A detailed model for the deactivation of a V<sub>2</sub>O<sub>5</sub>–WO<sub>3</sub>/TiO<sub>2</sub>-based SCR monolith catalyst by potassium poisoning has been developed and validated. The model accounts for deposition of KCl aerosol particles present in the flue gas on the external catalyst surface, the reaction of the deposited particles with the catalyst at the surface of the monolith wall, the transport and accumulation of potassium, bound to Brønsted acid sites, throughout the catalyst wall, and the resulting loss in SCR activity. Using an experimentally measured KCl aerosol size distribution as input, the model can replicate the observed deactivation rate of a 3 wt % V<sub>2</sub>O<sub>5</sub>-7 wt % WO<sub>3</sub>/TiO<sub>2</sub> mo...
Postprint version of published articleThe effect of ash salts on Co-based Fisher–Tropsch catalysts w...
The alkali metal-induced deactivation of a novel CeO<sub>2</sub>–WO<sub>3</sub> (CeW) catalyst used ...
Poisoning effects by alkali metal chlorides is one of the major reasons for the deactivation of SCR ...
Generated aerosol particle deposition has been applied in laboratory scale to induce deactivation of...
For the purpose of this deactivation study, Pt- and vanadia supported catalysts were used. The catal...
The deactivation of a commercial selective catalytic reduction (SCR) catalyst of type V2O5−WO3/TiO2 ...
The deactivation of a commercial Selective Catalytic Reduction (SCR) catalyst, of V2O5−WO3/TiO2 type...
Firing of biomass can lead to rapid deactivation of the vanadia-based NH3-SCR catalyst, which reduce...
In this study the deactivation of Pt/wire mesh and vanadia/monolith catalysts by aerosol particles o...
A 20%Co/0.5%Re/γAl2O3 Fischer−Tropsch catalyst was poisoned by four potassium salts (KNO3, K2SO4, KC...
Deactivation of catalysts were investigated focusing on three industrial processes: 1) Selective Cat...
Cette étude est associée à une problématique industrielle visant à acquérir des connaissances fondam...
The influence of potassium species on a Co based Fischer-Tropsch catalyst was investigated using an ...
Selective catalytic reduction of NOx (SCR) has been recognised as an effective post-combustion metho...
A series of V<sub>2</sub>O<sub>5</sub>/CeO<sub>2</sub> catalysts with different potassium loadings w...
Postprint version of published articleThe effect of ash salts on Co-based Fisher–Tropsch catalysts w...
The alkali metal-induced deactivation of a novel CeO<sub>2</sub>–WO<sub>3</sub> (CeW) catalyst used ...
Poisoning effects by alkali metal chlorides is one of the major reasons for the deactivation of SCR ...
Generated aerosol particle deposition has been applied in laboratory scale to induce deactivation of...
For the purpose of this deactivation study, Pt- and vanadia supported catalysts were used. The catal...
The deactivation of a commercial selective catalytic reduction (SCR) catalyst of type V2O5−WO3/TiO2 ...
The deactivation of a commercial Selective Catalytic Reduction (SCR) catalyst, of V2O5−WO3/TiO2 type...
Firing of biomass can lead to rapid deactivation of the vanadia-based NH3-SCR catalyst, which reduce...
In this study the deactivation of Pt/wire mesh and vanadia/monolith catalysts by aerosol particles o...
A 20%Co/0.5%Re/γAl2O3 Fischer−Tropsch catalyst was poisoned by four potassium salts (KNO3, K2SO4, KC...
Deactivation of catalysts were investigated focusing on three industrial processes: 1) Selective Cat...
Cette étude est associée à une problématique industrielle visant à acquérir des connaissances fondam...
The influence of potassium species on a Co based Fischer-Tropsch catalyst was investigated using an ...
Selective catalytic reduction of NOx (SCR) has been recognised as an effective post-combustion metho...
A series of V<sub>2</sub>O<sub>5</sub>/CeO<sub>2</sub> catalysts with different potassium loadings w...
Postprint version of published articleThe effect of ash salts on Co-based Fisher–Tropsch catalysts w...
The alkali metal-induced deactivation of a novel CeO<sub>2</sub>–WO<sub>3</sub> (CeW) catalyst used ...
Poisoning effects by alkali metal chlorides is one of the major reasons for the deactivation of SCR ...