Sulfated zirconia and tungstated zirconia as effective supports for Pd-based SCR catalysts

It is now well established that even though Pd supported on acidic zeolites is highly selective for CH 4-SCR, zeolitic structures are susceptible to dealumination under hydrothermal environments. In this contribution, we have investigated the ability of non-zeolitic acidic materials to promote the S...

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Published in:Catalysis today Vol. 62; no. 2; pp. 159 - 165
Main Authors: Chin, Ya-Huei, Alvarez, Walter E, Resasco, Daniel E
Format: Journal Article Conference Proceeding
Language:English
Published: Amsterdam Elsevier B.V 01-11-2000
Elsevier Science
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Abstract It is now well established that even though Pd supported on acidic zeolites is highly selective for CH 4-SCR, zeolitic structures are susceptible to dealumination under hydrothermal environments. In this contribution, we have investigated the ability of non-zeolitic acidic materials to promote the SCR selectivity and stability in the presence of H 2O and SO 2. The results of catalytic activity measurements and characterization tests indicate that sulfated zirconia and tungstated zirconia are supports as effective as the zeolites for the promotion of SCR activity. The high SCR activity of these catalysts can be ascribed to the formation of isolated Pd 2+ ions on acid sites. It is proposed that the stabilization of Pd 2+ on these supports is similar to the stabilization previously reported for acidic zeolites. The remarkable characteristic of these Pd catalysts supported on sulfated zirconia and tungstated zirconia is that when they were tested over a 40 h reaction period in the presence of H 2O and SO 2, they appeared to be significantly more resistant than zeolite-based catalysts.
AbstractList It is now well established that even though Pd supported on acidic zeolites is highly selective for CH 4-SCR, zeolitic structures are susceptible to dealumination under hydrothermal environments. In this contribution, we have investigated the ability of non-zeolitic acidic materials to promote the SCR selectivity and stability in the presence of H 2O and SO 2. The results of catalytic activity measurements and characterization tests indicate that sulfated zirconia and tungstated zirconia are supports as effective as the zeolites for the promotion of SCR activity. The high SCR activity of these catalysts can be ascribed to the formation of isolated Pd 2+ ions on acid sites. It is proposed that the stabilization of Pd 2+ on these supports is similar to the stabilization previously reported for acidic zeolites. The remarkable characteristic of these Pd catalysts supported on sulfated zirconia and tungstated zirconia is that when they were tested over a 40 h reaction period in the presence of H 2O and SO 2, they appeared to be significantly more resistant than zeolite-based catalysts.
Author Alvarez, Walter E
Resasco, Daniel E
Chin, Ya-Huei
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  givenname: Daniel E
  surname: Resasco
  fullname: Resasco, Daniel E
  email: resasco@ou.edu
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Issue 2
Keywords Tungstated zirconia
SCR catalyst
Sulfated zirconia
Water
Methane
Catalytic reaction
Deactivation
Hydrocarbon
Transition metal
Palladium
Selectivity
Experimental study
Sulfates
Supported catalyst
Sulfur dioxide
Chemical reduction
Heterogeneous catalysis
Tungsten oxide
Zirconium oxide
Nitric oxide
Preparation
Platinoid
Catalyst activity
Modified material
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Snippet It is now well established that even though Pd supported on acidic zeolites is highly selective for CH 4-SCR, zeolitic structures are susceptible to...
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SubjectTerms Catalysis
Catalysts: preparations and properties
Chemistry
Exact sciences and technology
General and physical chemistry
SCR catalyst
Sulfated zirconia
Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry
Tungstated zirconia
Title Sulfated zirconia and tungstated zirconia as effective supports for Pd-based SCR catalysts
URI https://dx.doi.org/10.1016/S0920-5861(00)00417-X
Volume 62
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