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Ce_xTi_(1-x)O_2 Mixed Oxides Supported CuO Catalyst for NO Reduction by CO 被引量:1
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作者 楼莉萍 蒋晓原 +3 位作者 陈英旭 吕光烈 周仁贤 郑小明 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第3期331-336,共6页
Ce x Ti 1- x O 2 mixed oxides of different mole ratios ( x =0, 0.1, 0.2~0.9, 1.0) were prepared by co precipitation of TiCl 4 with Ce(NO 3) 3 and then loaded with different amounts of CuO. The effe... Ce x Ti 1- x O 2 mixed oxides of different mole ratios ( x =0, 0.1, 0.2~0.9, 1.0) were prepared by co precipitation of TiCl 4 with Ce(NO 3) 3 and then loaded with different amounts of CuO. The effects of CuO on NO+CO reaction were investigated, and the structure and reductive properties of various CuO/Ce x Ti 1- x O 2 were characterized by the methodologies of BET, TPR and XRD. The results show that different Ce/Ti mole ratios and calcination temperatures induce changes of structure and reductive properties of the Ce x Ti 1- x O 2 mixed oxides. When x =0.1~0.5, amorphous CeTi 2O 6 phase mainly forms at 650 ℃ compared to the formation of CeTi 2O 6 which crystallizes at 800 ℃. When x >0.6, some TiO 2 enters the CeO 2 lattice and a CeO 2 TiO 2 solid solution is formed. The activity of 6%CuO/Ce x Ti 1- x O 2 calcined at 650 ℃ is largely affected by the x values, which is the highest when x =0.3, 0.4 and 0.9. The NO conversion reaches 70% at a reaction temperature of 150 ℃. By comparison, the x values have little effect on the activity of 6%CuO/Ce x Ti 1- x O 2 calcined at 800 ℃ . There are strong interactions between CuO and CeTi 2O 6, i.e., formation of the CeTi 2O 6 phase shifts the CuO reduction peak temperature from 380 to 200 ℃, and CuO, in turn, shifts the CeTi 2O 6 reduction peak temperature from 600 to 300 ℃. 展开更多
关键词 catalitic chemistry ce x Ti 1- x O 2 mixed oxides CuO/ce x Ti 1- x O 2 catalysts ceTi 2O 6 phase NO+CO reaction activity rare earths
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混合型铈镍氧化物催化剂的光降解
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作者 钟金莲 张宁 宋丽丽 《南昌大学学报(理科版)》 CAS 北大核心 2007年第3期283-286,共4页
采用不同顺序的混合法制备了3种铈镍氧化物催化剂,利用XRD、IR、TEM等技术对其热稳定性、粒径以及表面形貌进行分析。考察了制备方法、反应光照时间、催化剂用量以及超声波震荡处理对光催化降解甲基橙效率的影响。结果表明:不同的混合... 采用不同顺序的混合法制备了3种铈镍氧化物催化剂,利用XRD、IR、TEM等技术对其热稳定性、粒径以及表面形貌进行分析。考察了制备方法、反应光照时间、催化剂用量以及超声波震荡处理对光催化降解甲基橙效率的影响。结果表明:不同的混合手段制备出的催化剂光催化效果却大不相同,其中采用机械混合法制备的催化剂活性最好。本文还对铈镍氧化物间的协同作用进行了初步的探讨。 展开更多
关键词 铈镍氧化物 甲基橙 催化降解 催化剂
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