Research/art/teacher profile of a person
Name and surname:
prof. RNDr. Marián Putiš, DrSc.
Document type:
Research/art/teacher profile of a person
The name of the university:
Comenius University Bratislava
The seat of the university:
Šafárikovo námestie 6, 818 06 Bratislava

I. - Basic information

I.1 - Surname
Putiš
I.2 - Name
Marián
I.3 - Degrees
prof., RNDr., DrSc.
I.4 - Year of birth
1953
I.5 - Name of the workplace
Univerzita Komenského v Bratislave, Prírodovedecká fakulta, Katedra mineralógie, petrológie a ložiskovej geológie/Comenius University in Bratislava, Faculty of Natural Sciences, Department of Mineralogy, Petrology and Economic Geology
I.6 - Address of the workplace
Mlynská dolina, Ilkovičova 6, 842 15 Bratislava 4
I.7 - Position
profesor/professor
I.8 - E-mail address
marian.putis@uniba.sk
I.9 - Hyperlink to the entry of a person in the Register of university staff
https://www.portalvs.sk/regzam/detail/4412
I.10 - Name of the study field in which a person works at the university
Vedy o Zemi/Earth Sciences
I.11 - ORCID iD
https://orcid.org/0000-0003-2529-3762

II. - Higher education and further qualification growth

II.1 - First degree of higher education
II.a - Name of the university or institution
Comenius University in Bratislava, Slovakia
II.c - Study field and programme
Geology, Basic and Economic Geology
II.2 - Second degree of higher education
II.a - Name of the university or institution
Univerzita Komenského/Comenius University
II.b - Year
1976
II.c - Study field and programme
Geológia, základná a ložisková geológia/Geology, Basic and Economic Geology
II.3 - Third degree of higher education
II.a - Name of the university or institution
Slovenská akadémia vied, Geologický ústav/Slovak Academy of Sciences, Geological Institute
II.b - Year
1981
II.c - Study field and programme
Geológia a tektonika/Geology and Tectonics
II.4 - Associate professor
II.a - Name of the university or institution
Univerzita Komenského/Comenius University
II.b - Year
1995
II.c - Study field and programme
Mineralógia a petrografia/Mineralogy and Petrography
II.5 - Professor
II.a - Name of the university or institution
Univerzita Komenského/Comenius University
II.b - Year
2004
II.c - Study field and programme
Petrológia/Petrology
II.6 - Doctor of Science (DrSc.)
II.a - Name of the university or institution
Univerzita Komenského/Comenius University
II.b - Year
2002
II.c - Study field and programme
Geologické vedy/Geological Sciences

III. - Current and previous employment

III.a - Occupation-position III.b - Institution III.c - Duration
VŠ učiteľ - profesor/University teacher - Professor Univerzita Komenského, Prírodovedecká fakulta/Comenius University, Faculty of Natural Sciences 2004-
VŠ učiteľ - docent/University teacher - Associate Professor Univerzita Komenského, Prírodovedecká fakulta/Comenius University, Faculty of Natural Sciences 1995-2004
VŠ učiteľ - odborný asistent/University teacher - Senior lecturer Univerzita Komenského, Prírodovedecká fakulta/Comenius University, Faculty of Natural Sciences 1984-1995
vedecký pracovník/scientific researcher Slovenská akadémia vied, Geologický ústav/Slovak Academy of Sciences, Geological Institute 1981-1984
odborný pracovník/researcher Slovenská akadémia vied, Geologický ústav/Slovak Academy of Sciences, Geological Institute 1976-1981

IV. - Development of pedagogical, professional, language, digital and other skills

IV.a - Activity description, course name, other IV.b - Name of the institution IV.c - Year
JASPEX - angličtina pre expertov/English course for experts Univerzita Komenského/Comenius University 1984-1986

V. - Overview of activities within the teaching career at the university

V.1 - Overview of the profile courses taught in the current academic year according to study programmes
V.1.a - Name of the profile course V.1.b - Study programme V.1.c - Degree V.1.d - Field of study
Petrografia metamorfovaných hornín/Petrography of Metamorphic Rocks Geológia/Geology I. vedy o Zemi/Earth Sciences
Petrológia 2/Petrology 2 Mineralógia, petrológia a ložisková geológia/Mineralogy, Petrology, and Economic Geology II. vedy o Zemi/Earth Sciences
Metamorfná petrológia/Metamorphic Petrology Mineralógia a petrológia/Mineralogy and Petrology III. vedy o Zemi/Earth Sciences
II.
III.
V.2 - Overview of the responsibility for the delivery, development and quality assurance of the study programme or its part at the university in the current academic year
V.2.a - Name of the study programme V.2.b - Degree V.2.c - Field of study
Mineralógia, petrológia a ložisková geológia/Mineralogy, Petrology, and Economic Geology II. vedy o Zemi/Earth Sciences
Mineralógia a petrológia/Mineralogy and Petrology III. vedy o Zemi/Earth Sciences
V.3 - Overview of the responsibility for the development and quality of the field of habilitation procedure and inaugural procedure in the current academic year
V.4 - Overview of supervised final theses
V.4.1 - Number of currently supervised theses
V.4.a - Bachelor's (first degree)
0
V.4.c - Dissertation (third degree)
1
V.4.2 - Number of defended theses
V.4.c - Dissertation (third degree)
8
V.5 - Overview of other courses taught in the current academic year according to study programmes
V.5.a - Name of the course V.5.b - Study programme V.5.c - Degree V.5.d - Field of study
Endogénne geologické procesy/Endogene Geological Processes Geológia/Geology I. vedy o Zemi/Earth Sciences
Mikroskopická petrológia/Microscopic Petrology Mineralógia, petrológia a ložisková geológia/Mineralogy, Petrology, and Economic Geology II. vedy o Zemi/Earth Sciences
Paleogeografia a geodynamický vývoj paleozoických komplexov Západných Karpát/Geodynamic evolution of Paleozoic complexes of the Western Carpathians Mineralógia, petrológia a ložisková geológia/Mineralogy, Petrology, and Economic Geology II. vedy o Zemi/Earth Sciences
Termodynamika a fázové rovnováhy/Thermodynamics and phase equilibria Mineralógia, petrológia a ložisková geológia/Mineralogy, Petrology, and Economic Geology II. vedy o Zemi/Earth Sciences
Metamorfná petrológia/Metamorphic Petrology Mineralógia a petrológia/Mineralogy and Petrology III. vedy o Zemi/Earth Sciences
Petrografia metamorfovaných hornín/Petrography of Metamorphic Rocks Geológia/Geology I. vedy o Zemi/Earth Sciences
Geochémia geologických prostredí/Geochemistry of Geological Environments Mineralógia, petrológia a ložisková geológia/Mineralogy, Petrology, and Economic Geology II. vedy o Zemi/Earth Sciences
Genetická petrológia/Genetic Petrology Mineralógia a petrológia/Mineralogy and Petrology III. vedy o Zemi/Earth Sciences

VI. - Overview of the research/artistic/other outputs

VI.1 - Overview of the research/artistic/other outputs and the corresponding citations
VI.1.1 - Number of the research/artistic/other outputs
VI.1.a - Overall
355
VI.1.b - Over the last six years
78
VI.1.2 - Number of the research/artistic/other outputs registered in the Web of Science or Scopus databases
VI.1.a - Overall
68
VI.1.b - Over the last six years
22
VI.1.3 - Number of citations corresponding to the research/artistic/other outputs
VI.1.a - Overall
2223
VI.1.b - Over the last six years
683
VI.1.4 - Number of citations registered in the Web of Science or Scopus databases
VI.1.a - Overall
1262
VI.1.b - Over the last six years
610
VI.1.5 - Number of invited lectures at the international, national level
VI.1.a - Overall
17
VI.1.b - Over the last six years
2
VI.2 - The most significant research/artistic/other outputs
1

Putiš M., Ivan P., Kohut M., Spisiak J., Siman P., Radvanec M., Uher P., Sergeev, S., Larionov A., Meres S., Demko R., Ondrejka M., 2009: Meta-igneous rocks of the West-Carpathian basement, Slovakia: Indicators of Early Paleozoic extension and shortening events. Bulletin de la Societe Geologique de France, 180 (6), 461-471.

2

Putiš M., Koppa M., Snárska B., Koller F., Uher P., 2012: The blueschist-associated perovskite–andradite-bearing serpentinized harzburgite from Dobšiná (the Meliata Unit), Slovakia. Journal of Geosciences, 57, 221–240.

3

Li, X.-H., Putiš, M., Yang, Y.-H., Koppa, M., Dyda, M., 2014: Accretionary wedge harzburgite serpentinization and rodingitization constrained by perovskite U/Pb SIMS age, trace elements and Sm/Nd isotopes: Case study from the Western Carpathians, Slovakia. Lithos 205, 1–14.

4

Putiš, M., Li, X.-H., Yang, Y.-H., Li, Q.-L., Nemec, O., Ling, X., Koller, F., Balen, D., 2018: Permian pyroxenite dykes in harzburgite with signatures of the mantle, subduction channel and accretionary wedge evolution (Austroalpine Unit, Eastern Alps). Lithos 314–315, 165–186.

5

Putiš, M., Sláma, J., Li, Q.-L., Nemec, O., Ondrejka, M., Li, X.-H., Koller, F., Ackerman, L., Strnad, L., Ružička, P., 2024. Lithology, U–Pb zircon geochronology, and geochemistry of the Austroalpine Sieggraben Complex: Pre-Alpine vs. Alpine history. Lithos 482–483, 107739.

VI.3 - The most significant research/artistic/other outputs over the last six years
1

Putiš, M., Sláma, J., Li, Q.-L., Nemec, O., Ondrejka, M., Li, X.-H., Koller, F., Ackerman, L., Strnad, L., Ružička, P., 2024. Lithology, U–Pb zircon geochronology, and geochemistry of the Austroalpine Sieggraben Complex: Pre-Alpine vs. Alpine history. Lithos 482–483, 107739.

2

Putiš, M., Scherer, E.E., Nemec, O., Ackerman, L., Ružička, P., 2023: Geochemistry, Lu–Hf garnet ages, and P–T conditions of blueschists from the Meliatic and Fatric nappes, Western Carpathians: Indicators of Neotethyan subduction.Geosystems and Geoenvironment 2, 100150.

3

Putiš, M., Nemec, O., Danišík, M., Jourdan, F., Soták, J., Tomek, Č., Ružička, P., Molnárová, A., 2021. Formation of a Composite Albian–Eocene Orogenic Wedge in the Inner Western Carpathians: P–T Estimates and 40Ar/39Ar Geochronology from Structural Units. Minerals 11, 988, 1–77.

4

Nemec, O.; Putiš, M.; Bačík, P.; Ružička, P.; Németh, Z. Metamorphic Conditions of Neotethyan Meliatic Accretionary Wedge Estimated by Thermodynamic Modelling and Geothermobarometry (Inner Western Carpathians). Minerals 2020, 10, 1094.

5

Putiš, M., Soták, J., Li, Q.-L., Ondrejka, M., Li, X.-H., Hu, Z., Ling, X., Nemec, O., Németh, Z., Ružička, P., 2019: Origin and age determination of the Neotethys Meliata basin ophiolite fragments in the Late Jurassic–Early Cretaceous accretionary wedge mélange (Inner Western Carpathians, Slovakia). Minerals, 2019, 9(11), 652.

VI.4 - The most significant citations corresponding to the research/artistic/other outputs
1

Putiš, M., Soták, J., Li, Q.-L., Ondrejka, M., Li, X.-H., Hu, Z., Ling, X., Nemec, O., Németh, Z., Ružička, P., 2019: Origin and age determination of the Neotethys Meliata basin ophiolite fragments in the Late Jurassic–Early Cretaceous accretionary wedge mélange (Inner Western Carpathians, Slovakia). Minerals, 2019, 9(11), 652.

In: Yuan, S. , Neubauer, F. , Liu, Y., 2020: Widespread Permian granite magmatism in Lower Austroalpine units: significance for Permian rifting in the Eastern Alps. Swiss Journal of Geosciences 113, 1, Article number 18.

Németh, Zoltán, 2021: Lithotectonic units of the Western Carpathians: Suggestion of simple methodology for lithotectonic units defining, applicable for orogenic belts world-wide. Mineralia Slovaca Volume 53, Issue 2, Pages 81 - 902021.

Chang, Ruihong, Neubauer, Franz, Liu, Yongjiang, Liu Y., Genser, Johann, Yuan, Sihua, Huang, Qianwen, Li, Weimin, Yu, Shengyao, 2022: Protolith and metamorphic age of the Sieggraben Eclogites: Implications for the Permian to Cretaceous Wilson cycle in the Austroalpine unit. LithosOpen AccessVolume 434-43515 December 2022 Article number 106923.

Németh, Zoltán, Maglay, Juraj, Petro, Ľubomír, Stercz, Marián, Grega, Daniel, Pelech, Ondrej, Gaál, Ľudovít, 2023: Neo-Alpine uplift and subsidence zones in the Western Carpathians: Product of kinematic activity on Cenozoic AnD3 (NW-SE and NE-SW) and AnD4 (E-W – subequatorial and N-S – submeridian) regional faults. Mineralia SlovacaVolume 55, Issue 2, Pages 103 - 116.

Plašienka, Dušan, Bučová, Jana, Šimonová, Viera, 2023: Reply to the comment on “variable structural styles and tectonic evolution of an ancient backstop boundary: the Pieniny Klippen Belt of the Western Carpathians” by Pelech et al. (this issue). International Journal of Earth SciencesVolume 112, Issue 4, Pages 1323 - 1329.

Broska, Igor, Petrík, Igor, Keewook, Majka, Jarosław, Barnes, Christopher J., Vojtko, Rastislav, Madarás, Ján, Kurylo, Sergii, Kubiš, Michal, 2024: Chemical GeologyVolume 64820 March 2024 Article number 121959

2

Putiš, M., Li, X.-H., Yang, Y.-H., Li, Q.-L., Nemec, O., Ling, X., Koller, F., Balen, D., 2018: Permian pyroxenite dykes in harzburgite with signatures of the mantle, subduction channel and accretionary wedge evolution (Austroalpine Unit, Eastern Alps). Lithos 314–315, 165–186.

In: [o1] Hauke, M., Froitzheim, N., Nagel, T.J., Sprung, P., Münker, C., 2019: Two high-pressure metamorphic events, Variscan and Alpine, dated by Lu–Hf in an eclogite complex of the Austroalpine nappes (Schobergruppe, Austria). International Journal of Earth Sciences 108(4), 1317-1331.

Chang, Ruihong, Neubauer, Franz, Liu, Yongjiang, Genser, Johann, Jin, Wei, Yuan, Sihua, Guan, Qingbin, Huang, Qianwen, Li, Weimin, 2020: Subduction of a rifted passive continental margin: the Pohorje case of Eastern Alps–constraints from geochronology and geochemistry. Swiss Journal of GeosciencesOpen AccessVolume 113, Issue 11 December 2020 Article number 14.

Huang, Qianwen, Huang Q., Neubauer, Franz, Liu, Yongjiang, Genser, Johann, Guan, Qingbin, Chang, Ruihong, Yuan, Sihua, Yu, Shengyao, 2022: Permian-Triassic granites of the Schladming complex (Austroalpine basement): Implications for subduction of the Paleo-Tethys Ocean in the Eastern Alps. Gondwana ResearchVolume 109, Pages 205 - 224.

Chang, Ruihong, Neubauer, Franz, Liu, Yongjiang, Liu Y., Genser, Johann, Yuan, Sihua, Huang, Qianwen, Li, Weimin, Yu, Shengyao, 2022: Protolith and metamorphic age of the Sieggraben Eclogites: Implications for the Permian to Cretaceous Wilson cycle in the Austroalpine unit. LithosOpen AccessVolume 434-43515 December 2022 Article number 106923.

Neubauer, Franz, Chang, Ruihong, Dong, Yunpeng, Genser, Johann, Liu, Yongjiang, 2024: Unravelling the history of mountain belts through U–Pb and Lu–Hf dating of zircon and 40Ar/39Ar dating of detrital white mica: a case study from the Eastern Alps. Isotopes in Environmental and Health StudiesOpen Access2024.

3

Putiš M., Koppa M., Snárska B., Koller F., Uher P., 2012: The blueschist-associated perovskite–andradite-bearing serpentinized harzburgite from Dobšiná (the Meliata Unit), Slovakia. Journal of Geosciences, 57, 221–240.

In: Shen, Ting-ting, Wu, Fu-yuan, Zhang, Li-fei, Hermann, Joerg, Li, Xu-ping, Du, Jin-xue, 2016: In-situ U-Pb dating and Nd isotopic analysis of perovskite from a rodingite blackwall associated with UHP serpentinite from southwestern Tianshan, China. Chemical GeologyVolume 431, Pages 67 - 82.

Plašienka, D., 2018: Continuity and Episodicity in the Early Alpine Tectonic Evolution of the Western Carpathians: How Large-Scale Processes Are Expressed by the Orogenic Architecture and Rock Record Data. Tectonics, Vol. 37, No. 7, 2018 ; s. 2029-2079.

Schmitt, Alison C., Tokuda, Makoto, Yoshiasa, Akira, Nishiyama, Tadao, 2019: Titanian andradite in the Nomo rodingite: Chemistry, crystallography, and reaction relations. Journal of Mineralogical and Petrological SciencesOpen AccessVolume 114, Issue 3, Pages 111 - 121.

Villaseñor, Gabriel, Catlos, Elizabeth J., Broska, Igor, Kohút, Milan, Hraško, Ľubomír, Aguilera, Kimberly, Etzel, Thomas M., Kyle, J. Richard, Stockli, Daniel F., 2021: Evidence for widespread mid-Permian magmatic activity related to rifting following the Variscan orogeny (Western Carpathians). LithosOpen AccessVolume 390-391June 2021 Article number 106083.

Potočný, Tomáš, Jeřábek, Petr, Plašienka, Dušan, 2023: Subduction–exhumation cycle recorded by calcite deformation microstructures: blueschist-facies metacarbonates and kinematic implications for deformation of the Meliata Unit (Western Carpathians). International Journal of Earth SciencesOpen AccessVolume 112, Issue 8, Pages 2097 - 2117.

4

Putis M., Danisik M., Ruzicka P., Schmiedt I., 2014: Constraining exhumation pathway in an accretionary wedge by (U-Th)/He thermochronology-Case study on Meliatic nappes in the Western Carpathians. Journal of Geodynamics, 81 , pp. 80-90.

In: Králiková, Silvia, Vojtko, Rastislav, Hók, Jozef, Fügenschuh, Bernhard, Kováč, Michal, 2016: Low-temperature constraints on the Alpine thermal evolution of the Western Carpathian basement rock complexes. Journal of Structural GeologyVolume 91, Pages 144 - 160.

Plašienka, D., 2018: Continuity and Episodicity in the Early Alpine Tectonic Evolution of the Western Carpathians: How Large-Scale Processes Are Expressed by the Orogenic Architecture and Rock Record Data. Tectonics, Vol. 37, No. 7, 2018 ; s. 2029-2079.

Plašienka, Dušan, Méres, Štefan, Ivan, Peter, Sýkora, Milan, Soták, Ján, Lačný, Alexander, Aubrecht, Roman, Bellová, Simona, Potočný, Tomáš, 2019: Swiss Journal of GeosciencesVolume 112, Issue 1, Pages 55 - 81.

Gawlick, Hans-Jürgen, Missoni, Sigrid, 2019: Middle-Late Jurassic sedimentary mélange formation related to ophiolite obduction in the Alpine-Carpathian-Dinaridic Mountain Range. Gondwana ResearchVolume 74, Pages 144 - 172.

Potočný, Tomáš, Jeřábek, Petr, Plašienka, Dušan, 2023: Subduction–exhumation cycle recorded by calcite deformation microstructures: blueschist-facies metacarbonates and kinematic implications for deformation of the Meliata Unit (Western Carpathians). International Journal of Earth SciencesOpen AccessVolume 112, Issue 8, Pages 2097 - 2117.

Butek, Juraj, Dufourcau, Damien, Duchene, Stéphanie, Laurent, Oscar, Grégoire, Michel, Spišiak, Ján, 2023: A petrochronological study of Fe-Ti oxides in rodingites of the Western Carpathians, Slovakia. LithosOpen AccessVolume 460-461.

5

Putiš M., Ivan P., Kohut M., Spisiak J., Siman P., Radvanec M., Uher P., Sergeev, S., Larionov A., Meres S., Demko R., Ondrejka M., 2009: Meta-igneous rocks of the West-Carpathian basement, Slovakia: Indicators of Early Paleozoic extension and shortening events. Bulletin de la Societe Geologique de France, 180 (6), 461-471.

In: [o1] 2020 - Burda, J. - Klötzli, U. - Woskowicz-Ślęzak, B. - Li, Q.-L. - Liu, Y., - In: Gondwana Research, Vol. 87, November, 2020 ; s. 138-161.

Golonka, Jan, 2020: Late Devonian paleogeography in the framework of global plate tectonics. Global and Planetary ChangeVolume 186March 2020 Article number 103129.

Burda, Jolanta, Klötzli, Urs, Majka, Jarosław, Chew, David, Chew D., Li, Qiu-Li, Liu, Yu, Gawęda, Aleksandra, Wiedenbeck, Michael, 2021: Tracing proto-Rheic - Qaidam Ocean vestiges into the Western Tatra Mountains and implications for the Palaeozoic palaeogeography of Central Europe. Gondwana ResearchVolume 91, Pages 188 - 204.

Guan, Qingbin, Liu, Yongjiang, Neubauer, Franz, Li, Sanzhong, Genser, Johann, Yuan, Sihua, Chang, Ruihong, Huang, Qianwen, Fang, Qiang, 2021: Opening of the West Paleo-Tethys Ocean: New insights from earliest Devonian meta-mafic rocks in the Saualpe crystalline basement, Eastern Alps. Gondwana ResearchVolume 97, Pages 121 - 137.

Wojtulek, Piotr Marian, Schulz, Bernhard, Klemd, Reiner, Gil, Grzegorz, Dajek, Michał, Delura, Katarzyna, 2022: The Central-Sudetic ophiolites – Remnants of the SSZ-type Devonian oceanic lithosphere in the European part of the Variscan Orogen. Gondwana ResearchOpen AccessVolume 105, Pages 343 - 365.

Reiser, Martin K., Schuster, Ralf, Iglseder, Christoph, Gallhofer, Daniela, Nievoll, Josef, 2024: Geochronology, geochemistry, and geological evolution of the Troiseck-Floning and Rosskogel nappes (Eastern Alps): unraveling parallels between the Eastern Alps and Western Carpathians. Swiss Journal of GeosciencesOpen AccessVolume 117, Issue 1December 2024 Article number 11.

VI.5 - Participation in conducting (leading) the most important research projects or art projects over the last six years
1

APVV-19-0065 (2020-2023, hlavný riešiteľ) "Petrologicko-geochronologický záznam riftogenézy a kôrovoplášťovej recyklácie v orogénnej prizme Západných Karpát/ Petrological-geochronological record of riftogenesis and crust-mantle recycling in the Western Carpathians orogenic wedge". Predmetom výskumu sú špecifické skupiny kôrových a plášťových hornín a ich minerálov ako indikátorov riftogénnych zón a to aj napriek tomu, že často majú znaky mladšieho tektono-termálneho prepracovania v dôsledku ich začlenenia do orogenetických zón. Používame mineralogicko-petrologické (EPMA, micro-Raman, LA-ICP-MS, XRF, ICP-MS), izotopovo-geochemické (LA-MC-ICP-MS, TIMS) a geochronologické (U-Pb SIMS, LA-ICP-MS, Ar-Ar, K-Ar) metódy na určenie chemizmu minerálov a hornín, vrátane vybraných rádiogénnych izotopov (U-Pb, Pb-Pb, Sm-Nd, Rb-Sr, Zr-Hf, Re-Os) na určenie ich veku a genézy. / APVV-19-0065 (2020-2023, principal investigator) "Petrological-geochronological record of riftogenesis and crust-mantle recycling in the Western Carpathians orogenic wedge". Specific groups of rocks and their minerals are searched as indicators of the riftogenic zones, despite they often have signatures of superimposed tectono-thermal overprinting from their incorporation into the orogenic zones. Mineralogical, petrological (EPMA, micro-Raman, LA-ICP-MS, XRF, ICP-MS), isotopic-geochemical (LA-MC-ICP-MS, TIMS) and geochronological (U-Pb SIMS, LA-ICP-MS, Ar-Ar, K-Ar) methods will be applied to establish the chemical composition of minerals and rocks, their isotopic characteristics (U-Pb, Pb-Pb, Sm-Nd, Rb-Sr, Zr-Hf, Re-Os) and the ages. 

2

2016YFE0203000 (2017-2020; riešiteľ/principal investigator Prof. Dr. Qiu-Li Li; zodpovedný spoluriešiteľ za SR/principal co-investigator for Slovakia: Prof. Dr. Marián Putiš) "Cooperative research of microbeam analytical techniques of rock and minerals". Funded by “Strategic international cooperation for technology Innovation” of National Key Research and Development Plan. The China Ministry of Science and Technology Project between the Institute of Geology and Geophysics of the Chinese Academy of Sciences in Beijing and Comenius University in Bratislava, Slovakia. Projekt sa zaoberá vývojom metodiky a izotopovým datovaním zirkónu a rutilu metódou U/Pb SIMS, nano-SIMS a LA-ICP-MS v Ústave geológie a geofyziky Čínskej akadémie vied v Pekingu a na univerzite vo Wuhane. Datoval sa protolit a metamorfný vek eklogitov z veporika Západných Karpát a austroalpinika Východných Álp (Putiš et al., 2017, 2018, 2019). Aplikáciou nano-SIMS sa nám podarilo datovať aj zirkón veľmi malých rozmerov z permských metavulkanitov a metavulkanitov (Putiš et al., 2016; Ondrejka et al., 2018), ako aj veľmi jemnozrnnej (do 100 µm) detritickej frakcie zirkónu z aniskeho zatiaľ neznámeho magmatického zdroja zistenej v hlbokovodných oceánskych sedimentoch meliatika (Putiš et al., 2019). Novovyvinutá metodika na datovanie rutilu sa aplikovala úspešne aj pri datovaní metamorfného rutilu z eklogitov Východných Álp, ako aj z metamorfitov veporika a meliatika Západných Karpát (zatiaľ nepublikované údaje). Ide o prvé datovania rutilu v týchto regionóch, ktoré zároveň patria k prvým na svete. Project deals with the development of methodics for isotopic dating of zircon, rutile and other phases by U-Pb SIMS, nano-SIMS and LA-ICP-MS at the Institute of Geology and Geophysics of the Chinese Academy of Sciences in Beijing and Wuhan University. We dated protolith and metamorphic ages of eclogites from the Veporic Superunit of the Western Carpathians and the Upper Austroalpine Unit of the Eastern Alps (Putiš et al., 2017, 2018, 2019). Application of nano-SIMS was successful at the dating of very fine-grained zircon (<100 µm) from volcanics and metavolcanics (Putiš et al., 2016; Ondrejka et al., 2018). This method also revealed an unknown Anisian magmatic zircon source the detrital zircon of which appeared in deep-water oceanic Meliatic sediments (Putiš et al., 2019). Newly-developed methodics for rutile dating was successfully aplied at the dating of metamorphic rutile from Veporicum and Meliaticum of the Western Carpathians, as well as rutile from eclogites of the Eastern Alps (Sieggraben and Kreuzeck ares; unpublished data). These are the first rutile datings in these regions, which provide the first rutile datings in the world.

3

VEGA-1/0151/19 (2019-2021, riešiteľ/principal investigator) “Petrológia a geochronológia kôrových a plášťových dajkových systémov v kriedovej akrečnej prizme Západných Karpát a východného okraja austroalpinik/Petrology and geochronology of crustal and mantle dyke systems in Cretaceous accretionary wedge of the Western Carpathians and eastern Austroalpine margin”. Kriedová akrečná prizma orogénu Vnútorných Západných Karpát a austroalpinika Álp obsahuje dajky kôrových a plášťových hornín. Ich magmatický vývoj je indikátorom permsko-triasovej, alebo jursko-kriedovej extenzie a otvárania oceánov neotetýdy a atlantickej tetýdy. Ich metamorfóza odráža paleotektonické prostredie, ale aj geodynamický vývoj Karpát a Álp po uzavretí týchto oceánov. Minerálne zloženie (EMPA, LA-ICP-MS) a celohorninový chemizmus (ICP-MS) budú využité na definíciu ich magmatického pôvodu pôvodu. Izotopické zloženie (Rb/Sr, Lu/Hf, Sm/Nd, U/Pb) poskytne informáciu o ich plášťovom či kôrovom zdroji. Izotopické datovanie (U-Pb SIMS, nano-SIMS, LA-MC-ICP-MS, K-Ar) umožní vytvorenie geodynamického modelu vývoja dajkových systémov v akrečných komplexoch. P-T podmienky magmatickej a metamorfnej etapy budú modelované najnovšími termodynamickými softvérmi (Melts, Perple_X, Thermocalc). Posúdi sa ich ekonomický potenciál. Využijeme možnosti medzinárodnej spolupráce pre izotopovú geochronológiu. Cretaceous accretionary wedges of the Western Carpathians and the Austro-Alpine unit of the eastern Alps contains dykes of the crustal and mantle rocks. These rocks are significant indicator of Permian-Triassic or Jurassic-Cretaceous extension and the opening of the Neotethys and Atlantic Tethys respectively. They are of the key importance for the reconstruction of palaeotectonic and geodynamic evolution of the Carpathians and Alps. The mineral rock composition (EPMA, LA-ICP-MS) and their whole-rock chemistry (ICP-MS) will be used for definition of their palaeotectonic origin. The isotopic study (Rb/Sr, Lu/Hf, Sm/Nd. U/Pb) of the rocks and minerals, and their isotopic dating (U-Pb SIMS, nano-SIMS, LA-MC-ICP-MS, K-Ar) will enhance creation of geodynamic evolution model of mentioned accretionary complexes. Their occasional economic potential can be estimated. We will utilize possibilities of our broad international co-operation particularly in isotope geochronology.

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APVV-15-0050 (2016-2019, riešiteľ/principal investigator) "Modely interakcie kôrových a plášťových hornín s fluidami v akrečných prizmách Západných Karpát, východných Álp a severného Turecka; korelácia P-T-X-t parametrov/Interaction models of crustal and mantle rocks with fluids in accretionary wedges of the Western Carpathians, eastern Alps and northern Turkey; correlation of P-T-X-t parameters". Projekt sa zaoberal fluidno-alteračnými procesmi v horninách kôrovo-plášťovej prizmy v alpidnom orogéne Západných Karpát, východných Álp a severnej časti Turecka. Zamerali sme sa na viaceré typy fluidno-horninových interakčných (alteračných) zón, ktorých genéza bola predmetom výskumu: i) v subdukčno-akrečných komplexoch modrých bridlíc, eklogitov a ultramafitov, ii) v spodnokôrových ortorulách, granitoch, metabazitoch a metaultramafitoch, iii) v skarnoch, ako aj iv) v lamprofýroch. Podstatou týchto procesov je interakcia hornín s fluidami v rôznych hĺbkových úrovniach litosféry. Použili sme mikroskopické, elektrónovo-optické, rtg-difraktometrické a spektrometrické metódy na zistenie chemizmu minerálov a hornín alteračných zón. Určil sa model a vek interakcie ultramafitu s fluidom na perovskite ako produktu tejto interakcie. Project investigated the fluid-driven alteration processes in crust-mantle prism rocks exposed in Alpidic orogene of the Western Carpathians, Eastern Alps and northern Turkey. We focused on fluid-rock interaction zones, the genesis of which had not yet been investigated: i) in subduction-accretionary wedges blueschists, eclogites and metaultramafics, ii) in lower crust orthogneisses, granites, metabasites and metaultramafics, iii) in skarns and iv) in lamprophyres and mantle xenoliths. These processes represent a fluid-rock interaction at the different lithosphere levels. Modern microscopic, electron-optic, rtg diffraction and spectroscopic methods were used for determination of the alteration zones mineral and rock chemical compositions. Thermodynamic modelling and geothermobarometry were applied for the estimation of the alteration reactions P-T-X conditions. Fluid-ultramafic rock interaction model was proposed, and the age of this process was established by the U-Pb SIMS and LA-ICP-MS dating of perovskite as a product of this interaction.

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VEGA 1/0028/24 (2024-2026, riešiteľ/principal investigator) "Kôrovo-plášťové horninové komplexy variských geosuturných zón západokarpatského fundamentu petrologicko-geochemické a geochronologické indikátory periférnych paleozoických bazénov Gondwany, paleogeografická korelácia/ Crust-mantle rock complexes from the Variscan geosuture zones of the West-Carpathian basement petrological-geochemical and geochronological indicators of peri-Gondwanan Paleozoic basins, paleogeographic correlation". Predmetom výskumu sú kôrovo-plášťové horninové komplexy geosuturných zón staropaleozoického fundamentu Západných Karpát, ktoré sú kľúčom k identifikácii proto- a paleotethýdnych oceánskych bazénov pri severnom okraji Gondwany od kambria až do spodného karbónu. Našim cieľom je definovať relikty oceánskej kôry, ktoré sa stali po uzatvorení bazénov súčasťou variskej stavby kryštalinického podložia tatrika, veporika a gemerika. Predpokladaným indikátorom sú komplexy metabazitov s eklogitmi a peridotitmi. Rekonštruovaný evolučný model vývoja horninových komplexov tethýdnych bazénov včlenených do fundamentu Západných Karpát bude korelovaný v rámci paleogeografie terranov európskych variscíd. The object of study are the crust-mantle rock complexes in geosuture zones of the West-Carpathian Paleozoic basement play a key role in determination of Proto- and Paleotethyan oceanic basins at the northern Godwana margin from Cambrian to Mississippian. The project goal is to define the ocean crust relics within the Variscan metamorphic complexes of the Tatric, Veporic and Gemeric basement. The inferred indicators are suites of metamafic rocks, including eclogites and peridotites.Reconstructed evolutionary model of the tethyan basins rock complexe in the West-Carpathian basement will be correlated in the framework of terrane paleogeography of the European Variscides.

VII. - Overview of organizational experience related to higher education and research/artistic/other activities

VII.a - Activity, position VII.b - Name of the institution, board VII.c - Duration
koordinátor CEEPUS III/CEEPUS III coordinator CEEPUS III Sieť/Network RS-0038 Earth-Science Studies in Central and South-Eastern Europe 1996-2021
člen komisie/Member of Commission Stála komisia pri MŠVaŠ pre obhajoby doktorských dizertačných prác (DrSc.) pre vedy o Zemi a environmentálne vedy/Commission for DSc. theses defend in Earth and Environmental Sciences 2002-2022
člen Vedeckej rady/Member of Scientific Board Univerzita Komenského, Prírodovedecká fakulta, Vedecká rada/Comenius University, Faculty of Natural Sciences, Scientific Board 2019-2023
člen/Member Slovenská geologická spoločnosť/Slovak Geological Society 1974-
člen/Member Slovenská mineralogická spoločnosť/Mineralogical Society of Slovakia 2011-

VIII. - Overview of international mobilities and visits oriented on education and research/artistic/other activities in the given field of study

VIII.a - Name of the institution VIII.b - Address of the institution VIII.c - Duration (indicate the duration of stay) VIII.d - Mobility scheme, employment contract, other (describe)
Dánska technická univerzita, Ústav geológie a geotechniky, Kodaň-Lyngby, Dánsko/ Technical University of Denmark, Institute of Geology and Geotechnical Engineering Anker Engelunds Vej 1, Building 101A, 2800 Kgs. Lyngby Sept. 1999-Feb. 2000 hosťujúci profesor na kontrakt/contracted guest professor
Univerzita v Grazi, Rakúsko/ University of Graz, Austria Universitätsplatz 3, 8010 Graz, Rakúsko/ Austria mesačné pobyty /monthly stays 1992-2012 CEEPUS
Univerzita v Tübingene, Nemecko/ University of Tübingen, Germany Geschwister-Scholl-Platz, 72074 Tübingen mesačné pobyty/ monthly stays 2004-2006, DAAD Project
Univerzita Aarhus/ Aarhus University Høegh-Guldbergs Gade 2, 8000 Aarhus, Dánsko/ Denmark mesačné pobyty/ monthly stays 1999, 2006-2008 výskumné pobyty - Petrotektonika/researcher in Petrotectonics

IX. - Other relevant facts

Date of last update
2025-01-28