1)  propylene
					[英]['prəupəli:n]  [美]['propəlin]
					 
	
					
				
				 
	
					
				逆水煤气变换
				1.
					Study on coupling of dehydrogenation of propane with reversed water-gas  shift reaction for propylene synthesis;
						
						丙烷脱氢与逆水煤气变换耦合制丙烯反应的研究进展
					
					2)  reverse water-gas shif
					 
	
					
				
				 
	
					
				逆水煤气变换反应
				1.
					It is proved that the MgAl,ZnAl and CuMgAl composite oxide catalysts all exhibit fairly good thermal stability with the reverse water-gas shift reaction.
						
						Mg-Al、Zn-A、Cu-Mg-Al三种复合氧化物对逆水煤气变换反应的热稳定性均较好,Cu的引入大幅度的提高催化活性,特别是低温活性的提高尤为明显。
					
					3)  water gas shift
					 
	
					
				
				 
	
					
				水煤气变换
				1.
					Monte Carlo simulation of the equilibrium of the water gas shift reaction in slit pores;
					 
					
						
						 
					
						狭缝孔内水煤气变换反应平衡的蒙特卡罗模拟
					2.
					Two polygeneration systems with or without water gas shift process are designed.
					 
					
						
						 
					
						系统采用液相甲醇合成工艺,并针对该工艺可以直接使用富CO合成气的特点,根据是否包括合成气水煤气变换工艺,设计了变换系统和不变换系统。
					3.
					CeO 2-ZrO 2 composite oxide with different Ce/Zr ratios was prepared by co-precipitation and a series of Pt/CeO 2-ZrO 2 catalyst samples for water gas shift reaction (WGS) was prepared by impregnation of CeO 2-ZrO 2 with chloroplatinic acid solution.
						
						用共沉淀法制备了不同Ce/Zr比的CeO2 ZrO2 复合氧化物 ,用浸渍法制备了Pt/CeO2 ZrO2 水煤气变换催化剂 ,并对该催化剂进行了活性评价 。
					
					4)  water-gas shift
					 
	
					
				
				 
	
					
				水煤气变换
				1.
					The effect of Zr/Ce molar ratios on the activity for low-temperature CO oxidation and water-gas shift reaction was studied.
						
						考察了催化剂在低温CO氧化和水煤气变换反应中的催化性能。
					2.
					The CO2 addition enhanced the reverse reaction rate of the water-gas shift and inhibited the CO2 formation rate.
						
						由于CO2的添加,促使水煤气变换反应向逆反应方向进行,降低了催化剂表面氢物种浓度,抑制了加氢反应,低碳烃的烯/烷比有所增大,同时提高了重质烃的选择性,且随着CO2分压的增加,有机含氧化合物的生成速率呈上升的趋势。
					3.
					Cu/CeO_2-ZrO_2 catalysts for water-gas shift(WGS) reaction were prepared by co-precipitation method,and the influence of ZrO_2 content on the catalytic structure and properties was investigated by using N_2 physical adsorption,XRD and H_2-TPR.
						
						采用共沉淀法制备了系列Cu/CeO2-ZrO2水煤气变换(WGS)催化剂。
					
					5)  water-gas shift reaction
					 
	
					
				
				 
	
					
				水煤气变换
				1.
					Influence of copper loadings on the performance of Cu/CeO_2 catalysts for water-gas shift reaction;
						
						铜含量对Cu/CeO_2水煤气变换催化剂性能的影响
					2.
					Preparation of a new CuO/ZnO catalyst and its application in water-gas shift reaction;
					 
					
						
						 
					
						新型CuO/ZnO催化剂的制备及其在水煤气变换反应中的应用
					3.
					High concentration hydrogen of the producer gas could be realized through water-gas shift reaction.
						
						生物质焦油的催化脱除 ,由一个保护床和转化反应器组成的高温催化气体净化装置完成 ;生物质气化气要实现高氢浓度的转化 ,需要通过水煤气变换反应将CO转化为H2 。
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