Influence of Y Doping on Catalytic Activity of CeO2, MnOx, and CeMnOx Catalysts for Selective Catalytic Reduction of NO by NH3

被引:2
|
作者
La Greca, Eleonora [1 ]
Kharlamova, Tamara S. [2 ]
Grabchenko, Maria V. [2 ]
Svetlichnyi, Valery A. [3 ]
Pantaleo, Giuseppe [1 ]
Consentino, Luca [1 ]
Stonkus, Olga A. [4 ]
Vodyankina, Olga V. [2 ]
Liotta, Leonarda Francesca [1 ]
机构
[1] Natl Res Council CNR, Inst Study Nanostruct Mat ISMN, Via Ugo Malfa 153, I-90146 Palermo, Italy
[2] Tomsk State Univ, Lab Catalyt Res, Lenin Ave 36, Tomsk 634050, Russia
[3] Tomsk State Univ, Lab Adv Mat & Technol, Lenin Ave 36, Tomsk 634050, Russia
[4] RAS, SB, Boreskov Inst Catalysis, Lavrentiev Ave 5, Novosibirsk 630090, Russia
关键词
NO; selective catalytic reduction; manganese oxide; cerium oxide; yttrium; MANGANESE OXIDES; RAMAN-SPECTRA; DOPED CEO2; OXIDATION; MECHANISM; DEHYDROGENATION; COMBUSTION; REMOVAL; NH3-SCR; SCR;
D O I
10.3390/catal13050901
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Novel yttrium-doped CeO2, MnOx, and CeMnOx composites are investigated as catalysts for low-temperature NH3-SCR. The study involves the preparation of unmodified oxide supports using a citrate method followed by modification with Y (2 wt.%) using two approaches, including the one-pot citrate method and incipient wetness impregnation of undoped oxides. The NH3-SCR reaction is studied in a fixed-bed quartz reactor to test the ability of the prepared catalysts in NO reduction. The gas reaction mixture consists of 800 ppm NO, 800 ppm NH3, 10 vol.% O-2, and He as a balance gas at a WHSV of 25,000 mL g(-1) h(-1). The results indicate that undoped CeMnOx mixed oxide exhibits significantly higher deNO(x) performance compared with undoped and Y-doped MnOx and CeO2 catalysts. Indeed, yttrium presence in CeMnOx promotes the competitive NH3-SCO reaction, reducing the amount of NH3 available for NO reduction and lowering the catalyst activity. Furthermore, the physical-chemical properties of the prepared catalysts are studied using nitrogen adsorption/desorption, XRD, Raman spectroscopy, temperature-programmed reduction with hydrogen, and temperature-programmed desorption of ammonia. This study presents a promising approach to enhancing the performance of NH3-SCR catalysts at low temperatures that can have significant implications for reducing NO emissions.
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页数:19
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