Tuning the selectivity of NH3 oxidation via cooperative electronic interactions between platinum and copper sites

L Lu Chen X Xuze Guan Z Zhaofu Fei H Hiroyuki Asakura L Lun Zhang Z Zhipeng Wang (Institute of Nuclear and New Energy Technology, Tsinghua University) X Xinlian Su Z Zhangyi Yao (Department of Chemical Engineering) L Luke L. Keenan S Shusaku Hayama M Matthijs A. van Spronsen B Burcu Karagoz G Georg Held (Diamond Light Source) C Christopher S. Allen D David G. Hopkinson D Donato Decarolis (Diamond Light Source) J June Callison P Paul J. Dyson F Feng Ryan Wang (Department of Chemical Engineering)

Abstract

AbstractSelective catalytic oxidation (SCO) of NH3 to N2 is one of the most effective methods used to eliminate NH3 emissions. However, achieving high conversion over a wide operating temperature range while avoiding over-oxidation to NOx remains a significant challenge. Here, we report a bi-metallic surficial catalyst (PtSCuO/Al2O3) with improved Pt atom efficiency that overcomes the limitations of current catalysts. It achieves full NH3 conversion at 250 °C with a weight hourly space velocity of 600 ml NH3·h−1·g−1, which is 50 °C lower than commercial Pt/Al2O3, and maintains high N2 selectivity through a wide temperature window. Operando XAFS studies reveal that the surface Pt atoms in PtSCuO/Al2O3 enhance the redox properties of the Cu species, thus accelerating the Cu2+ reduction rate and improving the rate of the NH3-SCO reaction. Moreover, a synergistic effect between Pt and Cu sites in PtSCuO/Al2O3 contributes to the high selectivity by facilitating internal selective catalytic reduction.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 02, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

L

Lu Chen

X

Xuze Guan

Z

Zhaofu Fei

H

Hiroyuki Asakura

L

Lun Zhang

Z

Zhipeng Wang

Institute of Nuclear and New Energy Technology, Tsinghua University

X

Xinlian Su

Z

Zhangyi Yao

Department of Chemical Engineering

L

Luke L. Keenan

S

Shusaku Hayama

M

Matthijs A. van Spronsen

B

Burcu Karagoz

G

Georg Held

Diamond Light Source

C

Christopher S. Allen

D

David G. Hopkinson

D

Donato Decarolis

Diamond Light Source

J

June Callison

P

Paul J. Dyson

F

Feng Ryan Wang

Department of Chemical Engineering