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Effect of hydrothermal aging on NOx reduction performance for Sb-V-CeO2/TiO2 catalyst

Authors
Jeong, Young EunKumar, Pullur AnilHa, Heon PhilLee, Kwan-young
Issue Date
11월-2018
Publisher
SPRINGER
Keywords
Hydrothermal aging; CeVO4; Polymeric VOx species; Raman spectra; NOx conversion
Citation
RESEARCH ON CHEMICAL INTERMEDIATES, v.44, no.11, pp.6803 - 6829
Indexed
SCIE
SCOPUS
Journal Title
RESEARCH ON CHEMICAL INTERMEDIATES
Volume
44
Number
11
Start Page
6803
End Page
6829
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/71950
DOI
10.1007/s11164-018-3523-9
ISSN
0922-6168
Abstract
Herein, we investigated the NOx reduction performance of Sb-V-CeO2/TiO2 (SbVCT) catalyst subjected to hydrothermal aging, where 6 vol% of H2O was fed to the SbVCT for 16h with variable temperatures of 550-750 degrees C. The structural, morphological, redox, and acid properties of fresh and aged catalysts were comprehensively characterized using X-ray diffraction (XRD), transmission electron microscopy (TEM), Raman, N-2-physisorption, temperature programmed reduction/desorption (H-2-TPR/NH3/NO-TPD) and in situ DRIFTS. The XRD, Raman and TEM results of the fresh and the one hydrothermally aged at 550, 600 degrees C catalysts indicated the presence of finely dispersed polymeric vanadia, antimony, and nano-crystalline ceria species on TiO2 support. The SbVCT catalysts hydrothermally aged at the temperatures600 degrees C showed better NOx conversions than the others aged>600 degrees C. This was because aging at the temperatures600 degrees C could help to minimize the loss of surface redox/acid properties that were originally inherent to surface vanadyl and CeO2 species that went into CeVO4 and large CeO2 aggregates. This in turn led to the loss of surface redox and acidic characters indigenous to the SbVCT and reduced its NOx reduction performance. Moreover, the NOx reduction performance of hydrothermally aged V-WO3-TiO2 catalyst, when compared with that of SbVCT catalyst, showed relatively low NOx conversions at the temperatures below 300 degrees C.
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