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popovic - IMAT - Institute of Materials

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Ing. Ľuboš Popovič, PhD.

Lecturer
+421 55 602 2971

Characteristics:
  • Scientific and educational activity at the Department of Non-Metallic Materials focused on the field of chemical processes, chemical engineering, testing properties and preparation of ceramic and inorganic materials.
  • Programming numerical algorithms for solving mathematical models of chemical reactions using the MATLAB programming environment, the JAVA programming language and the PHP scripting language.
  • Programming of mathematical models of chemical reactions and studying the kinetics of chemical reactions using simulation systems or programming languages.
  • Development and construction of instruments for performing thermal and thermomechanical analyses of refractory ceramic materials.
  • Use of computer and software tools for automated data collection from thermal processes in the analysis and production of ceramic and inorganic materials.
  • Statistical evaluation of measured data from thermal and chemical processes in the analysis and production of ceramic and inorganic materials.

Professional Profile:
WoS ID: AAA-9181-2020
Scopus ID: 57117434300

Educational Activities:
  • Algorithmization and Programming
  • Statistics for Engineers
  • Process Modeling and Simulation I
  • Programming Fundamentals
  • Computer Support for Technological Processes
  • Measurement and Control
  • Ceramic Refractory Materials

Publication Activities:
  1. Non-porous shrinking particle model of leaching at low liquid-to-solid ratio / Pavel Raschman ... [et al.]  - 2019. In: Hydrometallurgy : an International Journal devoted to all aspects of the Aqueous Processing of Metals. No. 190 (2019), p. 1-10 [print]. - ISSN 0304-386X https://www.sciencedirect.com/science/article/pii/S0304386X19302233.
  2. Generalized Shrinking Particle Model of Leaching: Effect of the Order of Surface Chemical Reaction, Liquid-to-solid Ratio and Non-ideal Behaviour of the Liquid Phase / Ľuboš Popovič ... [et al.]  - 2020. In: Hydrometallurgy : an International Journal devoted to all aspects of the Aqueous Processing of Metals. Vol. 196 (2020), p. 1-11 [print]. - ISSN 0304-386X https://www.sciencedirect.com/science/article/pii/S0304386X19310564.
  3. Aging-induced structural relaxation in cornstarch plasticized with urea and glycerol / Natália Šmídová ... [et al.]  - 2021. In: Journal of Applied Polymer Science. Vol. 138, No. 15 (2021), p. 1-12 [print]. - ISSN 0021-8995 https://doi.org/10.1002/app.50218.
  4. Determination of the kinetic parameters of leaching from experimental data using the non-porous shrinking particle model: effect of error propagation / Pavel Raschman, Ľuboš Popovič, Gabriel Sučik  - 2023.In: Hydrometallurgy : an International Journal devoted to all aspects of the Aqueous Processing of Metals. - Amsterdam (Holandsko) : Elsevier Vol. 217 (2023), p. 1-20 [print]. - ISSN 0304-386X http://dx.doi.org/10.1016/j.hydromet.2023.106026.
  5. What Controls the Leaching of Magnesite with Concentrated Solutions of Hydrochloric or Nitric Acid? / Pavel Raschman ... [et al.]  - 2024. In: Mineral Processing and Extractive Metallurgy Review. - Wales (Veľká Británia) : Taylor & Francis Group Vol. 45, No. 8 (2024), p. 974-981 [print]. - ISSN 0882-7508 http://dx.doi.org/10.1080/08827508.2024.2349127

Research Activities (Projects):
  • Laboratory for measuring gas absorption in materials Mathematical modeling of processes in hydrometallurgy, chemical processing of non-metallic raw materials and corrosion of non-metallic materials
  • Study of the influence of the composition of the binder phase of refractory materials on corrosion in high-temperature aggregates processing metals and waste
  • Preparation of nanostructured oxides from secondary raw materials by the microemulsion method
  • Ceramic materials for refractory linings with intensified biomass combustion
  • Use of sands and sludges from magnesite treatment for the production of pure magnesium salts
  • Verification of the possibility of using magnesite for the remediation of acidic groundwater using permeable reactive barriers technology
  • Verification of the use of permeable reactive barriers technology for the remediation of acidic groundwater contaminated with heavy metals
  • University Science Park TECHNICOM for innovative applications with the support of knowledge technologies 26220220182

Odborný asistent
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