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Dmitriy I. Belakovskiy - One of the best experts on this subject based on the ideXlab platform.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Yulia Uvarova, Fernando CámaraAbstract:In this issue This New Mineral Names has entries for 13 New species, including falottaite, meieranite and high-pressure Minerals found in meteorites, terrestrial impact rocks, and as inclusions in diamonds: hemleyite, hiroseite, ice-VII, kaitianite, maohokite, proxidecagonite, riesite, rubinite, uakitite, wangdaodeite, and zagamiite.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 16 New Minerals, including, ariegilatite, aurihydrargyrumite, carmeltazite, cerromojonite, dargaite, ewingite, fiemmeite horákite, nöggerathite-(Ce), paddlewheelite, parafiniukite, sharyginite, thalhammerite, thermaerogenite, tiberiobardiite, and verneite.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 21 New Minerals, including alexkhomyakovite, andreadiniite, arsenmedaite, barwoodite, bodieite, ciriottiite, clino-oscarkempffite, ferrovorontsovite, ilirneyite, kannanite, magnesiohornblende, merelaniite, oyonite, pararaisaite, petříčekite, quijarroite, staročeskéite, tantalowodginite, topsøeite, tsygankoite, and vorontsovite.
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New Mineral Names
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 6 New Minerals, including, beusite-(Ca), graftonite-(Ca), graftonite-(Mn), hyršlite, magnesiobeltrandoite-2N3S, and zincovelesite-6N6S.
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New Mineral Names*,†
American Mineralogist, 2019Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 11 New Minerals, including cesiodymite, cryptochalcite, feodosiyite, fluoro-tremolite, itelmenite, ozerovaite, ramazzoite, redcanyonite, selivanovite, vanderheydenite, and wrightite.
Yulia Uvarova - One of the best experts on this subject based on the ideXlab platform.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Yulia Uvarova, Fernando CámaraAbstract:In this issue This New Mineral Names has entries for 13 New species, including falottaite, meieranite and high-pressure Minerals found in meteorites, terrestrial impact rocks, and as inclusions in diamonds: hemleyite, hiroseite, ice-VII, kaitianite, maohokite, proxidecagonite, riesite, rubinite, uakitite, wangdaodeite, and zagamiite.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 16 New Minerals, including, ariegilatite, aurihydrargyrumite, carmeltazite, cerromojonite, dargaite, ewingite, fiemmeite horákite, nöggerathite-(Ce), paddlewheelite, parafiniukite, sharyginite, thalhammerite, thermaerogenite, tiberiobardiite, and verneite.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 21 New Minerals, including alexkhomyakovite, andreadiniite, arsenmedaite, barwoodite, bodieite, ciriottiite, clino-oscarkempffite, ferrovorontsovite, ilirneyite, kannanite, magnesiohornblende, merelaniite, oyonite, pararaisaite, petříčekite, quijarroite, staročeskéite, tantalowodginite, topsøeite, tsygankoite, and vorontsovite.
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New Mineral Names
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 6 New Minerals, including, beusite-(Ca), graftonite-(Ca), graftonite-(Mn), hyršlite, magnesiobeltrandoite-2N3S, and zincovelesite-6N6S.
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New Mineral Names*,†
American Mineralogist, 2019Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 11 New Minerals, including cesiodymite, cryptochalcite, feodosiyite, fluoro-tremolite, itelmenite, ozerovaite, ramazzoite, redcanyonite, selivanovite, vanderheydenite, and wrightite.
Fernando Cámara - One of the best experts on this subject based on the ideXlab platform.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Yulia Uvarova, Fernando CámaraAbstract:In this issue This New Mineral Names has entries for 13 New species, including falottaite, meieranite and high-pressure Minerals found in meteorites, terrestrial impact rocks, and as inclusions in diamonds: hemleyite, hiroseite, ice-VII, kaitianite, maohokite, proxidecagonite, riesite, rubinite, uakitite, wangdaodeite, and zagamiite.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 16 New Minerals, including, ariegilatite, aurihydrargyrumite, carmeltazite, cerromojonite, dargaite, ewingite, fiemmeite horákite, nöggerathite-(Ce), paddlewheelite, parafiniukite, sharyginite, thalhammerite, thermaerogenite, tiberiobardiite, and verneite.
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New Mineral Names*,†
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 21 New Minerals, including alexkhomyakovite, andreadiniite, arsenmedaite, barwoodite, bodieite, ciriottiite, clino-oscarkempffite, ferrovorontsovite, ilirneyite, kannanite, magnesiohornblende, merelaniite, oyonite, pararaisaite, petříčekite, quijarroite, staročeskéite, tantalowodginite, topsøeite, tsygankoite, and vorontsovite.
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New Mineral Names
American Mineralogist, 2020Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 6 New Minerals, including, beusite-(Ca), graftonite-(Ca), graftonite-(Mn), hyršlite, magnesiobeltrandoite-2N3S, and zincovelesite-6N6S.
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New Mineral Names*,†
American Mineralogist, 2019Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:In this issue This New Mineral Names has entries for 11 New Minerals, including cesiodymite, cryptochalcite, feodosiyite, fluoro-tremolite, itelmenite, ozerovaite, ramazzoite, redcanyonite, selivanovite, vanderheydenite, and wrightite.
Olivier C. Gagné - One of the best experts on this subject based on the ideXlab platform.
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New Mineral Names*,†
American Mineralogist, 2018Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Olivier C. GagnéAbstract:In this issue This New Mineral Names has entries for 23 New Minerals, including alpeite, ammoniozippeite, batagayite, centennialite, dagenaisite, davidsmithite, epifanovite, ferro-tschermakite, greenlizardite, grootfonteinite, janchevite, javorieite, kampelite, roymillerite, tredouxite, vanadio-pargasite, and wilancookite. Included also is a series of pyrochlore supergroup Minerals: fluorcalciopyrochlore, hydroxycalciomicrolite, hydroxyferroroméite, hydroxykenoelsmoreite, hydroxynatropyrochlore, oxynatromicrolite along with a New data on hydrokenoelsmoreite-3C and hydrokenoelsmoreite-6R.
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New Mineral NamesAndychristyiteCrimsoniteFerro-ferri-hornblendeKummeriteKuratiteOscarkempffiteOxo-Mangani-LeakeitePauladamsitePenberthycroftite
American Mineralogist, 2017Co-Authors: Dmitriy I. Belakovskiy, Fernando Cámara, Olivier C. GagnéAbstract:This New Mineral Names has entries for nine New Minerals, including andychristyite, crimsonite, ferro-ferri-hornblende, kummerite, kuratite, oscarkempffite, oxo-mangani-leakeite, pauladamsite, and penberthycroftite. # Andychristyite* {#article-title-2} A.R. Kampf, M.A. Cooper, S.J. Mills, R.M. Housley and G.R. Rossman (2016) Lead-tellurium oxysalts from Otto Mountain near Baker, California, USA: XII. Andychristyite, PbCu2+Te6+O5(H2O), a New Mineral with hcp stair-step layers. Mineralogical Magazine , 80(6), 1055–1065. Andychristyite (IMA 2015-024), ideally PbCu2+Te6+O5(H2O), is a New Mineral found on the small dump outside the entrance to the Aga mine Otto Mountain near Baker, San Bernardino County, California, U.S.A. The New Mineral was found as a few crystals in a small vug in quartz in association with timroseite. Andychristyite is a secondary oxidation-zone Mineral presumed to have formed by oxidation of primary sulfides and tellurides during or following brecciation of quartz veins. It occurs as tablets flattened on {001}, up to ~50 μm in size, in sub-parallel aggregates. Crystals are bluish-green with very pale bluish-green streak, are transparent with adamantine luster, are brittle with irregular fracture, show perfect cleavage on {001}, and no twinning. Mohs hardness was not measured, but is estimated to be 2–3. The density was not measured; D calc = 6.304 g/cm3. Andychristyite does not fluoresce under UV light. It decomposes rapidly in dilute HCl at room temperature. The Mineral is optically biaxial with undetermined sign, large 2 V , and moderate very pale blue-green to medium blue-green pleochroism. …
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New Mineral NamesAlbertiniiteBosiiteColdwelliteFerrivauxiteHydroterskiteKatiarsiteMeerschautiteTavagnascoite
American Mineralogist, 2017Co-Authors: Olivier C. Gagné, Dmitriy I. Belakovskiy, Fernando Cámara, Yulia UvarovaAbstract:This New Mineral Names has entries for eight New Minerals, including albertiniite, bosiite, coldwellite, ferrivauxite, hydroterskite, katiarsite, meerschautite, and tavagnascoite. # Albertiniite* {#article-title-2} P. Vignola, G.D. Gatta, N. Rotiroti, P. Gentile, F. Hatert, M. Baijot, D. Bersani, A. Risplendente, and A. Pavese (2016) Albertiniite, Fe2+(SO3)·3H2O, a New sulfite Mineral species from the Monte Falo Pb-Zn mine, Coiromonte, Armeno Municipality, Verbano Cusio Ossola Province, Piedmont, Italy. Mineralogical Magazine, 80, 985–994. Albertiniite, (IMA 2015-004), ideally Fe2+(SO3)·3H2O, is a New Mineral found on the mine dumps at the Monte Falo Pb-Zn mine near Coiromonte, Armeno Municipality, Verbano-Cusio-Ossola Province, Italy (45°50′52.37″N, 8° 29′1.13″E), where it occurs on the surfaces of brittle fractures in quartz veins and in the chlorite-schist hosting the Mineralized quartz veins. The ore at the mine consists mainly of galena with minor sphalerite and arsenopyrite. Albertiniite occurs associated to stolzite, pyromorphite, hinsdalite, plumbogummite, gibbsite, scheelite, and jarosite. It is an intermediate product of oxidation between iron sulfides (pyrite and arsenopyrite) and sulfates. Albertiniite is present as monoclinic prisms up to 0.7 mm across, sometimes showing rounded corners and edges, and crystals are covered frequently by brownish amorphous hydrated Fe oxides. It forms colorless to yellowish transparent crystals with a vitreous luster. The cleavage is perfect on {010}. Hardness is not reported. Density was not measured due to the lack of suitable material. D calc = 2.458 g/cm3. In transmitted light the Mineral is colorless, non-pleochroic. It is optically …
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New Mineral NamesBubnovaiteCairncrossiteFerraioloiteFontarnauiteGrundmanniteKayrobertsoniteMagnesio-ferri-fluoro-hornblendeMelanarsiteNickeltsumcoriteSanguiteSilicocarnotiteVanadiumWernerkrauseite
American Mineralogist, 2016Co-Authors: Fernando Cámara, Yulia Uvarova, Olivier C. Gagné, Dmitriy I. BelakovskiyAbstract:This New Mineral Names has entries for 13 New Minerals, including bubnovaite, cairncrossite, ferraioloite, fontarnauite, grundmannite, kayrobertsonite, magnesio-ferri-fluoro-hornblende, melanarsite, nickeltsumcorite, sanguite, silicocarnotite, vanadium, and wernerkrauseite. # Bubnovaite* {#article-title-2} L.A. Gorelova, L.P. Vergasova, S.V. Krivovichev, E.Yu. Avdontseva, S.V. Moskaleva, G.A. Karpov, and S.K. Filatov (2016) Bubnovaite, K2Na8Ca(SO4)6, a New Mineral species with modular structure from the Tolbachik volcano, Kamchatka peninsula, Russia. European Journal of Mineralogy, 28(3), 677–686. Bubnovaite, (IMA 2014-108), ideally K2Na8Ca(SO4)6, is a New Mineral found in fumaroles of the 2012–2013 Tolbachik fissure eruption, Kamchatka peninsula, on the New cinder Naboko cone. The samples of bubnovaite were found in a cavity on the NNE flank of the cone at the depth of 30 cm. The temperature of gases at the sampling location was more than 500 °C. The Mineral forms fine-grained, light blue, dendritic aggregates, consisting of colorless, transparent, tabular crystals of maximum dimension 0.14 mm, that were recovered with the aid of a long stick and metallic cap to grab samples from the fumarole vent. Bubnovaite is associated with aphthitalite, (K,Na)3Na(SO4)2, and thenardite, Na2SO4. Crystals of bubnovaite are brittle with a white streak and a vitreous luster. Hardness and density were not measured due to the lack of suitable material. The expected Mohs hardness is 2–3; D calc = 2.656 g/cm3. The Mineral is unstable in air and becomes white and non-transparent …
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New Mineral NamesGeschieberite and SvornostiteImayoshiitePalladosilicidePlášiliteRaisaiteShchurovskyite and dmisokoloviteVanackerite
American Mineralogist, 2016Co-Authors: Dmitriy I. Belakovskiy, Olivier C. Gagné, Yulia UvarovaAbstract:This New Mineral Names has entries for 9 New Mineral species, including dmisokolovite, geschieberite, imayoshiite, palladosilicide, plasilite, raisaite, shchurovskyite, svornostite, and vanackerite. # Geschieberite* and Svornostite* {#article-title-2} J. Plasil, J. Hlousek, A.V. Kasatkin, R. Skoda, M. Novak and J. Cejka (2015) Geschieberite, K2(UO2)(SO4)2(H2O)2, a New uranyl sulfate Mineral from Jachymov. Mineralogical Magazine, 79(1), 205–216. J. Plasil, J. Hlousek, A.V. Kasatkin, M. Novak, J. Cejka and L. Lapcak (2015) Svornostite, K2Mg[(UO2)(SO4)2]2·8H2O, a New uranyl sulfate Mineral from Jachymov, Czech Republic. Journal of Geosciences, 60, 113–121. Two New uranyl sulfates, geschieberite (IMA 2014-006), ideally K2(UO2)(SO4)2(H2O)2 and svornostite (IMA 2014-078), ideally K2Mg[(UO2)(SO4)2]2·(H2O)8 were recently discovered in the Geschieber vein at the Svornost mine, Jachymov (Joachimsthal), Western Bohemia, Czech Republic, and named for their type locality. The Jachymov ore district is a classic example of the Variscan hydrothermal vein type of deposit, so-called five-element formation, Ag–Bi–Co–Ni–U. Both New Minerals are the supergene products of the post mining alteration of the uraninite and sulfides of the primary ore. They occur in the close association with each another and with adolfpateraite, gypsum and mathesiusite. Both Minerals exhibit strong yellowish green fluorescence under both short- and long-wave UV radiation. Both are brittle, have an uneven fracture, and estimated Mohs hardness of ~2. …
Jorge L Alio - One of the best experts on this subject based on the ideXlab platform.
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Corneal Tattooing (keratopigmentation) to restore cosmetic appearance in severely impaired eyes with New Mineral micronized pigments
British Journal of Ophthalmology, 2010Co-Authors: Jorge L Alio, Belucha Sirerol, Anna Walewska - SzafranAbstract:To investigate keratopigmentation (KTP) with New Mineral micronized pigments as a surgical alternative to improve cosmetic appearance in severely-impaired eyes.
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corneal tattooing keratopigmentation with New Mineral micronised pigments to restore cosmetic appearance in severely impaired eyes
British Journal of Ophthalmology, 2010Co-Authors: Jorge L Alio, Belucha Sirerol, Anna Walewska SzafranAbstract:Aim To investigate keratopigmentation (KTP) with New Mineral micronised pigments as a surgical alternative to improve cosmetic appearance in severely impaired eyes. Methods 40 eyes underwent KTP alternatively to invasive cosmetic reconstructive surgery. Corneal staining with Mineral micronised pigments was performed using an intralamellar or superficial technique. Results One year postoperatively, all but two patients (95%) were satisfied. Pigmented eyes were improving patient9s appearance. Eight cases needed a second KTP. Two patients with preoperative corneal oedema did not obtain an adequate cosmetic appearance due to progressive pigment clearance observed from 6 months postoperatively. Three eyes with traumatic aniridia observed good cosmetic outcome and a significant reduction in glare. Conclusions KTP achieves good cosmetic results and is associated with high patient satisfaction, avoiding extensive and mutilating reconstructive surgery.