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La-Hexaaluminate Catalyst Preparation and Its Performance for Methane Catalytic Combustion
作者姓名:崔梅生  王良士  赵娜  龙志奇  李殿卿  陈霭璠
作者单位:[1]General Research Institute for Nonferrous Metals, Grirem Advanced Materials Co., Ltd., Beijing 100088, China [2]Beijing University of Chemical Technology, Chemical Engineering Resource State Key Laboratory, Beijing 100029, China
基金项目:国家自然科学基金,北京市自然科学基金
摘    要:The La-hexaaluminate catalysts with high performance ration method with the buffer solution of NH4HCO3 and NH4OH were synthesized by the modified controllable co-precipimixture as the precipitation agent. The physicochemical properties of catalysts were characterized by the means of BET, XRD, and TPR techniques. With methane catalytic combustion as the probe reaction, the catalytic performances were also tested on a fixed bed, continual flow system. The resuits show that it is a good method to obtain chemical homogeneous hexaaluminate materials by the buffer solution as the precipitation agent. The La-hexaaluminate can be formed at low temperatures ranging from 1050 to 1200 ℃. The cerium introduction plays a great role in the methane catalytic combustion on La-Mn hexaaluminate because of its high oxygen storage capacity property and the well synergic effect between Ce and Mn. However, the CeO2 appears in hexaaluminate through the XRD pattern, which reveals that Ce can not enter the crystal lattice position. Mn introduction improves the methane catalytic activity to a large extent due to its high redox property. When Mn atomic substitution amount for A1 is 2, the hexaaluminate shows the highest activity, and the catalyst possesses good H2 consumption and redox performance. Mn can easily occupy the hexaaluminate crystal position, which reveals that the Mn substitute La-hexaaluminate is a promising high temperature methane combustion catalyst with high activity and good stability.

关 键 词:镧-六铝酸盐  催化剂  制备  性能  甲烷催化燃烧
文章编号:1002-0721(2006)06-0690-05
收稿时间:2006-07-15
修稿时间:2006-09-25

La-Hexaaluminate Catalyst Preparation and Its Performance for Methane Catalytic Combustion
Cui , Wang Liangshi, Zhao Na, Long Zhiqi, Li Dianqing,Chen Aifan.La-Hexaaluminate Catalyst Preparation and Its Performance for Methane Catalytic Combustion[J].Journal of Rare Earths,2006,24(6):690-694.
Authors:Cui  Wang Liangshi  Zhao Na  Long Zhiqi  Li Dianqing  Chen Aifan
Affiliation:

aGeneral Research Institute for Nonferrous Metals, Grirem Advanced Materials Co., Ltd., Beijing 100088, China

bBeijing University of Chemical Technology, Chemical Engineering Resource State Key Laboratory, Beijing 100029, China

Abstract:The La-hexaaluminate catalysts with high performance were synthesized by the modified controllable co-precipitation method with the buffer solution of NH4HCO3 and NH4OH mixture as the precipitation agent. The physicochemical properties of catalysts were characterized by the means of BET, XRD, and TPR techniques. With methane catalytic combustion as the probe reaction, the catalytic performances were also tested on a fixed bed, continual flow system. The results show that it is a good method to obtain chemical homogeneous hexaaluminate materials by the buffer solution as the precipitation agent. The La-hexaaluminate can be formed at low temperatures ranging from 1050 to 1200 ℃. The cerium introduction plays a great role in the methane catalytic combustion on La-Mn hexaaluminate because of its high oxygen storage capacity property and the well synergic effect between Ce and Mn. However, the CeO2 appears in hexaaluminate through the XRD pattern, which reveals that Ce can not enter the crystal lattice position. Mn introduction improves the methane catalytic activity to a large extent due to its high redox property. When Mn atomic substitution amount for Al is 2, the hexaaluminate shows the highest activity, and the catalyst possesses good H2 consumption and redox performance. Mn can easily occupy the hexaaluminate crystal position, which reveals that the Mn substitute La-hexaaluminate is a promising high temperature methane combustion catalyst with high activity and good stability.
Keywords:La-hexaaluminate  methane combustion  cerium oxides  rare earths
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