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hogbomite supergroup

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Journal Article
Published: 01 May 2018
European Journal of Mineralogy (2018) 30 (3): 545–558.
...Fernando Cámara; Roberto Cossio; Daniele Regis; Valerio Cerantola; Marco E. Ciriotti; Roberto Compagnoni Magnesiobeltrandoite-2 N 3 S , ideally Mg 6 Al 20 F e 2 3 + O 38 (OH) 2 , is a new member of the högbomite supergroup of minerals. It occurs in magnesian chloritites of a metamorphosed layered...
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(Ti + Sn)−Σ R  2+ −Σ R  3+  diagram of <span class="search-highlight">högbomite</span> <span class="search-highlight">supergroup</span> minerals ( Shim...
Published: 01 May 2018
Fig. 8 (Ti + Sn)−Σ R 2+ −Σ R 3+ diagram of högbomite supergroup minerals ( Shimura et al. , 2012 ); (b) close-up of the area for högbomite-group minerals. Open circles are the analyses of magnesiomeltrandoite-2 N 3 S from Valtournenche. Filled circles are the högbomite analyses of Hejny
Journal Article
Published: 31 March 2021
Mineralogical Magazine (2021) 85 (3): 398–405.
... × ( cccccchcccch ). It is the first polysome in the högbomite supergroup with such a sequence. Magnesiohögbomite-6 N 12 S , (Mg,Fe) 5 (Al,Fe,Ti) 12 O 23 (OH), is a new member of the högbomite group described in this paper. It is named in accordance with the International Mineralogical Association (IMA...
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Journal Article
Published: 11 April 2023
Mineralogical Magazine (2023) 87 (2): 225–232.
... the prefix ‘meta-’, which indicates a close but significantly different chemical composition. (vi) Polysomatic symbols should be placed as a suffix, which indicates the number and types of modules that alternate in the structure, such as in the högbomite supergroup, or as prefixes as in the sartorite...
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Journal Article
Published: 01 June 2020
American Mineralogist (2020) 105 (6): 972–975.
..., V. Cerantola, M.E. Ciriotti, and R. Compagnoni (2018) Beltrandoite, a new root-name in the högbomite supergroup: the Mg end-member magnesiobeltrandoite-2 N 3 S . European Journal of Mineralogy, 30(3), 545–558. Magnesiobeltrandoite-2 N 3 S (IMA 2016-073), ideally Mg 6 Al 20 Fe 2 3...
Journal Article
Published: 01 December 2013
The Canadian Mineralogist (2013) 51 (6): 913–919.
...-CNMMC nomenclature ( Armbruster 2002 , Mills et al . 2009 ), minerals of the högbomite, nigerite, and taaffeite groups within the högbomite supergroup form polysomatic series. Minerals of the högbomite and nigerite groups are composed of spinel ( S ) and nolanite ( N ) modules ( Shimura et al . 2012...
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Journal Article
Published: 01 February 2012
The Canadian Mineralogist (2012) 50 (1): 21–29.
... within the högbomite supergroup form polysomatic series. Minerals of the högbomite and nigerite groups are composed of spinel ( S ) and nolanite ( N ) modules. The idealised formula of a spinel module is T 2 M 4 O 8 , where T and M represent tetrahedrally and octahedrally coordinated cations...
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Journal Article
Published: 01 May 2018
European Journal of Mineralogy (2018) 30 (3): 411–412.
...-name in the högbomite supergroup: the Mg-end member magnesiobeltrandoite-2 N 3 S . Eur. J. Mineral. , 30 , DOI: 10.1127/ejm/2017/0029-2692 . Comodi , P. , Guidoni , F. , Nazzareni , S. , Balic-Zunic , T. , Zucchini , A. , Makovicky , E. , Prakapenka , V. ( 2018...
Journal Article
Published: 01 August 2020
Mineralogical Magazine (2020) 84 (4): 623–627.
..., China (25°26’N, 112°34’E) Can Rao*, Xiangping Gu, Rucheng Wang, Qunke Xia, Frédéric Hatert and Fabrice Dal Bo *E-mail: [email protected] Högbomite supergroup Trigonal: R $\overline 3 $ m ; structure determined a  = 5.7241(2), c  = 55.539(2) Å 2.436(100), 1.931(100), 1.650...
Journal Article
Published: 03 October 2022
American Mineralogist (2022) 107 (10): 1952–1959.
... tetrahedrally and octahedrally coordinated cations; this corresponds to taaffeite-group minerals ( Armbruster 2002 ). Nigerite-, högbomite-, and taaffeite-group minerals thus form a supergroup of polysomatic series with N ( N ′) and S modules. The two new species of zinconigerite from the Xianghualing skarn...
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Journal Article
Published: 07 August 2023
Geological Magazine (2023) 160 (7): 1345–1375.
... include chalcopyrite, sphalerite, pyrite, pyrrhotite, and magnetite, with minor galena and gahnite. Altered rocks intimately associated with mineralization primarily consist of various amphiboles (gedrite, tremolite and hornblende), gahnite, biotite, garnet, cordierite, carbonate and rare högbomite...
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Journal Article
Published: 01 December 2022
Mineralogical Magazine (2022) 86 (6): 988–992.
... the number and types of modules which alternate in the structure as in the högbomite supergroup, or as prefixes as in the sartorite homologous series. These recommendations have to be applied for future new mineral proposals, but the modifications of historical and well-established names have to pass...
Journal Article
Published: 01 August 2017
Mineralogical Magazine (2017) 81 (4): 1033–1038.
...) Nikita V. Chukanov*, Maria G. Krzhizhanovskaya, Simeon Jančev, Igor V. Pekov, Dmitriy A. Varlamov, Jörg Göttlicher, Vyacheslav S. Rusakov, Yury S. Polekhovsky and Vera N. Ermolaeva *E-mail: [email protected] Högbomite supergroup Trigonal: P 3 m 1 a  = 5.902(2), c  = 55.86(1...
Journal Article
Published: 01 August 2017
European Journal of Mineralogy (2017) 29 (4): 777–781.
..., Vyacheslav S. Rusakov, Yury S. Polekhovsky, Vera N. Ermolaeva * E-mail: [email protected] Högbomite supergroup Trigonal: P 3 ¯ m 1 a = 5.902(2), c = 55.86(1) Å 2.952(62), 2.881(61), 2.515(100), 2.493(88), 2.451(39), 1.690(19), 1.475(29), 1.441(20) Type material...
Journal Article
Published: 01 June 2021
Mineralogical Magazine (2021) 85 (3): b1–b2.
... POIRIER, GERALD GIESTER and KATE HELWIG: Magnesiohögbomite-6N12S, Mg5Al11TiO23(OH), a new högbomite-group mineral from the DeWitts Corners, Ontario, Canada YUETING SONG, SHANRONG ZHAO and CHANG XU: Crystallographic orientation relationships between quartz and feldspar in myrmekite: a case study...
Journal Article
Published: 20 April 2023
Mineralogical Magazine (2023) 87 (3): 480–493.
... nomenclature and mineral classification was introduced and applied to recent nomenclature within the IMA–CNMNC framework (Mills et al. , 2009 ). In addition, nomenclatures for supergroups are continuously improved and proposed (Hawthorne et al. , 2012 ; Christy and Atencio, 2013 ). From the data...
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Journal Article
Published: 01 July 2022
American Mineralogist (2022) 107 (7): 1288–1301.
... Ellestadite Ca 5 (SiO 4 ) 1.5 (SO 4 ) 1.5 (Cl,F,OH) Chlorellestadite Hydroxylellestadite 3 5 Fassaite Ca(Mg,Al,Ti 3+ ,Ti 4+ )(Al,Si)SiO 6 Grossmanite 2 6,7 Fe-Mo Alloy (Fe,Mo) Hexamolybdenum 2 7 Högbomite (Zn,Al,Fe 2+ ,Mg,Ti) 3 (Al,Fe 3+ ,Ti 4+ ,Mn) 8 O 15 (OH) Ferrohögbomite-2...
Journal Article
Published: 01 December 2016
Mineralogical Magazine (2016) 80 (7): 1315–1321.
... Marmore stream, middle Valtournenche, Valle d'Aosta, Italy (45°49′36″N, 7°34′51″E) Fernando Cámara*, Roberto Cossio, Daniele Regis, Marco E. Ciriotti and Roberto Compagnoni *E-mail: [email protected] Högbomite supergroup Trigonal: P m 1; structure determined...
Journal Article
Published: 08 September 2022
Mineralogical Magazine (2023) 87 (1): 18–33.
...Nikita V. Chukanov; Marco Pasero; Sergey M. Aksenov; Sergey N. Britvin; Natalia V. Zubkova; Li Yike; Thomas Witzke Abstract The columbite supergroup is established. It includes five mineral groups (ixiolite, wolframite, samarskite, columbite and wodginite) and one ungrouped species (lithiotantite...
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Journal Article
Published: 01 March 2018
European Journal of Mineralogy (2018) 30 (2): 323–332.
... elements (Zn, Cu, Sb, and Pb) form oxygen-bearing minerals (Zn-spinels, Zn- and Sb-rich members of the högbomite supergroup, nežilovite, ferricoronadite, piemontite-(Pb), almeidaite, hydroxyplumboroméite etc .) or immobilization and the absence of sulfides in the orogenic zone of the Pelagonian massif can...
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