Clinopyroxene with diverse origins in alkaline basalts from the western Pannonian Basin: Implications from trace element characteristics

Lithos - Tập 262 - Trang 120-134 - 2016
M. Éva Jankovics1, Zoltán Taracsák2, Gábor Dobosi1,3, Antal Embey-Isztin4, Anikó Batki1, Szabolcs Harangi1,2, Christoph A. Hauzenberger5
1MTA-ELTE Volcanology Research Group, Pázmány Péter sétány 1/C, H-1117 Budapest, Hungary
2Department of Petrology and Geochemistry, Eötvös Loránd University, Pázmány Péter sétány 1/C, H-1117 Budapest, Hungary
3Department of Mineralogy and Geology, University of Debrecen, Egyetem tér 1, H-4031 Debrecen, Hungary
4Department of Mineralogy and Petrology, Hungarian Natural History Museum, Ludovika tér 2, H-1083 Budapest, Hungary
5Institute of Earth Sciences, Karl-Franzens-University of Graz, Universitätsplatz 2, A-8010 Graz, Austria

Tài liệu tham khảo

Adam, 2006, Trace element partitioning between mica- and amphibole-bearing garnet lherzolite and hydrous basanitic melt: 1. Experimental results and the investigation of controls on partitioning behaviour, Contributions to Mineralogy and Petrology, 152, 1, 10.1007/s00410-006-0085-4 Bada, 2001, On the structure and tectonic of the Pannonian Basin and surrounding orogens, Acta Geologica Hungarica, 44, 301 Bada, 1999, Review of the present-day geodynamics of the Pannonian Basin: progress and problems, Journal of Geodynamics, 27, 501, 10.1016/S0264-3707(98)00013-1 Barton, 1981, Green clinopyroxenes and associated phases in a potassium-rich lava from the Leucite Hills, Wyoming, Contributions to Mineralogy and Petrology, 77, 101, 10.1007/BF00636514 Barton, 1982, Complex zoning of clinopyroxenes in the lavas of Vulsini, Latium, Italy: evidence for magma mixing, Journal of Volcanology and Geothermal Research, 14, 361, 10.1016/0377-0273(82)90070-1 Boniface, 2012, Paleoproterozoic eclogites of MORB-type chemistry and three Proterozoic orogenic cycles in the Ubendian Belt (Tanzania): evidence from monazite and zircon geochronology, and geochemistry, Precambrian Research, 192–195, 16, 10.1016/j.precamres.2011.10.007 Brooks, 1978, Magma mixing in mafic alkaline volcanic rocks: the evidence from relict phenocryst phases and other inclusions, Journal of Volcanology and Geothermal Research, 4 Csontos, 1992, Tertiary evolution of the intra-Carpathian area: a model, Tectonophysics, 208, 221, 10.1016/0040-1951(92)90346-8 Dégi, 2009, Evidence for xenolith-host basalt interaction from chemical patterns in Fe-Ti-oxides from mafic granulite xenoliths of the Bakony-Balaton Volcanic Field (W-Hungary), Mineralogy and Petrology, 95, 219, 10.1007/s00710-008-0035-0 Dobosi, 1989, Clinopyroxene zoning patterns in the young alkali basalts of Hungary and their petrogenetic significance, Contributions to Mineralogy and Petrology, 101, 112, 10.1007/BF00387205 Dobosi, 2003 Dobosi, 1992, Magma fractionation, replenishment, and mixing as inferred from green-core clinopyroxenes in Pliocene basanite, southern Slovakia, Lithos, 28, 133, 10.1016/0024-4937(92)90028-W Dobosi, 1999, Petrologic implications of trace element variation in clinopyroxene megacrysts from the Nógrád volcanic province, North Hungary: a study by laser ablation microprobe-inductively coupled plasma-mass spectrometry, Lithos, 46, 731, 10.1016/S0024-4937(98)00093-0 Dobosi, 1991, Pyroxene chemistry and evolution of alkali basaltic rocks from Burgenland and Styria, Austria, Mineralogy and Petrology, 43, 275, 10.1007/BF01164531 Dobosi, 2003, Origin of megacrysts and pyroxenite xenoliths from the Pliocene alkali basalts of the Pannonian Basin (Hungary), Neues Jahrbuch für Mineralogie Abhandlungen, 178, 217, 10.1127/0077-7757/2003/0178-0217 Dobosi, 2003, Lower crustal granulite xenoliths from the Pannonian Basin, Hungary, part 2: Sr–Nd–Pb–Hf and O isotope evidence for formation of continental lower crust by tectonic emplacement of oceanic crust, Contributions to Mineralogy and Petrology, 144, 671, 10.1007/s00410-002-0422-1 Dobosi, 2010, Cryptic metasomatism in clino- and orthopyroxene in the upper mantle beneath the Pannonian region, Geological Society, London, Special Publications, 337, 177, 10.1144/SP337.9 Downes, 1995, The Lithospheric Mantle Beneath the Carpathian–Pannonian Region: a Review of Trace Element and Isotopic Evidence from Ultramafic Xenoliths, Vol. 7 (2), 219 Downes, 1992, Petrology and geochemistry of spinel peridotite xenoliths from the western Pannonian Basin (Hungary): evidence for an association between enrichment and texture in the upper mantle, Contributions to Mineralogy and Petrology, 109, 340, 10.1007/BF00283323 Duda, 1985, Polybaric differentiation of alkali basaltic magmas: evidence from green-core clinopyroxenes (Eifel, FRG), Contributions to Mineralogy and Petrology, 91, 340, 10.1007/BF00374690 Embey-Isztin, 1976, Amphibolite/lherzolite composite xenolith from Szigliget, north of the Lake Balaton, Hungary, Earth and Planetary Science Letters, 31, 297, 10.1016/0012-821X(76)90223-5 Embey-Isztin, 1995, Mantle Source Characteristics for Miocene–Pleistocene Alkali Basalts, Carpathian–Pannonian Region: A Review of Trace Elements and Isotopic Composition, Vol. 7 (2), 155 Embey-Isztin, 1989, Petrology and geochemistry of peridotite xenoliths in alkali basalts from the Transdanubian volcanic region, West Hungary, Journal of Petrology, 30, 79, 10.1093/petrology/30.1.79 Embey-Isztin, 1990, Mafic granulites and clinopyroxenite xenoliths from the Transdanubian volcanic region (Hungary): implications for the deep structure of the Pannonian Basin, Mineralogical Magazine, 54, 463, 10.1180/minmag.1990.054.376.12 Embey-Isztin, 1993, The petrogenesis of Pliocene alkaline volcanic rocks from the Pannonian Basin, eastern Central Europe, Journal of Petrology, 34, 317, 10.1093/petrology/34.2.317 Embey-Isztin, 2001, Thermal evolution of the lithosphere beneath the western Pannonian Basin: evidence from deep-seated xenoliths, Tectonophysics, 331, 285, 10.1016/S0040-1951(00)00287-0 Embey-Isztin, 2003, Lower crustal granulite xenoliths from the Pannonian Basin, Hungary. Part 1: mineral chemistry, thermobarometry and petrology, Contributions to Mineralogy and Petrology, 144, 652, 10.1007/s00410-002-0421-2 Embey-Isztin, 2014, Origin and significance of poikilitic and mosaic peridotite xenoliths in the western Pannonian Basin: geochemical and petrological evidences, Contributions to Mineralogy and Petrology, 168, 1, 10.1007/s00410-014-1054-y Fodor, 1995, Zoned clinopyroxenes in alkalic basalt: clues to fractionation and magma-mixing histories for seemingly primitive magmas, Chemie der Erde, 55, 133 Fodor, 1999, Tertiary Tectonic Evolution of the Carpatho-Pannonian Region: A New Synthesis of Palaeostress Data, Vol. 156, 295 Frisch, 1969, Petrology of clinopyroxene-amphibole inclusions from the Roque Nublo volcanics, Gran Canaria, Canary Islands, Bulletin of Volcanology, 33, 1073, 10.1007/BF02597708 Green, 1967, The genesis of basaltic magmas, Contributions to Mineralogy and Petrology, 15, 103, 10.1007/BF00372052 Harangi, 2001, Neogene magmatism in the Alpine–Pannonian Transition Zone—a model for melt generation in a complex geodynamic setting, Acta Vulcanologica, 13, 25 Harangi, 2001, Volcanology and petrology of the Late Miocene to Pliocene alkali basaltic volcanism in the western Pannonian Basin, 51 Harangi, 2007, Genesis of the Neogene to Quaternary volcanism in the Carpathian–Pannonian region: role of subduction, extension, and mantle plume, Geological Society of America Special Papers, 418, 67 Harangi, 1995, Petrogenesis of Neogene extension-related alkaline volcanic rocks of the Little Hungarian Plain Volcanic Field (western Hungary), Acta Vulcanologica, 7, 173 Harangi, 2015, Origin and geodynamic relationships of the Late Miocene to Quaternary alkaline basalt volcanism in the Pannonian Basin, eastern–central Europe, International Journal of Earth Sciences, 104, 2007, 10.1007/s00531-014-1105-7 Hart, 1993, Experimental cpx/melt partitioning of 24 trace elements, Contributions to Mineralogy and Petrology, 113, 1, 10.1007/BF00320827 Hidas, 2007, Geodynamic implications of flattened tabular equigranular textured peridotites from the Bakony-Balaton Highland Volcanic Field (western Hungary), Journal of Geodynamics, 43, 484, 10.1016/j.jog.2006.10.007 Hofmann, 1988, Chemical differentiation of the Earth: the relationship between mantle, continental crust, and oceanic crust, Earth and Planetary Science Letters, 90, 297, 10.1016/0012-821X(88)90132-X Horn, 1994, Trace-element partitioning with application to magmatic processes experimentally determined partitioning of high field strength- and selected transition elements between spinel and basaltic melt, Chemical Geology, 117, 193, 10.1016/0009-2541(94)90128-7 Horváth, 1995, Phases of compression during the evolution of the Pannonian Basin and its bearing on hydrocarbon exploration, Marine and Petroleum Geology, 12, 837, 10.1016/0264-8172(95)98851-U Horváth, 1996, Stress-induced late-stage subsidence anomalies in the Pannonian Basin, Tectonophysics, 266, 287, 10.1016/S0040-1951(96)00194-1 Horváth, 2006, Formation and Deformation of the Pannonian Basin, Vol. 32, 191 Irving, 1974, Megacrysts from the Newer basalts and other basaltic rocks of southeastern Australia, Geological Society of America Bulletin, 85, 1503, 10.1130/0016-7606(1974)85<1503:MFTNBA>2.0.CO;2 Jankovics, 2009, A mineral-scale investigation on the origin of the 2.6Ma Füzes-tó basalt, Bakony-Balaton Highland Volcanic Field (Pannonian Basin, Hungary), Central European Geology, 52, 97, 10.1556/CEuGeol.52.2009.2.1 Jankovics, 2012, Open-system evolution of the Füzes-tó alkaline basaltic magma, western Pannonian Basin: constraints from mineral textures and compositions, Lithos, 140-141, 25, 10.1016/j.lithos.2012.01.020 Jankovics, 2013, Origin and ascent history of unusually crystal-rich alkaline basaltic magmas from the western Pannonian Basin, Bulletin of Volcanology, 75, 1, 10.1007/s00445-013-0749-7 Jochum, 2011, Determination of reference values for NIST SRM 610–617 glasses following ISO guidelines, Geostandards and Geoanalytical Research, 35, 397, 10.1111/j.1751-908X.2011.00120.x Jugovics, 1968, 75 Kempton, 1997, Mafic granulite xenoliths in Neogene alkali basalts from the western Pannonian Basin: insights into the lower crust of a collapsed orogen, Journal of Petrology, 38, 941, 10.1093/petroj/38.7.941 Kereszturi, 2010, Volcanic architecture, eruption mechanism and landform evolution of a Plio/Pleistocene intracontinental basaltic polycyclic monogenetic volcano from the Bakony-Balaton Highland Volcanic Field, Hungary, Central European Journal of Geosciences, 2, 362 Kovács, 2004, Type-II xenoliths and related metasomatism from the Nógrád-Gömör Volcanic Field, Carpathian–Pannonian region (northern Hungary–southern Slovakia), Tectonophysics, 393, 139, 10.1016/j.tecto.2004.07.032 Lenkey, 2002, Geothermics of the Pannonian Basin and its Bearing on the Neotectonics, Vol. 3, 29 Martin, 2004 Martin, 2003, Mio–Pliocene phreatomagmatic volcanism in a fluvio-lacustrine basin in western Hungary, Geolines, 15, 84 McDonough, 1995, The composition of the Earth, Chemical Geology, 120, 223, 10.1016/0009-2541(94)00140-4 McKenzie, 1991, Partial melt distributions from inversion of rare earth element concentrations, Journal of Petrology, 32, 1021, 10.1093/petrology/32.5.1021 McKenzie, 1995, The source regions of Ocean Island basalts, Journal of Petrology, 36, 133, 10.1093/petrology/36.1.133 Morimoto, 1988, Nomenclature of pyroxenes, Mineralogical Magazine, 52, 535, 10.1180/minmag.1988.052.367.15 Németh, 1999, Large hydrovolcanic field in the Pannonian Basin: general characteristics of the Bakony-Balaton Highland Volcanic Field, Hungary, Acta Vulcanologica, 11, 271 Németh, 1999, Late Miocene paleo-geomorphology of the Bakony-Balaton Highland Volcanic Field (Hungary) using physical volcanology data, Zeitschrift für Geomorphologie N. F., 43, 417, 10.1127/zfg/43/1999/417 Neumann, 1999, Evidence for fractional crystallization of periodically refilled magma chambers in Tenerife, Canary Islands, Journal of Petrology, 40, 1089, 10.1093/petroj/40.7.1089 Pertermann, 2004, Experimental determination of trace element partitioning between garnet and silica-rich liquid during anhydrous partial melting of MORB-like eclogite, Geochemistry, Geophysics, Geosystems, 5, 10.1029/2003GC000638 Pilet, 2002, Evidence for high silicic melt circulation and metasomatic events in the mantle beneath alkaline provinces: the Na–Fe-augitic green-core pyroxenes in the tertiary alkali basalts of the Cantal massif (French Massif Central), Mineralogy and Petrology, 76, 39, 10.1007/s007100200031 Rock, 1990, The International Mineralogical Association (IMA/CNMMN) pyroxene nomenclature scheme: computerization and its consequences, Mineralogy and Petrology, 43, 99, 10.1007/BF01164304 Rönick, 2010, Clinopyroxene from basaltic rocks of the Erzgebirge–Krusne hory Mts.—implications for modelling the magmatic plumbing system, Journal of Geosciences, 55, 231 Seghedi, 2004, Post-collisional Tertiary–Quaternary mafic alkalic magmatism in the Carpathian–Pannonian region: a review, Tectonophysics, 393, 43, 10.1016/j.tecto.2004.07.051 Shaw, 2000, Origin of megacrysts in the mafic alkaline lavas of the West Eifel Volcanic Field, Germany, Lithos, 50, 75, 10.1016/S0024-4937(99)00048-1 Szabó, 1998, Fluid-inclusion evidence for an upper-mantle origin for green clinopyroxenes in Late Cenozoic basanites from the Nógrád-Gömör Volcanic Field, northern Hungary/southern Slovakia, International Geology Review, 40, 765, 10.1080/00206819809465237 Szabó, 2004, Composition and evolution of lithosphere beneath the Carpathian–Pannonian Region: a review, Tectonophysics, 393, 119, 10.1016/j.tecto.2004.07.031 Tari, 1999, Lithospheric Structure of the Pannonian Basin Derived from Seismic, Gravity and Geothermal Data, Vol. 156, 215 Tracy, 1977, Zoned titanian augite in alkali olivine basalt from Tahiti and the nature of titanium substitutions in augite, American Mineralogist, 62, 634 Wass, 1973, The origin and petrogenetic significance of hour-glass zoning in titaniferous clinopyroxenes, Mineralogical Magazine, 39, 133, 10.1180/minmag.1973.039.302.01 Wass, 1979, Multiple origins of clinopyroxenes in alkali basaltic rocks, Lithos, 12, 115, 10.1016/0024-4937(79)90043-4 Woodland, 2007, A complex magmatic system beneath the Devés volcanic field, Massif Central, France: evidence from clinopyroxene megacrysts, Contributions to Mineralogy and Petrology, 153, 719, 10.1007/s00410-006-0172-6 Zou, 1998, Trace element fractionation during modal and nonmodal dynamic melting and open-system melting: a mathematical treatment, Geochimica et Cosmochimica Acta, 62, 1937, 10.1016/S0016-7037(98)00115-X