Citation:
	            
		            JIA Yong-Chang,  WANG Shu-Yuan,  MENG Lian,  LU Ji-Qing,  LUO Meng-Fei. Effects of Zr Addition on CO and CH4 Catalytic Oxidation over PdO/PdO/Ce1-xPdxO2-δ Catalyst[J]. Acta Physico-Chimica Sinica,
							;2016, 32(7): 1801-1809.
						
							doi:
								10.3866/PKU.WHXB201604081
						
					
				
					
				
	        
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	                	PdO/PdO/Ce1-xPdxO2-δ (PdO/CP) and PdO/Ce1-x-yPdxZryO2-δ (PdO/CPZ) catalysts were prepared via a solution combustion method. The corresponding PdO/Ce1-xPdxO2-δ (CP) and Ce1-x-yPdxZryO2-δ (CPZ) catalysts were obtained by nitric acid treatment of the PdO/CP and PdO/CPZ catalysts to remove the surface PdO species. These catalysts were tested for CO and CH4 catalytic oxidation. The turnover frequencies (TOFs) of surface PdO and Pdn+ cations in the CP and CPZ solid solutions were calculated. The results showed that Zr addition in the PdO/CP catalyst had very different effects on CO and CH4 oxidation. A significant improvement in CO oxidation activity was observed over the Zr-containing catalysts; this could be related to the formation of smaller PdO particles on the surface of the PdO/CPZ catalyst and a higher oxygen vacancy concentration in the CPZ solid solution. For CH4 oxidation, Pdn + cations in the solid solution play a key role in the catalytic oxidation process. The penetration of Zr4+ cations into the CeO2 lattice decreased the amount of Pd2+ cations in the CPZ solid solution and thus inhibited the activities of the Zr-containing catalysts (PdO/CPZ and CPZ) for CH4 oxidation.
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								Keywords:
								
 - Zr,
 - PdO,
 - Oxygen vacancy,
 - CO oxidation,
 - CH4 oxidation
 
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                    [8]
                
			
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                    [9]
                
			
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                    [10]
                
			
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                    [11]
                
			
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                    [12]
                
			
 - 
			
                    [13]
                
			
 - 
			
                    [14]
                
			
 - 
			
                    [15]
                
			
 - 
			
                    [16]
                
			
 - 
			
                    [17]
                
			
 - 
			
                    [18]
                
			
 - 
			
                    [19]
                
			
 - 
			
                    [20]
                
			
 - 
			
                    [21]
                
			
 - 
			
                    [22]
                
			
 - 
			
                    [23]
                
			
 - 
			
                    [24]
                
			
 - 
			
                    [25]
                
			
 - 
			
                    [26]
                
			
 - 
			
                    [27]
                
			
 - 
			
                    [28]
                
			
 - 
			
                    [29]
                
			
 - 
			
                    [30]
                
			
 - 
			
                    [31]
                
			
 - 
			
                    [32]
                
			
 - 
			
                    [33]
                
			
 - 
			
                    [34]
                
			
 - 
			
                    [35]
                
			
 - 
			
                    [36]
                
			
 - 
			
                    [37]
                
			
 - 
			
                    [38]
                
			
 - 
			
                    [39]
                
			
 - 
			
                    [40]
                
			
 - 
			
                    [41]
                
			
 - 
			
                    [42]
                
			
 - 
			
                    [43]
                
			
 - 
			
                    [44]
                
			
 - 
			
                    [45]
                
			
 - 
			
                    [46]
                
			
 - 
			
                    [47]
                
			
 - 
			
                    [48]
                
			
 - 
			
                    [49]
                
			
 - 
			
                    [50]
                
			
 - 
			
                    [51]
                
			
 - 
			
                    [52]
                
			
 - 
			
                    [53]
                
			
 - 
			
                    [54]
                
			
 - 
			
                    [55]
                
			
 - 
			
                    [56]
                
			
 - 
			
                    [57]
                
			
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                    [58]
                
			
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                    [59]
                
			
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                    [60]
                
			
 
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