Heterogeneous catalysts for the low temperature NH3-SCR of NOx can be strongly deactivated due to the accumulation of specific compounds deriving from an upstream desulphurization unit, such as a Sea Water Scrubber. In this work, we set out to investigate the specific role of K+ and of its counter-ion (Clor NO3 - ) on the combined poisoning effect induced on the catalytic features of a MnOx/TiO2 system. Poisoning of the catalyst was performed ex-situ by impregnation with two target loadings of each K salt, followed by a mild thermal treatment at 250 °C, corresponding to the maximum operating temperature of the SCR system. Fresh and poisoned catalysts were characterized by means of ICP-MS, BET, H2- TPR, NH3-Adsorption and NH3-Temperature Programmed Desorption-Reaction, and the impact of poisoning was assessed and compared for the NH3-SCR of NO as well as for the NH3-SCO (Selective Catalytic Oxidation) reaction

POISONING EFFECT OF K+ AND ITS COUNTERANION ON THE PERFORMANCE OF Mn/TiO2 CATALYST FOR THE LOW TEMPERATURE NH3-SCR OF NO

S Cimino;G Totarella;M Tortorelli;L Lisi
2017

Abstract

Heterogeneous catalysts for the low temperature NH3-SCR of NOx can be strongly deactivated due to the accumulation of specific compounds deriving from an upstream desulphurization unit, such as a Sea Water Scrubber. In this work, we set out to investigate the specific role of K+ and of its counter-ion (Clor NO3 - ) on the combined poisoning effect induced on the catalytic features of a MnOx/TiO2 system. Poisoning of the catalyst was performed ex-situ by impregnation with two target loadings of each K salt, followed by a mild thermal treatment at 250 °C, corresponding to the maximum operating temperature of the SCR system. Fresh and poisoned catalysts were characterized by means of ICP-MS, BET, H2- TPR, NH3-Adsorption and NH3-Temperature Programmed Desorption-Reaction, and the impact of poisoning was assessed and compared for the NH3-SCR of NO as well as for the NH3-SCO (Selective Catalytic Oxidation) reaction
2017
Istituto di Ricerche sulla Combustione - IRC - Sede Napoli
DeNOx
alkali poisoning
Low temperature SCR
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/337144
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