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Pekov, Igor V., Koshlyakova, Natalia N., Zubkova, Natalia V., Krzątała, Arkadiusz, Belakovskiy, Dmitry I., Galuskina, Irina O., Galuskin, Evgeny V., Britvin, Sergey N., Sidorov, Evgeny G., Vapnik, Yevgeny, Pushcharovsky, Dmitry Yu (2022) Pliniusite, Ca5(VO4)3F, a new apatite-group mineral and the novel natural ternary solid-solution system pliniusite–svabite–fluorapatite. American Mineralogist, 107 (8) 1626-1634 doi:10.2138/am-2022-8100

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Reference TypeJournal (article/letter/editorial)
TitlePliniusite, Ca5(VO4)3F, a new apatite-group mineral and the novel natural ternary solid-solution system pliniusite–svabite–fluorapatite
JournalAmerican Mineralogist
AuthorsPekov, Igor V.Author
Koshlyakova, Natalia N.Author
Zubkova, Natalia V.Author
Krzątała, ArkadiuszAuthor
Belakovskiy, Dmitry I.Author
Galuskina, Irina O.Author
Galuskin, Evgeny V.Author
Britvin, Sergey N.Author
Sidorov, Evgeny G.Author
Vapnik, YevgenyAuthor
Pushcharovsky, Dmitry YuAuthor
Year2022 (August 1)Volume107
Page(s)1626-1634Issue8
PublisherMineralogical Society of America
DOIdoi:10.2138/am-2022-8100Search in ResearchGate
Classification
Not set
LoC
Not set
Mindat Ref. ID15192965Long-form Identifiermindat:1:5:15192965:0
GUIDfc5993c7-cc88-4c9e-8f15-46bc3193d80e
Full ReferencePekov, Igor V., Koshlyakova, Natalia N., Zubkova, Natalia V., Krzątała, Arkadiusz, Belakovskiy, Dmitry I., Galuskina, Irina O., Galuskin, Evgeny V., Britvin, Sergey N., Sidorov, Evgeny G., Vapnik, Yevgeny, Pushcharovsky, Dmitry Yu (2022) Pliniusite, Ca5(VO4)3F, a new apatite-group mineral and the novel natural ternary solid-solution system pliniusite–svabite–fluorapatite. American Mineralogist, 107 (8) 1626-1634 doi:10.2138/am-2022-8100
Plain TextPekov, Igor V., Koshlyakova, Natalia N., Zubkova, Natalia V., Krzątała, Arkadiusz, Belakovskiy, Dmitry I., Galuskina, Irina O., Galuskin, Evgeny V., Britvin, Sergey N., Sidorov, Evgeny G., Vapnik, Yevgeny, Pushcharovsky, Dmitry Yu (2022) Pliniusite, Ca5(VO4)3F, a new apatite-group mineral and the novel natural ternary solid-solution system pliniusite–svabite–fluorapatite. American Mineralogist, 107 (8) 1626-1634 doi:10.2138/am-2022-8100
In(2022, August) American Mineralogist Vol. 107 (8) Mineralogical Society of America
Abstract/NotesThe new apatite-group mineral pliniusite, ideally Ca5(VO4)3F, was found in fumarole deposits at the Tolbachik volcano, Kamchatka, Russia, and in a pyrometamorphic rock of the Hatrurim Complex, Israel. Pliniusite, together with fluorapatite and svabite, forms a novel and almost continuous ternary solid-solution system characterized by wide variations of T5+ = P, As, and V. In paleo-fumarolic deposits at Mountain 1004 (Tolbachik), members of this system, including the holotype pliniusite, are associated with hematite, tenorite, diopside, andradite, kainotropite, baryte and supergene volborthite, brochantite, gypsum and opal. In sublimates of the active Arsenatnaya fumarole (Tolbachik), pliniusite–svabite–fluorapatite minerals coexist with anhydrite, diopside, hematite, berzeliite, schäferite, calciojohillerite, forsterite, enstatite, magnesioferrite, ludwigite, rhabdoborite-group fluoroborates, powellite, baryte, udinaite, arsenudinaite, paraberzeliite, and spinel. At Nahal Morag, Negev Desert, Israel, the pliniusite cotype and V-bearing fluorapatite occur in schorlomite-gehlenite paralava with rankinite, walstromite, zadovite-aradite series minerals, magnesioferrite, hematite, khesinite, barioferrite, perovskite, gurimite, baryte, tenorite, delafos-site, wollastonite, and cuspidine. Pliniusite forms hexagonal prismatic crystals up to 0.3 × 0.1 mm and open-work aggregates up to 2 mm across (Mountain 1004) or grains up to 0.02 mm (Nahal Morag and Arsenatnaya fumarole). Pliniusite is transparent to semitransparent, colorless or whitish, with a vitreous luster. The calculated density is 3.402 g/cm−3. Pliniusite is optically uniaxial (–), ω = 1.763(5), ε = 1.738(5). The empirical formulas of pliniusite type specimens calculated based on 13 anions (O+F+Cl) per formula unit are (Ca4.87Na0.06Sr0.03Fe0.02)Σ4.98(V1.69As0.66P0.45S0.12Si0.09)Σ3.01O11.97F1.03 (Mountain 1004) and (Ca4.81Sr0.12Ba0.08Na0.05)Σ5.06(V2.64P0.27S0.07Si0.03)Σ3.01O12.15F0.51Cl0.34 (Nahal Morag). Pliniusite has a hexagonal structure with space group P63/m, a = b = 9.5777(7), c = 6.9659(5) Å, V = 553.39(7) Å3, and Z = 2. The structure was solved using single-crystal (holotype) X-ray diffraction, R = 0.0254. The mineral was named in honor of the famous Roman naturalist Pliny the Elder, born Gaius Plinius Secundus (AD 23–79). It is suggested that the combination of high temperature, low pressure, and high oxygen fugacity favors the incorporation of V5+ into calcium apatite-type compounds, leading to the formation of fluorovanadates.

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Locality Pages

LocalityCitation Details
Nahal Morag Canyon, Hatrurim Basin, Tamar Regional Council, Southern District (HaDarom District), Israel
Arsenatnaya fumarole, Second scoria cone, Northern Breakthrough (North Breach), Great Fissure eruption (Main Fracture), Tolbachik Volcanic field, Milkovsky District, Kamchatka Krai, Russia
Mountain 1004, Tolbachik Volcanic field, Milkovsky District, Kamchatka Krai, Russia
Southern fumarole field, Mountain 1004, Tolbachik Volcanic field, Milkovsky District, Kamchatka Krai, Russia

Mineral Pages

MineralCitation Details
Pliniusite
Rhabdoborite-(V)
Rhabdoborite-(W)

Mineral Occurrences

LocalityMineral(s)
Nahal Morag Canyon, Hatrurim Basin, Tamar Regional Council, Southern District (HaDarom District), Israel Barioferrite, Cuspidine, Delafossite, Gurimite, Hematite, Khesinite, Pliniusite, Rankinite, Tenorite, Walstromite, Wollastonite
Mountain 1004, Tolbachik Volcanic field, Milkovsky District, Kamchatka Krai, Russia Andradite, Brochantite, Gypsum, Volborthite
Southern fumarole field, Mountain 1004, Tolbachik Volcanic field, Milkovsky District, Kamchatka Krai, Russia Pliniusite


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