Skip to main content
Have a personal or library account? Click to login
Genesis and stability of accessory phosphates in silicic magmatic rocks: a Western Carpathian case study Cover

Genesis and stability of accessory phosphates in silicic magmatic rocks: a Western Carpathian case study

By:  and    
Open Access
|Oct 2008

References

  1. BROSKA I., SIMAN P., 1998: The breakdown of monazite in the West-Carpathian Veporic orthogneisses and Tatric granites.49, 161-167.
  2. BROSKA I., PETRÍK I., WILLIAMS C. T., 2000: Coexisting monazite and allanite in peraluminious granitoids of the Tribeč Mountains, Western Carpathians.85, 22-32.
  3. BROSKA I., KUBIŠ, M., WILLIAMS C. T., KONEČNÝ P. 2002. The composition of rock-forming and accessory minerals from the Gemeric granites (Hnilec area, Gemeric superunit, Western Carpathians).7, 147-155.
  4. BROSKA I., WILLIAMS C. T., UHER P., KONEČNÝ P., LEICHMANN J., 2004: The geochemistry of phosphorus in different granite suites of the Western Carpathians, Slovakia: the role of apatite and P-bearing feldspar.205, 1-15.
  5. BROSKA I., WILLIAMS C. T., JANÁK M., NAGY G., 2005: Alteration and breakdown of xenotime-(Y) and monazite-(Ce) in granitic rocks of the Western Carpathians, Slovakia.82, 71-83.
  6. BROSKA I., HARLOV D., TROPPER P., SIMAN P., 2007: Formation of magmatic titanite and titanite-ilmenite phase relations during granite alteration in the Tribeč mountains, Western Carpathians, Slovakia.95, 58-71.
  7. BURT D. M., 1989: Compositional and phase relations among rare earth element minerals. In: Geochemistry and mineralogy of rare earth elements, B. R. Lipin & G. A. McKay (Eds.).21, 298-306.
  8. BUDZYŇ B., KONEČNÝ P., MICHALIK M., 2006: Breakdown of primary monazite and formation of secondary monazite in gneiss clasts from Gródek at the Jezioro Roźnowskie lake (Poland).28, 33-35.
  9. CATLOS E., GILLEY L. D., HARRISON T. M., 2002: Interpretation of monazite ages obtained via in situ analysis.188, 193-215.
  10. CUNEY M., FRIEDRICH M., 1987: Physicochemical and crystal-chemical control on accessory mineral paragenesis in granitoids: Implications for uranium metallogenesis.110, 235-247.
  11. FINGER F., KRENN. E., 2007: Three metamorphic monazite generations in a high-pressure rock from the Bohemian Massif and the potentially important role of apatite in stimulating polyphase monazite growth along a PT loop.95, 103-115.
  12. FRÝDA J., BREITER K., 1995. Alkali feldspars as a main phosphorus reservoir in rare-metal granites: three examples from the Bohemian Massif (Czech Republic).7, 315-320.
  13. FÖRSTER H. J., 1998a. The chemical composition of REE-Y-Th-U-rich accessory minerals in peraluminous granites of the Erzgebirge-Fichtelgebirge region, Germany. Part I. The monazite-(Ce)-brabantite solid solution series.83, 259-272.
  14. FÖRSTER H. J., 1998b. The chemical composition of REE-Y-Th-U-rich accessory minerals in peraluminous granites of the Erzgebirge-Fichtelgebirge region, Germany, Part II. Xenotime.83, 1302-1315.
  15. GROMET L. P., SILVER L. T., 1983: Rare earth element distributions among minerals in a granodiorite and their petrological implications.47, 952-938.
  16. HARLOV D. E., FÖRSTER H. J., 2003: Fluid-induced nucleation of (Y+REE)-phosphate minerals within apatite: Nature and experiments. Part II. Fluorapatite.88, 1209-1209.
  17. HARLOV D. E., WIRTH R., FÖRSTER H. J., 2005: An experimental study of dissolution-reprecipitation in fluorapatite: fluid infiltration and formation of monazite.150, 268-286.
  18. HEINRICH W., ANDREHS G., FRANZ G., 1997: Monazite-xenotime miscibility gap thermometer. 1. An empirical calibration.15, 3-16.
  19. HUGHES J. M., RAKOVAN J., 2002: The crystal structure of apatite: Ca(PO)(F, OH, Cl). In: Phosphates. Geochemical, Geobiological, and Materials Importance. Kohn M. J., Rakovan J., Hughes J. M.(Eds.):48, 1-12.
  20. JANOTS E., BRUNET F., GOFFÉ B., POINSSOT C., BYRCHARD M., CEMIC L., 2007: Thermochemistry of monazite-(La) and dissakisite-(La): implications for monazite and allanite stability in metapelites.154, 1-14.
  21. KRENN E., FINGER F., 2007: Formation of monazite and rhabdophane at the expense of aalanite during Alpine low temperature retrogression of metapelitic basement rocks from Crete, Greece. Microprobe data and geochronological implications.95, 130-147
  22. KUCHA H., 1980: Continuity in the monazite-huttonite series.43, 387-393.
  23. LINTHOUT K., 2007: Tripartite division of the system 2 REEPO- CaTh(PO)- 2ThSiO, discreditation of brabantite, and recognition of cheralite as the name for members dominated by CaTh(PO).45, 503-508.
  24. LONDON D., ČERNÝ P., LOOMIS J. L., PAN J. J., 1990. Phosphorus in alkali feldspars of rare-element granitic pegmatites.28, 771-786.
  25. LONDON D., 1992: Phosphorus in S-type magmas: the POcontent of feldspars from peraluminious granites, pegmatites and rhyolites.77, 126-145.
  26. LONDON D., 1998: Phosphorus-rich peraluminious granites.42, 64-68.
  27. MAJKA J., BUDZYŇ B., 2006: Monazite breakdown in metapelites from Wedel Jarlsberg Land, Svalbard - preliminary report.37, 61-68.
  28. MICHALIK M., SKUBLICKI L., 1999: Phosphate accessory minerals in High Tatra granitoids.50, Spec. Issue, 123-125.
  29. MICHALIK M., POPCZYK R., KUSIAK M., PASZKOWSKI M., 2000: Xenotime zircon intergrowths in the Western Tatra leucogranites.17, 249-251.
  30. NASH W. P., 1972: Apatite chemistry and phosphorus fugacity in a differentiated igneous intrusion.57, 877-886.
  31. NI Y., HUGHES J. M., MARIANO A. M., 1995: Crystal chemistry of the monazite and xenotime structures.80, 21-26.
  32. PETRÍK I., KONEČNÝ P., KOVÁČIK M., HOLICKÝ I. 2006: Electron microprobe dating of monazite from the Nizke Tatry Mountains orthogneisses (Western Carpathians, Slovakia).57, 227-242.
  33. PLAŠIENKA D., GRECULA P., PUTIŠ, M., HOVORKA D. & KOVÁČ, M., 1997. Evolution and structure of the Western Carpathians: an overview. In: Geological Evolution of the Western Carpathians (eds. P. Grecula, D. Hovorka & M. Putiš),, 1-24.
  34. PYLE J. M., SPEAR F. S., RUDNICK R. L. & MCDONOUGH W. F., 2001: Monazite-xenotime and monazite-garnet equilibrium in a prograde pelite sequence.42, 2083-2107.
  35. ROSE D., 1980: Brabantite, CaTh[PO], a new mineral of the monazite group.247-257.
  36. ROJKOVIČ I., KONEČNÝ P., NOVOTNÝ L., PUŠKELOVÁ L., STREŠKO V., 1999: Quartz-apatite-REE vein mineralization in early paleozoic rocks of the Gemeric superunit, Slovakia.50, 215-227.
  37. SPEAR F., PYLE J. M., 2002: Apatite, monazite and xenotime in metamorphic rocks. In: Phosphates. Geochemical, Geobiological, and Materials Importance. Kohn M. J., Rakovan J., Hughes J. M.(Eds.):48, 293-335.
  38. UHER P., MALACHOVSKÝ P., DIANIŠKA I., KUBIŠ M., 2001: Rare-element Nb-Ta-W mineralization of the tin-bearing Spiš-Gemer granites, Eastern Slovakia.13, 119-120.
  39. WATSON E. B., CAPOBIANCO C. J., 1981: Phosphorus and rare earth elements in felsic magmas. An assesment of the role of apatite.45, 2349-2358.
  40. WATSON E. B., HARRISON T. M. 1984: What can accessory minerals tell us about felsic magma evolution? A framework for experimental study.11, 503-520.
  41. BEA F., FERSHTATER G., CORRETGÉ L. G., 1992: The geochemistry of phosphorus in granite and the effect of aluminium.29, 43-45.
  42. BOWIE S. H. U., HORNE J. E. T., 1953: Cheralite, a new mineral of the monazite30, 93-99.
  43. BREITER K., FRÝDA J., LEICHMANN J., 2002: Phosphorus and rubidium in alkali feldpars: case studies and possible genetic interpretation. In: Breiter K., 2002 (Ed.): Phosphorus- and fluorine-rich fractionated granites.77, 93-104.
  44. BREITER K., FRÝDA J., SELTMAN R., THOMAS R., 1997: Mineralogical evidence for two magmatic stages in the evolution of an extremely fractionated P-rich rare-metal granite: the Podlesí stock, Krušné Hory, Czech Republic.38, 1723-1739.
  45. ONDREJKA M., UHER P., PRŠEK J., OZDÍN D., 2007: Arsean monazite-(Ce) and xenotime-(Y), REE arsenates and carbonates from the Tisovec-Rejkovo rhyolite, Western Carpathians, Slovakia: Composition and substitution in the (REE, Y)XOsystem (X = P, As, Si, Nb, S).95, 116-129.
  46. PAN Y., 1997: Zircon- and monazite forming metamorphic reactions at Manitouwadge, Ontario.35, 105-118.
  47. PAN Y., FLEET M. E., 2002: Compositions of the apatite-group minerals: substitution mechanism and controlling factors. In: Phosphates. Geochemical, Geobiological, and Materials Importance. Kohn M. J., Rakovan J., Hughes J. M. (Eds.).48, 13-50.
DOI: https://doi.org/10.2478/v10002-008-0004-6 | Journal eISSN: 1899-8526 | Journal ISSN: 1899-8291
Language: English
Page range: 53 - 66
Published on: Oct 8, 2008
Published by: Mineralogical Society of Poland
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Related subjects:

© 2008 Igor Broska, Igor Petrík, published by Mineralogical Society of Poland
This work is licensed under the Creative Commons License.