2021
DOI: 10.1088/1361-6528/ac2538
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NO reduction with CO over a highly dispersed Mn/TiO2 catalyst at low temperature: a combined experimental and theoretical study

Abstract: A highly dispersed Mn/TiO2 catalyst, which has high efficiency for NO conversion with CO and almost completed N2 selectivity at a low-temperature range (350–550 K), was investigated using experimental and DFT theoretical calculation. The characterization results illustrated that the catalyst assembled with nanoparticles and the Mn doping into the TiO2 surface lattice led to the formation of Mn–O–Ti configuration, which enhanced the dispersion of Mn on the body of TiO2. The DFT study mapped out the complete cat… Show more

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Cited by 6 publications
(1 citation statement)
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“…Nitrogen oxides, encompassing NO, NO 2 , and N 2 O, constitute the principal components of air pollutants originating mainly from stationary and mobile emission sources. Selective catalytic reduction (SCR) technology stands out as the most effective approach for removing NO x emissions, employing reductants like NH 3 , H 2 , hydrocarbons (HC), and CO . Among these, the CO-SCR holds a pivotal position for converting exhaust NO x .…”
Section: Introductionmentioning
confidence: 99%
“…Nitrogen oxides, encompassing NO, NO 2 , and N 2 O, constitute the principal components of air pollutants originating mainly from stationary and mobile emission sources. Selective catalytic reduction (SCR) technology stands out as the most effective approach for removing NO x emissions, employing reductants like NH 3 , H 2 , hydrocarbons (HC), and CO . Among these, the CO-SCR holds a pivotal position for converting exhaust NO x .…”
Section: Introductionmentioning
confidence: 99%