CO and Soot Oxidation over Ce-Zr-Pr Oxide Catalysts

被引:0
作者
Tahrizi Andana
Marco Piumetti
Samir Bensaid
Nunzio Russo
Debora Fino
Raffaele Pirone
机构
[1] Department of Applied Science and Technology,
[2] Politecnico di Torino,undefined
来源
Nanoscale Research Letters | 2016年 / 11卷
关键词
Ceria; Mixed oxide catalysts; Zirconia; Praseodymia; Dopants; CO oxidation; Soot oxidation;
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中图分类号
学科分类号
摘要
A set of ceria, ceria-zirconia (Ce 80 at.%, Zr 20 at.%), ceria-praseodymia (Ce 80 at.%, Pr 20 at.%) and ceria-zirconia-praseodymia (Ce 80 at.%, Zr 10 at.% and Pr 10 at.%) catalysts has been prepared by the solution combustion synthesis (SCS). The effects of Zr and Pr as dopants on ceria have been studied in CO and soot oxidation reactions. All the prepared catalysts have been characterized by complementary techniques, including XRD, FESEM, N2 physisorption at −196 °C, H2-temperature-programmed reduction, and X-ray photoelectron spectroscopy to investigate the relationships between the structure and composition of materials and their catalytic performance. Better results for CO oxidation have been obtained with mixed oxides (performance scale, Ce80Zr10Pr10 > Ce80Zr20 > Ce80Pr20) rather than pure ceria, thus confirming the beneficial role of multicomponent catalysts for this prototypical reaction. Since CO oxidation occurs via a Mars-van Krevelen (MvK)-type mechanism over ceria-based catalysts, it appears that the presence of both Zr and Pr species into the ceria framework improves the oxidation activity, via collective properties, such as electrical conductivity and surface or bulk oxygen anion mobility. On the other hand, this positive effect becomes less prominent in soot oxidation, since the effect of catalyst morphology prevails.
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[1]  
Aneggi E(2006)Insight into the redox properties of ceria-based oxides and their implications in catalysis J Alloys Compd 408–412 1096-1102
[2]  
Boaro M(2005)Surface-structure sensitivity of CO oxidation over polycrystalline ceria powders J Catal 234 88-95
[3]  
de Leitenburg C(2012)On the structure dependence of CO oxidation over CeO J Catal 285 61-73
[4]  
Dolcetti G(2015) nanocrystals with well-defined surface planes Appl Catal B 165 742-751
[5]  
Trovarelli A(2014)Nanostructured ceria-based catalysts for soot combustion: investigations on the surface sensitivity ACS Catal 4 172-181
[6]  
Aneggi E(2014)Shape-dependent activity of ceria in soot combustion Nanoscale Res Lett 9 254-63
[7]  
Llorca J(2013)CeO Catal Today 216 57-24385
[8]  
Boaro M(2007)-based catalysts with engineered morphologies for soot oxidation to enhance soot-catalyst contact Nanotechnology 18 185606-65
[9]  
Trovarelli A(2005)CeO J Phys Chem B 109 24380-282
[10]  
Wu Z(2011) catalysts with fibrous morphology for soot oxidation: the importance of the soot-catalyst contact conditions ChemCatChem 3 24-11