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Technická 5
166 28 Prague 6 – Dejvice
Identification No.: 60461373
VAT: CZ60461373
Czech Post certified digital mail code: sp4j9ch
Copyright: UCT Prague
Information provided by the Faculty of Chemical Engineering. Technical support by the Computing Centre. [paticka_odkaz_mail] => mailto:Jitka.Cejkova@vscht.cz [social_fb_title] => Facebook FCHE [social_tw_title] => [social_yt_title] => [google_search] => 001523547858480163194:u-cbn29rzve [aktualizovano] => Updated [autor] => Author [drobecky] => You are here: You are here: UCT Prague – FCHI [zobrazit_kalendar] => Read Calendar [archiv_novinek] => Archive of news [submenu_novinky_rok_title] => Watch news [more_info] => more info [api_obor_druh_B] => Bachelor's degree [charakteristika] => Profile of the programme [vice] => more [navaznosti] => Continue to [uplatneni] => Alumni profiles [studijni_plan] => Complete curriculum [mene] => less [vyucuje_se_na_ustavech] => Departments [studijni_plan_povinne_predmety] => Obligatory Subject [studijni_plan_volitelne_predmety] => Optional Subject [api_obor_druh_N] => Master's degree [paticka_mapa_alt] => [zobrazit_vice_kalendar] => More → [den_kratky_4] => Thur [den_kratky_5] => Fri [den_kratky_3] => Wed [den_kratky_1] => Mon [novinky_kategorie_1] => UCT Prague Events [novinky_kategorie_2] => Important Dates [novinky_kategorie_3] => Student Events [novinky_kategorie_4] => Fun [novinky_kategorie_5] => Science [novinky_archiv_url] => /novinky [novinky_servis_archiv_rok] => Annual Archive [novinky_servis_nadpis] => News Settings [novinky_dalsi] => More News [intranet_odkaz] => http://intranet.vscht.cz/ [intranet_text] => Intranet [logo_mobile_href] => / [logo_mobile] => [mobile_over_nadpis_menu] => Menu [mobile_over_nadpis_search] => Search [mobile_over_nadpis_jazyky] => Languages [mobile_over_nadpis_login] => Login [menu_home] => Homepage [zobraz_desktop_verzi] => switch to desktop version [novinky_archiv] => Archiv novinek [zobraz_mobilni_verzi] => switch to mobile version [den_kratky_0] => Sun [den_kratky_2] => Tue [paticka_mapa_odkaz] => http://fchi.vscht.cz/contacts [nepodporovany_prohlizec] => For full access, please use different browser. [preloader] => Wait a second... [stahnout] => [social_in_odkaz] => [dokumenty_kod] => [dokumenty_nazev] => [dokumenty_platne_od] => [dokumenty_platne_do] => [den_kratky_6] => [hledani_nadpis] => hledání [hledani_nenalezeno] => Nenalezeno... [hledani_vyhledat_google] => vyhledat pomocí Google [social_li_odkaz] => ) [poduzel] => stdClass Object ( [4158] => stdClass Object ( [obsah] => [poduzel] => stdClass Object ( [6306] => stdClass Object ( [nazev] => Faculty of Chemical Engineering [seo_title] => Faculty of Chemical Engineering [seo_desc] => [autor] => [autor_email] => [obsah] => [iduzel] => 6306 [canonical_url] => //fchi.vscht.cz/home [skupina_www] => Array ( ) [url] => /home [sablona] => stdClass Object ( [class] => stranka_novinky [html] => [css] => [js] => [autonomni] => 1 ) ) [10907] => stdClass Object ( [nazev] => About Faculty of Chemical Engineering [seo_title] => About [seo_desc] => [autor] => fchi [autor_email] => [obsah] =>History
The Faculty of Chemical Engineering has its origins in the Prague School of Chemical-Technological Engineering founded in 1920 as part of the Czech Technical University. In 1960, the Faculty of Chemical Production, Automation and Economics was established in response to the need of the chemical industry to enhance its process and economic disciplines, as well as its chemical ones. In 1969 it was renamed the Faculty of Chemical Engineering.
Study
The Faculty of Chemical Engineering offers the following forms of study:
- Three-year BSc study programmes leading to the Bc. title
- Two-year consequential MSc study programmes leading to the Ing. title
- Four-year PhD study programmes leading to the Ph.D. title
- Various types of short-term courses provided within the programme of adult education.
Our Faculty offers full study programmes for foreign students and also programmes for exchange and visiting students.
Research
Research conducted by the departments of the faculty can be divided into six main streams:
- Chemical engineering; modelling and experimental verification of systems involving hydrodynamics, mass transfer and/or chemical reactions; dynamics of chemical and biological systems; chemical robotics
- Measurement, analysis, modelling and control of processes and systems of chemical technology, biotechnology and bioengineering; information engineering; signal and image processing; computer vision and control engineering
- Supply systems management of the food and chemical products: design, modelling and simulation; marketing, logistics and financial collaboration in supply chain management
- Molecular modelling and simulation; structural, spectroscopic and thermodynamic properties of environmentally or biologically important substances and their complexes
- Physical, physicochemical and chemical measurements and analyses; advanced separation techniques including chromatographic, electromigration and hyphenated techniques; physical and chemical sensors; molecular recognition
- Biospectroscopy; atomic spectroscopy together with speciation analysis; molecular spectroscopy, including chiroptical methods; high resolution spectroscopy
Research activities at the Faculty of Chemical Engineering take place in seven departments that have their own educational and research programs in the field of basic and applied research. The research is concentrated in a number of research laboratories and research groups.
The faculty staff is involved in a number of grant projects funded by both internal and external national and European grant agencies. Students are involved in scientific research at all stages of their studies, in internal grant agency projects and under the guidance of their supervisors in other research projects.
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Prof. Ing. Michal Přibyl, Ph.D.
e +420 220 444 445
b Michal.Pribyl@vscht.cz
Faculty Secretary
Ing. Kamila Klaudisová, Ph.D.
e +420 22044 3281
b Kamila.Klaudisova@vscht.cz
Contact Person for Doctoral Students and Foreign Students
Mgr. Anna Vaněčková
e +420 220 443 895
b Anna.Vaneckova@vscht.cz
Contact Person for Bachelor's Degree Students
Hana Svobodová
e +420 220 443 891
b Hana2.Svobodova@vscht.cz
Contact Person for Master's Degree Students
Jana Nývltová
e +420 220 443 892
b Jana.Nyvltova@vscht.cz
Webmaster
Doc. Ing. Jitka Čejková, Ph.D.
e +420 220 444 460
b Jitka.Cejkova@vscht.cz
International scientific project supported by Czech Science Foundation (GAČR) and National Research Foundation of Korea (NRF), South Korea.
Principal Inverstigator: prof. Ing. Karel Friess, CSc.
Duration: 1. 1. 2021 - 31. 12. 2022
[ikona] => [obrazek] => [ogobrazek] => [pozadi] => [obsah] =>The project aims to develop new superhydrophobic materials based on polyvinylidene fluoride and polymethyl methacrylate with different side chains for advanced microbioapplications. Liquid marbles (LM) based microreactors for cancer cell research and LM microabsorbers for selective separation of SO2 and CO2 from gas mixtures will be prepared from prepared nanoparticles and aqueous solutions. Polymer films with an anti adhesive hierarchical surface structure will be tested for the effective inhibition of biofilm growth. The comprehensive experimental characterization of new materials, including the relationship between the conditions of preparation and targeted modification, will be performed. Physico-chemical properties of materials will be determined together with toxicological analyzes of new materials. Obtained results enable to formulate conclusions about procedures and conditions of material preparation and effects of particular types of structures and modifications for the usability of perfluorinated polymeric materials including their impacts on biological systems.
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stdClass Object ( [nazev] => Research [seo_title] => Research [seo_desc] => [autor] => fchi [autor_email] => [obsah] =>Research activities at the Faculty of Chemical Engineering take place in seven departments that have their own educational and research programs in the field of basic and applied research. The research is concentrated in a number of research laboratories and research groups.
The faculty staff is involved in a number of grant projects funded by both internal and external national and European grant agencies. Students are involved in scientific research at all stages of their studies, in internal grant agency projects and under the guidance of their supervisors in other research projects.
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- Department of Analytical Chemistry
- Department of Physical Chemistry
- Department of Chemical Engineering
- Department of Physics and Measurements
- Department of Mathematics, Informatics and Cybernetics
Projects funded under HORIZON EUROPE
MiEl |
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Projects Solved in the EU Framework Programme HORIZON 2020
ORBIS |
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DocEnhance |
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FlowCamp |
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PARTIAL-PGMs |
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RECOBA |
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Projects Solved in the 7th Framework Programme
MODENA |
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MICREAGENTS
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COOPOL
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DoubleNanoMem
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PRAMICIDIS
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CHOBOTIX
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Projects Solved in the 5th Framework Programme
INTELLTERMCONTROL |
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EUROSPEC |
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HIV PR INHIBITORS |
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- Iemtsev, A., Hassouna, F., Mathers, A., Klajmon, M., Dendisova, M., Malinova, L., ... & Fulem, M. (2020). Physical stability of hydroxypropyl methylcellulose-based amorphous solid dispersions: Experimental and computational study. International Journal of Pharmaceutics, 589, 119845.
- Klepić, M., Setničková, K., Lanč, M., Žák, M., Izák, P., Dendisová, M., ... & Friess, K. (2020). Permeation and sorption properties of CO2-selective blend membranes based on polyvinyl alcohol (PVA) and 1-ethyl-3-methylimidazolium dicyanamide ([EMIM][DCA]) ionic liquid for effective CO2/H2 separation. Journal of Membrane Science, 597, 117623.
- Suchan, J., Janoš, J., & Slavíček, P. (2020). Pragmatic approach to photodynamics: mixed Landau–Zener surface hopping with intersystem crossing. Journal of Chemical Theory and Computation, 16(9), 5809-5820.
- Vobecká, L., Tichá, L., Atanasova, A., Slouka, Z., Hasal, P., & Přibyl, M. (2020). Enzyme synthesis of cephalexin in continuous-flow microfluidic device in ATPS environment. Chemical Engineering Journal, 396, 125236.
- Belloň, T., Polezhaev, P., Vobecká, L., Svoboda, M., & Slouka, Z. (2019). Experimental observation of phenomena developing on ion-exchange systems during current-voltage curve measurement. Journal of Membrane Science, 572, 607-618.
- Červinka, C., Klajmon, M., & Štejfa, V. (2019). Cohesive properties of ionic liquids calculated from first principles. Journal of Chemical Theory and Computation, 15(10), 5563-5578.
- Dendisová, M., Němečková, Z., Člupek, M., & Prokopec, V. (2019). EC-SERS study of phenolic acids sorption behavior on Au, Ag and Cu substrates–Effect of applied potential and metal used. Applied Surface Science, 470, 716-723.
- Kaňa, A., Loula, M., Koplík, R., Vosmanská, M., & Mestek, O. (2019). Peak bordering for ultrafast single particle analysis using ICP-MS. Talanta, 197, 189-198.
- Kočí, P., Isoz, M., Plachá, M., Arvajová, A., Václavík, M., Svoboda, M., ... & Thompsett, D. (2019). 3D reconstruction and pore-scale modeling of coated catalytic filters for automotive exhaust gas aftertreatment. Catalysis Today, 320, 165-174.
- Kutorglo, E. M., Hassouna, F., Beltzung, A., Kopecký, D., Sedlářová, I., & Šoóš, M. (2019). Nitrogen-rich hierarchically porous polyaniline-based adsorbents for carbon dioxide (CO2) capture. Chemical Engineering Journal, 360, 1199-1212.
- Loula, M., Kaňa, A., & Mestek, O. (2019). Non-spectral interferences in single-particle ICP-MS analysis: an underestimated phenomenon. Talanta, 202, 565-571.
- Pohl, M. N., Muchová, E., Seidel, R., Ali, H., Sršeň, Š., Wilkinson, I., ... & Slavíček, P. (2019). Do water's electrons care about electrolytes? Chemical science, 10(3), 848-865.
- Sýkora, D., Řezanka, P., Záruba, K., & Král, V. (2019). Recent advances in mixed‐mode chromatographic stationary phases. Journal of separation science, 42(1), 89-129.
- Hollas, D., Sistik, L., Hohenstein, E. G., Martinez, T. J., & Slavicek, P. (2018). Nonadiabatic ab initio molecular dynamics with the floating occupation molecular orbital-complete active space configuration interaction method. Journal of Chemical Theory and Computation, 14(1), 339-350.
- Lanč, M., Sysel, P., Šoltys, M., Štěpánek, F., Fónod, K., Klepić, M., ... & Friess, K. (2018). Synthesis, preparation and characterization of novel hyperbranched 6FDA-TTM based polyimide membranes for effective CO2 separation: effect of embedded mesoporous silica particles and siloxane linkages. Polymer, 144, 33-42.
- Marešová, E., Tomeček, D., Fitl, P., Vlček, J., Novotný, M., Fišer, L., ... & Vrňata, M. (2018). Textile chemiresistors with sensitive layers based on polymer ionic liquids: Applicability for detection of toxic gases and chemical warfare agents. Sensors and Actuators B: Chemical, 266, 830-840.
- Suchan, J., Hollas, D., Curchod, B. F., & Slavíček, P. (2018). On the importance of initial conditions for excited-state dynamics. Faraday discussions, 212, 307-330.
- Šoltys, M., Balouch, M., Kašpar, O., Lhotka, M., Ulbrich, P., Zadražil, A., ... & Štĕpánek, F. (2018). Evaluation of scale-up strategies for the batch synthesis of dense and hollow mesoporous silica microspheres. Chemical Engineering Journal, 334, 1135-1147.
- Tomecek, D., Hruska, M., Fitl, P., Vlcek, J., Maresova, E., Havlova, S., ... & Vrnata, M. (2018). Phthalocyanine photoregeneration for low power consumption chemiresistors. ACS sensors, 3(12), 2558-2565.
- Cervinka, C., & Fulem, M. (2017). State-of-The-Art calculations of sublimation enthalpies for selected molecular crystals and their computational uncertainty. Journal of chemical theory and computation, 13(6), 2840-2850.
- Friess, K., Lanč, M., Pilnáček, K., Fíla, V., Vopička, O., Sedláková, Z., ... & Izak, P. (2017). CO2/CH4 separation performance of ionic-liquid-based epoxy-amine ion gel membranes under mixed feed conditions relevant to biogas processing. Journal of Membrane Science, 528, 64-71.
- Heyda, J., Okur, H. I., Hladílková, J., Rembert, K. B., Hunn, W., Yang, T., ... & Cremer, P. S. (2017). Guanidinium can both cause and prevent the hydrophobic collapse of biomacromolecules. Journal of the American Chemical Society, 139(2), 863-870.
- Svoboda, M., Beneš, J., Vobecká, L., & Slouka, Z. (2017). Swelling induced structural changes of a heterogeneous cation-exchange membrane analyzed by micro-computed tomography. Journal of membrane science, 525, 195-201.
- Unger, I., Seidel, R., Thürmer, S., Pohl, M. N., Aziz, E. F., Cederbaum, L. S., ... & Kryzhevoi, N. V. (2017). Observation of electron-transfer-mediated decay in aqueous solution. Nature chemistry, 9(7), 708-714.
- Vataščin, E., & Dohnal, V. (2017). Thermodynamic properties of aqueous solutions of [EMIM] thiocyanate and [EMIM] dicyanamide. The Journal of Chemical Thermodynamics, 106, 262-275.
- Mráček, D., Kočí, P., Choi, J. S., & Partridge, W. P. (2016). New operation strategy for driving the selectivity of NOx reduction to N2, NH3 or N2O during lean/rich cycling of a lean NOx trap catalyst. Applied Catalysis B: Environmental, 182, 109-114.
- Pilnáček, K., Vopička, O., Lanč, M., Dendisová, M., Zgažar, M., Budd, P. M., ... & Friess, K. (2016). Aging of polymers of intrinsic microporosity tracked by methanol vapour permeation. Journal of Membrane Science, 520, 895-906.
- Shishkanova, T. V., Havlík, M., Dendisová, M., Matějka, P., & Král, V. (2016). Synthesis and deposition of a Tröger’s base polymer on the electrode surface for potentiometric detection of a neuroblastoma tumor marker metabolite. Chemical Communications, 52(80), 11991-11994.
- Vidlářová, L., Romero, G. B., Hanuš, J., Štěpánek, F., & Müller, R. H. (2016). Nanocrystals for dermal penetration enhancement–effect of concentration and underlying mechanisms using curcumin as model. European Journal of Pharmaceutics and Biopharmaceutics, 104, 216-225.
- Carta, M., Croad, M., Malpass‐Evans, R., Jansen, J. C., Bernardo, P., Clarizia, G., ... & McKeown, N. B. (2014). Triptycene induced enhancement of membrane gas selectivity for microporous Tröger's base polymers. Advanced Materials, 26(21), 3526-3531.
The Faculty of Chemical Engineering has many years of experience working with corporate partners through expert consulting and custom development. We offer realization of complex research and development activities based on targeted demand of industrial companies especially in the following areas:
Analytical and physical-chemical services
- Identification and quantification of organic compounds, structural analysis of organic compounds and supramolecular systems
Contact: Department of Analytical Chemistry - E-liquid and electronic cigarette smoke analysis
Contact: Department of Analytical Chemistry - Measurement and calculation of physical-chemical data
- Heat capacities
Contact: prof. Ing. Michal Fulem, Ph.D. - Interfacial tensions
Contact: Ing. Štěpán Hovorka, Ph.D. - Saturated vapour pressure
Contact: prof. Ing. Michal Fulem, Ph.D. - Density of liquids
Contact: doc. Ing. Ivan Cibulka, CSc. - Combustion calorimetry in oxygen atmosphere
Contact: Dr. Ing. Pavle Vrbka - Electro-physical properties of substances
Contact: prof. Dr. Ing. Martin Vrňata - Characterization of solid particles
Contact: prof. Ing. František Štěpánek, Ph.D.
- Heat capacities
- Consultancy for processes requiring knowledge of physical-chemical data and their critical evaluation
Contact: Department of Physical Chemistry - Elaboration of thermodynamic analysis of given problem or process
Contact: Department of Physical Chemistry - Phase equilibria: prediction and modeling
Contact: Dr. Ing. Pavle Vrbka, Ing. Jan Haidl, Ph.D. - Testing of materials for packaging applications
Contact: doc. Ing. Karel Friess, Ph.D.
Process automation and data analysis
Contact: Department of Mathematics, Informatics and Cybernetics
- Design of automatic measurement and monitoring of technological processes and bioprocesses
- Design of automatic control of technological processes and bioprocesses
- Design of control systems of technological processes and bioprocesses
- Design of control systems based on artificial intelligence
- Design of digital signal and image analysis methods
- Processing of Big Data
- Assessing the complexity of a given technical problem and corresponding effective solution design
- Analysis of a given technical problem using the graph theory
- Optimization of engineering tasks
- Statistical data analysis
- Analysis of random dynamical processes
Chemical-engineering services
- Experiments and calculations for obtaining process parameters
- Measurement and calculation of reaction kinetics
Contact: doc. Ing. Petr Kočí, Ph.D. - Interphase mass transport (stirred vessels-fermenters, absorption and distillation columns)
Contact: doc. Dr. Ing. Tomáš Moucha - Solubility and diffusivity in polymers
Contact: doc. Ing. Karel Friess, Ph.D. - Flow modelling and simulation in separation column packings
Contact: prof. RNDr. Drahoslava Janovská, CSc. - Heat and mass transport for heterogeneous catalysis
Contact: doc. Ing. Petr Kočí, Ph.D. - Membrane separation processes (separation of vapours, gases)
Contact: doc. Ing. Karel Friess, Ph.D. - Heat exchangers
Contact: doc. Ing. František Rejl, Ph.D.
- Measurement and calculation of reaction kinetics
- Balance of material flows and energy
- Mass and energy balance of chemical productions
Contact: Ing. Jan Haidl, Ph.D.
- Mass and energy balance of chemical productions
- Design, optimization and intensification of processes and technologies
- Chemical reactors
Contact: doc. Ing. Petr Kočí, Ph.D. - Column apparatus and processes (absorption, distillation, extraction)
Contact: doc. Dr. Ing. Tomáš Moucha - Processing of bulk materials
Contact: prof. Ing. František Štěpánek, Ph.D. - Numerical methods for optimization
Contact: prof. RNDr. Drahoslava Janovská, CSc. - Flow reactor modelling
Contact: prof. RNDr. Drahoslava Janovská, CSc. - Bioreactors
Contact: doc. Dr. Ing. Tomáš Moucha - Design and optimization of CFD simulations
Contact: prof. RNDr. Drahoslava Janovská, CSc.
- Chemical reactors
Sensor and measuring technology
Contact: Department of Physics and Measurements
- Measurement of physical and chemical quantities
- Industrial data collection
- Development and analysis of nanomaterials for organic electronics and sensors
- Analysis of sensor fluctuations and chemical changes in technological process conditions
- Gas sensors
Vice-Dean for External Relations
Doc. Ing. Pavel Hrnčiřík, Ph.D.
e +420 220 444 296
b Pavel.Hrncirik@vscht.cz