Issue 3, 2015

Deactivation mechanism of SO2 on Cu/SAPO-34 NH3-SCR catalysts: structure and active Cu2+

Abstract

The deactivation mechanism of Cu/SAPO-34 ammonia selective catalytic reduction catalysts (NH3-SCR) by SO2 poisoning has been systematically investigated using a range of analytical techniques in order to study the influence on both the zeolitic framework and the active Cu2+ ions. The different sulfate samples were obtained by SO2 poisoning over Cu/SAPO-34 NH3-SCR catalysts as a function of time and concentration in the feed. The obtained results reveal that the SO2 poisoning could seriously decrease NO conversion during the whole temperature range (100–500 °C). The XRF results shows that there is almost no sulfur existing on the SAPO-34 support. The ex situ DRIFTS and BET results reveal that SO2 poisoning has a less-pronounced effect on its framework structure. The TPR and EPR results demonstrate that SO2 poisoning has a significant influence on the coordination environment and the content of the active isolated Cu2+ species. The kinetic results demonstrate that the SO2 poisoning does not influence the apparent activation energy (Ea) of the NH3-SCR reaction over Cu/SAPO-34 catalysts. The decline of the NH3-SCR activity is due to the reduction of the number of isolated Cu2+ ions.

Graphical abstract: Deactivation mechanism of SO2 on Cu/SAPO-34 NH3-SCR catalysts: structure and active Cu2+

Supplementary files

Article information

Article type
Paper
Submitted
02 Sep 2014
Accepted
05 Dec 2014
First published
08 Dec 2014

Catal. Sci. Technol., 2015,5, 1741-1749

Author version available

Deactivation mechanism of SO2 on Cu/SAPO-34 NH3-SCR catalysts: structure and active Cu2+

M. Shen, H. Wen, T. Hao, T. Yu, D. Fan, J. Wang, W. Li and J. Wang, Catal. Sci. Technol., 2015, 5, 1741 DOI: 10.1039/C4CY01129E

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