Elucidating the Significance of Copper and Nitrate Speciation in Cu-SSZ-13 for N2O Formation during NH3-SCR

Author:

Negahdar Leila12ORCID,Omori Naomi E.12,Quesne Matthew G.32ORCID,Frogley Mark D.4,Cacho-Nerin Fernando4,Jones Wilm15,Price Stephen W. T.5,Catlow C. Richard A.132ORCID,Beale Andrew M.152

Affiliation:

1. Chemistry Department, University College of London, Gordon Street, London WC1H 0AJ, U.K.

2. UK Catalysis Hub, Research Complex at Harwell, Rutherford Appleton Laboratory, Didcot OX110FA, U.K.

3. School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, U.K.

4. Diamond Light Source Ltd, Harwell Science and Innovation Campus, Didcot OX11 0DE, U.K.

5. Finden Ltd, Merchant House, 5 East St Helen Street, Abingdon, Oxfordshire OX14 5EG, U.K.

Publisher

American Chemical Society (ACS)

Subject

Catalysis,General Chemistry

Reference67 articles.

1. NO emissions from large point sources: variability in ozone production, resulting health damages and economic costs

2. European Environment Agency. European Union Emission Inventory Report 1990-2011 under the UNECE Convention on Long-Range Transboundary Air Pollution (LRTAP), 2013.

3. Radhamohan, S.; Crane, M. E. Multistage Reductant Injection Strategy for Slipless, High Efficiency Selective Catalytic Reduction. U.S. Patent US69969752006.

4. Confirmation of Isolated Cu2+ Ions in SSZ-13 Zeolite as Active Sites in NH3-Selective Catalytic Reduction

5. Characterization of commercial Cu-SSZ-13 and Cu-SAPO-34 catalysts with hydrothermal treatment for NH3-SCR of NOx in diesel exhaust

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