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Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/135663

Tolerance and regeneration versus SO2 of Ba0.9A0.1Ti0.8Cu0.2O3 (A= Sr, Ca, Mg) LNT catalysts

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In this paper, the tolerance and stability versus SO2 of Ba0.9A0.1Ti0.8Cu0.2O3 (A = Sr, Ca, Mg) perovskite-type catalysts for NOx storage application have been analyzed at 400 °C. Characterization results show that only strontium and magnesium are introduced into the perovskite structure. From those data, it can be concluded that the incorporation of Sr into the Ba0.9Sr0.1Ti0.8Cu0.2O3 catalyst promotes the generation of new NOx adsorption active sites. On the contrary, for Ba0.9Mg0.1Ti0.8Cu0.2O3 catalyst, copper is segregated from the catalyst lattice to the surface due to the incorporation of magnesium into the B site of the perovskite. The partial substitution of barium in Ba0.9Sr0.1Ti0.8Cu0.2O3 and Ba0.9Mg0.1Ti0.8Cu0.2O3 catalysts increases the NOx Storage Capacity (460 and 415 μmol/g.cat.  in saturation conditions, respectively), stability and tolerance versus SO2 compared to the raw BaTi0.8Cu0.2O3 perovskite.

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ALBALADEJO-FUENTES, Vicente, SÁNCHEZ ADSUAR, María Salvadora and ILLÁN GÓMEZ, María José. Tolerance and regeneration versus SO2 of Ba0.9A0.1Ti0.8Cu0.2O3 (A= Sr, Ca, Mg) LNT catalysts. Applied Catalysis A-General. 2019. Vol. 577, num. 113-123. ISSN 0926-860X. [consulted: 16 of August of 2026]. Available at: https://hdl.handle.net/2445/135663

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