Minerály pegmatitových hnízd z okolí Jablonce nad Nisou (krkonošsko-jizerský pluton) - část I. silikáty
Minerals of pegmatite nests from the surroundings of Jablonec nad Nisou (Krkonoše-Jizera Pluton) - part I. Silicates
Klíčová slova
Abstrakt
We have studied silicate minerals in pegmatite nests from the Tanvald Granite (4 sites) and the Liberec Granite (1 site) in the vicinity of Jablonec n. Nisou, situated within the Variscan Krkonoše-Jizera Pluton. They contain major quartz, K-feldspar and plagioclase (An0-11), subordinate biotite, muscovite and locally schorl. Accessory phases include garnet (spessartine-almandine), andalusite, Hf-rich zircon and thorite. In addition, zinnwaldite was found in a single sample. The studied pegmatites show simple internal structure including aplitic, granitic and coarse-grained “blocky” units; the central zone commonly contains miarolitic cavity which is sometimes filled by tourmaline. The mineral composition and fractionation degree largely reflect those of the host granite; the more fractionated are pegmatites hosted by the Tanvald Granite. The pegmatite nest from Nová Ves nad Nisou II exhibits distinct mineral assemblage with zinnwaldite, pure albite and lack of biotite and garnet, therefore we suggest here a substantial modification of mineral assemblage by superimposed processes. Moreover, tourmaline (schorl) composition with local increasing of Mg toward rim indicates a possible contamination derived from adjacent rocks during tourmaline crystallization.
Soubory
Reference
Allan BD, Clarke DB (1981) Occurrence and origin of garnets in the South Mountain Batholith, Nova Scotia. Can Mineral 19: 19-24
Bayliss P (1975) Nomenclature of the trioctahedral chlorites. Can Mineral 13:178-180
Bau M (1996) Controls on the fractionation of isovalent trace elements in magmatic and aqueous systems: Evidence from Y/Ho, Zr/Hf and lanthanide tetrad effect. Contrib Mineral Petrol 123: 323-333. https://doi.org/10.1007/s004100050159
Buriánek D, Dolníček Z, Novák M (2016) Textural and compositional evidence for a polyphase saturation of tourmaline in granitic rocks from the Třebíč Pluton (Bohemian Massif). J Geosci 61: 309-334. https://doi.org/10.3190/jgeosci.220
Čech F, Staněk J, Dávidová Š (1981) Minerály pegmatitů. In: Bernard JH, Čech F, Dávidová Š, Dudek A, Fediuk F, Hovorka D, Kettner R, Koděra M, Kopecký L, Němec D, Paděra K, Petránek J, Sekanina J, Staněk J, Šímová M (eds) Mineralogie Československa, 98-184. Academia Praha
Černý P, Meintzer RE, Anderson AJ (1985) Extreme fractionation in rare-element granitic pegmatites: selected examples of data and mechanism. Can Mineral 23: 381-421
Černý P (1993) Fractionation in granite + rare-element pegmatite systems: facts and fiction. In: Hach-Ali F et al. (eds) Current research in geology applied to ore deposits. Univ Granada, Granada, pp 23-26
Černý P, Ercit TS (2005) Classification of granitic pegmatites. Can Mineral 43: 2005-2026. https://doi.org/10.2113/gscanmin.43.6.2005
Čopjaková R, Škoda R, Vašinová Galiová M (2012) „Oxy-dravit“ z turmalinitů krkonošsko-jizerského krystalinika. Bull Mineral Petrolog Odd Nár Muz 20(1): 37-46
Evans RJ, Gołębiowska B, Groat LA, Pieczka A (2018) Crystal structure of kristiansenite from Szklarska Poręba, southwestern Poland. Minerals 8: 584. https://doi.org/10.3390/min8120584
Fediuková E, Klomínský J, Schovánek P (2008) Spessartin-almandinové granáty z alkalicko-živcového tanvaldského granitu. Zpr Geol Výzk v roce 2007: 156-159
Fišera V, Rychlý R (1983) Nález topazu v pegmatitu u Jablonce nad Nisou. Čas Mineral Geol 28: 215
Henry DJ, Dutrow BL (2002) Metamorphic tourmaline and its petrologic applications. In: Grew ES, Anovitz LM (eds) Boron: mineralogy, petrology and geochemistry. Rev Mineral Geochem 33: 503-557. https://doi.org/10.1515/9781501509223-012
Chaloupský J, Červenka J, Jetel J, Králík F, Líbalová J, Píchová E, Pokorný J, Pošmourný K, Sekyra J, Shrbený O, Šalanský K, Šrámek J, Václ J (1989) Geologie Krkonoš a Jizerských hor. ČGÚ Praha
Jarchovský T, Fediuk F, Klomínský J, Schovánek P (2010) Geochemická diskriminace libereckého a jizerského granitu v západní části krkonošsko-jizerského kompozitního masivu. Zpr geol Výzk v roce 2009: 219-222
Jolliff BD, Papike JJ, Shearer CK (1986) Tourmaline as a recorder of pegmatite evolution: Bob Ingersoll Pegmatite, Black Hills, South Dakota. Am Mineral 71: 472-500
Klomínský J, Schovánek P, Jarchovský T, Sulovský P, Toužimský M (2007) Kontakt tanvaldského a libereckého granitu u Jablonce nad Nisou. Zpr Geol Výzk v roce 2006: 24-29
Klomínský J, Fediuk F, Schovánek P, Jarchovský T (2009) Tanvaldský masiv - relikt magmatického tělesa v krkonošsko-jizerském kompozitním masivu. Zpr Geol Výzk v roce 2009: 158-161
Kozłowski A, Sachanbiński M (2007) Karkonosze intragranitic pegmatites and their minerals. In: Kozłowski A, Wiszniewska J (eds.) Granitoids in Poland, AM Monograph No. 1: 147-170, KNM PAN-WG UW, Warszawa
Kozłowski A, Ilnicki S, Matyszczak W, Marcinowska A (2016) Magmatic and post-magmatic phenomena in the Karkonosze granite and its metamorphic envelope (West Sudetes, SW Poland). Acta Geol Polon 66 (3): 451-471. https://doi.org/10.1515/agp-2016-0020
Kusiak MA, Williams IS, Dunkley DJ, Konečný P, Słaby E, Martin H (2014) Monazite to the rescue: U-Th-Pb dating of the intrusive history of the composite Karkonosze Pluton, Bohemian Massif. Chem Geol 364: 76-92. https://doi.org/10.1016/j.chemgeo.2013.11.016
Líbalová J (1964) Krkonošský žulový masív. Opera Concort 1: 25-33
Linnen RL, Keppler H (2002) Melt composition control of Zr/Hf fractionation in magmatic processes. Geochim Cosmochim Acta 66: 3293-3301. https://doi.org/10.1016/s0016-7037(02)00924-9
London D, Evensen JM, Fritz E, Icenhower JP, Morgan GB, Wolf MB (2001) Enrichment and accommodation of manganese in granite-pegmatite systems. 11th Annual Goldschmidt Conference, Lunar Planet. Inst Contrib 1088, Abstr 3369
Matyszczak W (2018) Liandratite from Karkonosze pegmatites, Sudetes, Southwestern Poland. Miner Petrol 112: 357-370. https://doi.org/10.1007/s00710-017-0537-8
Maydagán L, Franchini M, Impiccini A, Lentz D (2016) Phyllosilicates geochemistry and distribution in the Altar porphyry Cu-(Au) deposit, Andes Cordillera of San Juan, Argentina: Applications in exploration, geothermometry, and geometallurgy. J Geoch Explor 167: 83-109. https://doi.org/10.1016/j.gexplo.2016.05.002
Novák M, Povondra P, Selway JB (2004) Schorl-oxy-schorl to dravite-oxy-dravite tourmaline from granitic pegmatites; examples from the Moldanubicum, Czech Republic. Eur J Mineral 16: 323-333. https://doi.org/10.1127/0935-1221/2004/0016-0323
Novák M (2005) Granitické pegmatity Českého masivu (Česká republika); mineralogická, geochemická a regionální klasifikace a geologický význam. Acta Mus Moraviae, Sci Geol 90: 3-74
Pan Y (1997) Controls on the fractionation of isovalent trace elements in magmatic and aqueous systems: Evidence from Y/Ho, Zr/Hf, and lanthanide tetrad effect - A discussion of the article by M. Bau (1996). Contrib Mineral Petrol 128: 405-408. https://doi.org/10.1007/s004100050317
Pouchou J, Pichoir F (1985) ”PAP“ (jrz) procedure for improved quantitative microanalysis. In: Armstrong JT (ed): Microbeam Analysis: 104-106. San Francisco Press. San Francisco
Rieder M, Cavazzini G, D´yakonov YS, Kamenetskii VAF, Gottardi G, GuggenheimS, Koval´ PV, Mueller G, Neiva AMR, RadoslovichEW, Robert JL, Sassi FP, Takeda H, Weiss Z, Wones DR (1998) Nomenclature of micas. Can Mineral 36: 905-912. https://doi.org/10.1180/minmag.1999.063.2.13
Słaby E, Kozłowski A (2005) Composition of tourmalines from tin-tungsten-bearing country rock of the Variscan Karkonosze granitoid - a record of the wall rock and hydrothermal fluid interaction. N Jb Miner Abh 181(3): 245-283. https://doi.org/10.1127/0077-7757/2005/0020
Słaby E, Martin H (2008) Mafic and felsic magma interaction in granites: the Hercynian Karkonosze Pluton (Sudetes, Bohemian Massif). J Petrol 49(2): 353-391. https://doi.org/10.1093/petrology/egm085
Solokov YM, Khlestov VV (1990) Garnets as indicators of the physicochemical conditions of pegmatite formation. Int Geol Rev 32: 1095-1107. https://doi.org/10.1080/00206819009465842
Tischendorf G, Gottesmann B, Förster H-J, Trumbull R B (1997) On Li-bearing micas: estimating Li from electron microprobe analysis and an improved diagram for graphical representation. Min Mag 61: 809-834. https://doi.org/10.1180/minmag.1997.061.409.05
van Hinsberg VJ, Henry DJ, Marschall HR (2011) Tourmaline as an indicator mineral; an introduction Can Mineral 49: 1-16
Žák J, Klomínský J (2007) Magmatic structures in the Krkonoše-Jizera Plutonic Complex: evidence for localized multiphase flow and small-scale thermal-mechanical instabilities in a granitic magma chamber. J Volcanol Geotherm Res 164: 254-267. https://doi.org/10.1016/j.jvolgeores.2007.05.006
Žák J, Verner K, Sláma J, Kachlík V, Chlupáčová M (2013) Multistage magma emplacement and progressive strain accumulation in the shallow-level Krkonoše-Jizera plutonic complex, Bohemian Massif. Tectonics 32: 1493-1512. https://doi.org/10.1002/tect.20088