Enhanced catalytic activity of Ni on η-Al2O3 and ZSM-5 on addition of ceria zirconia for the partial oxidation of methane

被引:78
作者
Osman, Ahmed I. [1 ,2 ]
Meudal, Jonathan [3 ]
Laffir, Fathima [4 ]
Thompson, Jillian [1 ]
Rooney, David [1 ]
机构
[1] Queens Univ Belfast, Sch Chem & Chem Engn, David Keir Bldg,Stranmillis Rd, Belfast BT9 5AG, North Ireland
[2] South Valley Univ, Fac Sci Qena, Chem Dept, Qena 83523, Egypt
[3] ENSICAEN, 6 Blvd Marechal Juin, F-14000 Caen, France
[4] Univ Limerick, Mat & Surface Sci Inst, Dept Chem & Environm Sci, Limerick, Ireland
关键词
Methane; Partial oxidation; Zeolite support; Oxygen carrier; Nickel; CeO2-ZrO2; CEO2-ZRO2; SOLID-SOLUTION; SYNTHESIS GAS; HYDROGEN-PRODUCTION; LOW-TEMPERATURE; NICKEL; SUPPORT; PERFORMANCE; COMBUSTION; MECHANISMS; ZEOLITE;
D O I
10.1016/j.apcatb.2016.12.058
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
Nickel supported on Ti-Al2O3 and ZSM-5(80) catalysts with and without the addition of ceria-zirconia, were prepared by co-precipitation and wet impregnation methods and used for the low temperature catalytic partial oxidation of methane (CPOM). The catalysts were tested under reaction temperatures of between 400 and 700 degrees C with a WHSV of 63,000 mL g(-1) h(-1). The activity of the catalyst was found to be dependent on the support and preparation method. The optimum catalyst composition of those tested was 10% Ni on 25%CeO2-ZrO2/ZSM-5(80), prepared by co-precipitation, where the reaction reached equilibrium conversion at 400 degrees C (T-50 <400 degrees C), which is one of the lowest temperatures reported to date. Further increases in temperature led to improved selectivity to CO reaching 60% at 600 degrees C. Although the observed kinetics were found to be controlled by strong adsorption of CO at lower temperature, this was an equilibrium limitation with longer time on stream experiments showing no decrease in the catalyst activity over 25 hat 400 degrees C. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:68 / 79
页数:12
相关论文
共 50 条
[21]   Methane Activation by Heterogeneous Catalysis [J].
Horn, Raimund ;
Schloegl, Robert .
CATALYSIS LETTERS, 2015, 145 (01) :23-39
[22]   Mechanism for catalytic partial oxidation of methane to syngas over a Ni/Al2O3 catalyst [J].
Jin, RC ;
Chen, YX ;
Li, WZ ;
Cui, W ;
Ji, YY ;
Yu, CY ;
Jiang, Y .
APPLIED CATALYSIS A-GENERAL, 2000, 201 (01) :71-80
[23]   Health effects of diesel exhaust emissions - a mixture of air pollutants of worldwide concern [J].
Kagawa, J .
TOXICOLOGY, 2002, 181 :349-353
[24]   Nanostructured Zr-Pd Metallic Glass Thin Film for Biochemical Applications [J].
Ketov, Sergey V. ;
Shi, Xuetao ;
Xie, Guoqiang ;
Kumashiro, Ryotaro ;
Churyumov, Alexander Yu. ;
Bazlov, Andrey I. ;
Chen, Na ;
Ishikawa, Yoshifumi ;
Asao, Naoki ;
Wu, Hongkai ;
Louzguine-Luzgin, Dmitri V. .
SCIENTIFIC REPORTS, 2015, 5
[25]   Hydrogen or synthesis gas production via the partial oxidation of methane over supported nickel-cobalt catalysts [J].
Koh, Alaric C. W. ;
Chen, Luwei ;
Leong, Weng Kee ;
Johnson, Brian F. G. ;
Khimyak, Tetyana ;
Lin, Jianyi .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2007, 32 (06) :725-730
[26]   Methane partial oxidation over Pt-Ru catalyst: An investigation on the mechanism [J].
Lanza, R. ;
Canu, P. ;
Jaras, S. G. .
APPLIED CATALYSIS A-GENERAL, 2010, 375 (01) :92-100
[27]   Ceria-Zirconia supported Ni catalysts for partial oxidation of methane to synthesis gas [J].
Larimi, A. S. ;
Alavi, S. M. .
FUEL, 2012, 102 :366-371
[28]   Investigation of the chemical bonding in 3d(8) nickel(II) charge transfer insulators (NiO, oxidic spinels) from ligand-field spectroscopy, Ni 2p XPS and X-ray absorption spectroscopy [J].
Lenglet, M ;
Hochu, F ;
Durr, J ;
Tuilier, MH .
SOLID STATE COMMUNICATIONS, 1997, 104 (12) :793-798
[29]   Investigation of Ni/Ce-ZrO2 catalysts in the autothermal reforming of methane [J].
Lisboa, Juliana S. ;
Terra, Luis E. ;
Silva, Paulo R. J. ;
Saitovitch, Henrique ;
Passos, Fabio B. .
FUEL PROCESSING TECHNOLOGY, 2011, 92 (10) :2075-2082
[30]  
Mantienzo L. J., 1973, INORG CHEM, V12, P2763