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Forschungsstelle
INNOSUISSE
Projektnummer
13111.1;13 PFNM-NM
Projekttitel
Exhaust gas treatment (ExGaT): Nanostructured ceramic device as simultaneous contaminant getter and CO oxidation catalyst with high tolerance to catalyst poisons
Projekttitel Englisch
Exhaust gas treatment (ExGaT): Nanostructured ceramic device as simultaneous contaminant getter and CO oxidation catalyst with high tolerance to catalyst poisons

Texte zu diesem Projekt

 DeutschFranzösischItalienischEnglisch
Kurzbeschreibung
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Abstract
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Erfasste Texte


KategorieText
Kurzbeschreibung
(Deutsch)
Exhaust gas treatment (ExGaT): Nanostructured ceramic device as simultaneous contaminant getter and CO oxidation catalyst with high tolerance to catalyst poisons
Kurzbeschreibung
(Englisch)
Exhaust gas treatment (ExGaT): Nanostructured ceramic device as simultaneous contaminant getter and CO oxidation catalyst with high tolerance to catalyst poisons
Abstract
(Deutsch)
The main aim of this consortium is the development and implementation of a multifunctional noble metal free ceramic catalyst for exhaust gas cleaning purposes in high temperature applications such as combined heat and power plants on basis of fuel cell systems or combustion engines, but also for thermal power stations or automotive applications. The aimed nanostructured emission control device comprises a retention system for catalyst poisons like Cr, Ni or V and acts simultaneously as an effective contaminant tolerant CO abatement system.
Abstract
(Englisch)
The main aim of this consortium is the development and implementation of a multifunctional noble metal free ceramic catalyst for exhaust gas cleaning purposes in high temperature applications such as combined heat and power plants on basis of fuel cell systems or combustion engines, but also for thermal power stations or automotive applications. The aimed nanostructured emission control device comprises a retention system for catalyst poisons like Cr, Ni or V and acts simultaneously as an effective contaminant tolerant CO abatement system.