Preparation of NiO/MgAl2O4 catalysts by ball-milling method for catalytic lean burn of high-diluted methane

被引:0
|
作者
Huang, Bo [1 ]
Lu, Yi [1 ]
Jiang, Zhidong [1 ]
机构
[1] School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai,200240, China
来源
Jingxi Huagong/Fine Chemicals | 2020年 / 37卷 / 06期
关键词
Aluminum compounds - Ball milling - Calcination - Catalyst activity - Catalyst supports - Iron compounds - Lanthanum compounds - Lithium compounds - Methane - Milling (machining) - Nanocatalysts - Nickel oxide - Organometallics - Perovskite - Precipitation (chemical) - Rate constants - Strontium compounds;
D O I
10.13550/j.jxhg.20200066
中图分类号
学科分类号
摘要
NiO catalysts supported on MgAl2O4 spinel were prepared by ball-milling method, and the effects of nickel source, NiO loading, ball-to-powder ratio, ball-milling speed, and calcination temperature on the catalytic lean burn of high-diluted methane were investigated. The catalysts were characterized by H2-TPR, BET, XRD and SEM, etc. The results showed that weaker interaction between nickel precursor and carrier was found in catalysts prepared by ball-milling method than that by impregnation method or deposition-precipitation method, to produce NiO species with higher catalytic activity after calcination. In ball milling method, all factors of nickel source, NiO loading, ball-to-powder ratio, ball-milling speed and calcination temperature affected catalytic performances of the catalyst by altering the grain size or bonding state of NiO species on carrier surface. The prepared NiO/MgAl2O4 catalyst demonstrated better stability and activity under the conditions of nickel acetate as nickel source, NiO mass fraction of 10%, ball-to-powder ratio of 2:1, ball-milling speed of 400 r/min, and calcined temperature of 700℃. Its pseudo first-order reaction rate constant at 600℃ was 0.489 L/(g•s), higher than that of La0.8Ca0.2FeO3 or La0.8Sr0.2MnO3 perovskite supported on MgAl2O4 spinel. © 2020, Editorial Office of FINE CHEMICALS. All right reserved.
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页码:1220 / 1226
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