详细信息
制备方法对LaMn0.8Mg0.2O3钙钛矿型氧化物催化甲烷燃烧反应性能的影响(英文) ( EI收录)
Effects of Preparation Methods on the Catalytic Performance of LaMn_(0.8)Mg_(0.2)O_3 Perovskite for Methane Combustion
文献类型:期刊文献
中文题名:制备方法对LaMn0.8Mg0.2O3钙钛矿型氧化物催化甲烷燃烧反应性能的影响(英文)
英文题名:Effects of Preparation Methods on the Catalytic Performance of LaMn_(0.8)Mg_(0.2)O_3 Perovskite for Methane Combustion
作者:朱琳琳[1];卢冠忠[1];王艳芹[1];郭耘[1];郭杨龙[1]
机构:[1]华东理工大学结构可控先进功能材料及其制备教育部重点实验室,工业催化研究所,上海200237
年份:2010
卷号:31
期号:8
起止页码:1006
中文期刊名:催化学报
外文期刊名:Chinese Journal of Catalysis
收录:CSTPCD;;EI(收录号:20103713236276);Scopus;北大核心:【北大核心2008】;CSCD:【CSCD2011_2012】;
基金:Supported by the National Basic Research Program of China (973 Program,2010CB732300);the National Natural Science Foundation of China (20673037,20601008);the National Key Technologies R&D Program of China (2007BAJ03B01)
语种:中文
中文关键词:LaMn0.8Mg0.2O3;钙钛矿型催化剂;制备方法;焙烧温度;甲烷燃烧
外文关键词:LaMn0.8Mg0.2O3; perovskite catalyst; preparation method; calcination temperature; methane combustion
摘要:分别采用甘氨酸硝酸盐法、溶胶凝胶法、共沉淀法、燃烧法以及水热法制备了钙钛矿型LaMn0.8Mg0.2O3复合氧化物,用X射线衍射、红外光谱、H2程序升温还原和低温N2吸附对其进行了表征,并考察了其对甲烷燃烧的催化活性.结果表明,制备方法和焙烧温度对LaMn0.8Mg0.2O3钙钛矿型催化剂的结构、晶粒大小和不同类型的氧物种影响很大.以甘氨酸硝酸盐法制备的钙钛矿型催化剂经700°C焙烧后表现出最高的催化活性,T50(甲烷转化率达到50%时的温度)仅为440°C.这归结于它较小的晶粒尺寸(12.4nm)和较大的比表面积(18.6m2/g),以及催化剂表面富集的Mn4+,从而使表面氧物种更容易移动和/或更具有反应活性.
A perovskite-type composite oxide,LaMn0.8Mg0.2O3,was prepared by five methods,i.e.,glycine-nitrate,sol-gel,co-precipitation,combustion synthesis,and hydrothermal treatment.The composites were characterized by X-ray diffraction,Fourier transform infrared spectroscopy,H2-temperature-programmed reduction,and N2 adsorption-desorption isotherms.The catalytic activity of LaMn0.8Mg0.2O3 toward methane combustion was evaluated.The results show that the different preparation methods and calcination temperatures greatly influence the textural structure,crystallite size,and different oxygen species within the LaMn0.8Mg0.2O3 perovskite material.The perovskite catalyst synthesized by the glycine-nitrate method and calcined at 700 °C shows the best activity for methane combustion among the tested materials.Its T50 (the reaction temperature at which 50% CH4 is converted) is only ~440 °C.This good catalyst performance can be attributed to the small crystallite size (12.4 nm),larger surface area (18.6 m2/g),and high concentration of surface Mn4+ cations,which creates more flexible and reactive surface oxygen species.
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