A Study of Simultaneous Reaction for NOx, Soot and Thermal Shock according to Pt Catalyst's Supports
Sung Su Kim, Kwang Hee Park, Se Hyun Bae, Sung Chang Hong
Abstract
Sung Su Kim, Kwang Hee Park, Se Hyun Bae, Sung Chang Hong
Abstract
In this work, thermal shock and simultaneous removal reaction for NOx, soot over Pt catalysts using , as support were studied. The catalytic reaction test for NOx and soot were also performed independently and simultaneously, as a result, it showed different NOx removal efficiency and soot oxidation rate according to support and phase, and the onset temperature of soot oxidation has correlation to NOx removal efficiency for the catalyst. The onset temperature of soot oxidation shifted to lower temperature by generated at the simultaneous reaction for NOx and soot. Also Pt/ catalyst is more affected than Pt/ on NOx removal efficiency caused by thermal shock while Pt sintering effect induced to reduce the performance on soot oxidation rate for all catalysts.
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In this work, thermal shock and simultaneous removal reaction for NOx, soot over Pt catalysts using , as support were studied. The catalytic reaction test for NOx and soot were also performed independently and simultaneously, as a result, it showed different NOx removal efficiency and soot oxidation rate according to support and phase, and the onset temperature of soot oxidation has correlation to NOx removal efficiency for the catalyst. The onset temperature of soot oxidation shifted to lower temperature by generated at the simultaneous reaction for NOx and soot. Also Pt/ catalyst is more affected than Pt/ on NOx removal efficiency caused by thermal shock while Pt sintering effect induced to reduce the performance on soot oxidation rate for all catalysts.
Key concepts: Soot, NOx, Catalysis, Chemistry, Thermal shock, Chemical engineering, Materials science, Inorganic chemistry