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Dive into the research topics where Roman Kodým is active.

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Featured researches published by Roman Kodým.


Journal of Applied Electrochemistry | 2017

Anodic microporous layer for polymer electrolyte membrane water electrolysers

J. Polonský; Roman Kodým; P. Vágner; Martin Paidar; Boris Bensmann; Karel Bouzek

A microporous layer represents an important element of the gas diffusion electrodes used in polymer electrolyte membrane (PEM) fuel cells and water electrolysers. It forms an interface between the nanostructured catalyst layer and the macrostructured electrode body. In the case of PEM water electrolysis such a layer has only been applied to the cathode to date. On the other hand, it is typically absent on the anode side of the cell. In the present study, such a layer was integrated into the anode of a PEM water electrolyser. It was based on antimony-doped tin oxide placed on titanium felt forming the electrode backing. Using an in-house synthesised IrO2, gas diffusion anodes were manufactured with and without the microporous layer and their performance compared in a laboratory PEM water electrolyser. Current–voltage curves and electrochemical impedance spectra were recorded. The results revealed that the microporous layer is only advantageous in a range of low current densities, while at higher current densities the ohmic resistance of the microporous layer significantly reduces the efficiency of electrolysis.Graphical Abstract


Electrochimica Acta | 2010

Microstructured reactor for electroorganic synthesis

Karel Bouzek; Vladimír Jiřičný; Roman Kodým; Jiří Křišťál; Tomáš Bystroň


Electrochemistry Communications | 2008

Electrochemical microreactor and gas-evolving reactions

Jiří Křišt’ál; Roman Kodým; Karel Bouzek; Vladimír Jiřičný


Journal of Applied Electrochemistry | 2012

Macrohomogeneous approach to a two-dimensional mathematical model of an industrial-scale electrodialysis unit

Roman Kodým; Petr Pánek; Dalimil Šnita; David Tvrzník; Karel Bouzek


Journal of Applied Electrochemistry | 2007

Potential and current density distributions along a bipolar electrode

Roman Kodým; Karel Bouzek; Dalimil Šnita; Jomar Thonstad


Electrochimica Acta | 2015

Novel approach to mathematical modeling of the complex electrochemical systems with multiple phase interfaces

Roman Kodým; Monika Drakselová; Petr Pánek; Michal Němeček; Dalimil Šnita; Karel Bouzek


Journal of Membrane Science | 2015

Spatially two-dimensional mathematical model of the flow hydrodynamics in a spacer-filled channel – The effect of inertial forces

Petr Pánek; Roman Kodým; Dalimil Šnita; Karel Bouzek


Journal of Applied Electrochemistry | 2016

Poisson–Nernst–Planck model of multiple ion transport across an ion-selective membrane under conditions close to chlor-alkali electrolysis

Roman Kodým; Vlastimil Fíla; Dalimil Šnita; Karel Bouzek


Electrochimica Acta | 2018

Three-dimensional macrohomogeneous mathematical model of an industrial-scale high-temperature PEM fuel cell stack

Monika Drakselová; Roman Kodým; Dalimil Šnita; Frank Beckmann; Karel Bouzek


Corrosion Science | 2017

Investigation of processes occurring at cathodically protected underground installations: Experimental study of pH alteration and mathematical modeling of oxygen transport in soil

Roman Kodým; Dalimil Šnita; Vlastimil Fíla; Karel Bouzek; Milan Kouřil

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Karel Bouzek

Institute of Chemical Technology in Prague

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Dalimil Šnita

University of West Bohemia

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Petr Pánek

Institute of Chemical Technology in Prague

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Vladimír Jiřičný

Academy of Sciences of the Czech Republic

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Vlastimil Fíla

Institute of Chemical Technology in Prague

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Michal Němeček

Institute of Chemical Technology in Prague

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Milan Kouřil

Institute of Chemical Technology in Prague

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J. Polonský

Institute of Chemical Technology in Prague

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Jaromír Hnát

Institute of Chemical Technology in Prague

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Jiří Křišťál

Academy of Sciences of the Czech Republic

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