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国家自然科学基金(20603016)

作品数:5 被引量:25H指数:3
相关作者:单文娟杨佳丽杨利花马娜郭红娟更多>>
相关机构:辽宁师范大学中国科学院更多>>
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0,1,3维CeO_2的可控制备及CuO/CeO_2催化剂上CO氧化反应(英文)被引量:3
2011年
以水、乙醇和乙二醇为溶剂,采用溶剂热法可控制备了0,1,3维CeO2.结果表明,0维CeO2由0.2~0.5μm纳米粒子组成;1维CeO2是直径为25~30μm,长约500μm的六方棒;松针型的3维CeO2是由以纳米粒子为单元构成的直径为1~5μm,长约50μm的光滑棒组成,其比表面积高达234m2/g.将0,1,3维CeO2负载的CuO催化剂用于CO氧化反应中,发现以1维和3维CeO2为载体时,CuO催化剂具有较大的比表面积和较强的表面还原性,因而表现出较高的催化活性.
单文娟刘畅郭红娟杨利华王晓楠冯兆池
关键词:氧化铈氧化铜
K/CeO_2催化剂上碳黑催化燃烧性能及稳定性(英文)被引量:9
2012年
采用不同的钾盐前体制备了一系列K/CeO2催化剂,利用热重和程序升温氧化(TPO)等技术考察了其催化性能及稳定性.结果表明,K/CeO2催化剂可使碳黑完全燃烧温度降低近200oC.钾盐前体对催化活性和稳定性具有较大影响,由于硝酸钾熔点低,金属在载体上的流动性强,有利于催化剂与碳黑的有效接触,因而表现了较高的活性,三次TPO循环试验中催化活性稳定.碳酸钾的熔点高且碱性较强,使碳黑燃烧生成的CO2不可逆吸附在其表面,导致反应活性低,TPO循环实验表明其反应速率降低,失活明显.
单文娟杨利花马娜杨佳丽
关键词:氧化铈稳定性
Catalytic oxidation of soot particulates over MnO_x-CeO_2 oxides prepared by complexation-combustion method被引量:12
2010年
MnOx-CeO2 oxides prepared by complexation-combustion method were used for soot oxidation. The highest conversion rate of soot was obtained on a MnOx-CeO2 oxide prepared under mild acid condition of pH = 4, where the oxidation temperature corresponding to maximum activity was decreased more than 150℃ compared with that of un-catalytic soot oxidation. The structure and property of the catalysts were investigated by X-ray powder diffraction (XRD) and temperature programmed reduction (TPR). The results indicated that there were at least two kinds of Mn species present in MnOx-CeO2 catalysts, i.e. Mn ions within CeO2 lattice and high dispersion MnOx on the surface of CeO2. The presence of Mn ions in the CeO2 lattice improved the oxygen vacancy due to the charge difference, and the CeO2 considerably decreased the reduction temperature of MnOx. The capability to activate oxygen through the oxygen exchange between O2 in gas phase and lattice oxygen species in MnOx-CeO2 oxide contributed to the high catalytic activity for the reaction.
Wenjuan Shan, Na Ma, Jiali Yang, Xiaowei Dong, Chang Liu, Lingling Wei Institute of Chemistry for Functionalized Materials, College of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, Liaoning, China
关键词:MNOX
Catalytic combustion of soot particulates over La_(2-x)K_xNiMnO_6 catalysts被引量:1
2011年
Nanosized La2-xKxNiMnO6 catalysts with ABO3 type perovskite-like structure were prepared by auto-combustion method using citric acid as a ligand to control particle size and morphology.The structures and properties of these perovskite-like oxides were investigated by X-ray powder diffraction(XRD)and temperature-programmed reduction(TPR).The catalytic activities for soot combustion were evaluated by temperature- programmed oxidation(TPO)with pure O2 and O2/NOx as oxidant,respectively.In the La2-xKxNiMnO6 catalysts,the partial substitution of K at A-site leads to an increase of the concentrations of high valence cation and oxygen vacancy,which enhance the catalytic activity for soot combustion.The optimal substitution amount of K was equal to x=0.4 among these samples.Tp(peak temperature)in O2-TPO profile was 420-C and Tp in O2/NOx-TPO profile was 370-C over La1.6K0.4NiMnO6 catalyst for soot particulates combustion under loose contact conditions between catalyst and soot.
Wenjuan Shan Jiali Yang Lihua Yang Na Ma
关键词:燃烧催化剂钙钛矿结构程序升温还原钙钛矿氧化物
Controllable preparation of CeO_2 nanostructure materials and their catalytic activity被引量:1
2012年
Well-crystalline CeO2 nanostructures with the morphology of nanorods and nanocubes were synthesized by a template-free hydro-thermal method. X-ray diffraction (XRD), transmission electron microscopy (TEM), Brunauer-Emmett-Teller (BET) nitrogen adsorp-tion-desorption measurements were employed to characterize the synthesized materials. The reducibility and catalytic activity of nanostruc-tured CeO2 were examined by hydrogen temperature-programmed reduction (H2-TPR) and CO oxidation. The results showed that CeO2 nanorods could be converted into CeO2 nanocubes with the increasing of the reaction time and the hydrothermal temperature, CeO2 nanorods became longer gradually with the increasing of the concentrations of NaOH. H2-TPR characterization demonstrated that the intense low-temperature reduction peak in the CeO2 nanorods indicated the amount of hydrogen consumed is larger than CeO2 nanocubes. Meantime the CeO2 nanorods enhanced catalytic activity for CO oxidation, the total conversion temperature was 340 oC. The reasons were that CeO2 nanorods have much smaller crystalline sizes and higher surface areas than CeO2 nanocubes.
单文娟郭红娟刘畅王晓楠
关键词:纳米结构材料CEO2二氧化铈TPR表征
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