Screening of nickel catalysts for selective hydrogen production using supercritical water gasification of glucose

被引:81
作者
Azadi, Pooya [1 ]
Afif, Elie [1 ]
Azadi, Faraz [1 ]
Farnood, Ramin [1 ]
机构
[1] Univ Toronto, Dept Chem Engn & Appl Chem, Toronto, ON M5S 3E5, Canada
关键词
PRESSURE AQUEOUS ENVIRONMENTS; HYDROTHERMAL GASIFICATION; OXYGENATED HYDROCARBONS; BIOMASS; CELLULOSE; ALUMINA; LIGNIN;
D O I
10.1039/c2gc16378k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report the activity and the selectivity of several heterogeneous nickel catalysts for the supercritical water gasification (SCWG) of biomass. The effects of catalyst support on the carbon conversion and hydrogen selectivity were demonstrated using 44 different materials, covering a wide range of chemical and physical properties. At 5% nickel loading, alpha-Al2O3, carbon nanotubes (CNTs), and MgO supports resulted in high carbon conversions, while SiO2, Y2O3, hydrotalcite, yttria-stabilized zirconia (YSZ), and TiO2 showed modest activities. Utilization of different gamma-Al2O3 supports resulted in a wide range of catalytic activities from almost inactive to highly active. Other catalyst carriers such as zeolites, molecular sieves, CeO2, and ZrO2 had insignificant activity under the conditions tested (i.e., 380 degrees C, 2 wt% feed). Aside from the catalytic activity, the stable metal oxide supports under the experimental conditions of this work, as identified by XRD, were alpha-Al2O3, boehmite, YSZ, and TiO2. Given the high hydrogen yield and carbon conversion as well as its superior stability in supercritical water, alpha-Al2O3 was chosen for a more elaborate investigation. It was found that when using the same amount of nickel, the methane yield significantly decreased by increasing the nickel to support ratio whereas the carbon conversion was only slightly affected. At a given nickel to support ratio, a threefold increase in methane yield was observed by increasing the temperature from 350 to 410 degrees C. The catalyst activation conditions (e. g., calcination and reduction) had a small impact on its catalytic performance. The catalyst activity increased with the addition of alkali promoters (i.e., K, Na, Cs) and decreased with the addition of tin. The highest catalytic activity was obtained with the addition of 0.5% potassium. In summary, nickel loading and alkali promoters improved the hydrogen selectivity and the carbon conversion of the Ni/alpha-Al2O3 catalyst.
引用
收藏
页码:1766 / 1777
页数:12
相关论文
共 32 条
[1]   Catalytic hydrothermal gasification of activated sludge [J].
Afif, Elie ;
Azadi, Pooya ;
Farnood, Ramin .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2011, 105 (1-2) :136-143
[2]   Catalytic gasification of biomass model compound in near-critical water [J].
Azadi, P. ;
Syed, K. M. ;
Farnood, R. .
APPLIED CATALYSIS A-GENERAL, 2009, 358 (01) :65-72
[3]   Hydrothermal gasification of glucose using Raney nickel and homogeneous organometallic catalysts [J].
Azadi, P. ;
Khodadadi, A. A. ;
Mortazavi, Y. ;
Farnood, R. .
FUEL PROCESSING TECHNOLOGY, 2009, 90 (01) :145-151
[4]   Hydrogen production from cellulose, lignin, bark and model carbohydrates in supercritical water using nickel and ruthenium catalysts [J].
Azadi, Pooya ;
Khan, Sami ;
Strobel, Friederike ;
Azadi, Faraz ;
Farnood, Ramin .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2012, 117 :330-338
[5]   Review of heterogeneous catalysts for sub- and supercritical water gasification of biomass and wastes [J].
Azadi, Pooya ;
Farnood, Ramin .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2011, 36 (16) :9529-9541
[6]   Estimation of heating time in tubular supercritical water reactors [J].
Azadi, Pooya ;
Farnood, Ramin ;
Vuillardot, Clement .
JOURNAL OF SUPERCRITICAL FLUIDS, 2011, 55 (03) :1038-1045
[7]   Hydrogen production by catalytic near-critical water gasification and steam reforming of glucose [J].
Azadi, Pooya ;
Otomo, Junichiro ;
Hatano, Hiroyuki ;
Oshima, Yoshito ;
Farnood, Ramin .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (08) :3406-3414
[8]   Preparation of Multiwalled Carbon Nanotube-Supported Nickel Catalysts Using Incipient Wetness Method [J].
Azadi, Pooya ;
Farnood, Ramin ;
Meier, Emanuel .
JOURNAL OF PHYSICAL CHEMISTRY A, 2010, 114 (11) :3962-3968
[9]  
Bartholomew CH, 2006, FUNDAMENTALS OF INDUSTRIAL CATALYTIC PROCESSES, 2ND EDITION, P1, DOI 10.1002/9780471730071
[10]   SOLUBILITY OF CORUNDUM IN SUPERCRITICAL WATER [J].
BECKER, KH ;
CEMIC, L ;
LANGER, KEOE .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1983, 47 (09) :1573-1578