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Zhitova, Elena S., Pekov, Igor V., Chaikovskiy, Ilya I., Chirkova, Elena P., Yapaskurt, Vasiliy O., Bychkova, Yana V., Belakovskiy, Dmitry I., Chukanov, Nikita V., Zubkova, Natalia V., Krivovichev, Sergey V., Bocharov, Vladimir N. (2019) Dritsite, Li2Al4(OH)12Cl2·3H2O, a New Gibbsite-Based Hydrotalcite Supergroup Mineral. Minerals, 9 (8) 492 doi:10.3390/min9080492

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Reference TypeJournal (article/letter/editorial)
TitleDritsite, Li2Al4(OH)12Cl2·3H2O, a New Gibbsite-Based Hydrotalcite Supergroup Mineral
JournalMinerals
AuthorsZhitova, Elena S.Author
Pekov, Igor V.Author
Chaikovskiy, Ilya I.Author
Chirkova, Elena P.Author
Yapaskurt, Vasiliy O.Author
Bychkova, Yana V.Author
Belakovskiy, Dmitry I.Author
Chukanov, Nikita V.Author
Zubkova, Natalia V.Author
Krivovichev, Sergey V.Author
Bocharov, Vladimir N.Author
Year2019 (August 17)Volume9
Page(s)492Issue8
PublisherMDPI AG
DOIdoi:10.3390/min9080492Search in ResearchGate
Classification
Not set
LoC
Not set
Mindat Ref. ID7736172Long-form Identifiermindat:1:5:7736172:1
GUIDd06a5367-8e31-4895-a131-46c0b7037eaf
Full ReferenceZhitova, Elena S., Pekov, Igor V., Chaikovskiy, Ilya I., Chirkova, Elena P., Yapaskurt, Vasiliy O., Bychkova, Yana V., Belakovskiy, Dmitry I., Chukanov, Nikita V., Zubkova, Natalia V., Krivovichev, Sergey V., Bocharov, Vladimir N. (2019) Dritsite, Li2Al4(OH)12Cl2·3H2O, a New Gibbsite-Based Hydrotalcite Supergroup Mineral. Minerals, 9 (8) 492 doi:10.3390/min9080492
Plain TextZhitova, Elena S., Pekov, Igor V., Chaikovskiy, Ilya I., Chirkova, Elena P., Yapaskurt, Vasiliy O., Bychkova, Yana V., Belakovskiy, Dmitry I., Chukanov, Nikita V., Zubkova, Natalia V., Krivovichev, Sergey V., Bocharov, Vladimir N. (2019) Dritsite, Li2Al4(OH)12Cl2·3H2O, a New Gibbsite-Based Hydrotalcite Supergroup Mineral. Minerals, 9 (8) 492 doi:10.3390/min9080492
In(2019, August) Minerals Vol. 9 (8) MDPI AG
Abstract/NotesDritsite, ideally Li2Al4(OH)12Cl2·3H2O, is a new hydrotalcite supergroup mineral formed as a result of diagenesis in the halite−carnallite rock of the Verkhnekamskoe salt deposit, Perm Krai, Russia. Dritsite forms single lamellar or tabular hexagonal crystals up to 0.25 mm across. The mineral is transparent and colourless, with perfect cleavage on {001}. The chemical composition of dritsite (wt. %; by combination of electron microprobe and ICP−MS; H2O calculated by structure refinement) is: Li2O 6.6, Al2O3 45.42, SiO2 0.11, Cl 14.33, SO3 0.21, H2Ocalc. 34.86, O = Cl − 3.24, total 98.29. The empirical formula based on Li + Al + Si = 6 apfu (atom per formula unit) is Li1.99Al4.00Si0.01[(OH)12.19Cl1.82(SO4)0.01]Σ14.02·2.60(H2O). The Raman spectroscopic data indicate the presence of O–H bonding in the mineral, whereas CO32– groups are absent. The crystal structure has been refined in the space group P63/mcm, a = 5.0960(3), c = 15.3578(13) Å, and V = 345.4(5) Å3, to R1 = 0.088 using single-crystal data. The strongest lines of the powder X-ray diffraction pattern (d, Å (I, %) (hkl)) are: 7.68 (100) (002), 4.422 (61) (010), 3.832 (99) (004, 012), 2.561 (30) (006), 2.283 (25) (113), and 1.445 (26) (032). Dritsite was found as 2H polytype, which is isotypic with synthetic material and shows strong similarity to chlormagalumite-2H. The mineral is named in honour of the Russian crystallographer and mineralogist Prof. Victor Anatol`evich Drits.

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.

Rives (2001)
Evans (2006) Structural aspects of layered double hydroxides Volume 119, 1
Niksch (2017) Nat. Resour. J. Synthesis and characterization of a [Li0+xMg2−2xAl1+x(OH)6][Cl·mH2O] Solid solution with X= 0–1 at different temperatures 8, 445
Devyatkina (1983) Zhurnal Neorg. Khimii. On the lithium carbonate-hydroxyl-aluminate 28, 1420
Not Yet Imported: Journal of Materials Research - journal-article : 10.1557/JMR.1996.0188

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Not Yet Imported: J. Mater. Chem. A - journal-article : 10.1039/C4TA04065A

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 36877
Isupov (2007) Chem. Sustain. Dev. Synthesis of superfine carbonate form of Li–Al double hydroxide from sodium hydroaluminocarbonate 15, 63
Karpenko (2018) Eur. J. Miner. Akopovaite, IMA 2018-095. CNMNC Newsletter No. 46, December 2018, page 1186 30, 1181
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Zhitova (2019) Russ. Geol. Geoph Minerals of the stichtite-pyroaurite-iowaite-woodallite system from serpentinites of Terektinsky range, Altay Mountains, Russia
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If you would like this item imported into the Digital Library, please contact us quoting Journal ID 42404
Karpenko (2004) New Data Miner. New occurrence of nickelalumite on Kara-Chagyr, South Kirgizia 39, 32
Agakhanov (2005) New Data Miner. Kyrgyzstanite, ZnAl4(SO4)(OH)12(H2O)3—A new mineral from the Kara-Tangi, Kyrgyzstan 40, 23
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Pertlik (1990) Neues JB Miner. Mon. Crystal structure of alvanite, (Zn,Ni)Al4(VO3)2(OH)12·2H2O, the first example of an unbranched zweier-single chain vanadate in nature 9, 385
Karpenko (2004) Zap. RMO Ankinovichite, nickel analogue of alvanite, a new mineral from Kurunsak (Kazakhstan) and Kara-Chagyr (Kirgizia) 133, 59
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Map of Localities

Mineral Pages

MineralCitation Details
Dritsite

Mineral Occurrences

LocalityMineral(s)
Borehole No. 2001, Romanovskiy area, Verkhnekamskoe K deposit, Solikamsk, Solikamsky District, Perm Krai, Russia Anatase, Baryte, Carnallite, Congolite, Dolomite, Dritsite, Fluorite, Goyazite, Halite, Hematite, K Feldspar, Kaolinite, Magnesite, Quartz, Woodhouseite


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