Вестник МГТУ. 2018, том 21, № 1.
Козлов Е. Н. и др. Генезис апокарбонатитовых титанистых метасоматитов… 48 23. Bulakh A. G., Nesterov A. R., Zaitsev A. N., Pilipiuk A. N., Wall F. [et al.]. Sulfur-containing monazite-(Ce) from late-stage mineral assemblages at the Kandaguba and Vuoriyarvi carbonatite complexes, Kola Peninsula, Russia // Neues Jahrbuch für Mineralogie – Monatshefte. 2000. V. 5, Iss. 5. P. 217–233. 24. Kozlov E. N., Fomina E. N., Mytsa D. D., Kirkin V. V. Rare-earth carbonatites of the Vuori-Yarvi (Kola Region): First results of the study // Magmatism of the Earth and related strategic metal deposits : Proceedings of XXXIV International Conference. Miass, 4–9 August, 2017 / eds. V. A. Zaitsev, V. N. Ermolaeva. M. : GEOKHI RAS, 2017. P. 117–120. 25. Le Bas M. J. Fenites associated with carbonatites // Canadian Mineralogist. 2008. V. 46, Iss. 4. P. 15–932. 26. Gittins J., Allen C. R., Cooper A. F. Phlogopitization of pyroxenite; its bearing on the composition of carbonatite magmas // Geological Magazine. 1975. V. 112, Iss. 5. P. 503. References 1. Goodenough K. M., Wall F., Merriman D. The rare Earth elements: Demand, global resources, and challenges for resourcing future generations // Natural Resources Research. 2017. April. P. 1–16. 2. Chao E. C. T., Back J. M., Minkin J. A., Yinchen R. Host-rock controlled epigenetic, hydrothermal metasomatic origin of the Bayan Obo REE-Fe-Nb ore deposit, Inner Mongolia, P.R.C. // Applied Geochemistry. 1992. V. 7, N 5. P. 443–458. 3. Fan H.-R., Yang K.-F., Hu F.-F., Liu S., Wang K.-Y. The giant Bayan Obo REE-Nb-Fe deposit, China: Controversy and ore genesis // Geoscience Frontiers. 2016. V. 7, Iss. 3. P. 335–344. 4. Afanasev B. V. Mineralnye resursy schelochno-ultraosnovnyh massivov Kolskogo poluostrova [Mineral resources of alkaline-ultrabasic massifs of the Kola Peninsula]. SPb. : Roza vetrov, 2011. 224 p. 5. Flohr M. J. K. Titanium, vanadium, and niobium mineralization and alkali metasomatism from the Magnet Cove complex, Arkansas // Economic Geology. 1994. V. 89, Iss. 1. P. 105–130. 6. Verwoerd W. J., Viljoen E. A., Chevallier L. Rare metal mineralization at the Salpeterkop carbonatite complex, Western Cape Province, South Africa // Journal of African Earth Sciences. 1995. V. 21, Iss. 1. P. 171–186. 7. Werner M., Cook N. J. Nb-rich brookite from Gross Brukkaros, Namibia: Substitution mechanisms and Fe 2+ /Fe 3+ ratios // Mineralogical Magazine. 2001. V. 65, Iss. 3. P. 437–440. DOI: https://doi.org/ 10.1180/002646101300119510. 8. Kapustin Yu. L. Mineralogiya karbonatitov [Mineralogy of carbonatites]. M. : Nauka, 1971. 288 p. 9. Giovannini A. L., Bastos Neto A. C., Porto C. G., Pereira V. P., Takehara L. [et al.]. Mineralogy and geochemistry of laterites from the Morro dos Seis Lagos Nb (Ti, REE) deposit (Amazonas, Brazil) // Ore Geology Reviews. 2017. V. 88. P. 461–480. 10. Mitchell R. H. Primary and secondary niobium mineral deposits associated with carbonatites // Ore Geology Reviews. 2015. V. 64. P. 626–641. 11. Downes H., Balaganskaya E., Beard A., Liferovich R., Demaiffe D. Petrogenetic processes in the ultramafic, alkaline and carbonatitic magmatism in the Kola Alkaline Province: A review // Lithos. 2005. V. 85, Iss. 1–4. P. 48–75. 12. Kuharenko A. A., Orlova M. P., Bulah A. G., Bagdasarov E. A., Rimskaya-Korsakova O. M. [i dr.]. Kaledonskiy kompleks ultraosnovnyh, schelochnyh porod i karbonatitov Kolskogo poluostrova i Severnoy Karelii [The Caledonian complex of ultrabasic, alkaline rocks and carbonatites of the Kola Peninsula and North Karelia]. M. : Nedra, 1965. 772 p. 13. Le Maitre R. W., Streckeisen A., Zanettin B., Le Bas M. J., Bonin B. [et al]. Igneous rocks: A classification and glossary of terms. Recommendations of the International Union of Geological Sciences Subcommission on the systematics of igneous rocks / ed. R. W. Le Maitre. Cambridge : Cambridge University Press, 2002. 256 p. 14. Gittins J., Harmer R. E. What is ferrocarbonatite? A revised classification // Journal of African Earth Sciences. 1997. V. 25, Iss. 1. P. 159–168. 15. Le Maitre R. W. Numerical petrology: Statistical interpretation of geochemical data. Amsterdam : Elsevier Scientific Pub. Co, 1982. 281 p. 16. Grant J. A. The isocon diagram; a simple solution to Gresens' equation for metasomatic alteration // Economic Geology. 1986. V. 81, Iss. 8. P. 1976–1982. DOI: https://doi.org/10.2113/gsecongeo.81.8.1976. 17. Gresens R. L. Composition-volume relationships of metasomatism // Chemical Geology. 1967. V. 2. P. 47–65. 18. Coelho J. GEOISO-A WindowsTM program to calculate and plot mass balances and volume changes occurring in a wide variety of geologic processes // Computers & Geosciences. 2006. V. 32, Iss. 9. P. 1523–1528. 19. Grant J. A. Isocon analysis: A brief review of the method and applications // Physics and Chemistry of the Earth, Parts A/B/C. 2005. V. 30, N 17–18. P. 997–1004. DOI: https://doi.org/10.1016/j.pce.2004.11.003.
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