Comparative study of HSOA-/SOA2- versus H3-BPO4B- functionalities anchored on TiO2-supported antimony oxide-vanadium oxide-cerium oxide composites for low-temperature NOX activation
- Authors
- Kim, J.; Nam, K.B.; Ha, H.P.
- Issue Date
- 2021-08
- Publisher
- Elsevier B.V.
- Citation
- Journal of Hazardous Materials, v.416
- Abstract
- TiO2-supported antimony oxide-vanadium oxide-cerium oxide (SVC) imparts Lewis acidic (L)/Br?nsted acidic (B) sites, labile (Oα)/mobile oxygens (OM), and oxygen vacancies (OV) for selective catalytic NOX reduction (SCR). However, these species are harmonious occasionally, readily poisoned by H2O/sulfur/phosphorus/carbon, thus limiting SCR performance of SVC. Herein, a synthetic means is reported for immobilizing HSOA-/SOA2- (A= 3?4) or H3?BPO4B- (B= 1?3) on the L sites of SVC to form SVC-S and SVC-P. HSOA-/SOA2-/H3?BPO4B- acted as additional B sites with distinct characteristics, altered the properties of Oα/OM/OV species, thereby affecting the SCR activities and performance of SVC-S and SVC-P. SVC-P activated Langmuir-Hinshelwood-typed SCR better than SVC-S, as demonstrated by a greater Oα-directed pre-factor and smaller binding energy between Oα and NO. Meanwhile, SVC-S provided a larger B-directed pre-factor, thereby outperforming SVC-P in activating Eley-Rideal-typed SCR that dictated the overall SCR activities. Compared with SVC-S, SVC-P contained fewer OV species, yet, had higher OM mobility, thus enhancing the overall redox cycling feature, while providing greater Br?nsted acidity. Consequently, the resistance of SVC-P to H2O or soot were greater than or similar to that of SVC-S. Conversely, SVC-S revealed greater tolerance to hydro-thermal aging and SO2 than SVC-P. This study highlights the pros and cons of HSOA-/SOA2-/H3?BPO4B- functionalities in tailoring the properties of metal oxides in use as SCR catalysts. ? 2021 The Authors
- Keywords
- Antimony compounds; Binding energy; Nitrogen oxides; Reduction; Temperature; Thermal aging; Titanium dioxide; Antimony oxides; Cerium oxides; Energy; H3?BPO4B- functionality; HSOA-/SOA2- functionality; NOX consumption rate; Pre-factor; Selective catalytic NOX reduction; TiO$-2$; Vanadium oxides; Activation energy; antimony; cerium oxide; metal oxide; nitric oxide; titanium dioxide; vanadium; antimony; catalysis; catalyst; comparative study; composite; hydrothermal system; performance assessment; soot; Article; bulk density; catalyst; comparative study; controlled study; diffuse reflectance infrared Fourier transform spectroscopy; flow rate; ion chromatography; kinetic parameters; Langmuir Blodgett film; low temperature; particle size; pore volume; retention time; stereospecificity; surface area; surface property; synthesis; thermal conductivity; transmission electron microscopy; X ray diffraction; X ray fluorescence; Activation energy; H3?BPO4B- functionality; HSOA-/SOA2- functionality; NOX consumption rate; Pre-factor; Selective catalytic NOX reduction
- ISSN
- 0304-3894
- URI
- https://pubs.kist.re.kr/handle/201004/116666
- DOI
- 10.1016/j.jhazmat.2021.125780
- Appears in Collections:
- KIST Article > 2021
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