{"id":2359,"date":"2021-08-12T10:46:28","date_gmt":"2021-08-12T08:46:28","guid":{"rendered":"http:\/\/kmplg.sk\/?page_id=2359"},"modified":"2023-01-30T09:24:19","modified_gmt":"2023-01-30T08:24:19","slug":"assoc-prof-peter-kodera-phd","status":"publish","type":"page","link":"https:\/\/kmplg.sk\/?page_id=2359&lang=en","title":{"rendered":"Prof. Peter Kod\u011bra, PhD."},"content":{"rendered":"\n<div class=\"wp-block-image is-style-default\"><figure class=\"alignleft size-large\"><img loading=\"lazy\" width=\"257\" height=\"340\" src=\"http:\/\/kmplg.sk\/wp-content\/uploads\/2021\/08\/Kodera-Foto.jpg\" alt=\"\" class=\"wp-image-2357\" srcset=\"https:\/\/kmplg.sk\/wp-content\/uploads\/2021\/08\/Kodera-Foto.jpg 257w, https:\/\/kmplg.sk\/wp-content\/uploads\/2021\/08\/Kodera-Foto-227x300.jpg 227w, https:\/\/kmplg.sk\/wp-content\/uploads\/2021\/08\/Kodera-Foto-45x60.jpg 45w\" sizes=\"(max-width: 257px) 100vw, 257px\" \/><\/figure><\/div>\n\n\n\n<div class=\"wp-block-group\"><div class=\"wp-block-group__inner-container\">\n<div class=\"wp-block-columns\">\n<div class=\"wp-block-column\" style=\"flex-basis:100%\">\n<figure class=\"wp-block-table is-style-stripes\"><table class=\"has-background has-fixed-layout\" style=\"background-color:#fcf0ef\"><tbody><tr><td><strong>Position<\/strong>:<\/td><td>professor<\/td><\/tr><tr><td><strong>Room<\/strong>:<\/td><td>G-423<\/td><\/tr><tr><td><strong>Phone<\/strong>:<\/td><td>+421 2 9014 9<strong>279<\/strong><\/td><\/tr><tr><td><strong>e-mail:<\/strong><\/td><td>peter.kodera@uniba.sk<\/td><\/tr><tr><td><strong>Publications<\/strong><\/td><td><a href=\"http:\/\/alis.uniba.sk:9909\/search\/query?match_1=PHRASE&amp;field_1=a&amp;term_1=Kod%C4%9Bra,+Peter+1969-+UKOPRGLG&amp;sort=relevance&amp;theme=EPC\">list of publications<\/a><\/td><\/tr><\/tbody><\/table><figcaption><span class=\"has-inline-color has-vivid-red-color\">Oddelenie lo\u017eiskovej geol\u00f3gie<\/span><\/figcaption><\/figure>\n<\/div>\n<\/div>\n\n\n\n<p><\/p>\n\n\n\n<p><\/p>\n<\/div><\/div>\n\n\n\n<div class=\"wp-block-columns\">\n<div class=\"wp-block-column\" style=\"flex-basis:100%\">\n<div class=\"wp-block-buttons\">\n<div class=\"wp-block-button\"><a class=\"wp-block-button__link has-vivid-red-color has-very-light-gray-to-cyan-bluish-gray-gradient-background has-text-color has-background\" href=\"https:\/\/www.researchgate.net\/profile\/Peter-Kodera\" style=\"border-radius:20px\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" width=\"20\" height=\"19\" class=\"wp-image-1394\" style=\"width: 20px;\" src=\"http:\/\/kmplg.sk\/wp-content\/uploads\/2021\/04\/linkedinvsresearchgate_v2-1.png\" alt=\"\"> <span class=\"has-inline-color has-vivid-red-color\">ResearchGate<\/span><\/a><\/div>\n\n\n\n<div class=\"wp-block-button\"><a class=\"wp-block-button__link has-vivid-red-color has-very-light-gray-to-cyan-bluish-gray-gradient-background has-text-color has-background\" href=\"http:\/\/orcid.org\/0000-0002-9086-4245\" target=\"_blank\" rel=\"noreferrer noopener\"><img loading=\"lazy\" width=\"20\" height=\"20\" class=\"wp-image-1391\" style=\"width: 20px;\" src=\"http:\/\/kmplg.sk\/wp-content\/uploads\/2021\/04\/1200px-ORCID_iD-1.png\" alt=\"\"><span class=\"has-inline-color has-vivid-red-color\">ORCID<\/span><span class=\"has-inline-color has-white-color\"><\/span><\/a><\/div>\n\n\n\n<div class=\"wp-block-button\"><a class=\"wp-block-button__link has-very-light-gray-to-cyan-bluish-gray-gradient-background has-background\" href=\"http:\/\/kmplg.sk\/?page_id=85\" target=\"_blank\" rel=\"noreferrer noopener\"><span class=\"has-inline-color has-vivid-red-color\">Topics of Thesis<\/span><\/a><\/div>\n<\/div>\n<\/div>\n<\/div>\n\n\n\n<h2>Scientific interests<\/h2>\n\n\n\n<ul><li>Geochemistry, genesis and modeling of mineral deposits<\/li><li>Prognosis of mineral resources<\/li><li>Genesis of gold ore deposits (especially epithermal vein and porphyry)<\/li><li>Genesis of magnesite, bentonite and perlite deposits<\/li><li>Mineralogical methods of research (EMPA, fluid inclusions, stable isotopes, LA ICPMS, mineral geothermometers, Raman spectroscopy)<\/li><\/ul>\n\n\n\n<h2><strong>Pedagogical activities<\/strong><\/h2>\n\n\n\n<p>My teaching activities are mainly focused on the field ore deposits<\/p>\n\n\n\n<p><strong><strong>Bachelor degree:<\/strong><\/strong><\/p>\n\n\n\n<ul><li>Raw Materials<\/li><li>Ore Deposits<\/li><li>Fossil Fuels and Energy Resources<\/li><\/ul>\n\n\n\n<p><strong><strong>Master\u2019s degree<\/strong><\/strong><\/p>\n\n\n\n<ul><li>Ore Deposits of Slovakia<\/li><li>Application of GIS in Economic and Environmental Geology<\/li><li>World Deposits<\/li><li>Hydrothermal Processes and Hydrothermal Alteration<\/li><li>Genetic Mineralogy of Natural Resources<\/li><li>Ore Textures<\/li><li>Actual Trends and Results in the Area of Raw Materials<\/li><li>Field Course in Mineralogy, Economic and Environmental Geology<\/li><\/ul>\n\n\n\n<p><strong><strong>Doctoral degree<\/strong><\/strong><\/p>\n\n\n\n<ul><li>Mineralogical, Geochemical and Other Exploration Methods in Economic Geology<\/li><li>Advanced Methods of Research in Economic Geology<\/li><li>Modelling of Conditions and Processes in Raw Materials Deposits and Environmental Applications<\/li><\/ul>\n\n\n\n<hr class=\"wp-block-separator\"\/>\n\n\n\n<h2>The most significant publications<\/h2>\n\n\n\n<div class=\"wp-block-group\"><div class=\"wp-block-group__inner-container\">\n<ul><li>Kod\u011bra, P., Majzlan, J., Pollok, Kilian, K., Stefan, \u0160imko, F., Scholtzov\u00e1, E., Lupt\u00e1kov\u00e1, J., Cawthorn, G. (2021): <strong>Ferrous hydroxychlorides hibbingite (\u03b3-Fe2(OH)3Cl) and parahibbingite (\u03b2-Fe2(OH)3Cl) as a concealed sink of Cl and H2O in ultrabasic and granitic systems<\/strong>. American Mineralogist DOI: 10.2138\/am-2022-8011<\/li><li>Kod\u011bra, P. (2020): <strong>Lo\u017eisk\u00e1 rudn\u00fdch surov\u00edn a ich gen\u00e9za.<\/strong> 1. vyd., Univerzita Komensk\u00e9ho v Bratislave,&nbsp; 176 s.<\/li><li>Kod\u011bra, P. (2020): <strong>Pr\u00edklady rudn\u00fdch lo\u017e\u00edsk sveta<\/strong>. 1. vyd., Univerzita Komensk\u00e9ho v Bratislave, 86 s.<\/li><li>Rottier, B., Aud\u00e9tat, A. Kod\u011bra, P., Lexa, J. (2020): <strong>Magmatic evolution of the mineralized Stiavnica volcano (Central Slovakia) evidence from thermobarometry, melt inclusions, and sulfide inclusions.<\/strong> Journal of Volcanology and Geothermal Research, 401, 1-23. Impakt faktor 2,617<\/li><li>Rottier, B., Aud\u00e9tat, A., Kod\u011bra, P., Lexa, J. (2020): <strong>Origin and Evolution of Magmas in the Porphyry Au-mineralized Javorie Volcano (Central Slovakia): Evidence from Thermobarometry, Melt Inclusions and Sulfide Inclusions<\/strong>. Journal of Petrology, 60, 2449-2482. Impakt faktor 3,451<\/li><li>Grishina, S., Kod\u011bra, P., Goryainov, S., Oreshonkov, A., Seryotkin Y., \u0160imko, F., Polozov, A.G. (2020): <strong>Application of Raman spectroscopy for identification of rinneite (K3NaFeCl6) in inclusions in minerals<\/strong>. Journal of Raman Spectroscopy, DOI: 10.1002\/jrs.6005. Impakt faktor 2,809<\/li><li>Radkov\u00e1, P., Miku\u0161, T., Bakos, F., Kod\u011bra, P., &#8211; Lupt\u00e1kov\u00e1, J. (2019):<strong> A new type of carbonate-hosted Au mineralization at D\u00fabrava near Rochovce, Western Carpathians<\/strong>. Acta Geologica Slovaca. 11, 103-118<\/li><li>Kod\u011bra, P., Koz\u00e1k, J., Br\u010dekov\u00e1, J., Chovan, M., Lexa, J., J\u00e1no\u0161\u00edk, M., Biro\u0148, A., Uhl\u00edk, P., Bakos, F. (2018): <strong>Distribution and composition of gold in porphyry gold systems: example from the Biely Vrch deposit Slovakia<\/strong>. Mineralium Deposita, 53, 1193-1212. Impakt faktor 3,40.<\/li><li>Kuba\u010d, A., Chovan, M. Kod\u011bra, P., Kyle, R.J., Lexa, J., Vojtko, R. (2018): <strong>Mineralogy of the epithermal precious and base metal deposit Bansk\u00e1 Hodru\u0161a at the Roz\u00e1lia Mine (Slovakia)<\/strong>. Mineralogy and Petrology, 112, 705-731. Impakt faktor 1,573<\/li><li>Grishina, S., Kod\u011bra, P., Uriarte, L. M. , Dubessy, J., Oreshonkov, A., Goryainov, S., \u0160imko, F., Yakovlev, I., Roginskii, E. M. (2018):<strong> Identification of anhydrous CaCl2 and KCaCl3 in natural inclusions by Raman spectroscopy.<\/strong> Chemical Geology, 493, 532-543. Impakt faktor 3,57.<\/li><li>Majzlan, J., Berkh, K., Kiefer, S., Kod\u011bra, P., Fallick, A.E., Chovan, M. Bakos, F., Biro\u0148 A., Ferenc, \u0160., Lexa, J. (2018): <strong>Mineralogy, alteration patterns, geochemistry, and fluid properties of the Ag-Au epithermal deposit Nov\u00e1 Ba\u0148a, Slovakia.<\/strong> Mineralogy and Petrology, 112, 1-23. Impakt faktor 1,573<\/li><li>Kod\u011bra, P., Tak\u00e1cs, \u00c1., Racek, M., \u0160imko, F., Lupt\u00e1kov\u00e1, J., V\u00e1czi, T., Antal, P. (2017) <strong>Javorieite, KFeCl3: a new mineral hosted by salt melt inclusions in porphyry gold systems. <\/strong>European Journal of Mineralogy, 29, 995-1004. Impakt faktor 1,36.<\/li><li>Bilohu\u0161\u010din, V., Uher, P., Kod\u011bra, P., Milovsk\u00e1, S., Miku\u0161, T., Ba\u010d\u00edk, P. (2017): <strong>Evolution of borate minerals from contact metamorphic to hydrothermal stages: Ludwigite-groupminerals and szaib\u00e9lyite from the Vysok\u00e1 \u2013 Zlatno skarn, Slovakia<\/strong>. Mineralogy and Petrology, 111, 643-658. Impakt faktor 1,664.<\/li><li>Koz\u00e1k, J., Kod\u011bra, P., Lexa, J., Bakos, F., Moln\u00e1r, L., W\u00e4lle, M. (2017): <strong>Porphyry gold system of Beluj in the mantle of the \u0160tiavnica stratovolcano (Slovakia)<\/strong>. Acta Geologica Slovaca, 9, 45\u201361.<\/li><li>Ga\u00e1l, \u013d, N\u00e9meth, Z., Bella, P., Kod\u011bra, P. (2017):<strong> Caves in magnesite &#8211; a rare phenomenon of karstification: The case study from Slovakia.<\/strong> Mineralia Slovaca, 49, 157-168.<\/li><li>\u0160ottn\u00edk, P., Lalinsk\u00e1-Volekov\u00e1, B., Br\u010dekov\u00e1, J., Kod\u011bra, P., Jurkovi\u010d, \u013d. (2016): <strong>Characterization and environmental risk assessment of potential mining waste from Detva &#8211; Biely vrch deposit.<\/strong> Acta Geologica Slovaca, 8, 217-227.<\/li><li>Kod\u011bra, P., Bakos, F., Kuba\u010d, A., Lexa, J., S\u00fdkora M. (2016): <strong>Epithermal Au-Ag mineralisation at the locality Prochot \u2013 Lazy in the mantle of the \u0160tiavnica Stratovolcano. <\/strong>Acta Geologica Slovaca, v. 8, 149-163.<\/li><li>Majzlan, J., Berkh, K., Kod\u011bra, P., \u0160tevko, M., Bakos, F., Milovsk\u00fd, R. (2016): <strong>A mineralogical, fluid inclusion, and isotopic study of selected epithermal Ag-Au occurrences in the Bansk\u00e1 \u0160tiavnica\u2013Hodru\u0161a-H\u00e1mre ore district, Western Carpathians.<\/strong> Acta Geologica Slovaca, v. 8, 133-147.<\/li><li>Bella, P., Ga\u00e1l, \u013d, \u0160ucha, V, Kod\u011bra, P., Milovsk\u00fd, R. (2016): <strong>Hydrothermal speleogenesis in carbonates and metasomatic silicites induced by subvolcanic intrusions: a&nbsp;case study from the \u0160tiavnick\u00e9 vrchy Mountains, Slovakia.<\/strong> International Journal of Speleology, 45, 11-25 (in press). Impakt faktor 1.66<\/li><li>Ba\u010d\u00edk P., Kod\u011bra P., Uher P., Ozd\u00edn D., J\u00e1no\u0161\u00edk M. (2015): <strong>Chlorine-enriched tourmalines in hydrothermally altered diorite porphyry from the Detva, Biely Vrch porphyry gold deposit (Slovakia).<\/strong> Can. Mineral., in press. Impakt faktor 1.18<\/li><li>Uher P., Milovsk\u00e1 S., Milovsk\u00fd, R., Kod\u011bra, P., Ba\u010d\u00edk, P., Bilohu\u0161\u010din, V. (2015): <strong>Kerimasite, {Ca3}[Zr2](SiFe3+2 )O12 garnet from the Vysok\u00e1 -Zlatno skarn, \u0160tiavnica stratovolcano, Slovakia<\/strong>. Mineralogical Magazine, 79, 715-733. Impakt faktor 2.03<\/li><li>Kod\u011bra, P., Heinrich, Ch. A., W\u00e4lle, M. &amp; Lexa, J. (2014): <strong>Magmatic salt melt and vapour: Extreme fluids forming porphyry gold deposits in shallow volcanic settings.<\/strong> Geology. 42, no. 6; p. 495\u2013498. Impakt faktor 4.64<\/li><li>Kod\u011bra, P., Lexa, J., Fallick, A.E., W\u00e4lle, M., Biro\u0148, A. (2014): <strong>Hydrothermal fluids in epithermal and porphyry Au deposits in the Central Slovakia Volcanic Field. <\/strong>In: Garofalo, P. S. &amp; Ridley, J. R. (eds) Gold-Transporting Hydrothermal Fluids in the Earth\u2019s Crust. Geological Society, London, Special Publications, 402, p. 177-206. Impakt faktor 2.58<\/li><li>\u017dit\u0148an, J., Uher, P., Kod\u011bra, P., Ba\u010d\u00edk, P. (2014): <strong>Advanced argillic alteration at the Au-porphyry deposit Detva &#8211; Biely vrch in Javorie stratovolcano (central Slovakia).<\/strong> Bull. mineral.-petrolog. Odd. N\u00e1r. Muz. (Praha) 22, 1, 87-98. (in Slovak)<\/li><li>J\u00e1ger, V., Moln\u00e1r, F., Buchs, D., Kod\u011bra, P. (2012): <strong>The connection between iron ore formations and \u201cmud-shrimp\u201d colonizations around sunken wood debris and hydrothermal sediments in a&nbsp;Lower Cretaceous continental rift basin, Mecsek Mts., Hungary.<\/strong> Earth-Science Reviews, 114, 250-278. Impakt faktor 7.34<\/li><li>Uher, P., Kod\u011bra, P., Ozd\u00edn, D. (2012): <strong>Kerimasite Ca<sub>3<\/sub>Zr<sub>2<\/sub>(Fe<sup>3+<\/sup><sub>2<\/sub>Si)O<sub>12<\/sub> \u2013 a&nbsp;rare garnet from the Ca-Mg skarn-porphyry deposit Vysok\u00e1-Zlatno, \u0160tiavnica stratovolcano (central Slovakia). <\/strong>Bull. mineral.-petrolog. Odd. N\u00e1r. Muz. (Praha),1, 59-62. (in Slovak)<\/li><li>Hurai, V., Huraiov\u00e1, M., Kod\u011bra, P., Prochaska, W, Voz\u00e1rov\u00e1, A., Diani\u0161ka I. (2011): <strong>Fluid inclusion and stable C-O isotope constraints on the origin of metasomatic magnesite deposits of the Western Carpathians, Slovakia. Russian<\/strong> Geology and Geophysics, 52, 1283-1299. Impakt faktor 0.89<\/li><li>Hurai, V., Huraiov\u00e1, M., Kod\u011bra, P., Prochaska, W, Voz\u00e1rov\u00e1, A., Diani\u0161ka I. (2011): <strong>Fluid inclusion and stable C-O isotope constraints on the origin of metasomatic magnesite deposits of the Western Carpathians, Slovakia.<\/strong> Russian Geology and Geophysics, 52, 1283-1299. Impact Factor: 0.89<\/li><li>Kod\u011bra, P., Lexa, J. &amp; Fallick, A.E. (2010): <strong>Formation of the Vysok\u00e1\u2013Zlatno Cu\u2013Au skarn\u2013porphyry deposit, Slovakia. <\/strong>Mineralium Deposita, 45, 817-843. Impakt faktor 2.15<\/li><li>Radvanec, M., Bajto\u0161, P., N\u00e9meth, Z., Kod\u011bra, P., Prochaska, W., Roda, \u0160., Tr\u00e9ger, M., Bal\u00e1\u017e, P., Grecula, P., Cicmanov\u00e1, S., Kr\u00e1\u013e, J., \u017d\u00e1k, K. (2010): <strong>Magnesite and talk in Slovakia \u2013 genetic and geoenvironmental model. <\/strong>State Geological Institute of D. \u0160t\u00far, Bratislava, 189 p. ISBN 978-80-89343-31-7.<\/li><li>Kod\u011bra, P., Lexa, J., Biro\u0148, A., \u017dit\u0148an, J. (2010) : <strong>Gold mineralization and associated alteration zones of the Biely vrch Au-porphyry deposit, Slovakia.<\/strong> Mineralia Slovaca, 42, 33-56.<\/li><li>Kod\u011bra, P., Uher, P., Ozd\u00edn, D., Koll\u00e1rov\u00e1, V., Lexa, J. (2009): <strong>Monticellite, clintonite nda&nbsp;hydroxylellestadite-fluorellestadite: Rare skarn minerals of the Vysok\u00e1-Zlatno Cu-Au porphyry-skarn deposit (\u0160tiavnica stratovolcano, Slovakia)<\/strong>. Mineralia Slovaca, 41, 169-178. (in Slovak)<\/li><li>Lexa, J., Hurai, V., Chovan, M., Kod\u011bra, P., Petro, M., Rojkovi\u010d, I.,&nbsp;Tr\u00e9ger, M. (2007): <strong>Explanations to metallogenetic map of Slovak Republic 1 : 500 000.<\/strong> State Geological Institute of D. \u0160t\u00far, Bratislava, 157 p. ISBN 978-80-89225-11-8<\/li><li>Kod\u011bra, P., Lexa, J., Rankin, A.H. &amp; Fallick, A.E. (2005): <strong>Epithermal gold veins in a caldera setting: Bansk\u00e1 Hodru\u0161a, Slovakia.<\/strong> Mineralium Deposita, 39, 921-943. Impact Factor: 2.15<\/li><li>Kod\u011bra, P., Lexa, J., Rankin, A.H. &amp; Fallick, A.E. (2004): <strong>Fluid evolution in a subvolcanic granodiorite pluton related to Fe and Pb-Zn mineralization, Bansk\u00e1 \u0160tiavnica ore district, Slovakia. <\/strong>Economic Geology,&nbsp; 99, 1745-1770. Impact Factor: 2.49<\/li><li>Radvanec, M., Kod\u011bra, P. and Prochaska, W. (2004) <strong>Mg replacement at the Gemersk\u00e1 Poloma talc-magnesite deposit, Western Carpathians, Slovakia.<\/strong> Acta Petrologica Sinica, 20, 773-790. Impact Factor: 1.12<\/li><li>Radvanec, M., Kod\u011bra, P. and Prochaska, W. (2004) <strong>Mineralogy, fluid inclusion and C, O, Sr isotope study of the Ko\u0161ice-Medvedia magnesite deposit, Western Carpathians, Slovakia. <\/strong>Acta Petrologica Sinica, 20, 837-854. Impact Factor: 1.12<\/li><li>N\u00e9meth, Z., Prochaska, W., Radvanec, M., Kov\u00e1\u010dik, M., Madaras, J., Kod\u011bra, P. and Hra\u0161ko, L. (2004): <strong>Magnesite and talc origin in the sequence of geodynamic events in Veporicum, Inner Western Carpathians, Slovakia. <\/strong>Acta Petrologica Sinica, 20, 837-854. Impact Factor: 1.12<\/li><li>Kod\u011bra, P., Murphy, P.J. &amp; Rankin, A.H. (2003): <strong>Retrograde daughter mineral reactions in saline inclusions: the transformation ferropyrosmalite-clinopyroxene.<\/strong> American Mineralogist, 88, 151-158. Impact Factor: 2.20<\/li><li>Kod\u011bra, P., Radvanec, M. (2002): <strong>Comparative mineralogical and fluid inclusion study of the Hn\u00fa\u0161\u0165a-M\u00fatnik talc-magnesite and Mikov\u00e1-Jed\u013eovec magnesite deposit (Western Carpathians, Slovakia)<\/strong>. Boletim Paranaense de Geoci\u00eancias, 50, 131-150.<\/li><li>Kod\u011bra, P., Rankin, A. H. &amp; Lexa, J., (1998): <strong>Evolution of fluids responsible for iron skarn mineralisation: An example from the Vyhne-Kloko\u010d deposit (Western Carpathians, Slovakia).<\/strong> Mineralogy and Petrology, 64, 119-147. Impact Factor: 1.68<\/li><li>Kod\u011bra, P., Rankin, A.H., Roberts, S. (1998): <strong>In situ identification of ferropyrosmalite daughter mineral from the Vyhne-Kloko\u010d deposit<\/strong>. Mineralia Slovaca, 30, 479-482.<\/li><li>Kod\u011bra, P. (1994): <strong>Fe &#8211; bearing skarns. in &#8220; Ore textures in the Western Carpathians&#8220;<\/strong>, Chovan, M., H\u00e1ber, M., Jele\u0148, S., Rojkovi\u010d I., eds. Slovak Academic Press, Bratislava, 83 &#8211; 90.<\/li><li>Kod\u011bra, P. &amp; Chovan, M. (1994): <strong>Mineralogical and paragenetical relations of the skarn deposit Vyhne-Kloko\u010d.<\/strong> Mineralia Slovaca, 26, 38 \u2013 49 (in Slovak).<\/li><\/ul>\n\n\n\n<p><\/p>\n<\/div><\/div>\n\n\n\n<h2>Aktu\u00e1lne rie\u0161en\u00e9 projekty<\/h2>\n\n\n\n<p><strong><strong><strong><strong>VEGA 1\/0313\/20 &#8211; principal investigator of the project <\/strong><\/strong><\/strong><\/strong>(2020-2023) \u201eGenesis of precious metal epithermal and porphyry mineralisations in the stratovolcanoes \u0160tiavnica and Javorie\u201c<span class=\"has-inline-color has-vivid-red-color\"> <span class=\"collapseomatic \" id=\"id69f1c1fbdccb1\"  tabindex=\"0\" title=\"Click for project annotation\"    >Click for project annotation<\/span><div id=\"target-id69f1c1fbdccb1\" class=\"collapseomatic_content \"><em><em><em>The project deals with the conditions of origin and genesis of two most important types of precious metal mineralisation in Slovakia that have a real economic importance. Completion of their current level of knowledge in terms of genesis can significantly help in exploration and mining of these ores. The epithermal vein Au-Ag deposit Bansk\u00e1 Hodru\u0161a at the Roz\u00e1lia mine is the only mined ore deposit in Slovakia. The completion of genesis of precious metal epithermal mineralisation in the broad vicinity of this mine is necessary for its future effective exploration. Porphyry gold mineralisation, including the Biely Vrch deposit, is an unusual type of deposit, where gold was introduced by salt melts. Completion of its genetic model has a potential to significantly improve the knowledge of these rare magmatic-hydrothermal systems even in a global aspect, because due to their rare appearance the knowledge is still just on a low level.<\/em><\/em><\/em><\/span><\/p>\n\n\n\n<\/div>\n\n\n\n<p><strong><strong><strong><strong>APVV-20-0175 \u2013 investigator of the project <\/strong><\/strong><\/strong><\/strong>(2021-2024), principal investigator P. Uhl\u00edk) \u201eBentonite: Slovak strategic raw material &#8211; Innovative assessment of bentonite quality and origin for its efficient use \u201d&nbsp;<span class=\"has-inline-color has-vivid-red-color\"><span class=\"collapseomatic \" id=\"id69f1c1fbdcd60\"  tabindex=\"0\" title=\"Click for project annotation\"    >Click for project annotation<\/span><div id=\"target-id69f1c1fbdcd60\" class=\"collapseomatic_content \"><em><em><em><em>Bentonite is an important industrial raw material. Due to the high amount of clay minerals from the smectite group, bentonite has unique properties, e.g. high swelling capacity, plasticity, high specific surface area, cation exchange capacity and low hydraulic conductivity. Due to these properties bentonites have broad range of possible applications. As a consequence, worldwide bentonite production is constantly increasing. Slovak republic (SR) is one of the world&#8217;s leading bentonite producers and bentonites belong to the strategic raw materials in SR. In the last 10-15 years, several new bentonite deposits have been opened in SR, most of which have never been studied in detail. This may mean that the potential of Slovak bentonites is not fully utilized. One of the objectives of the project is therefore the comprehensive characterization of bentonites from new deposits. The mineral and chemical composition of bentonites, their physico-chemical, mechanical and rheological properties will be determined. The obtained results will help to better understand the geology and genesis of bentonite deposits which may lead to the discovery of other economic accumulations of bentonites. The main contribution of the project lies in the rational and efficient use of domestic raw materials which will lead to the long-term sustainability of bentonite exploitation in SR. The idea itself is not new, but the way on how we want to implement the proposed changes is highly innovative. The main application outputs of the project such as: passports for the optimal utilization of different qualitative types of bentonites, 3D model of bentonite quality and geological model of selected bentonite deposit, will contribute to achieve this ambitious goal. The multidisciplinary team of experts on domestic and world bentonites in cooperation with major bentonite producer in SR, REGOS, s.r.o. is guarantee of successful solution of the proposed project.<\/em><\/em><\/em><\/em><\/span><\/p>\n\n\n\n<\/div>\n\n\n\n<div class=\"wp-block-group\"><div class=\"wp-block-group__inner-container\"><\/div><\/div>\n\n\n\n<p><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Position: professor Room: G-423 Phone: +421 2 9014 9279 e-mail: &hellip; <\/p>\n","protected":false},"author":2,"featured_media":0,"parent":1966,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_monsterinsights_skip_tracking":false,"_monsterinsights_sitenote_active":false,"_monsterinsights_sitenote_note":"","_monsterinsights_sitenote_category":0,"ngg_post_thumbnail":0},"folder":[46],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v19.4 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Prof. Peter Kod\u011bra, PhD. - 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