Rationally tailored redox ability of Sn/γ-Al 2 O 3 with Ag for enhancing the selective catalytic reduction of NO x with propene

The development of excellent selective catalytic reduction (SCR) catalysts with hydrocarbons for lean-burn diesel engines is of great significance, and a range of novel catalysts loaded with Sn and Ag were studied in this work. It was found that the synergistic effects of Sn and Ag enabled the 1Sn5A...

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Veröffentlicht in:RSC advances 2023-01, Vol.13 (3), p.1738-1750
Hauptverfasser: Li, Ning, Zhang, Tiantian, Wu, Zuliang, Li, Jing, Wang, Wei, Zhu, Jiali, Yao, Shuiliang, Gao, Erhao
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Sprache:eng
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Zusammenfassung:The development of excellent selective catalytic reduction (SCR) catalysts with hydrocarbons for lean-burn diesel engines is of great significance, and a range of novel catalysts loaded with Sn and Ag were studied in this work. It was found that the synergistic effects of Sn and Ag enabled the 1Sn5Ag/γ-Al O (1 wt% Sn and 5wt% Ag) to exhibit superior C H -SCR performance. The de-NO efficiency was maintained above 80% between 336 and 448 °C. The characterization results showed that the presence of AgCl crystallites in the 1Sn5Ag/γ-Al O catalyst helped its redox ability maintain an appropriate level, which suppressed the over-oxidation of C H . Besides, the number of surface adsorbed oxygen (O ) and hydroxyl groups (O ) were enriched, and their reactivity was greatly enhanced due to the coexistence of Ag and Sn. The ratio of Ag /Ag was increased to 3.68 due to the electron transfer effects, much higher than that of Ag/γ-Al O (2.15). Lewis acid sites dominated the C H -SCR reaction over the 1Sn5Ag/γ-Al O catalyst. The synergistic effects of Sn and Ag facilitated the formation of intermediates such as acetates, enolic species, and nitrates, and inhibited the deep oxidation of C H into CO , and the C H -SCR mechanism was carefully proposed.
ISSN:2046-2069
2046-2069
DOI:10.1039/d2ra07316a