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Staff list

RNDr. Tomáš Matys Grygar, CSc.

Phone: 311236949
Department: Laboratory of Environmental Geochemical Analysis (LEGA)
List of publications: asep/uach-t/0102654
Research insterest
geochemistry of sediments, inorganic chemostratigraphy


 Number  Title  Years
20-06728S Enter of Cd, Hg, and U from the pollution hotspots in floodplains to food web 2020-2022 
19-01768S Separation of geochemical signals in sediments:application of advanced statistical methods on large geochemical datasets 2019-2021 


BÍLKOVÁ, Gabriela, ELZNICOVÁ, J., WILDOVÁ, E., HOŠEK, Michal, MATYS GRYGAR, Tomáš. Deciphering Factors Controlling Manganese Concentrations in the Leaves of Silver Birch (Betula pendula Roth) in Relation to Recent Acidification of Mountain Forest Soils. Polish Journal of Environmental Studies. 2023, 32(1)
SEDLÁČEK, J., BÁBEK, O., MATYS GRYGAR, Tomáš, LENĎÁKOVÁ, Z., PACINA, J., ŠTOJDL, J., HOŠEK, Michal, ELZNICOVÁ, J. A closer look at sedimentation processes in two dam reservoirs. Journal of Hydrology. 2022, 605(FEB)), 127397
ELZNICOVÁ, J., KISS, T., SIPOS, G., FAMĚRA, Martin, ŠTOJDL, J., VÁCHOVÁ, V., MATYS GRYGAR, Tomáš. A central European alluvial river under anthropogenic pressure: The Ohře River, Czechia. Catena. 2021, 201(JUN)), 105218
FAMĚRA, Martin, MATYS GRYGAR, Tomáš, CISZEWSKI, D., CZAJKA, A., ÁLVAREZ-VÁZQUEZ, M.A., HRON, K., FAČEVICOVÁ, K., HÝLOVÁ, V., TŮMOVÁ, Štěpánka, SVĚTLÍK, Ivo, ZIMOVÁ, K., DVOŘÁKOVÁ, K., SZYPUŁA, B., HOŠEK, Michal, HENYCH, Jiří. Anthropogenic records in a fluvial depositional system: The Odra River along The Czech-Polish border. Anthropocene. 2021, 34(JUN)), 100286
HRON, K., COENDERS, G., FILZMOSER, P., PALAREA-ALBALADEJO, J., FAMĚRA, Martin, MATYS GRYGAR, Tomáš. Analysing Pairwise Logratios Revisited. Mathematical Geosciences. 2021, 53(7), 1643-1666
MACH, K., RAPPRICH, V., FAMĚRA, Martin, HAVELCOVÁ, Martina, MATYS GRYGAR, Tomáš, NOVOTNÝ, T., ŘEHOŘ, M., ERBAN KOCHERGINA, Y. V. Crandallite-rich beds of the Libkovice member, most basin, Czech Republic: Climatic extremes or paleogeographic changes at the onset of the Miocene Climatic Optimum? Geologica Acta. 2021, 19(JUL)), 11
MATYS GRYGAR, Tomáš, MACH, K., KOUBOVÁ, M., MARTINEZ, M., HRON, K., FAČEVICOVÁ, K. Beginning of the Miocene Climatic Optimum in Central Europe in sediment archive of the Most Basin, Czech Republic. Bulletin of Geosciences. 2021, 96(1), 61-81
TALSKÁ, R., HRON, K., MATYS GRYGAR, Tomáš. Compositional Scalar-on-Function Regression with Application to Sediment Particle Size Distributions. Mathematical Geosciences. 2021, 53(7), 1667-1695
MATYS GRYGAR, Tomáš. Comments on “Potential phytomanagement of military polluted sites and biomass production using biofuel crop miscanthus x giganteus” – Pidlisnyuk et al. (2019). Environmental Pollution. 2020, 261(JUN)), 113038
MATYS GRYGAR, Tomáš, MACH, K., HRON, K., FAČEVICOVÁ, K., MARTINEZ, M., ZEEDEN, C., SCHNABL, Petr. Lithological correction of chemical weathering proxies based on K, Rb, and Mg contents for isolation of orbital signals in clastic sedimentary archives. Sedimentary geology. 2020, 406(AUG)), 105717
MATYS GRYGAR, Tomáš, MACH, K., MARTINEZ, M. Checklist for the use of potassium concentrations in siliciclastic sediments as paleoenvironmental archives. Sedimentary geology. 2019, 382(MAR), 75-84
TŮMOVÁ, Štěpánka, HRUBEŠOVÁ, D., VORM, Petr, HOŠEK, Michal, MATYS GRYGAR, Tomáš. Common flaws in the analysis of river sediments polluted by risk elements and how to avoid them: case study in the Ploučnice River system, Czech Republic. Journal of Soils and Sediments. 2019, 19(4), 2020-2033
FAMĚRA, Martin, MATYS GRYGAR, Tomáš, ELZNICOVÁ, J., GRISON, Hana. Geochemical normalization of magnetic susceptibility for investigation of floodplain sediments. Environmental Earth Sciences. 2018, 77(5)), 189
HOŠEK, Michal, MATYS GRYGAR, Tomáš, ELZNICOVÁ, J., FAMĚRA, Martin, POPELKA, J., MATKOVIČ, J., KISS, T. Geochemical mapping in polluted floodplains using in situ X-ray fluorescence analysis, geophysical imaging, and statistics: Surprising complexity of floodplain pollution hotspot. Catena. 2018, 171(DEC), 632-644
MAJEROVÁ, L., BÁBEK, O., NAVRÁTIL, Tomáš, NOVÁKOVÁ, Tereza, ŠTOJDL, J., ELZNICOVÁ, J., HRON, K., MATYS GRYGAR, Tomáš. Dam reservoirs as an efficient trap for historical pollution: the passage of Hg and Pb through the Ohře River, Czech Republic. Environmental Earth Sciences. 2018, 77(August 2018)), 574
MATYS GRYGAR, Tomáš, HOŠEK, Michal, PACINA, J., ŠTOJDL, J., BÁBEK, O., SEDLÁČEK, J., HRON, K., TALSKÁ, R., KŘÍŽENECKÁ, S., TOLASZOVÁ, J. Changes in the geochemistry of fluvial sediments after dam construction (the Chrudimka River, the Czech Republic). Applied Geochemistry. 2018, 98(NOV), 94-108
HOŠEK, J., POKORNÝ, P., PRACH, J., LISÁ, Lenka, MATYS GRYGAR, Tomáš, KNÉSL, I., TRUBAČ, J. Late Glacial erosion and pedogenesis dynamics: Evidence from high-resolution lacustrine archives and paleosols in south Bohemia (Czech Republic). Catena. 2017, 150(March 2017), 261-278
MATYS GRYGAR, Tomáš, HOŠEK, Michal, MACH, K., SCHNABL, Petr, MARTINEZ, M. Climatic instability before the Miocene Climatic Optimum reflected in a Central European lacustrine record from the Most Basin in the Czech Republic. Palaeogeography, Palaeoclimatology, Palaeoecology. 2017, 485(NOV), 930-945
MATYS GRYGAR, Tomáš, MACH, K., HOŠEK, Michal, SCHNABL, Petr, MARTINEZ, M., KOUBOVÁ, M. Early stages of clastic deposition in the Most Basin (Ohre Rift, Czech Republic, Early Miocene): timing and possible controls. Bulletin of Geosciences. 2017, 92(3), 337-355
BÁBEK, O., KUMPAN, T., KALVODA, J., MATYS GRYGAR, Tomáš. Devonian/Carboniferous boundary glacioeustatic fluctuations in a platform-to-basin direction: A geochemical approach of sequence stratigraphy in pelagic settings. Sedimentary geology. 2016, 337(MAY), 81-99
CISZEWSKI, D., MATYS GRYGAR, Tomáš. A Review of Flood-Related Storage and Remobilization of Heavy Metal Pollutants in River Systems. Water, Air, and Soil Pollution. 2016, 227(7), 227-239
HÁJKOVÁ, Petra, PAŘIL, P., PETR, L., CHATTOVÁ, B., MATYS GRYGAR, Tomáš, HEIRI, O. A first chironomid-based summer temperature reconstruction (13-5 ka BP) around 49°N in inland Europe compared with local lake development. Quaternary Science Reviews. 2016, 141(JUN 01), 94-111
MATYS GRYGAR, Tomáš, ELZNICOVÁ, J., TŮMOVÁ, Štěpánka, FAMĚRA, Martin, BALOGH, M., KISS, T. Floodplain architecture of an actively meandering river (the Ploucnice River, the Czech Republic) as revealed by the distribution of pollution and electrical resistivity tomography. Geomorphology. 2016, 254(FEB), 41-56
MATYS GRYGAR, Tomáš. Letter to Editor re Pavlovic et al. (2015). Science of the Total Environment. 2016, 547(MAR), 482-483
MATYSOVÁ, Petra, GÖTZE, J., LEICHMANN, J., ŠKODA, R., STRNAD, L., DRAHOTA, P., MATYS GRYGAR, Tomáš. Cathodoluminescence and LA-ICP-MS chemistry of silicified wood enclosing wakefieldite - REEs and V migration during complex diagenetic evolution. European Journal of Mineralogy. 2016, 28(5), 869-887
ŠTENGL, Václav, HENYCH, Jiří, MATYS GRYGAR, Tomáš, PÉREZ, Raul. Chemical degradation of trimethyl phosphate as surrogate for organo-phosporus pesticides on nanostructured metal oxides. Materials Research Bulletin. 2015, 61(JAN), 259-269
BÁBEK, O., MATYS GRYGAR, Tomáš, FAMĚRA, M., HRON, K., NOVÁKOVÁ, Tereza, SEDLÁČEK, J. Geochemical background in polluted river sediments: How to separate the effects of sediment provenance and grain size with statistical rigour? Catena. 2015, 135(DEC), 240-253
CTIBOR, Pavel, KOTLAN, Jiří, PALA, Zdeněk, SEDLÁČEK, J., HÁJKOVÁ, Zuzana, MATYS GRYGAR, Tomáš. Calcium titanate (CaTiO3) dielectrics prepared by plasma spray and post-deposition thermal treatment. Materials Research Bulletin. 2015, 72(December), 123-132
HENYCH, Jiří, ŠTENGL, Václav, SLUŠNÁ, Michaela, MATYS GRYGAR, Tomáš, JANOŠ, P., KURÁŇ, P., ŠŤASTNÝ, M. Degradation of organophosphorus pesticide parathion methyl on nanostructured titania-iron mixed oxides. Applied Surface Science. 2015, 344(JUL), 9-16
HOŠEK, J., HAMBACH, U., LISÁ, Lenka, MATYS GRYGAR, Tomáš, HORÁČEK, I., MESZNER, S., KNÉSL, I. An integrated rock-magnetic and geochemical approach to loess/paleosol sequences from Bohemia and Moravia (Czech Republic): Implications for the Upper Pleistocene paleoenvironment in central Europe. Palaeogeography, Palaeoclimatology, Palaeoecology. 2015, 418(15 January), 344-358