- Mineralogical magazine. Volume 86:Number 3(2022)
- Journal:
- Mineralogical magazine
- Issue:
- Volume 86:Number 3(2022)
- Issue Display:
- Volume 86, Issue 3 (2022)
- Year:
- 2022
- Volume:
- 86
- Issue:
- 3
- Issue Sort Value:
- 2022-0086-0003-0000
- Page Start:
- 436
- Page End:
- 446
- Publication Date:
- 2022-06-13
- Subjects:
- goldhillite -- new mineral -- philipsburgite -- kipushite -- As–P ordering -- crystal structure -- Raman spectroscopy -- Gold Hill mine -- Black Pine mine -- Kamariza mines -- Silver Coin mine
Mineralogy -- Periodicals
Mineralogy -- Great Britain -- Periodicals
549.05 - Journal URLs:
- https://www.cambridge.org/core/journals/mineralogical-magazine ↗
http://pi2.ingenta.com/content/minsoc/mag;jsessionid=k179kevo8th.alice ↗ - DOI:
- 10.1180/mgm.2022.36 ↗
- Languages:
- English
- ISSNs:
- 0026-461X
- Deposit Type:
- Legaldeposit
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