Insight into the effect of phosphorus poisoning of Cu/zeolites with different framework towards NH3-SCR
Artikel i vetenskaplig tidskrift, 2023

Cu/zeolites were prepared to elucidate the effect of phosphorus poisoning on different zeolite framework structures for NH3-SCR. The results show that there are significant differences in phosphorus poisoning depending on the zeolite framework structure. The PO3−/PO43− species gradually decreased along with an increase in P2O5 in the following order: Cu/SSZ-13, Cu/ZSM-5, and Cu/BEA. One possible reason could be the increased pore size of these zeolites, which results in less steric hindrance for larger P2O5 species. P2O5 is suggested to enhance the redox ability of Cu ions, which results in an increase in low-temperature activity in NH3-SCR, whereas Cu ions were significantly poisoned by PO3−/PO43−, resulting in low-temperature deactivation. Furthermore, the effect of phosphorus poisoning on the structure of Cu/ZSM-5 was found to be much greater than that of Cu/BEA and Cu/SSZ-13, possibly due to phosphorus attacked the surface defects of the zeolite, causing local expansion and cracking.

NH -SCR 3

SSZ-13

ZSM-5

Phosphorus poisoning

BEA

Författare

Aiyong Wang

Shanghai University

Chalmers, Kemi och kemiteknik, Kemiteknik

Maria Elena Azzoni

Politecnico di Milano

Joonsoo Han

Chalmers, Kemi och kemiteknik, Kemiteknik

Kunpeng Xie

Volvo Group

Kemisk apparatteknik

Louise Olsson

Chalmers, Kemi och kemiteknik, Kemiteknik

Chemical Engineering Journal

1385-8947 (ISSN)

Vol. 454 140040

The Competence Centre for Catalysis, KCK 2022-2026

Volvo Group (PO:2435702-000), 2022-01-01 -- 2026-12-31.

Johnson Matthey (2500123383), 2022-01-01 -- 2026-12-31.

Preem AB (KCK2022-2026), 2022-01-01 -- 2026-12-31.

Umicore (KCK2022-2026), 2022-01-01 -- 2026-12-31.

Scania AB (Dnr:2021-036543Pnr:52689-1), 2022-01-01 -- 2026-12-31.

Ny metodik för grundläggande kinetiska modeller i heterogenkatalys med hjälp av tvärvetenskapliga experiment

Vetenskapsrådet (VR) (2014-5733), 2014-01-01 -- 2019-12-31.

Ämneskategorier (SSIF 2011)

Oorganisk kemi

Materialkemi

Annan kemi

DOI

10.1016/j.cej.2022.140040

Mer information

Senast uppdaterat

2026-08-18