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沉淀剂加入速度对Cu-Mn复合氧化物结构和变换反应活性的影响 被引量:3

Effect of adding rate of precipitator on the texture and activity of the copper-manganese mixed oxide catalyst for water gas shift reaction
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摘要 The copper-manganese mixed oxides prepared by coprecipitation were tested for water gas shift reaction on a micro-reaction system with on-line GC analysis and characterized by XRD,TEM,BET and TPR.The adding rate of precipitator has significant effect on the texture and activity.The copper-manganese mixed oxide with adding time of precipitator less than 33min presents higher activity,especially the higher thermo stability.The copper-manganese mixed oxide prepared at adding time of precipitator less than 160min are mainly consisted of Cu1.5Mn1.5O4.With the increasing of adding time of precipitator,especially for longer than 160min Mn2O3 appears.After catalytic reaction MnO,Cu and Cu2O are the crystalline structure of the samples.With the increase of Mn2O3 the activity,especially the thermo stability activities decrease.Therefore,it can be concluded that the adding rate of precipitator is most curial factor for the preparation of high performance copper-manganese mixed oxides for the water gas shift reaction. The copper-manganese mixed oxides prepared by coprecipitation were tested for water gas shift reaction on a micro-reaction system with on-line GC analysis and characterized by XRD, TEM, BET and TPR. The adding rate of precipitator has significant effect on the texture and activity. The copper-manganese mixed oxide with adding time of precipitator less than 33 min presents higher activity, especially the higher thermo stability. The coppermanganese mixed oxide prepared at adding time of precipitator less than 160 rain are mainly consisted of Cu1.5Mn1.5O4. With the increasing of adding time of precipitator, especially for longer than 160 min Mn2O3 appears. After catalytic reaction MnO, Cu and Cu2O are the crystalline structure of the samples. With the increase of Mn2O3 the activity, especially the thermo stability activities decrease. Therefore, it can be concluded that the adding rate of precipitator is most curial factor for the preparation of high performance copper-manganese mixed oxides for the water gas shift reaction.
出处 《燃料化学学报》 EI CAS CSCD 北大核心 2008年第6期767-771,共5页 Journal of Fuel Chemistry and Technology
基金 教育部留学人员科研启动基金 教育部"春晖计划" 内蒙古自治区优秀学科带头人计划(20041001) 内蒙古人才基金 内蒙古高等学校科学研究(NJ06065) 内蒙古工业大学重点项目(ZD200612)
关键词 沉淀剂加入速率 铜锰复合氧化物 变换反应 活性 耐热性 adding rate of precipitator copper-manganese mixed oxide water gas shift reaction activity thermostability
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