Calcium fluorosilicate Ca5(SiO4)2F2 from burnt dumps of the Chelyabinsk coal basin (South Urals): crystal chemistry, spectroscopy, thermal behavior

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The anthropogenic calcium fluorosilicate “kutyukhinite” Ca5(SiO4)2F2 from burnt dumps of the Chelyabinsk coal basin has been studied by single crystal and powder X-ray diffraction analyses in a wide temperature range. “Kutyukhinite” (P21/a, a = 11.4985(4), b = 5.0535(2), c = 8.7848(3) Å, β = 109.008(4)°, V = 482.63(3) Å3, R1 = 0.0183) is an anthropogenic analogue of kumtyubeite which belongs to the structural type of chondrodite. The empirical formula of “kutyukhinite” is Ca5.02(Si1.99O7.98)F2.04. Upon heating, its crystal structure expands anisotropically, with the direction of maximum thermal expansion close to the direction [100]. The relative change in bond lengths in silicon-oxygen tetrahedra with increasing temperature (27−927°C) is less than 0.6%, which is within the margin of error. At the same time, the relative increase in the average bond length of the varies from 1 () to 1.5% (). The largest relative change of 2% was found for the average bond length .

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作者简介

A. Brazhnikova

St. Petersburg State University

编辑信件的主要联系方式.
Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg

A. Zolotarev

St. Petersburg State University

Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg

M. Avdontсeva

St. Petersburg State University

Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg

S. Krivovichev

St. Petersburg State University; Kola Science Center RAS

Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg; Apatity

M. Krzhizhanovskaya

St. Petersburg State University

Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg

V. Bocharov

St. Petersburg State University

Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg

N. Vlasenko

St. Petersburg State University

Email: st084249@student.spbu.ru
俄罗斯联邦, St. Petersburg

M. Rassomakhin

South Urals Federal Research Center of Mineralogy and Geoecology of UB RAS

Email: st084249@student.spbu.ru
俄罗斯联邦, Miass

参考

  1. Чесноков Б.В., Баженова Л.Ф., Бушмакин А.Ф. и др. // Минералы и минеральное сырье Урала. Сборник № 1. 1993. С. 3.
  2. Чесноков Б.В., Щербакова Е.П., Нишанбаев Т.П. Минералы горелых отвалов Челябинского угольного бассейна. Миасс: УрО РАН, 2008. 139 с.
  3. Zolotarev A.A., Krivovichev S.V., Panikorovskii T.L. et al. // Minerals. 2019. V. 9. № 10. Р. 570. https://doi.org/10.3390/min9100570
  4. Krivovichev S.V., Shcherbakova E.P., Nishanbaev T.P. // Can. Mineral. 2012. V. 50. P. 585. https://doi.org/10.3749/canmin.50.3.585
  5. Avdontceva M.S., Zolotarev A.A., Krivovichev S.V. et al. // Mineral. Petrol. 2021. V. 115. P. 271. https://doi.org/10.1007/s00710-021-00740-4
  6. Brazhnikova A.S., Avdontceva M.S., Zolotarev A.A. et al. // Minerals. 2023. V. 13. № 5. Р. 668. https://doi.org/10.3390/min13050668
  7. Avdontceva M.S., Zolotarev A.A., Brazhnikova A.S. et al. // Minerals. 2024. V. 14. № 10. Р. 1048. https://doi.org/10.3390/min14101048
  8. Galuskina I.O., Lazic B., Armbruster T. et al. // Am. Mineral. 2009. V. 94. P. 1361. https://doi.org/10.2138/am.2009.3256
  9. Газеев В.М., Задов А.Е., Гурбанов А.Г. и др. // Вестник Владикавказского научного центра. 2006. Т. 6. № 1. С. 18.
  10. Hamm H.M., Hentschel G. // Neues Jahrb. für Mineral. Monatshefte. 1983. P. 119.
  11. Laetsch T., Downs R. Abstracts from the 19th General Meeting of the International Mineralogical Association. Kobe, Japan, 23–28 July 2006.
  12. Integrated X-Ray Powder Diffraction Software PDXL // Rigaku J. (English version). 2010. 26. № 1. P. 23.
  13. BRUKER-AXS Topas V4.2 General Profile and Structure Analysis Software for Powder Diffraction Data. Karlsruhe, Germany. 2009.
  14. Бубнова Р.С., Фирсова В.А., Филатов С.К. // Физика и химия стекла. 2013. Т. 39. № 3. С. 505.
  15. CrysalisPro Software System, version 1.171.39.44. Rigaku Oxford Diffraction: Oxford, UK. 2015.
  16. Sheldirck G.M. // Acta Cryst. C. 2015. V. 71. P. 3. https://doi.org/10.1107/S2053229614024218
  17. Dolomanov O.V., Bourhis L.J., Gildea R.J. et al. // J. Appl. Cryst. 2009. V. 42. P. 339. https://doi.org/10.1107/S0021889808042726
  18. Momma K., Izumi F. // J. Appl. Cryst. 2011. V. 44. P. 1272. https://doi.org/10.1107/S0021889811038970
  19. Downs R.T. // Rev. Mineral. Geochem. 2000. V. 41. P. 61. https://doi.org/10.2138/rmg.2000.41.3
  20. Kolesov B.A., Geiger C.A. // Phys. Chem. Miner. 2004. V. 31. P. 142. https://doi.org/10.1007/s00269-003-0370-y
  21. Kolesov B.A., Geiger C.A. // Phys. Chem. Miner. 1998. V. 25. P. 142. https://doi.org/10.1007/s002690050097
  22. Dowty E. // Phys. Chem. Miner. 1987. V. 14. P. 542. https://doi.org/10.1007/BF00308290
  23. Frost R.L., Palmer S.J., Bouzaid J.M. et al. // J. Raman Spectrosc. 2007. V. 38. P. 68. https://doi.org/10.1002/jrs.1601
  24. Ye Y., Smyth J.R., Jacobsen S.D. et al. // Contrib. Mineral. Petrol. 2013. V. 165. P. 563. https://doi.org/10.1007/s00410-012-0823-8
  25. Kirfel A., Hamm H.M., Will G. // Tschermaks Mineralogische und Petrographische Mitteilungen. 1983. V. 31. P. 137.
  26. Gibbs G.V., Ribbe P.H., Anderson C.P. // Am. Mineral. 1970. V. 55. P. 1182.
  27. Ribbe P.H., Gibbs G.V. // Am. Mineral. 1971. V. 56. P. 1155.

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2. Fig. 1. Segregation of light pink isometric crystals of “kutyukhinite” (1), as well as fine-crystalline segregations of srebrodolskite (2) (No. 066-94).

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3. Fig. 2. Raman spectrum of “kutyukhinite”.

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4. Fig. 3. Projection of the crystal structure of “kutyukhinite” onto the ac plane and the oriented figure of the thermal expansion tensor (a), coordination environment of calcium atoms (b).

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5. Fig. 4. Temperature dependences of the unit cell parameters of “kutyukhinite” (circles – powder X-ray diffraction data, squares – single-crystal X-ray structural analysis).

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