FTIR study of adsorption of CO, NO and C2H4 and reaction of CO+H-2 on the well-dispersed FeOx/gamma-Al2O3 and FeOx/TiO2(a) catalysts

被引:19
作者
Ji, WJ [1 ]
Chen, Y [1 ]
Shen, SK [1 ]
Li, SB [1 ]
Wang, HL [1 ]
机构
[1] CHINESE ACAD SCI,LANZHOU INST CHEM PHYS,LANZHOU 730000,PEOPLES R CHINA
关键词
D O I
10.1016/0169-4332(95)00510-2
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Adsorption of CO, NO and C2H4 and reaction of CO + H-2 on the well-dispersed FeOx/TiO2(a) and FeOx/gamma-Al2O3 catalysts were studied combined with the pulse adsorption and temperature programmed desorption of NO. The results indicated that the adsorption properties on the well-dispersed FeOx are different from those on the bulk ferric oxide. For CO adsorption, the differences in the formation of surface CO complex and surface carbonates were observed. For NO adsorption, the types of the adsorbed NO species on FeOx/gamma-Al2O3 are different from those on the FeOx/TiO2(a) catalyst. The local electronic density of the well-dispersed Fe3+ is increased which enhanced the back donation of d electrons in the Fe-N bonding. The formation of NO3-(NO2-) complex on FeOx/gamma-Al2O3 is also different from that on FeOx/TiO2(a). For C2H4 adsorption, no pi bonded C2H4 species developed on the well-dispersed FeOx although it had been found on the bulk alpha-Fe2O3. The weakly adsorbed C2H4 species on the well-dispersed FeOx did not transform either at room temperature or at elevated temperature (up to 423 K). Surface carbonates are the major products while formate or methoxy species rarely formed on the FeOx/TiO2(a) during the CO + H-2 reaction. Small amount of the nondissociative CO complex may be developed in syngas. The alternations in the adsorption behaviors must be connected with the fact that the structural environment and the electronic property for the adsorption site are somewhat changed because of the various dispersion state and the support effect.
引用
收藏
页码:151 / 160
页数:10
相关论文
共 50 条
[41]   IN-SITU FT-IR STUDY OF O2, CO, CO2, CH4 AND C2H4 ADSORPTION OR REACTION ON THE LA2O3/MGO CATALYST [J].
SHEN, S ;
HOU, R ;
JI, W ;
YAN, Z ;
DING, X .
STUDIES IN SURFACE SCIENCE AND CATALYSIS, 1993, 75 :1527-1530
[42]   COLL 593-A new PROX reaction of CO on the FeOx/Pt/TiO2 catalyst [J].
Kim, Sang Nyon ;
Luo, Zhengtang ;
Papadimitrakopoulos, Fotios .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2007, 233
[43]   PHOTO-ACOUSTIC SPECTROSCOPY STUDY OF METAL-SUPPORT INTERACTIONS IN CO/GAMMA-AL2O3 AND NI/GAMMA-AL2O3 CATALYSTS [J].
BURGGRAF, LW ;
LEYDEN, DE ;
CHIN, RL ;
HERCULES, DM .
JOURNAL OF CATALYSIS, 1982, 78 (02) :360-379
[44]   ADSORPTION AND INTERACTION OF C2H4, H2, CO, AND ORGANIC-ACIDS ON FE, CO, AND NI [J].
BLYHOLDER, G ;
SHIHABI, D ;
WYATT, WV ;
BARTLETT, R .
JOURNAL OF CATALYSIS, 1976, 43 (1-3) :122-130
[45]   A STUDY OF THE KINETICS OF REACTION OF FE(CO)3 AND FE(CO)3(L) WITH H-2 AND C2H4 FOR L = H-2 AND C2H4 BY TRANSIENT INFRARED-SPECTROSCOPY - REACTIONS RELEVANT TO OLEFIN HYDROGENATION KINETICS [J].
HAYES, DM ;
WEITZ, E .
JOURNAL OF PHYSICAL CHEMISTRY, 1991, 95 (07) :2723-2727
[46]   FTIR STUDY OF CO/O(2) REACTION OVER Pt-Rh/Al(2)O(3) CATALYSTS [J].
Anderson, James A. ;
Rochester, Colin H. .
CATALYSIS TODAY, 1991, 10 (03) :275-282
[47]   STRUCTURE OF CO, CO2, C2H2 AND C2H4 ADSORBED ON RH(111) [J].
VANHOVE, MA ;
DUBOIS, LH ;
KOESTNER, RJ ;
SOMORJAI, GA .
BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1980, 25 (03) :227-227
[48]   Density functional theory study into the adsorption of CO2, H and CHXx (x=0-3) as well as C2H4 on α-Mo2C(0001) [J].
Ren, Jun ;
Huo, Chun-Fang ;
Wang, Jianguo ;
Cao, Zhi ;
Li, Yong-Wang ;
Jiao, Haijun .
SURFACE SCIENCE, 2006, 600 (11) :2329-2337
[49]   INFRARED SPECTROSCOPIC STUDIES OF H2S ADSORPTION ON GAMMA-AL2O3 [J].
DESYATOV, IV ;
PAUKSHTIS, EA ;
MASHKINA, AV .
REACTION KINETICS AND CATALYSIS LETTERS, 1990, 41 (01) :85-88
[50]   Surface configuration modulation for FeOx-CeO2/γ-Al2O3 catalysts and its influence in CO oxidation [J].
Ge, Chengyan ;
Yu, Yaxin ;
An, Dongqi ;
Tong, Qing ;
Tang, Changjin ;
Gao, Fei ;
Sun, Jingfang ;
Dong, Lin .
JOURNAL OF CATALYSIS, 2020, 386 :139-150