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848 (0,079s)

Project

Tailored oxidic catalysts for NO decomposition without reducing agent (GA18-19519S)

in the direct catalytic decomposition of NO will be the result of the project. Preparation for NO decomposition without using of a reduction agent. The effect of preparation conditions and alkali earth metals, influence of...

Chemical process engineering

  • 2018 - 2020
  • 6 770 tis. Kč
  • 6 065 tis. Kč
  • GA ČR
Project

Theoretical studies on the nature of Cu sites in Cu/zeolite complexes and their catalytical activity for NO decomposition (GA203/97/P011)

in zeolite matrices on its catalytic activity for NO decomposition and selective catalytic reduction by hydrocarbons is proposed. Experimental studies show that the copper ions have different catalytic properties ...

CF - Fyzikální chemie a teoretická chemie

  • 1997 - 1999
  • 587 tis. Kč
  • 350 tis. Kč
  • GA ČR
Project

Study of hydrotalcite-based materials suitable for processes of nitrous oxide abatement (GA106/05/0366)

emissions abatement: (i) the catalytic decomposition of N2O and (ii) the catalytic, determined for the catalytic reduction of N2O and NO by ammonia and for N2O decomposition stationary sources is the sele...

JJ - Ostatní materiály

  • 2005 - 2007
  • 2 792 tis. Kč
  • 2 792 tis. Kč
  • GA ČR
Project

Influence of chemical and phase composition of hydrotalcite based material on the catalytic activity for nitrous oxide decomposition (GA106/02/0523)

project will be concerned by experimental studies of catalytic decomposition of nitrous oxide over catalysts prepared by thermal decomposition of hydrotalcite type to decrease its concentration in waste gases. The solution...

JJ - Ostatní materiály

  • 2002 - 2004
  • 2 998 tis. Kč
  • 2 115 tis. Kč
  • GA ČR
Project

*Nanofiber Catalysts for Disposal of Exhaust Gases (FR-TI1/454)

*The project aims on the development of the production processes for nanofibrous catalyst materials based on ceramic materials (TiO2, V2O5, etc.) and testing of their catalytic activity. These catalytic nanomaterials will become a c...

JP - Průmyslové procesy a zpracování

  • 2009 - 2012
  • 17 026 tis. Kč
  • 10 846 tis. Kč
  • MPO
Project

Production of hydrogen by thermal catalytic cracking (LJ10005)

Based on the research and engineering work, to develop the new technology of CO2 free hydrogen production via thermal cytalytic cracking, as well as finishing new catalyst for this technology, developed by Hydrogen Catalyst Ltd. (a participant of thi...

CI - Průmyslová chemie a chemické inženýrství

  • 2010 - 2010
  • 2 507 tis. Kč
  • 1 617 tis. Kč
  • MŠMT
Project

Design and development of a microreactor system for ammonia decomposition as part of a hydrogen energy vector for small mobile autonomous energy sources (TS01030200)

1) To commission a reference laboratory microreactor unit for testing the activity of catalysts for ammonia decomposition using the microreactor infrastructure of the ICPF, its necessary complementation and modification for compatibility wit...

Energy and fuels

  • 2024 - 2027
  • 13 553 tis. Kč
  • 11 262 tis. Kč
  • TA ČR
Project

*Development of the structure and technology of catalyst preparation for simultaneous abatement of NO/NO2 and N2O from nitric acid plants and other industrial sources. (FT-TA3/064)

*Development of the structure and the technology for production of a new generation of highly active catalysts for the process of selctive catalytic reduction of NO/NO2 (SCR-Nox) andthe process of N2O decomposition and their combina...

CA - Anorganická chemie

  • 2006 - 2009
  • 14 548 tis. Kč
  • 9 412 tis. Kč
  • MPO
Project

Development of a process for the abatement of nitrogen oxides for industrial applications for especially demanding conditions. (TA01021377)

is the development of structure and technology of high-temperature catalyst for catalytic decomposition of N2O on the molecular components at temperatures of 800-930 °C in the so......

CI - Průmyslová chemie a chemické inženýrství

  • 2011 - 2013
  • 17 100 tis. Kč
  • 13 614 tis. Kč
  • TA ČR
Project

Study of the dynamics of active sites of crystalline nanoporous alumosilicates employing molecular modeling (GA203/09/1627)

Goal of the project is to develop using molecular modeling supported by FTIR experiments credible descriptions of cationic centers in the nanoporous aluminosilicate catalysts and use the acquired knowledge hotspots in studies of catalytic re...

CF - Fyzikální chemie a teoretická chemie

  • 2009 - 2011
  • 5 738 tis. Kč
  • 5 738 tis. Kč
  • GA ČR
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