Тиетта. 2014, N 2 (28).

Г / »h Наука / Science 15 крупнейших интрузивных комплексов фоидсодержащих пород редких элементов в бедных лопаритовых рудах верхних частей лопаритоносного комплекса Ло- возёрского массива. М.: Фонды ИМГРЭ, МГ СССР, 1975. 138 с. 12. Петрографический кодекс России. Магмати­ ческие, метаморфические, метасоматические, им- пактные образования. СПб.: ВСЕГЕИ, 2009. 200 с. 13. Петрографический словарь. Ред. Петров В.П. и др. М.: Недра, 1981. 496 с. 14. Alves F.R., Gomes C.B. Ilha dos Bйzios, Litoral Norte do Estado de Sao Paulo: Aspectos Geologicos e Petrograficos // Geo. USP Ser. Cient. Sao Paulo. Agosto 2001. V. 1. P. 101-114. 15. Brotzu P., Barbieri M., Beccaluva L. et al. Petrology and geochem istry of the Passa Quatro alkaline complex, SE Brazil //J. SouthAmer. Earth Sci. 1992. V. 6. N 4. P. 237-252. 16. Brotzu P., Gomes C.B., Melluso L. et al. Petro- genesis of coexisting in SiO2-undersaturated to SiO2-oversaturated felsic igneous rocks; the alkaline complex of Itatiaia, SE Brazil // Lithos. 1997. V. 40. N 2-4. P. 133-156. 17. Chambers A.D. The petrology and geochemistry of the N. Qoroq centre, Igaliko complex, S. Greenland //Durham theses. Durham University. 1976. Available at: http://etheses.dur.ac.uk/8342/. 18. Enrich G.E.R., Azzone R.G., Ruberti E. et al. Itatiaia, Passa Quatro and Sao Sebastiao Island, the major alkaline syenitic complexes from the Serra do Mar region // Mesozoic to cenozoic alkaline magmatism in the Brazilian platform. EdUSP, Fapesp. Sao Paulo, Brazil, 2005. 19. Grohmann C.H., R iccom ini C., Alves F.M. SRTM-based morphotectonic analysis of the Pogos de Caldas alkaline massif, SE Brazil //Comp. & Geosci. 2007. V. 33. P. 10-19. 20. Kogarko L.N., Kononova V.A., Orlova M.P. et al. Alkaline rocks and carbonatites of the world. Pt 2. Former USSR. London: Chapman & Hall, 1995. 226 p. 21. Kotov A.B., Vladykin N.V., Yarmolyuk V.V. et al . Permian age of the Burpala alkaline pluton, N. Transbaikalia: geodynamic implications // Dokl. Earth Sci. 2013. V. 453. N 1. P. 1082-1085. 22. Kramm U., Kogarko L.N., Kononova V.A. et al. The Kola alkaline province of the CIS and Finland: precise Rb-Sr ages define 380-360 Ma age range for all magmatism //Lithos. 1993. V. 30. P. 33-44. 23. Kravchenko S.M. Porphyritic potassium-rich alkaline-ultrabasic rocks of the central Tomtor massif, Arctic Siberia: carbonatized lamproites //Rus. Geol. Geophys. 2003. V. 44. N 9. P. 870-883. 24. Kravchenko S.M., Pokrovsky B.G. The Tomtor alkaline u ltrabasic massif and related REE-Nb deposits, N. Siberia //Econ. Geol. 1995. V. 90. P. 676-689. 25. Krumrei T.V., Villa I.M., Marks M.A.W. et al. 40Ar/ 39Ar and U/Pb isotopic study of the IHmaussaq complex, S. Greenland: implications for the 40K decay constant and for the duration of magmatic activity in a peralkaline complex //Chem. Geol. 2006. V. 227. P. 258-273. 26. Laznicka P. Giant metallic deposits: future sources of industrial metals. Berlin: Springer-Verlag, 2010. 950 p. 27. Le Maitre R.W. Igneous rocks: a classification and glossary of terms: recommendations of the Int. Union of Geol. Sci. Subcommission on the Systematics of Igneous Rocks. Cambridge: University Press, 2002. 236 p. 28. Montes-Lauar C.R., Pacca I.G., Melfi A.J. et al. Late Cretaceous alkaline complexes, SE Brazil: paleomagnetism and geochronology //Earth Planet. Sci. Letters. 1995. V. 134. N. 3. P. 425-440. 29. Motoki A. An outline about problems of volcanic caldera hypothesis of the Pogos de Caldas alkaline complex rock body, Minas Gerais - Sao Paulo, Brazil //Congresso Latinoamericano de geologia. 1988. V. 1. P. 309-323. 30. Petersen J.S. Structure of the larvikite-lardalite complex, Oslo region, Norway, and its evolution // Geol. Rundschau. 1978. V. 67. P. 330-342. 31. Rasmussen E., Neumann E.A., Andersen T. et al. Petrogenetic processes associated with intermediate and silicic magmatism in the Oslo rift, SE Norway // Miner. Mag. 1988. V. 52. P. 293-307. 32. Sorensen H., Bailey J.C., Rose-Hansen J. The emplacement and crystallization of the U-Th-REE-rich agpaitic and hyperagpaitic lujavrites at Kvanefjeld, IHmaussaq alkaline complex, S. Greenland // Bull. Geol. Soc. Denmark. 2011. V. 59. P. 69-92. 33. Sotnikova I.A., Prokofiev V.Yu., Vladykin N.V. Genesis of apatite-fluorite rock in the Burpala pluton //Dokl. Earth Sci. 2011. V. 441. N 2. P. 1703-1705. 34. Stephenson D. The petrology and mineralogy of the S. Qroq centre, Igaliko complex, S. Greenland // Durham theses. Durham University. 1973. Available at: http://etheses.dur.ac.uk/8733/. 35. Ulbrich H.H.G.J., Gomes C.B. Alkaline rocks from continental Brazil //Earth Sci. Rev. 1981. V. 17. P. 135-154. 36. Ulbrich H.H., Ulbrich M.N.C. The lujavrite and khibinite bodies in the Pogos de Caldas alkaline massif, SE Brazil: a structural and petrographic study //Revista Brasileira de Geociencias. 2000. V. 30. N 4. P. 615-622. 37. Vladykin N.V. Potassium alkaline lamproite- carbonatite complexes: petrology, genesis, and ore reserves // Rus. Geol. Geophys. 2009. V. 50. N 12. P. 1119-1128. 38. Woolley A.R. Alkaline rocks and carbonatites of the world. Pt 3. Africa. London: Geol. Soc. London, 2001. 372 p. Аспирант В.В. Пуха, г. Апатиты

RkJQdWJsaXNoZXIy MTUzNzYz