Kinetics of steam reforming of acetol over a Pt/C catalyst

被引:18
作者
Dubey, Vinita R. [1 ]
Vaidya, Prakash D. [1 ]
机构
[1] Inst Chem Technol, Dept Chem Engn, Bombay 400019, Maharashtra, India
关键词
Catalysis; Kinetics; Mass transfer; Reaction engineering; Fuel; Hydrogen; SPOUTED BED REACTOR; HYDROGEN-PRODUCTION; BIO-OIL; FAST-PYROLYSIS; AQUEOUS-PHASE; RENEWABLE HYDROGEN; RU/AL2O3; CATALYST; SUSTAINABLE HYDROGEN; SUPERCRITICAL WATER; METAL-CATALYSTS;
D O I
10.1016/j.cej.2011.11.034
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Catalytic steam reforming of the bio-oil aqueous fraction represents an attractive route to hydrogen (H-2). In the present work, acetol (or hydroxyacetone) was selected as a representative of the ketonic fraction in bio-oil. Kinetics of acetol steam reforming was studied in a fixed-bed reactor over wide ranges in temperature, 623-773 K, acetol concentration, 5-20 wt%, and W/F-AO ratio, 0.93-4.66 g h/mol, using a commercial 5% Pt/C catalyst. It was found that the investigated reaction belongs to the kinetically controlled reaction regime systems. The increase in temperature and space time caused the expected increase in acetol conversion and H2 yield. A single-site heterogeneous kinetic model was proposed to describe reaction kinetics. Reaction rates predicted by this model were in good agreement with the experimental rates. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:263 / 269
页数:7
相关论文
共 55 条
[31]   Hydrogen Production via Reforming of the Aqueous Phase of Bio-Oil over Ni/Olivine Catalysts in a Spouted Bed Reactor [J].
Kechagiopoulos, Panagiotis N. ;
Voutetakis, Spyros S. ;
Lemonidou, Angeliki A. ;
Vasalos, Iacovos A. .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2009, 48 (03) :1400-1408
[32]  
Kelley S.S., 1997, DEV THERMOCHEMICAL B
[33]   Glycerol aqueous phase reforming for hydrogen generation over Pt catalyst - Effect of catalyst composition and reaction conditions [J].
Luo, Nianjun ;
Fu, Xianwen ;
Cao, Fahai ;
Xiao, Tiancun ;
Edwards, Peter P. .
FUEL, 2008, 87 (17-18) :3483-3489
[34]   Influence of the microchannel plates design on the efficiency of the methanol steam reforming in microreactors [J].
Makarshin, L. L. ;
Andreev, D. V. ;
Gribovskiy, A. G. ;
Parmon, V. N. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2007, 32 (16) :3864-3869
[35]   Hydrogen from biomass:: Steam reforming of model compounds of fast-pyrolysis oil [J].
Marquevich, M ;
Czernik, S ;
Chornet, E ;
Montané, D .
ENERGY & FUELS, 1999, 13 (06) :1160-1166
[36]   Catalytic steam reforming of model compounds of biomass pyrolysis liquids in fluidized bed reactor with modified Ni/Al catalysts [J].
Medrano, J. A. ;
Oliva, M. ;
Ruiz, J. ;
Garcia, L. ;
Afauzo, J. .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2009, 85 (1-2) :214-225
[37]   Low-temperature reforming of ethanol over copper-plated Raney nickel: A new route to sustainable hydrogen for transportation [J].
Morgenstern, DA ;
Fornango, JP .
ENERGY & FUELS, 2005, 19 (04) :1708-1716
[38]   Norms and standards for fast pyrolysis liquids - 1. Round robin test [J].
Oasmaa, A ;
Meier, D .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2005, 73 (02) :323-334
[39]   Steam Reforming of Bio-oil Fractions: Effect of Composition and Stability [J].
Ortiz-Toral, Pedro J. ;
Satrio, Justinus ;
Brown, Robert C. ;
Shanks, Brent H. .
ENERGY & FUELS, 2011, 25 (07) :3289-3297
[40]   Hydrogen from oxygenated solvents by steam reforming on Ni/Al2O3 catalyst [J].
Palmeri, N. ;
Chiodo, V. ;
Freni, S. ;
Frusteri, F. ;
Bart, J. C. J. ;
Cavallaro, S. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2008, 33 (22) :6627-6634