Department of Petrology and Geochemistry
Institute of Geography and Earth Sciences
Eötvös University Budapest (ELTE)
|
Csaba Szabó: Office: Budapest, Pázmány Péter sétány 1/C, Research:
Students
supervised: International
conferences and seminars organized: |
Research interests:
Geochemical processes and physical state of the lithosphere, upper mantle xenoliths; fluid, silicate, carbonatite and sulfide melt inclusions; geodynamics of the Carpathian-Pannonian region; environmental (urban) geochemistry; CO2 capture and storage, radon in our environment
Selected publications
Department of Petrology and Geochemistry
Institute of Geography and Earth Sciences
Eötvös University Budapest (ELTE)
Graduate Courses (on a regular basis)
Geochemical cycles (for
earth and environmental sciences B.Sc.):
(Fall semester, 2 hours of lecture a week)
Origin, properties, abundance and classification of the elements along with some aspects of cosmochemistry. Geochemical nature and behave of elements in the Earth’s spheres. Course prerequisites are basic mineralogy, chemistry and physics.
Environmental Isotope Geochemistry (for geology M.Sc.):
(Fall semester, 2 hours a week)
Basic geochemistry of the Earth and its spheres. Principles of radiogenic and stable isotopes. Brief geochemistry of significant environmental isotopes. Understanding of behave of characteristic environmental isotopes (H, C, O, S, N, He, Li, B, Be, Al, Cl, Si, I, Br, Sr, Rn, Th, U) and their many-fold applications in earth and environmental sciences. Course prerequisite is basic geochemistry.
Petrology (for environmental science B.Sc.):
(Spring semester, 2 hours of lecture a week)
Classification, nomenclature and structural characters of igneous, metamorphic and sedimentary rocks. Models of origin and evolution of magmas and igneous rocks. Chemical and physical processes within the Earth’s mantle and crust. Definition and types of metamorphism. Mineralogical and textural change in the solid state on increase in temperature and pressure. Formations of sedimentary rocks, combinations of chemical, physical and biological processes. Course prerequisites are basic mineralogy, geology, chemistry, physics and biology.
Geochemistry (for environmental science B.Sc.):
(Spring semester, 3 hours of lecture and 1 hour of lab a week)
Origin, properties, abundance and classification of the elements along with some aspects of cosmochemistry. Geochemistry of the Earth and its spheres. Nature and behave of elements in lithosphere, hydrosphere and atmosphere. Principles of radiogenic and stable isotopes and their brief application in the environmental sciences. Course prerequisite is petrology.
Ph.D. Courses (on an irregular basis)
Fluids in the Earth
(Spring or Fall semester, 2 hours of lecture and 2
hours of lab a week)
This post-graduate course is for students with a deep interest in geochemistry, and petrology. The course covers the identification and interpretation of fluid and silicate melt inclusions in rocks and minerals, from the crust to the mantle. Additional topics are thermodynamic properties of fluids; fluid-rock interactions; solubility of volatiles in magmas; and the mantle metasomatism. Course prerequisites are mineralogy, petrology and geochemistry.
Basalts and Phase Diagrams
(Fall or Spring semester, 2 hours of lecture a week)
This course is a systematic study of basalts and their phase diagrams, and their application to igneous processes in the mantle. Also, quantitative analysis of fractional and equilibrium crystallization, and partial and equilibrium melting will be discussed. Course prerequisites are mineralogy, petrology and geochemistry.
Subducted Slab and Mantle Wedge
(Fall or Spring semester, 2 hours of lecture a week)
This course focuses on consideration of the geochemical, lithological, mineralogical, thermal evolutions, mechanical states and changes, and fluid histories of the subducting slab and mantle wedge. Particularly, the evolving slab and mantle wedge, during progressive subduction, and the processes of mineral reactions, fluid release and transport, metasomatism, deformation and melting processes leading to convergent margin magmatic and metasomatic flux will be discussed. Course prerequisites are mineralogy, petrology and geochemistry.
Geochemical Cycles
(Spring or Fall semester, 2 hours of lecture a week)
The course focuses on the geochemical processes beneath and on the surface of the Earth, which drive and control cycles of chemical elements. Each element has a characteristic geochemical cycle that reflects its particular set of geochemical properties. The geochemical cycles of the elements have influences the environments beneath and on the surface of the Earth and have been affected by changes that have occurred in and on the Earth. Course prerequisites are basic chemistry, physics, biology and earth sciences.
Department of Petrology and Geochemistry
Institute of Geography and Earth Sciences
Eötvös University Budapest (ELTE)
Research Activity of Csaba Szabó
Collaborations (last two years):
Bodnar, R.J. (Virginia Polytechnic Institute and State University, Blacksburg, USA), Dubessy, J. (Université Henri Poincaré, Nancy, France), Török, K. (Mining and Geological Survey of Hungary, Budapest, Hungary) and Berkesi, M. (Eötvös University, Budapest, Hungary): Fluids in the Earth;
Bajnóczi, B. and Tóth,
M. (Institute of Geological and Geochemical Research of the
Hungarian Academy of Sciences, Budapest, Hungary): Environmental geochemical studies on Zsolnay glazed architectural
ceramics;
Cesare, B., Bartoli, O. (University of Padova, Budapest, Hungary) and Berkesi, M. (Eötvös University, Budapest, Hungary): Multiphase fluid inclusions in metamorphic formations;
Falus, Gy., Török, K. (Mining and Geological Suvey of Hungary, Budapest, Hungary), Kovács, I. (Geodetic and Geophysical Institute of the Hungarian Academy of Sciences, Budapest, Hungary), Hidas, K., Garrido, C.J. (Andalusian Earth Sciences Institute, Granada, Spain) and Tommasi, A. (University of Montpellier-2, France): Physical state of lithospheric mantle beneath the Carpathian-Pannonian Region;
Horváth Á. (Eötvös University, Budapest, Hungary), Szabó, K.Zs. (Szent István University, Gödöllő, Hungary), Szabó J., Pásztor L. and Bakacsi Zs. (Research Institute for Soil Science and Agricultural Chemistry of the Hungarian Academy of Sciences, Budapest, Hungary): Source of radon anomaly and its geochemical reasons;
Matschullat,
J. (Technische Universität
Bergakademie Freiberg, Germany) and Völgyesi,
P. (Nuclear Security Department, Center for Energy Research,
Hungarian Academy of Sciences, Budapest):
Urban geochemical studies;
Mitchell, R. (Lakehead University, Thunder Bay, Canada), Zajacz, Z. University of Toronto, Canada), Milke, R. (Free University, Berlin, Germany), and Guzmics, T. and Berkesi, M. (Eötvös University, Budapest, Hungary): Carbonatite petrogenesis;
O’Reilly, S.Y., Griffin W.L. and Pearson, N.J. (Macquarie University, Sydney, Australia): Mantle xenoliths from the Carpathian-Pannonian Region;
Seghedi,
I. (Institute of Geodynamics,
Bucharest, Romania) and
Ntaflos, T. (University of Vienna, Austria): Silicate melt inclusion
in olivine phenocrysts from lamproites;
Székely, E. (Budapest University of
Technology and Economics, Budapest, Hungary), Czuppon, Gy. (Institute of
Geological and Geochemical Research of the Hungarian Academy of Sciences,
Budapest, Hungary) and Falus Gy. and Szabó Zs. (Mining and Geological Survey of Hungary, Budapest,
Hungary): Carbon-dioxide capture and storage;
Tchouankoue, J.-P. (University of Yaoundé, Cameroon) and Berkesi, M. (Eötvös University, Budapest, Hungary): Upper mantle xenoliths from the Cameroon Volcanic Line;
Zanetti,
A. (University of Pavia, Pavia, Italy), Hidas, K. (Andalusian Earth Sciences Institute, Granada, Spain) and Bali, E. (University of Iceland,
Iceland): Study of metasomatic processes in the lithospheric mantle beneath the
Pannonian Basin;
Wesztergom, V., Ádám, A., Kovács, I. and Novák, A. (Geodetic and Geophysical Institute of the Hungarian Academy of Sciences, Budapest, Hungary): Lithosphere-asthenosphere boundary beneath the Nógrád-Gömör Volcanic Field;
Department of Petrology and Geochemistry
Institute of Geography and Earth Sciences
Eötvös University Budapest (ELTE)
Ph.D. and M.Sc. Students Supervised or Co-Supervised by Csaba Szabó
Name |
Topic of thesis |
|
Abbaszade, Q. (Ph.D.
student) |
Geochemical and microbiological
study on urban soil |
|
Aradi, L. (Ph.D. student) |
Lithospheric mantle
beneath the Styrian Basin |
|
Beltran, S. (Ph.D. student |
Environmental geochemistry |
|
Do Le, T. (Ph.D. student) |
Environmental geochemistry |
|
Kovács, Z.
(Ph.D. student) |
Silicate melt inclusions |
|
Liptai, N. (Ph.D. student) |
Lithospheric mantle beneath the Nógrád-Gömör Volcanic Field |
|
Németh, B. (Ph.D. student) |
CO2 fluid inclusions in crustal xenoliths from the Styrian Basin |
|
Patkó, L. (Ph.D.
student) |
Wherlitization in the lithospheric mantle beneath the central Nógrád-Gömör Volcanic Field |
|
Pena Dembo, J. (Ph.D. student |
Environmental geochemistry |
|
Santanna, D. (Ph.D.
student) |
Environmental geochemistry |
|
Spránitz,
T. (Ph.D.
student) |
Silicate melt inclusions in |
|
Tserendorj,
D. (Ph.D. student) |
Environmental geochemistry |
|
Balczó, K. (M.Sc.
student) |
Urban geochemical study in Salgótarján |
|
Cseresznyés, D. (M.Sc. student) |
CO2 capture and storage in geological formations |
|
Forray, V. (M.Sc. student) |
CO2 capture and storage in geological formations |
|
Gelencsér, O. (M.Sc. student) |
Fluid inclusions in salt rocks |
|
Pálos, Zs. (M.Sc. student) |
Silicate melt inclusions in quartz from |
|
Szabó, P.
(M.Sc. student) |
Environmental geochemistry |
|
B.Sc. Students Supervised or Co-Supervised by Csaba
Szabó
Name |
Topic of thesis |
|
Environmental
geochemistry |
|
|
Antal, E. |
Environmental
geochemistry |
|
Former Students Supervised by
Csaba Szabó
Name (year of
graduation) |
Topic of thesis |
Presently |
György Szakmány, Ph.D. (1999) |
Metamorphic petrology |
Associate Professor, Eötvös University, Budapest, Hungary |
Kálmán Benedek, Ph.D. (2003) |
Igneous petrology |
Staffer, Radioactive Waste Management Non-profit Ltd., Budapest, Hungary |
György Falus, Ph.D. (2004) |
Mantle deformation |
Senior Research Fellow, Mining and Geological Survey of Hungary, Budapest, Hungary |
Enikő Bali, Ph.D. (2004) |
Mantle geochemistry |
Associate Professor, University of Iceland, Reykjavík, Iceland |
Tristan Azbej, Ph.D. (2006) |
Fluid inclusions |
Deputy State Secretariat
for the Aid of Persecuted Christians,
The Ministry of Human
Capacities,
Budapest, Hungary
|
András Fall, Ph.D. (2008) |
Fluid inclusions |
Research Associate, University of Texas at Austin, USA |
Sándor Kele, Ph.D. (2009) |
Carbonate isotope geochemistry |
Research Fellow, Institute for Geochemical Research, Hungarian Academy of Sciences, Budapest, Hungary |
Károly Hidas, Ph.D. (2009) |
Mantle geochemistry and deformation |
Research Geologist Andalusian Earth Sciences Institute, Granada, Spain |
Júlia Dégi, Ph.D. (2010) |
Metamorphic petrology and fluid inclusions |
- |
Kóthay Klára, Ph.D. (2010) |
Silicate melt inclusions |
Museologist, Eötvös University, Budapest,
Hungary |
Tibor Guzmics, Ph.D. (2010) |
Carbonatite melt inclusions |
Postdoctoral Researcher, Eötvös University, Budapest, Hungary |
Dániel Breitner, Ph.D. (2011) |
Implication of radon emission |
Government Relations Manager, O&G Development Ltd., Budapest, Hungary |
Márta Berkesi, Ph.D. (2011) |
Fluids in the mantle |
Postdoctoral Researcher, Eötvös University, Budapest, Hungary |
Farkas Izabella, Ph.D. (2012) |
Environmental mineralogy |
Geologist, MOL Nyrt., Hungary |
Nagy Hedvig Éva, Ph.D. (2012) |
Radon in our environment |
Safeguard Inspector General Nuclear Directorate, Budapest, Hungary |
Zsuzsanna Szabó, Ph.D. (2013) |
Radon in our environment |
Premium Postdoctoral Researcher Mining and Geological Survey of Hungary, Budapest |
Katalin
Zsuzsanna Szabó, Ph.D. (2014) |
Mapping of geogen radon |
Postdoc Szent István University, Gödöllő Hungary |
Beatrix Udvardi, Ph.D. (2015) |
Environmental geochemistry |
Researcher Transport Sciences Non-Profit Ltd, Budapest, Hungary |
Péter Völgyesi, Ph.D. (2015) |
Urban geochemistry |
Researcher Center for Energy Research, Hungarian Academy of Sciences, Budapest, Hungary |
Csilla Király, Ph.D. (2017) |
Processes of CO2 capture and storage |
Research Fellow, Geographical Institute, Hungarian Academy of Sciences, Budapest, Hungary |
Ágnes Baricza, Ph.D. (2017) |
Deterioration of Zsolnay architectural ceramics by environmental factors |
-. |
Name (year of graduation) |
Topic of thesis |
Presently |
László Kósa (1998) |
Igneous petrology |
- |
Péter Buzogány (1999) |
Hydrogeochemistry |
BGT Hungary Environmental Technology Ltd., Budapest, Hungary |
Péter Bodó (2000) |
Hydrogeochemistry |
Manager and Consultant at Geologika Ltd., Budapest, Hungary |
János Antal Szakál (2000) |
Mantle petrology |
Geologist, Water Works of Budapest, Hungary |
Antal Serfőző (2001) |
Hydrogeochemistry |
Geologist, GeoGold Kárpátia Ltd., Budapest, Hungary |
Zsuzsanna Burján (2002) |
Radon |
- |
Ambrus Barabás (2002) |
Radon |
- |
Zoltán Siklósy (2003) |
Carbonate geochemistry |
- |
Zoltán Zajacz, (2003) (Ph.D. ETH) |
Sulfide inclusion |
Assistant Professor, University of Toronto, Toronto, Canada |
István Kovács, (2003) (Ph.D. Austral National University) |
Cumulate xenolith |
Research Fellow, Geodetic and Geophysical Institute, Hungarian Academy of Sciences, Sopron, Hungary |
Zsolt Zoltán Balogh (2004) |
Radon |
System Manager, LPORT, Budapest, Hungary |
János Kodolányi, (2005) (Ph.D. University of Bern) |
Granulite xenolith |
Research Fellow, Max Planck Institute for Chemistry Mainz, Germany |
Eszter Badenszki, (2006) (Ph.D. University College Dublin) |
Granulite xenolith |
Postdoctoral Researcher, University College Dublin, Ireland |
Zsófia Simó (2008) |
Radon |
- |
Gábor Rajnai (2008) |
Environmental geochemistry |
- |
Izabella Havacsák (2008) |
Silicate melt inclusion |
- |
Ákos Boros (2009) |
Geoinformatics and Environmental geochemistry |
Manager O&G Development Ltd., Budapest, Hungary |
Zoltán Konc (2009) (Ph.D. University of Granada) |
Mantle xenolith |
Safeguard Inspector General Nuclear Directorate, Budapest, Hungary |
Krisztina Kármán (2009) |
Stable isotopes |
- |
Krisztina Marosvölgyi (2011) |
Fluid inclusion |
Geologist, MOL Nyrt. Budapest, Hungary |
Márton Berta (2012) (Ph.D. University of Kiel) |
CO2 capture and storage |
- |
Dóra Zachary (2012) |
Environmental geochemistry |
Ph.D. student, Eötvös University, Budapest, Hungary |
Eszter Sendula (2015) seszter1@vt.edu |
CO2 capture and storage |
Ph.D. student, Virginia Tech, Blacksburg, USA |
Enikő Vetlényi (2015) |
Silicate melt inclusion |
Ph.D. student Semmelweis University, Budapest, Hungary |
Cecilia Mácsai (2015) |
Environmental geochemistry |
- |
Réka Káldos (2016) |
Melt inclusions |
- |
Szilvia Koczur (2017) |
Environmental geochemistry |
- |
Orsolya Kátai (2017) |
Fluid inclusions |
- Geochem Holding, Kozármislény,
Hungary |
Name |
Topic of thesis |
Presently |
Péter Bajkay |
Fluid inclusion |
Geologist, MOL Nyrt., Budapest, Hungary |
Éva Benő (Ph.D. University of Turin) |
Fluid inclusion |
Project Manager, Golder Associates Hungary Kft., Budapest, Hungary |
Judit Gál (Ph.D. University of Glasgow) |
Fluid inclusion |
Environmental
Geochemist, United Kingdom |
István Márton (Ph.D. University of Lausanne) |
Igneous petrology |
Research Fellow, Avala Resources doo, Bor, Serbia |
Lehel Szász |
Mantle petrology |
- |
Mária Pető (Ph.D. Harvard University) |
Silicate melt inclusions |
Research Fellow, Konkoly Observatory of the Hungarian Academy of Sciences, Budapest, Hungary |
Ildikó Gyollai (Ph.D. University of Vienna) |
Radon |
Research Fellow, Institute for Geochemical Research, Hungarian Academy of Sciences, Budapest, Hungary |
Dorottya Bartucz (M.Sc. Eötvös University, Budapest) |
Radon |
Specialist, Ruden Ltd. Norway |
Fruzsina Lenti (M.Sc. Technical and Economic University of Budapest) |
Fluid inclusion |
Account Manager, Future Health BioBank, Budapest, Hungary |
Szandra Fekete (Ph.D. ETH) |
Mantle petrology |
- Zurich, Switzerland |
Attila Pataki |
Environmental geochemistry |
Official in Charge, Hewlett-Packard Hungary Kft., Budapest, Hungary |
Mariann Grosch, (M:Sc Technical and Economic University of Budapest) |
Environmental geochemistry |
- |
Melinda Müller (M.Sc. Technical and Economic University of Budapest) |
Environmental geochemistry |
- |
Zsanett Pintér |
Mantle petrology |
Ph.D. Student Macquarie University, Sydney, Australia |
Réka Kovács (M.Sc. Technical and Economic University of Budapest) |
Environmental geochemistry |
Graduate student, Semmelweis University, Budapest, Hungary, |
Mariann Páles |
Environmental geochemistry |
M.Sc. Student, Eötvös University Budapest, Hungary |
Cintia Kollárik |
Environmental geochemistry |
M.Sc. Student, Technical and Economic University of Budapest, Hungary |
Boglárka Jaloveczki |
Environmental geochemistry |
Student, University of Veterinary Medicine, Budapest, Hungary |
Livia Luczek |
Environmental geochemistry |
M.Sc. Student, Technical and Economic University of Budapest, Hungary |
Csenge Pribelszky |
Environmental geochemistry |
M.Sc. Student, Technical and Economic University of Budapest, Hungary |
Department of Petrology and Geochemistry
Institute of Geography and Earth Sciences
Eötvös University Budapest (ELTE)
Articles are available in PDF at Your
request
Szabó, Cs. (1985) Xenoliths from Cretaceous lamprophyres of Alcsútdoboz-2 borehole, Transdanubian Central Mountains, Hungary. Acta Mineralogica-Petrographica, 27, 39-50. PDF available
Szabó, Cs., Harangi, Sz. & Csontos, L.(1992) Review of Neogene and Quaternary volcanism of the Carpathian-Pannonian Region. Tectonophysics, 208, 243-256. PDF available
Szabó, Cs., Kubovics, I. & Molnár, Zs. (1993) Alkaline lamprophyre and related dyke rocks in the NE Transdanubia, Hungary: The Alcsútdoboz-2 borehole. Mineralogy and Petrology, 47, 27-148. PDF available
Szabó, Cs. & Taylor, L. A. (1994) Mantle petrology and geochemistry beneath the Nógrád-Gömör Volcanic Field, Carpathian-Pannonian Region. International Geology Review, 36, 328-358. PDF available
Szabó, Cs. & Bodnar, R. J. (1995) Chemistry and origin of mantle sulfides in spinel peridotite xenoliths from alkaline basaltic lavas, Nógrád-Gömör Volcanic Field, northern Hungary and southern Slovakia. Geochimica et Cosmochimica Acta, 59, 3917-3927. PDF available
Szabó, Cs., Vaselli, O., Vannucci, R., Bottazzi, P., Ottolini, L., Coradossi, N. & Kubovics, I. (1995) Ultramafic xenoliths from the Little Hungarian Plain: a petrologic and geochemical study. Acta Vulcanologica, 7, 249-263. PDF available
Szabó, Cs., Harangi, Sz., Vaselli, O. & Downes, H. (1995) Temperature and oxygen fugacity in peridotite xenoliths from the Carpathian-Pannonian Region. Acta Vulcanologica, 7, 231-239. PDF available
Szabó, Cs. & Bodnar, R. J. (1996) Changing magma ascent rates in the Nógrád-Gömör Volcanic Field, Northern Hungary / Southern Slovakia: Evidence from CO2-rich fluid inclusions in metasomatized upper mantle xenoliths. Petrology, 4, 240-249. PDF available
Szabó, Cs., Bodnar, R. J. & Sobolev, A. V. (1996) Metasomatism associated with subduction-related, volatile-rich silicate melt in the upper mantle beneath the Nógrád-Gömör Volcanic Field, Northern Hungary / Southern Slovakia: Evidence from silicate melt inclusions. European Journal of Mineralogy, 8, 881-899. PDF available
Harangi,
Sz., Szabó, Cs., Józsa, S., Szoldán, Zs.,
Árva-Sós, E., Balla, M. & Kubovics, I. (1996) Mesozoic igneous suites in
Hungary: - Implications for their genesis and tectonic setting in the
northwestern part of Tethys.
International Geology Review, 38, 336-360. PDF available
Szabó, Cs. & Bodnar, R.J. (1999) 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 in Planetary Petrology and Geochemistry (The Lawrence A. Taylor 60th Birthday Volume, edited by G.A. Snyder, C.R. Neal, and G. Ernst (ISBN 0-9665869-1-3), International Book Series, vol. 2, Bellwether Publishing Ltd., Columbia, 83-91. PDF available
Falus, Gy., Szabó, Cs. & Vaselli, O. (2000) Mantle upwelling within the Pannonian Basin: evidence from xenolith lithology and mineral chemistry. Terra Nova, 12, 295-302. PDF available
Benedek, K., Nagy, Zs. R., Dunkl, I., Szabó, Cs. & Józsa, S. (2001) Petrographical, geochemical and geochronological constraints on igneous clasts and sediments hosted in the Oligo-Miocene Bakony Molasse, Hungary: Evidence for a Paleo-Drava River system. International Journal of Earth Sciences, 90, 519-533. PDF available
Harangi, Sz., Downes, H., Kósa, L., Szabó, Cs., Thirlwall, M.F., Mason, P.R.D. & Mattey, D. (2001) Almandine garnet in calc-alkaline volcanic rocks of the Northern Pannonian Basin (Eastern-Central Europe): geochemistry, petrogenesis and geodynamic implications. Journal of Petrology, 42, 1813-1843. PDF available
Bali,
E., Szabó, Cs., Vaselli, O. & Török, K. (2002) Significance of
silicate melt pockets in upper mantle xenoliths from the Bakony- Balaton
Highland Volcanic Field, Western Hungary.
Lithos, 61, 79-102. PDF available
Burján, Zs., Nagy-Balogh, J., Gál-Sólymos, K. & Szabó, Cs. (2002): Spectrochemical study of potential source minerals of radon anomaly. Microchemical Journal, 73, 47-51 PDF available
Török,
K., Bali, E., Szabó, Cs. & Szakál, J. A., (2003) Sr-barite droplets
associated with sulfide blebs in clinopyroxene megacrysts from basaltic tuff
(Szentbékkálla, Western Hungary).
Lithos, 66, 3-4, 275-289. PDF available
Zajacz, Z. & Szabó, Cs. (2003) Origin of sulfide inclusions in cumulate xenoliths from Nógrád–Gömör Volcanic Field, Pannonian Basin (North Hungary/South Slovakia). Chemical Geology, 194, 105-117. PDF available
Kele, S., Vaselli, O., Szabó, Cs. & Minissale, A. (2003) Stable isotope geochemistry of Pleistocene travertines from Budakalász (Buda Mts., Hungary). Acta Geologica Hungarica, 46, 161-175. PDF available
Rapien,
M. H., Bodnar, R. J., Simmons, S. F., Szabó, Cs., Wood, C. P. &
Sutton, S. R. (2003) Melt inclusion study of the embryonic porphyry copper
system at White Island, New Zealand (in Volcanic, Geothermal, and Ore-Forming
Fluids: Rulers and Witnesses of Processes within the Earth (Werner F.
Giggenbach Tribute), edited by S.F. Simmons and I. Graham (ISBN 1-887483-90-X),
Geochemical Society Special Publication Series, vol. 8, Washington, D.C.,
41-59. PDF available
Falus, Gy., Drury, M. R., van Roermund, H. L. M. & Szabó, Cs. (2004) Magmatism-related localized deformation in the mantle: a case study. Contributions to Mineralogy and Petrology, 146, 493-505. PDF available
Benedek,
K., Pécskay, Z., Szabó, Cs., Németh, T. & Jósvai, J. (2004)
Paleogene igneous rocks in the Zala basin: link to the Paleogene magmatic activity
along the Periadriatic lineament.
Geologica Carpathica, 55, 43-50. PDF available
Kovács,
I., Zajacz, Z. & Szabó, Cs. (2004) Type-II xenoliths and
related metasomatism from the Nógrád-Gömör Volcanic Field, Carpathian-Pannonian
Region (northern Hungary – southern Slovakia).
Tectonophysics, 393, 139-161. PDF available
Szabó,
Cs., Falus, Gy., Zajacz, Z., Kovács, I. & Bali, E. (2004) Composition
and evolution of lithosphere beneath the Carpathian-Pannonian region: a
review. Tectonophysics, 393, 119-137. PDF available
Kovács, I. & Szabó, Cs. (2005) Geodynamical significance of granulite xenoliths beneath the Nógrád-Gömör Volcanic Field, Carpathian-Pannonian Region (N-Hungary/S-Slovakia). Mineralogy and Petrology, 85, 269-290. PDF available
Azbej, T., Szabó, C., Bodnar, R.J. & Dobosi, G. (2006) Genesis of carbonate aggregates in lamprophyres from the Northeastern Transdanubian Central Range, Hungary: Magmatic or hydrothermal origin? Mineralogy and Petrology, 88, 479-497. PDF available
Falus, Gy., Szabó, Cs., Kovács, I., Zajacz, Z. & Halter, W. (2007) Symplectite in spinel lherzolite xenoliths from the Little Hungarian Plain, Western Hungary: a key for understanding basin evolution. Lithos, 94, 230-247. PDF available
Kovács, I., Csontos, L., Szabó, Cs., Bali, E., Falus, Gy., Benedek, K. & Zajacz, Z. (2007) Paleogene-early Miocene igneous rocks and geodynamics of the Alpine-Carpathian-Pannonian-Dinaric region, An integrated approach, in Beccaluva, I., Bianchini, G. and Wilson, M. (eds.) Cenozoic Volcanism in the Mediterranean Area. GSA Special Paper, 418, 93-112. PDF available
Fall, A., Bodnar, R. J., Szabó, Cs. & Pál-Molnar, E. (2007) Fluid evolution in the nepheline syenites of the Ditrău Alkaline Massif, Transylvania, Romania. Lithos, 95, 331-345. PDF available
Hidas, K., Falus, G., Szabó, Cs., Szabó, P.J., Kovács, I. & Földes, T. (2007) Geodynamic implications of flattened tabular equigranular textured peridotites from the Bakony-Balaton Highland Volcanic Field (Western Hungary). Journal of Geodynamics, 43, 483-503. PDF available
Bali, E., Falus, G., Szabó, C., Peate, D.W., Hidas, K., Török, K. & Ntaflos, T. (2007) Remnants of boninitic melts in the upper mantle beneath the central Pannonian Basin? Mineralogy and Petrology, 90, 51-72. PDF available
Zajacz, Z.,
Kovács, I., Szabó, Cs., Halter, W. & Pettke, T. (2007) Evolution
of mafic alkaline melts in the uppermost lithospheric mantle: a melt inclusion
study of olivine clinopyroxenite xenoliths, northern Hungary. Journal of Petrology, 48, 853-883. PDF available
Kovács, I.,
Hidas, K., Hermann, J., Sharygin, V. V., Ntaflos, T. & Szabó, Cs. (2007) Fluid induced incipient melting
in mantle xenoliths from the Minusinsk Region (Siberia, Russia) and some
implications for the subcontinental lithospheric mantle. Geologica Carpathica, 58, 211-228. PDF available
Berkesi, M.,
Hidas, K. & Szabó, Cs. (2007) Fossil geotherm estimation of spinel
peridotites from Tihany (Bakony-Balaton Highland Volcanic Field) based on CO2
inclusions. Magyar Geofizika, 48, 31-37.
PDF available
Bali, E., Zanetti,
A., Szabó, Cs., Peate, D. & Waigh, T.E.
(2008) Evolution of the subcontinental lithospheric mantle beneath the Central
Pannonian Basin: trace element evidence from silicate melt pockets in mantle
xenoliths from the Bakony-Balaton Highland Volcanic Field, (western
Hungary). Contributions to Mineralogy
and Petrology, 155, 165-179. PDF available
Kovács, I. & Szabó,
Cs. (2008) Middle Miocene volcanism in the vicinity of
the Middle Hungarian zone: evidence for an inherited enriched mantle source - a
review. Journal of Geodynamics, 45,
1-17. PDF available
Bali, E., Zajacz, Z., Kovács, I., Szabó, Cs., Halter, W.,
Vaselli, O., Török, K. &
Bodnar, R.J. (2008) A quartz-bearing
orthopyroxene-rich websterite xenolith from the Pannonian Basin, Western
Hungary: Evidence for release of quartz-saturated melt from a subducted
slab. Journal of Petrology, 49, 421-439. PDF available
Guzmics, T., Zajacz, Z., Kodolányi, J., Halter, W. & Szabó, Cs. (2008) LA-ICP-MS study of apatite- and K feldspar-hosted primary carbonatite melt inclusions in clinopyroxenite xenoliths from lamprophyres, Hungary: implications for significance of carbonatite melt generation in the Earth’s mantle. Geochimica et Cosmochimica Acta, 72, 1864-1886. PDF available
Falus, Gy., Tommasi; A., Ingrin; J. & Szabó, Cs. (2008) Deformation and seismic anisotropy of the lithospheric mantle in the southeastern Carpathians inferred from the study of mantle xenolith. Earth and Planetary Science Letters, 272, 50-64. PDF available
Breitner, D., Turtiainen, T., Arvela, H., Vesterbacka, P., Johanson, B., Lehtonen, M., Hellmuth, K.-H. & Szabó, Cs. (2008) Multidisciplinary analysis of Finnish esker sediment in radon source identification. Science of the Total Environment, 405, 129-139. PDF available
Guzmics, T., Kodolányi, J. Kovács, I., Szabó, Cs., Bali, E. & Ntaflos, T. (2008) Primary carbonatite melt inclusions in apatite and in K-feldspar of clinopyroxene-rich mantle xenoliths hosted in lamprophyre dikes (Hungary). Mineralogy and Petrology, 94, 225-242. PDF available
Papp, B., Deák, F., Horváth, Á., Kiss,
Á., Rajnai, G. & Szabó, Cs. (2008) A new method for the
determination of geophysical parameters by radon concentration measurements in
bore-hole. Journal of Environmental
Radioactivity, 99, 1731-1735. PDF available
Szabó, Cs., Hidas, K., Bali, E., Zajacz, Z., Kovács, I.,
Yang, K., Guzmics, T. & Török, K. (2009) Melt-wall rock interaction
in mantle as shown by silicate melt inclusions in peridotite xenoliths from the
central Pannonian Basin (western Hungary). Island Arc, 18, 375-400. PDF available
Yang, K., Nam, B., Kim, J. &
Szabó, Cs. (2009) Textural
implication of fine-grained peridotite xenoliths in basaltic rocks from Jeju
Island. Journal of Mineralogical Society
of Korea, 22, 1-11. PDF
available
Berkesi, M., Hidas, K., Guzmics, T., Dubessy,
J., Bodnar, R.J., Szabó, Cs., Vajna,
B., & Tsunogae, T. (2009) Detection of small amounts of H2O in CO2-rich fluid
inclusions using Raman spectroscopy.
Journal of Raman Spectroscopy, 40, 1461-1463. PDF available
Nédli, Zs., M.Tóth, T. & Szabó, Cs.
(2009) Late Cretaceous lamprophyre dikes from the Villány Mts. In M. Tóth, T. (ed.) Igneous and Metamorphic
Formations in the Tisza Unit, GeoLitera, Szeged (in Hungarian), 219-242. PDF available
Tatár, R., Mihucz, V.G., Virágh, I., Szabó, C. & Záray, G. (2010) Determination of lead isotope ratios in clinopyroxene by inductively coupled plasma mass spectrometry applying solution nebulization or laser ablation sample introduction techniques. Toxicological & Environmental Chemistry, 92, 495-507. PDF available
Hidas, K., Guzmics, T., Szabó, Cs., Kovács, I., Bodnar, R:J., Zajacz, Z., Nédli, Zs., Vaccari, L. & Perucchi, A. (2010) Coexisting silicate melt inclusions andH2O-bearing, CO2-rich fluid inclusions in mantle peridotite xenoliths from the Carpathian-Pannonian region (central Hungary). Chemical Geology, 274, 1-18. PDF available
Nédli, Zs., M. Tóth, T., Downes, H., Császár, G., Beard, A. & Szabó, Cs. (2010) Petrology and geodynamical interpretation of mantle xenoliths from Late Cretaceous lamprophyres, Villány Mts (S Hungary). Tectonophysics, 489, 43-54. PDF available
Kármán, K., Fórizs, I., Szabó, Cs. & Deák, J. (2010) The
study of riverbank filtrated systems by water chemical and geochemical (δ18O)
measurements – case study of the Szentendre Island. Hidrológiai Közlöny, 90, 49-53. PDF available
Szabó, Cs., Kovács, I., Dégi, J., Kóthay, K., Török, K.,
Hidas, K., Kónya, P. & Berkesi, M. (2010) From
maars to lava lakes: Ultramafic and granulite xenoliths associated with
alkaline basaltic volcanism of the Pannonian Basin. Acta Mineralogica-Petrographica, Field Guide
Series, 13, 1-32. IMA2010 Field Trip Guide HU5. PDF available
Yang, K., Hidas, K., Falus, Gy., Szabó, Cs., Nam, B., Kovács, I. &
Hwang, B. (2010) Relation between mantle shear zone deformation and
metasomatism in spinel peridotite xenoliths of Jeju Island (South Korea):
Evidence from olivine CPO and trace elements.
Journal of Geodynamics, 50, 424–440. PDF available
Guzmics, T., Mitchell, H.M., Szabó, Cs., Berkesi, M., Milke, R.
& Abart, R. (2011) Carbonatite melt inclusions in coexisting magnetite,
apatite and monticellite in Kerimasi calciocarbonatite, Tanzania: melt
evolution and petrogenesis.
Contributions to Mineralogy and Petrology, 161, 177–196. PDF available
Nagy, H.É., Breitner, D., Horváth, Á. & Szabó, Cs. (2011)
Study of a passive radon mitigation process and indoor radon concentration’s
time dependence after mitigation. Carpathian Journal of Earth and
Environmental Sciences, 6, 143–149. PDF available
Kovács, I., Falus, Gy., Stuart, G., Hidas, K., Szabó, Cs., Flower,
M., Hegedűs, E., Posgay, K., Zilahi-Sebess, L. & Fancsik, T. (2011)
Asthenospheric flow as a driving force for Tertiary extrusion and
extension. Magyar Geofizika (in
Hungarian with English abstract), 52, 79-87. PDF available
Sharygin, V.V., Kóthay, K., Szabó, Cs., Timina, T.Ju., Török, K., Vapnik, Ye. & Kuzmin, D.V. (2011) Rhönite in alkali basalts: silicate melt inclusions in olivine phenocrysts. Russian Geology and Geophysics, 52, 1334-1352. PDF available
Kovács, I., Falus, Gy., Stuart, G., Hidas, K., Szabó, Cs., Flower,
M., Hegedűs, E., Posgay, K. & Zilahi-Sebess, L. (2012) Seismic
anisotropy and deformation patterns in upper mantle xenoliths from the central
Carpathian–Pannonian region: Asthenospheric flow as a driving force for
Cenozoic extension and extrusion? Tectonophysics, 514-517, 168-179. PDF available
Havancsák, I., Koller, F., Kodolányi, J., Szabó, Cs., Hoeck, V. &
Onuzi, K. (2012) Chromite-hosted silicate melt inclusions from basalts in the
Stravaj Complex, Southern Mirdita Ophiolite Belt (Albania). Turkish Journal of Earth Sciences, 21, 79-96. PDF available
Szabó,
K.Zs., Udvardi, B., Horváth, Á., Bakacsi, Zs., Pásztor, L., Szabó, J., Laczkó,
L. & Szabó, Cs. (2012) Cesium-137 concentration of soils in
Pest County, Hungary. Journal of
Environmental Radioactivity, 110, 38-45. PDF available
Berkesi, M., Guzmics, T., Szabó, Cs., Dubessy, J., Bodnar, R.J., Hidas, K. & Ratter, K.
(2012) The role of CO2-rich fluids in trace element transport and
metasomatism in the lithospheric mantle beneath the Central Pannonian Basin,
Hungary, based on fluid inclusions in mantle xenoliths. Earth and Planetary Science Letters, 331-332,
8–20. PDF
available
Guzmics,
T., Mitchell, R.H., Szabó, Cs., Berkesi, M., Milke, R. & Ratter, K.
(2012) Liquid
immiscibility between silicate, carbonate and sulfide melts in melt inclusions hosted
in co-precipitated minerals from Kerimasi
volcano (Tanzania): evolution of carbonated nephelinitic magma. Contributions
to Mineralogy and Petrology, 164, 101-122. PDF available
Konc, Z., Marchesi, C., Hidas, K., Garrido, C.J., Szabó, Cs. & Sharygin, V.V. (2012) Structure and composition of the subcontinental lithospheric mantle beneath the Sangilen Plateau (Tuva, southern Siberia, Russia): Evidence from lamprophyre-hosted spinel peridotite xenoliths. Lithos, 146-147, 253-263. PDF available
Szabó,
K.Zs., Udvardi, B., Horváth, Á., Bakacsi, Zs., Pásztor, L., Szabó, J., Laczkó,
L. & Szabó, Cs. (2012) Cesium-137 concentration of soils in Pest
County. Nukleon, 5, 1-6. PDF available
Baricza, Á.,
Bajnóczi, B., Tóth, M. & Szabó, Cs.
(2012) Deterioration of building ceramics by environmental factors –a case
study on Zsolnay ceramics from the Museum of Applied Arts (Budapest). Geosciences and Engineering, 1, 7-14. PDF available
Nagy,
H.É., Szabó, Zs., Jordán, Gy., Szabó, Cs., Horváth, Á. & Kiss, A.
(2012) Time variations of 222Rn concentration and air exchange rates
in a Hungarian cave. Isotopes in
Environmental and Health Studies. 48, 464-472. PDF available
Yang,
K., Szabó, Cs., Arai, S., Yu, J-E. & Jung, H. (2012) Silica
enrichment of Group II xenoliths by evolved alkali basalt from Jeju Island,
South Korea: implication for modification of intraplate deep-seated rocks. Mineralogy and Petrology, 106, 107–130. PDF available
Berta, M., Király, Cs., Lévai,
Gy., Falus, Gy., Székely, E., Szabó, Cs., Sciarpetti, G. & Zilahi-Sebess,
L. (2012) Carbon capture and sequestration: A preliminary study on its
determinant geochemical processes on Pannonian sedimentary formations. Magyar Geofizika (in Hungarian with
English abstract), 53, 258-266. PDF available
Szabó, Zs.,
Völgyesi, P., Nagy, H.E., Szabó, Cs., Kis, Z. & Csorba, O. (2013)
Radioactivity of natural and artificial building materials - a comparative
study. Journal of Environmental
Radioactivity, 118, 64-74. PDF available
Gál, B., Molnár, F., Guzmics,
T., Mogessie, A., Szabó, Cs. & Peterson, D.M. (2013) Segregation of
magmatic fluids and their potential in the mobilization of platinum-group
elements in the South Kawishiwi Intrusion, Duluth Complex, Minnesota — Evidence
from petrography, apatite geochemistry and coexisting fluid and melt
inclusions. Ore Geology Review, 54,
59-80. PDF available
Szabó, K.Zs.,
Nagy, H.E., Szabó, Zs., Scheuer, Gy. & Szabó, Cs. (2013)
Radioactivity of medicinal springs in Eger.
Hidrológiai Közlöny (in Hungarian with English abstract), 93, 20-26. PDF available
Király, Cs., Szamosfalvi, Á.,
Falus, Gy., Szabó, Cs. &
Sendula, E. (2013) Expected
physical and chemical effects of injecting industrial carbon dioxide on pore
fluids and reservoir rocks based on the study of Mihályi-Répcelak natural CO2 occurrence. Magyar
Geofizika (in Hungarian with English abstract), 54, 43-52. PDF available
Csige, I., Szabó, Zs. & Szabó,
Cs. (2013) Experimental technique to measure thoron
generation rate of building material samples using RAD7 detector. Radiation Measurements, 59, 201-204. PDF available
Liptai, N., Jung, H., Park, M. & Szabó, Cs. (2013) Olivine orientation study on upper mantle xenoliths from Bárna–Nagykő, Nógrád–Gömör Volcanic Field (Northern Pannonian Basin, Hungary). Bulletin of the Hungarian Geological Society (in Hungarian with English abstract), 143, 371-382. PDF available
Török, K., Németh, B., Koller,
F., Dégi, J., Badenszki, E., Szabó, Cs.
& Mogassie, A. (2014) Evolution of the middle crust beneath the western
Pannonian Basin: a xenolith study.
Mineralogy and Petrology, 108, 33-47.
PDF available
Szabó, K.Zs., Jordan, Gy., Horváth, Á. & Szabó, Cs. (2014) Mapping the geogenic radon potential: methodology and spatial analysis for central Hungary. Journal of Environmental Radioactivity, 129, 107-120. PDF available
Szabó, K.Zs., Jordan, Gy., Horváth, Á.
& Szabó, Cs. (2014) Mapping of
geogen radon potential in Pest and Nógrád counties (Hungary). Nukleon
(in Hungarian with English
abstract), 7, 1-9. PDF available
Szabó, Zs., Jordan, Gy., Szabó, Cs., Horváth, Á., Holm, O., Kocsy, G., Csige, I., Szabó, P. & Homoki, Zs. (2014) Radon and thoron levels, their spatial and seasonal variations in adobe dwellings – a case study at the great Hungarian plain. Isotopes in Environmental and Health Studies. 50, 211-225. PDF available
Völgyesi, P., Jordan, Gy., Zacháry, D., Szabó, Cs., Bartha, A. & Marschullat, J. (2014) Attic dust reflects long-term airborne contamination of an industrial area: A case study from Ajka, Hungary. Applied Geochemistry, 46, 19-29. PDF available
Kármán, K., Maloszewski. P., Deák, J.,
Fórizs, I. & Szabó, Cs. (2014)
Transit time determination in riverbank filtrated system by oxygen isotopic
data using the Lumped parameter model.
Hydrological Sciences Journal, 59, 1109-1116. PDF available
Völgyesi, P., Kis, Z., Szabó,
Zs. & Szabó, Cs. (2014) Using
the 186 keV peak for 226Ra activity concentration determination in
Hungarian coal slag samples by gamma-ray spectroscopy. Journal of Radioanalytical and Nuclear
Chemistry, 302, 375-383. PDF available
Udvardi, B., Kovács,
I., Kónya, P., Vatai, J., Koloszár, L., Fedor, F., Ács, P., Mihályi, J.,
Németh, Cs., Deák, Zs.V., Füsi, B., Szalai, Z., Szabó,
Cs., Falus, Gy. & Fancsik, T. (2014) Physical properties and mineral composition of
sediments from sliding zone at Kulcs area.
Magyar Geofizika (in
Hungarian with English abstract), 55, 121-133. PDF available
Udvardi, B., Kovács,
I.J., Kónya, P., Vatai, J., Földvári, M., Füri, J., Budai, F., Falus, Gy., Fancsik, T., Szabó, Cs.,
Szalai, Z. & Mihályi, J. (2014) Application of attenuated total
reflectance Fourier transform infrared spectroscopy in the mineralogical study
of a landslide area, Hungary.
Sedimentary Geology, 313, 1-14. PDF available
Breitner, D., Osán, J., Fábián,
M., Zagyvai, P., Szabó, Cs., Dahn,
R., Marques Fernandes, M., Sajó, I.E., Máthé, Z. & Török, Sz. (2015)
Characteristics of uranium uptake of Boda Claystone Formation as the candidate
host rock of high level radioactive waste repository in Hungary. Environmental Earth Sciences, 73, 209-2019. PDF available
Klébesz, R., Gráczer, Z., Szanyi, Gy., Liptai, N., Kovács, I., Patkó, L.,
Pintér, Zs., Falus, Gy., Wesztergom, V. & Szabó, Cs. (2015) Constraints on the thickness and
seismic properties of the lithosphere in an extensional setting (Nógrád-Gömör
Volcanic Field, Northern Pannonian Basin).
Acta Geodaetica at Geophysica Hungarica, 50, 133-149. PDF available
Guzmics, T., Zajacz, Z., Mitchell, R.H., Szabó, Cs. & Wälle,
M. (2015) The role of liquid–liquid immiscibility and
crystal fractionation in the genesis of carbonatite magmas: insights from
Kerimasi melt inclusions. Contributions
to Mineralogy and Petrology, DOI 10.1007/s00410-014-1093-4. PDF available
Németh,
B., Török, K., Kovács, I., Szabó, Cs.,
Abart, R., Dégi, J., Mihály, J. & Németh, Cs. (2015) Melting, fluid
migration and fluid-rock interactions in the lower crust beneath the
Bakony-Balaton Highland volcanic field: a silicate melt and fluid inclusion
study. Mineralogy and Petrology,
109, 217-234. PDF
available
Zacháry, D., Jordan, Gy., Völgyesi, P., Bartha, A. & Szabó, Cs. (2015) Urban geochemical mapping for spatial risk
assessment of multisource potentially toxic elements - a case study in city of Ajka,
Hungary. Journal of Geochemical
Exploration, 158, 186-200. PDF available
Káldos, R., Guzmics, T.,
Mitchell, R.H., †Dawson, J.B., Milke, R. & Szabó, C. (2015) A melt evolution model for Kerimasi volcano,
Tanzania: Evidence from carbonate melt inclusions in jacupirangite. Lithos, 238, 101-119. PDF available
Nédli, Zs., Szabó, Cs. &
Dégi, J. (2015) Orthopyroxene-enrichment in the
lherzolite-websterite xenolith suite from Paleogene alkali basalts of the
Poiana Rusca Mts. (Romania). Geologica
Carpathica, 66, 6, 499-514. PDF available
Szabó, Zs., Hellevang, H., Király, Cs., Sendula, E., Kónya, P.,
Falus, Gy., Török, Sz. & Szabó, Cs.
(2016) Experimental-modelling geochemical study of potential CCS
caprocks in brine and CO2-saturated brine. International Journal of Greenhouse Gas
Control, 44, 262-275. PDF
available
Baricza, Á., Bajnóczi, B., Tóth,
M., Káldos, R. & Szabó, Cs. (2016) Characterization of particulate matter in attic and
settled dusts collected from two buildings in Budapest, Hungary in Prikryl, R.
et al. (eds.) Sustainable Use of Traditional Geomaterials in Construction
Practice. Geological Society, London,
Special Publications, 416, 239-252. PDF available
Baricza, Á., Bajnóczi, B., Szabó, M., Tóth, M., Bendő,
Zs. & Szabó,
Cs. (2016) Deterioration of
glazed architectural ceramics due to environmental factors: a comparative of
two buildings in Budapest. Carpathian
Journal of Earth and Environmental Sciences, 11, 449-462. PDF available
Király, Cs., Szamosfalvi, A.,
Zilahi-Sebess, L., Kónya, P., Kovács, I.J., Sendula, E. Szabó, Cs. & Falus, Gy. (2016) Caprock analysis from the
Mihályi-Répcelak natural CO2 occurrence, Western Hungary. Environmental Earth Sciences, 75, DOI
10.1007/s12665-016-5399-6. PDF available
Udvardi, B., Kovács, I., Szabó, Cs., Falus, Gy.,
Újvári, G., Besnyi, A., Bertalan, É., Budai, F., & Horváth, Zs. (2016) Origin and weathering of
landslide material in a loess area: a geochemical study of the Kulcs
landslide. Environmental Earth Sciences,
75, 1299, DOI 10.1007/s12665-016-6103-6. PDF available
Hidas, K., Konc, Z., Garrido,
C.J., Tommasi, A., Vauchez, A., Padrón-Navarta, J.A., Marchesi, C., Boot-Rea,
G., Acosta-Vigil, A., Szabó, Cs.,
Varas-Reus, M.I. &
Gervilla, F. (2016) Flow in the western Mediterranean shallow mantle: Insights
from xenoliths in Pliocene alkali basalts from SE Iberia (eastern Betics,
Spain). Tectonics, 35, 2657-2676. doi:10.1002/2016TC004165. PDF available
Szabó, K., Jordan, Gy., Petrik, A., Horváth, Á. & Szabó, Cs.
(2017) Spatial analysis of ambient gamma dose equivalent rate data by
means of digital image processing techniques.
Journal of Environmental Radioactivity, 166, 309-320. http://dx.doi.org/10.1016/j.jenvrad.2016.07.013. PDF available
Créon, L., Rouchon, V.,
Youssef, S., Rosenberg, E., Delpech, G., Szabó, Cs.,
Remusat, L., Mostefaoui, S., Asimow, P.D., Antoshechkina, P.M., Ghiorso,
M.S., Boller, E. & Guyot,
F. (2017) Highly CO2-supersaturated
melts in the Pannonian lithospheric mantle - A transient carbon reservoir? Lithos, 286-287, 519-533.
http://dx.doi.org/10.1016/j.lithos.2016.12.009. PDF available
Liptai, N., Patkó, L., Kovács,
J.I., Hidas, K., Pintér, Zs., Jeffries, T., Zajacz, Z., O’Reilly, Y.S.,
Griffin, L.W., Pearson, J.N. &
Szabó, Cs. (2017) Multiple
metasomatism beneath the Nógád–Gömör
Volcanic Field (northern Pannonian Basin) revealed by upper mantle peridotite
xenoliths. Journal of Petrology, 58,
1107-1144. doi: 10.1093/petrology/egx048. PDF available
Berkesi, M., Káldos, R., Park,
M., Török, K., Németh, B., Czuppon, Gy. & Szabó, Cs.
(2017) Detection of small amounts of N2 in CO2-rich high-density
fluid inclusions from mantle xenoliths.
European Journal of Mineralogy, 29, 423-431. DOI:
10.1127/ejm/2017/0029-2615. PDF available
Sendula, E., Páles, M., Szabó P.B.,
Udvardi, B., Kovács, I., Kónya, P., Freiler, Á., Besnyi, A., Király, Cs.,
Székely E., Szabó, Cs. & Falus, Gy. (2017) Experimental
study of CO2-saturated water - illite/kaolinite/montmorillonite
system at 70-80 °C, 100-105 bar. Energy
Procedia, 114, 4934-4947. doi:
10.1016/j.egypro.2017.03.1635. PDF available
Király, Cs., Szabó, Zs., Szamosfalvi,
Á., Kónya, P., Szabó, Cs. &
Falus, Gy. (2017) How much CO2 is trapped in carbonate
minerals of a natural CO2 occurrence? Energy Procedia, 125, 527-534. doi: 10.1016/j.egypro.2017.08.180. PDF available
Aradi, E.L., Hidas, K., Kovács,
I.J., Tommasi, A., Klébesz, R., Garrido, C.J & Szabó, Cs.
(2017) Fluid-enhanced annealing in the subcontinental lithospheric mantle
beneath the westernmost margin of the Carpathian-Pannonian Extensional Basin
System. Tectonics, 36, 2987-3011.
https://doi.org/10.1002/2017TC004702. PDF available
Baricza, Á., Bajnóczi, B.,
Kovács, J., May, Z., Szabó, M., Szabó,
Cs. & Tóth, M. (2018)
Chemical durability of lead-bearing glazes in sulphuric acid solutions -
Laboratory experiments performed on Zsolnay architectural ceramics from
Budapest (Hungary). International
Journal of Architectural Haritage, 12, 216-236.
https://doi.org/10.1080/15583058.2017.1396381. PDF available
Department of Petrology and Geochemistry
Institute of Geography and Earth
Sciences
Eötvös University Budapest (ELTE)
CURRICULUM VITAE
Csaba Szabó
Lithosphere Fluid Research Lab
Department of Petrology and Geochemistry,
Institute of Geography and Earth Sciences and
Cooperative Research Center for Environmental Sciences
Eötvös University Budapest,
Pázmány Péter sétány 1/C,
Budapest,
H-1117,
Hungary
Telephone: (36-1) 372 2500 ext. 8338
Email: cszabo@elte.hu
Academic
Positions:
2015 – present: Adjunct Professor, Geodetic and Geophysical Institute, Research Centre for Astronomy and Earth Sciences, Hungarian Academy of Sciences, Sopron, Hungary,
2008 – present: Adjunct Professor, Department of Geosciences, Virginia Tech, Blacksburg, USA,
1998
- present: Associate Professor, Department of Petrology and Geochemistry,
Eötvös University, Budapest, Hungary,
2006 – 2007: Professor, Pusan National University, Busan, Republic of Korea,
2004 – 2006: Visiting Lecturer, University of Miskolc, Hungary,
2004: Visiting Scholar, GEMOC, Department of Earth and Planetary Sciences, Macquarie University Sydney, Australia,
1998
- 2002: Visiting Lecturer, Babes-Bolyai University, Cluj, Romania,
1997 - 1998: Assistant Professor, Department of Petrology and Geochemistry,
Eötvös University, Budapest, Hungary,
1995 - 1997: Research Associate Professor, Department of Geological Sciences,
Virginia Tech, Blacksburg, USA,
1992 - 1995: Graduate Research and Teaching Assistant, Department of Geological
Sciences, Virginia Tech, Blacksburg, USA,
1991 - 1992: Visiting Scholar, Department of Geological Sciences, Virginia
Tech, Blacksburg, USA,
1990 - 1991: Visiting Scholar, Department of Geological Sciences, University of
Tennessee, Knoxville, USA,
1990: Visiting Scholar, Department of Physicochemical Geology, Katholieke
Universiteit Leuven, Belgium,
1984 - 1990: Assistant Professor, Department of Petrology and Geochemistry,
Eötvös University, Budapest, Hungary,
1981 - 1984: Teaching Assistant, Department of Petrology and Geochemistry,
Eötvös University, Budapest, Hungary,
1979 - 1981: Graduate Research, Department of Petrology and Geochemistry,
Eötvös University, Budapest, Hungary,
Education:
1994:
Ph.D. Geology, Virginia Polytechnic Institute and State University, Blacksburg,
USA,
Principal advisor: Robert J. Bodnar,
Dissertation topic: Mantle Metasomatism beneath the Nógrád-Gömör Volcanic
Field, Northern Hungary / Southern Slovakia
1984:
University Doctor. Geology, Eötvös University, Budapest, Hungary,
Principal advisor: Imre Kubovics,
Dissertation topic: Mineralogy, Petrology and Geochemistry of Ultramafic
Xenoliths in Lamprophyre Dikes of Alcsútdoboz-2 Borehole (Bakonyicum, Hungary):
Their Origin and Genetic Implications
1979:
M.Sc. Geology, Eötvös University, Budapest, Hungary,
Principal advisor: Imre Kubovics,
Dissertation topic: Petrology and Geochemistry of Alkali Mafic Dikes in Mecsek
Mts., Hungary
Past
Professional Positions:
Board
member of the Mineralogy and Geochemistry Section of the Hungarian Geological
Society (1983-1986);
Secretary of the Budapest Region of the Hungarian Geological Society
(1986-1990);
Secretary of the Petrology Committee of the Hungarian Academy of Science
(1988-1990);
Secretary of the Mineralogy and Geochemistry Committee of the Hungarian Academy
of Science (1988-1990);
Member of the College Council of Natural Sciences at Eötvös University
(2000-2003);
Board member of the Mineralogy-Geochemistry Section of the Hungarian Geological
Society (2000-2003);
Member of the Credit Committee of Natural Sciences at Eötvös University
(2001-2003);
Member of the Education Committee of the Institute of Geology at Eötvös
University (2000-2004);
President of the Scientific Council of the Cooperative
Research Center for Environmental Sciences (CRCES) at the Eötvös University
(2004-2005);
President of the Advisory Board of the Youth Foundation of the Hungarian
Geological Society (2001-2006);
General Secretary of the Hungarian Geological Society (2003-2006);
Board member of Centrum of Environmental Sciences at the Eötvös University (2004-2006);
Member of the Strategic Committee of the Eötvös University (2005-2006);
Project leader of the Cooperative Research Center for Environmental Sciences (CRCES) at the Eötvös University (2004-2009);
Chair of Funding and Instrument Commission of Institute of Geography and Earth Sciences at the Eötvös University (2006-2009);
Erasmus coordinator at Earth Sciences at Institute of Geography and Earth Sciences of the Eötvös University (2009);
Board Member of Funding and Instrument Commission of Institute of Geography and Earth Sciences at the Eötvös University (2009-2010);
Member of the Editorial Board of Acta Mineralogica-Petrographica (2002-2010);
Board member of the Hungarian Geological Society (2009-2012);
Leader of Geological Research in Submicroscopic Material Sciences supported by TAMOP project (2010-2012);
Member of advisory board of the Faculty of Science Research and Instrument Core Facility at Eötvös University (2012-2013);
Board member of the Mineralogy and Geochemistry Section of the Hungarian Geological Society (2012-2015);
Current
Professional Positions:
Board member of the Geochemistry, Mineralogy and Petrology Committee of the Hungarian Academy of Science (2002-);
Board member of Doctorate School of Environmental Sciences at the Eötvös University (2006-);
Chair of Funding and Innovation Commission of Institute of Geography and Earth Sciences at the Eötvös University (2010-);
Member of advisory board of György Hevesy award for nuclear safety (2011-);
Director of the Faculty of Science Research and Instrument Core Facility at Eötvös University (ELTE FS-RICF) (2013-);
Program leader of the environmental earth science of the Doctorate School of Environmental Sciences at Eötvös University (2014-);
Board member of the Scientific Panel of Earth Sciences at the Hungarian Scientific Research Fund (2014-);
Board member of the Hungarian Geological Society (2015-);
Representative of Geochemistry, Mineralogy and Petrology Committee of the Hungarian Academy of Science at the General Assembly (2016-);
Board member of the Evaluation Committee for Physical, Space, Earth and Engineering Sciences under the Slovak Academy of Science Program (2016-);
Current
Professional Affiliations:
Hungarian Geological Society,
Geochemical
Society,
American Geophysical Union,
Hungarian Geophysical Society,
European Geosciences Union,
European Association of Geochemistry,
Awards
and Honors:
1978:
Second Place of the Hungarian Scientific Student Conference,
1981: First Place of the 1st Young
Hungarian Geologist Conference,
1982: Youth Geologist Award of the Hungarian Geological Society,
1986: Teacher of the Year Award of the Eötvös University, Budapest,
1990: Katholieke Universiteit Leuven Scholarship,
1990: Széchenyi István Scholarship,
1999: Széchenyi Professorship,
2001: Medal of Vitális Sándor for Applied Geology,
2002: Jubilee Memorial Plaque of “with Science for Hungary” of the Hungarian
Scientific Student’s Association,
2003: Master Teacher Award of the Hungarian Scientific Student’s Association,
2006: BK21st (Brain for Korea 21st century)
Professorship,
2011: For the Hungarian Scientific Student’s Association Award of the Faculty of Science, Eötvös University, Budapest,
2011:
Silver Medallion
of the XXX. Jubilee Conference of the Hungarian Scientific Student’s
Association
2016: Honors of Knight
Cross from the Order of Merit of the Hungarian Republic
Lithosphere
Fluid Research Lab
Institute of Geography and Earth Sciences and
Faculty of Science Research and Instrument Core Facility (ELTE FS-RICF)
Eötvös University, Budapest,
Pázmány Péter sétány 1/C,
Budapest,
H-1117,
Hungary
Last updated: 30 January, 2018
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