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The mineralogy of the historical Mochalin Log REE deposit, South Urals, Russia. Part III. Percleveite-(La), La2Si2O7, a new REE disilicate mineral

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KASATKIN Anatoly V. ZUBKOVA Natalia V. PEKOV Igor V. CHUKANOV Nikita V. ŠKODA Radek AGAKHANOV Atali A. BELAKOVSKIY Dmitriy I. KSENOFONTOV Dmitriy A. PLÁŠIL Jakub KUZNETSOV Aleksey M. BRITVIN Sergey N. PUSHCHAROVSKY Dmitry Yu.

Rok publikování 2020
Druh Článek v odborném periodiku
Časopis / Zdroj Mineralogical Magazine
Fakulta / Pracoviště MU

Přírodovědecká fakulta

Citace
www https://doi.org/10.1180/mgm.2020.81
Doi http://dx.doi.org/10.1180/mgm.2020.81
Klíčová slova crystal structure; Mochalin Log; new mineral; percleveite-(La); Raman spectrum; rare-earth disilicate; South Urals
Popis The new mineral percleveite-(La) (IMA2019-037), ideally La2Si2O7, was found in polymineralic nodules of the Mochalin Log REE deposit, Chelyabinsk Oblast, South Urals, Russia. It is associated with allanite-(Ce), allanite-(La), bastnasite-(Ce), bastnasite-(La), ferriallanite-(Ce), ferriallanite-(La), ferriperbOeite-(Ce), ferriperbOeite-(La), fluorbritholite-(Ce), hydroxylbastnasite-(Ce), perbOeite-(Ce), perbOeite-(La), tornebohmite-(Ce) and tornebohmite-(La). Percleveite-(La) occurs as isolated anhedral grains commonly up to 0.2 mm x 0.4 mm and very rarely up to 1 mm x 1 mm. The new mineral is transparent with greasy lustre. The mineral is very pale yellow to colourless in thin fragments to light yellow in aggregates. It is brittle, with imperfect {001} cleavage and an uneven fracture. Mohs' hardness is ca. 6. D-calc = 5.094 g cm(-3). Under the microscope, percleveite-(La) is non-pleochroic, optically uniaxial (+), omega = 1.825(10) and = 1.835(10). The Raman spectrum is given. Chemical data (wt.%, electron-microprobe) are: La2O3 36.80, Ce2O3 31.22, Pr2O3 1.57, Nd2O3 2.96, SiO2 26.73, total 99.28. The empirical formula based on 7 O apfu is (La1.02Ce0.86Nd0.08Pr0.04)(Sigma 2.00)Si2.00O7. Percleveite-(La) is tetragonal, P4(1); the unit-cell parameters are: a = 6.8482(3), c = 24.8550(13) angstrom, V = 1165.64(11) angstrom(3) and Z = 8. The strongest reflections in the powder X-ray diffraction pattern [d, angstrom(I)(hkl)] are: 4.194(18)(113), 3.564(16)(106), 3.349(16)(201,202), 3.157(100)(203,116,008), 3.043(22)(211), 2.934(39)(122), 2.893(29)(213) and 2.864(21)(117). The crystal structure of percleveite-(La) is solved from the single-crystal X-ray diffraction data [R = 0.0617 for 2831 unique reflections with I > 2 sigma(I)]. The new mineral is named as an analogue of percleveite-(Ce) with La predominance over the rare-earth elements.

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