Hydrogen production from a combination of the water-gas shift and redox cycle process of methane partial oxidation via lattice oxygen over LaFeO3 perovskite catalyst

被引:87
作者
Dai, Xiao Ping
Wu, Qiong
Li, Ran Jia
Yu, Chang Chun
Hao, Zheng Ping
机构
[1] Chinese Acad Sci, Ecoenvironm Sci Res Ctr, Beijing 100085, Peoples R China
[2] Univ Petr, Key Lab Catalysis, CNPC, Beijing 102249, Peoples R China
关键词
D O I
10.1021/jp0654664
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
A redox cycle process, in which CH4 and air are periodically brought into contact with a solid oxide packed in a fixed-bed reactor, combined with the water-gas shift (WGS) reaction, is proposed for hydrogen production. The sole oxidant for partial oxidation of methane (POM) is found to be lattice oxygen instead of gaseous oxygen. A perovskite-type LaFeO3 oxide was prepared by a sol-gel method and employed as an oxygen storage material in this process. The results indicate that, under appropriate reaction conditions, methane can be oxidized to CO and H-2 by the lattice oxygen of LaFeO3 perovskite oxide with a selectivity higher than 95% and the consumed lattice oxygen can be replenished in a reoxidation procedure by a redox operation. It is suggested that the POM to H-2/CO by using the lattice oxygen of the oxygen storage materials instead of gaseous oxygen should be possibly applicable. The LaFeO3 perovskite oxide maintained relatively high catalytic activity and structural stability, while the carbonaceous deposits, which come from the dissociation of CH4 in the pulse reaction, occurred due to the low migration rate of lattice oxygen from the bulk toward the surface. A new dissociation-oxidation mechanism for this POM without gaseous oxygen is proposed based on the transient responses of the products checked at different surface states via both pulse reaction and switch reaction over the LaFeO3 catalyst. In the absence of gaseous-phase oxygen, the rate-determining step of methane conversion is the migration rate of lattice oxygen, but the process can be carried out in optimized cycles. The product distribution for POM over LaFeO3 catalyst in the absence of gaseous oxygen was determined by the concentration of surface oxygen, which is relevant with the migration rate of lattice oxygen from the bulk toward the surface. This process of hydrogen production via selective oxidation of methane by lattice oxygen is better in avoiding the deep oxidation (to CO2) and enhancing the selectivity. Therefore, this new route is superior to general POM in stability (resistance to carbonaceous deposition), safety (effectively avoiding accidental explosion), ease of operation and optimization, and low cost (making use of air not oxygen).
引用
收藏
页码:25856 / 25862
页数:7
相关论文
共 35 条
[1]   Production of hydrogen from methanol over Cu/ZnO catalysts promoted by ZrO2 and Al2O3 [J].
Agrell, J ;
Birgersson, H ;
Boutonnet, M ;
Melián-Cabrera, I ;
Navarro, RM ;
Fierro, JLG .
JOURNAL OF CATALYSIS, 2003, 219 (02) :389-403
[2]   Structure and catalytic activity of La1-xFeO3 system (x = 0.00, 0.05, 0.10, 0.15, 0.20, 0.25, 0.35) for the NO+CO reaction [J].
Belessi, VC ;
Trikalitis, PN ;
Ladavos, AK ;
Bakas, TV ;
Pomonis, PJ .
APPLIED CATALYSIS A-GENERAL, 1999, 177 (01) :53-68
[3]   SYNTHESIS GAS-FORMATION BY CATALYTIC-OXIDATION OF METHANE IN FLUIDIZED-BED REACTORS [J].
BHARADWAJ, SS ;
SCHMIDT, LD .
JOURNAL OF CATALYSIS, 1994, 146 (01) :11-21
[4]   Low temperature complete combustion of methane over Ag-doped LaFeO3 and LaFe0.5Co0.5O3 perovskite oxide catalysts [J].
Choudhary, VR ;
Uphade, BS ;
Pataskar, SG .
FUEL, 1999, 78 (08) :919-921
[5]   AFeO3 (A = La, Nd, Sm) and LaFe1-xMgxO3 perovskites as methane combustion and CO oxidation catalysts:: structural, redox and catalytic properties [J].
Ciambelli, P ;
Cimino, S ;
De Rossi, S ;
Lisi, L ;
Minelli, G ;
Porta, P ;
Russo, G .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2001, 29 (04) :239-250
[6]   Methane combustion and CO oxidation on LaAl1-xMnxO3 perovskite-type oxide solid solutions [J].
Cimino, S ;
Lisi, L ;
De Rossi, S ;
Faticanti, M ;
Porta, P .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2003, 43 (04) :397-406
[7]   Catalysis, the turntable for a clean future [J].
Courty, PR ;
Chauvel, A .
CATALYSIS TODAY, 1996, 29 (1-4) :3-15
[8]   The role of suprafacial oxygen in some perovskites for the catalytic combustion of soot [J].
Fino, D ;
Russo, N ;
Saracco, G ;
Speechia, V .
JOURNAL OF CATALYSIS, 2003, 217 (02) :367-375
[9]   THE ACTIVATION OF HYDROCARBON C-H BONDS OVER TRANSITION-METAL OXIDE CATALYSTS - A FTIR STUDY OF HYDROCARBON CATALYTIC COMBUSTION OVER MGCR2O4 [J].
FINOCCHIO, E ;
BUSCA, G ;
LORENZELLI, V ;
WILLEY, RJ .
JOURNAL OF CATALYSIS, 1995, 151 (01) :204-215
[10]  
FRANK JB, 2004, J SOLID STATE CHEM, V177, P2101