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Cooperation with non-European research institutions 

National Taiwan University in Taipei, Taiwan – Laboratory of catalysis and reactor engineering                                                                           

Contacts:  Prof. Jeffry C.S. Wu ()
The field of cooperation: preparation and characterization of the nanofiber photocatalysts
Project: CSF No. 14-35327J “Photocatalytic reduction of CO2

Deen Bandhu Chhotu Ram University of Science and Technology (India)

Contact: Alloy Palit ()
The field of cooperation: pyrolysis of wood

Chiang Mai University, Thailand - Faculty of Engineering, Civil Engineering Department (Thailand)

Contacts: Dr. Thiengburanathum Poon ()
The field of cooperation: the management of biowaste in Thailand

University of Adelaide, Australia - Microalgal Engineering Research Group

Contacts: Prof. David Lewis ()
The field of cooperation: energy and material recovery, semi-continuous mesophilic anaerobic digestion of biowaste

Assiut University , Egypt - Faculty of Science

Contacts: Prof. Bahaa Abu-Zied ()
The field of cooperation: research of cobalt based catalysts for N2O catalytic decomposition

Jiangsu university, China

Contacts: Ass. Prof. Pengwei Huo, Ph.D.()
The field of cooperation: photocatalytic reduction of CO2

National University in Littoral, Argentina – Institute of Technological Development for the Chemical Industry (INTEC)

Contacts: Dr. M. Ballari ()
The field of cooperation: modelling and design of photoreactors

National University in Tumbes, Peru – Department of Forestry Engineering and Environmental Management, Environmental Analysis Laboratory

Contacts: Dr. Gerardo Cruz Cerro ()
The field of cooperation: the preparation of sorbents based on activated carbon from waste biomaterials

National Engineering University in Lima, Lima, Peru – Faculty of Science, Laboratory of functional materials

Contacts: Prof. José Luis Solis Veliz ()
  Dr. Monica Marcela Gomez Leon ()
The field of cooperation: preparation and characterization of TiO2 based photocatalysts

Ariel University, Israel - Department of Chemical Sciences

Contact: Haya Kornweitz, Ph.D. ()
The field of cooperation: research of N2O catalytic decomposition mechanism, DFT

Nagoya Institute of Technology, Japan - Department of Life Science and Applied Chemistry

Contact: Prof. Masaaki Haneda, ()
The field of cooperation: research of catalytic decomposition of NO

Griffith University of Brisbane, Australia - Griffith School of Engineering

Contact: Prof. Qin Li ()
The field of cooperation: research of photocatalytic degradation of ammonia

Scientific publications (WoS) prepared in the cooperation with non-European research institutions  since 2014

Researcher from cooperating Czech institution is underlined, researcher which will be involved in ENREGAT RI is in bold.

KOČÍ K., MATĚJOVÁ L., OBALOVÁ L., ČAPEK L., WU. J. C. S. (2015) Preparation, characterization and photocatalytic performance of TiO2 prepared by using pressurized fluids in CO2 reduction and N2O decomposition. Journal of  Sol-Gel Science and Technology 76, 3, 621-629 (IF 1.532)


CRUZ G.J.F., MATĚJOVÁ L., PIRILA M., AINASSAARI K., CANEPA C.A., SOLIS J., CRUZ J.F., ŠOLCOVÁ O., KEISKI R.L. (2015) A Comparative Study on Activated Carbons Derived from a Broad Range of Agro-industrial Wastes in Removal of Large-Molecular-Size Organic Pollutants in Aqueous Phase. Water Air and Soil Pollution 226, 7, 214 (1-15) (I 1.551).


LEŠTINSKÝ P., PALIT A. (2016) Wood Pyrolysis using Aspen plus simulation and its Industrial Application. GeoScience Engineering 62 (1), 11-16. ISSN 1802-5420.


RELI M., HUO P., ŠIHOR M., AMBROŽOVÁ N., TROPPOVÁ I., MATĚJOVÁ L., LANG J., SVOBODA L., KUŚTROWSKI P., RITZ M., PRAUS P., KOČÍ K. (2016) Novel TiO2 C3N4 Photocatalysts for Photocatalytic Reduction of CO2 and for Photocatalytic Decomposition of N2O. Journal of Physical Chemistry A, 120, 8564-8573 (IF 2.883)

CRUZ G.J.F., KUBOŇOVÁ L., YASSER AGUIRRE D., MATĚJOVÁ L., PEIKERTOVÁ M., TROPPOVÁ I., CEGMED E., WACH A., KUSTROWSKI P., GOMEZ M.M., OBALOVA L. (2017) Activated carbons prepared from a broad range of residual agricultural biomass tested for xylene abatement in gas phase. ACS Sustainable Chemistry & Engineering 5, 3, 2368-2374 (IF 5.267)

B.-R. CHEN, V.-H. NGUYEN, J.C.S. WU, RELI M., KOČÍ K. (2016) Production of renewable fuel by photohydrogenation of CO2: effect of the Cu species loaded onto TiO2 photocatalysts. Physical Chemistry Chemical Physics, 18, 4942-4951 (IF 4.493)

CHEN C.-Y., YU J. C.-C., NGUYEN V.-H., WU J. C.-S., WANG W.-H., KOČÍ K. (2017) Reactor Design for CO2 Photo-Hydrogenation toward Solar Fuels under Ambient Temperature and Pressure, Catalysts 7, 2, 63 (IF2.964)